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Articles 301 - 330 of 796
Full-Text Articles in Medical Specialties
Mitochondrial Reprogramming By Activating Oxphos Via Glutamine Metabolism In African American Patients With Bladder Cancer, Karthik Reddy Kami Reddy, Danthasinghe Waduge Badrajee Piyarathna, Jun Hyoung Park, Vasanta Putluri, Chandra Sekhar Amara, Abu Hena Mostafa Kamal, Jun Xu, Daniel Kraushaar, Shixia Huang, Sung Yun Jung, Livia S Eberlin, Jabril R Johnson, Rick A Kittles, Leomar Y Ballester, Krishna Parsawar, M Minhaj Siddiqui, Jianjun Gao, Adriana Langer Gramer, Roni J Bollag, Martha K Terris, Yair Lotan, Chad J Creighton, Seth P Lerner, Arun Sreekumar, Benny Abraham Kaipparettu, Nagireddy Putluri
Mitochondrial Reprogramming By Activating Oxphos Via Glutamine Metabolism In African American Patients With Bladder Cancer, Karthik Reddy Kami Reddy, Danthasinghe Waduge Badrajee Piyarathna, Jun Hyoung Park, Vasanta Putluri, Chandra Sekhar Amara, Abu Hena Mostafa Kamal, Jun Xu, Daniel Kraushaar, Shixia Huang, Sung Yun Jung, Livia S Eberlin, Jabril R Johnson, Rick A Kittles, Leomar Y Ballester, Krishna Parsawar, M Minhaj Siddiqui, Jianjun Gao, Adriana Langer Gramer, Roni J Bollag, Martha K Terris, Yair Lotan, Chad J Creighton, Seth P Lerner, Arun Sreekumar, Benny Abraham Kaipparettu, Nagireddy Putluri
Faculty, Staff and Students Publications
Bladder cancer (BLCA) mortality is higher in African American (AA) patients compared with European American (EA) patients, but the molecular mechanism underlying race-specific differences are unknown. To address this gap, we conducted comprehensive RNA-Seq, proteomics, and metabolomics analysis of BLCA tumors from AA and EA. Our findings reveal a distinct metabolic phenotype in AA BLCA characterized by elevated mitochondrial oxidative phosphorylation (OXPHOS), particularly through the activation of complex I. The results provide insight into the complex I activation-driven higher OXPHOS activity resulting in glutamine-mediated metabolic rewiring and increased disease progression, which was also confirmed by [U]13C-glutamine tracing. Mechanistic studies further …
Parp-1 Selectively Impairs Kras-Driven Phenotypic And Molecular Features In Intrahepatic Cholangiocarcinoma, Friederike L Keggenhoff, Darko Castven, Diana Becker, Stojan Stojkovic, Jovana Castven, Carolin Zimpel, Beate K Straub, Tiemo Gerber, Harald Langer, Patricia Hähnel, Thomas Kindler, Jörg Fahrer, Colm J O'Rourke, Ursula Ehmer, Anna Saborowski, Lichun Ma, Xin Wei Wang, Timo Gaiser, Matthias S Matter, Christian Sina, Stefanie Derer, Ju-Seog Lee, Stephanie Roessler, Bernd Kaina, Jesper B Andersen, Peter R Galle, Jens U Marquardt
Parp-1 Selectively Impairs Kras-Driven Phenotypic And Molecular Features In Intrahepatic Cholangiocarcinoma, Friederike L Keggenhoff, Darko Castven, Diana Becker, Stojan Stojkovic, Jovana Castven, Carolin Zimpel, Beate K Straub, Tiemo Gerber, Harald Langer, Patricia Hähnel, Thomas Kindler, Jörg Fahrer, Colm J O'Rourke, Ursula Ehmer, Anna Saborowski, Lichun Ma, Xin Wei Wang, Timo Gaiser, Matthias S Matter, Christian Sina, Stefanie Derer, Ju-Seog Lee, Stephanie Roessler, Bernd Kaina, Jesper B Andersen, Peter R Galle, Jens U Marquardt
Faculty, Staff and Student Publications
Objective: Intrahepatic cholangiocarcinoma (iCCA) is the second most common primary liver cancer with limited therapeutic options. KRAS mutations are among the most abundant genetic alterations in iCCA associated with poor clinical outcome and treatment response. Recent findings indicate that Poly(ADP-ribose)polymerase1 (PARP-1) is implicated in KRAS-driven cancers, but its exact role in cholangiocarcinogenesis remains undefined.
Design: PARP-1 inhibition was performed in patient-derived and established iCCA cells using RNAi, CRISPR/Cas9 and pharmacological inhibition in KRAS-mutant, non-mutant cells. In addition, Parp-1 knockout mice were combined with iCCA induction by hydrodynamic tail vein injection to evaluate an impact on phenotypic and molecular …
Fibrotic Response To Anti-Csf-1r Therapy Potentiates Glioblastoma Recurrence, Spencer S Watson, Anoek Zomer, Nadine Fournier, Joao Lourenco, Manfredo Quadroni, Agnieszka Chryplewicz, Sina Nassiri, Pauline Aubel, Simona Avanthay, Davide Croci, Erik Abels, Marike L D Broekman, Douglas Hanahan, Jason T Huse, Roy T Daniel, Monika E Hegi, Krisztian Homicsko, Giulia Cossu, Andreas F Hottinger, Johanna A Joyce
Fibrotic Response To Anti-Csf-1r Therapy Potentiates Glioblastoma Recurrence, Spencer S Watson, Anoek Zomer, Nadine Fournier, Joao Lourenco, Manfredo Quadroni, Agnieszka Chryplewicz, Sina Nassiri, Pauline Aubel, Simona Avanthay, Davide Croci, Erik Abels, Marike L D Broekman, Douglas Hanahan, Jason T Huse, Roy T Daniel, Monika E Hegi, Krisztian Homicsko, Giulia Cossu, Andreas F Hottinger, Johanna A Joyce
Faculty, Staff and Student Publications
Glioblastoma recurrence is currently inevitable despite extensive standard-of-care treatment. In preclinical studies, an alternative strategy of targeting tumor-associated macrophages and microglia through CSF-1R inhibition was previously found to regress established tumors and significantly increase overall survival. However, recurrences developed in ∼50% of mice in long-term studies, which were consistently associated with fibrotic scars. This fibrotic response is observed following multiple anti-glioma therapies in different preclinical models herein and in patient recurrence samples. Multi-omics analyses of the post-treatment tumor microenvironment identified fibrotic areas as pro-tumor survival niches that encapsulated surviving glioma cells, promoted dormancy, and inhibited immune surveillance. The fibrotic treatment …
Rna Interacts With Topoisomerase I To Adjust Dna Topology, Mannan Bhola, Kouki Abe, Paola Orozco, Homa Rahnamoun, Pedro Avila-Lopez, Elijah Taylor, Nefertiti Muhammad, Bei Liu, Prachi Patel, John F Marko, Anne C Starner, Chuan He, Eric L Van Nostrand, Alfonso Mondragón, Shannon M Lauberth
Rna Interacts With Topoisomerase I To Adjust Dna Topology, Mannan Bhola, Kouki Abe, Paola Orozco, Homa Rahnamoun, Pedro Avila-Lopez, Elijah Taylor, Nefertiti Muhammad, Bei Liu, Prachi Patel, John F Marko, Anne C Starner, Chuan He, Eric L Van Nostrand, Alfonso Mondragón, Shannon M Lauberth
Faculty, Staff and Students Publications
Topoisomerase I (TOP1) is an essential enzyme that relaxes DNA to prevent and dissipate torsional stress during transcription. However, the mechanisms underlying the regulation of TOP1 activity remain elusive. Using enhanced cross-linking and immunoprecipitation (eCLIP) and ultraviolet-cross-linked RNA immunoprecipitation followed by total RNA sequencing (UV-RIP-seq) in human colon cancer cells along with RNA electrophoretic mobility shift assays (EMSAs), biolayer interferometry (BLI), and in vitro RNA-binding assays, we identify TOP1 as an RNA-binding protein (RBP). We show that TOP1 directly binds RNA in vitro and in cells and that most RNAs bound by TOP1 are mRNAs. Using a TOP1 RNA-binding mutant …
Neoadjuvant Parpi Or Chemotherapy In Ovarian Cancer Informs Targeting Effector Treg Cells For Homologous-Recombination-Deficient Tumors, Yikai Luo, Yu Xia, Dan Liu, Xiong Li, Huayi Li, Jiahao Liu, Dongchen Zhou, Yu Dong, Xin Li, Yiyu Qian, Cheng Xu, Kangjia Tao, Guannan Li, Wen Pan, Qing Zhong, Xingzhe Liu, Sen Xu, Zhi Wang, Ronghua Liu, Wei Zhang, Wanying Shan, Tian Fang, Siyuan Wang, Zikun Peng, Ping Jin, Ning Jin, Shennan Shi, Yuxin Chen, Mengjie Wang, Xiaofei Jiao, Mengshi Luo, Wenjian Gong, Ya Wang, Yue Yao, Yi Zhao, Xinlin Huang, Xuwo Ji, Zhaoren He, Guangnian Zhao, Rong Liu, Mingfu Wu, Gang Chen, Li Hong, Cocpo Consortium, Ding Ma, Yong Fang, Han Liang, Qinglei Gao
Neoadjuvant Parpi Or Chemotherapy In Ovarian Cancer Informs Targeting Effector Treg Cells For Homologous-Recombination-Deficient Tumors, Yikai Luo, Yu Xia, Dan Liu, Xiong Li, Huayi Li, Jiahao Liu, Dongchen Zhou, Yu Dong, Xin Li, Yiyu Qian, Cheng Xu, Kangjia Tao, Guannan Li, Wen Pan, Qing Zhong, Xingzhe Liu, Sen Xu, Zhi Wang, Ronghua Liu, Wei Zhang, Wanying Shan, Tian Fang, Siyuan Wang, Zikun Peng, Ping Jin, Ning Jin, Shennan Shi, Yuxin Chen, Mengjie Wang, Xiaofei Jiao, Mengshi Luo, Wenjian Gong, Ya Wang, Yue Yao, Yi Zhao, Xinlin Huang, Xuwo Ji, Zhaoren He, Guangnian Zhao, Rong Liu, Mingfu Wu, Gang Chen, Li Hong, Cocpo Consortium, Ding Ma, Yong Fang, Han Liang, Qinglei Gao
Faculty, Staff and Student Publications
Homologous recombination deficiency (HRD) is prevalent in cancer, sensitizing tumor cells to poly (ADP-ribose) polymerase (PARP) inhibition. However, the impact of HRD and related therapies on the tumor microenvironment (TME) remains elusive. Our study generates single-cell gene expression and T cell receptor profiles, along with validatory multimodal datasets from >100 high-grade serous ovarian cancer (HGSOC) samples, primarily from a phase II clinical trial (NCT04507841). Neoadjuvant monotherapy with the PARP inhibitor (PARPi) niraparib achieves impressive 62.5% and 73.6% response rates per RECIST v.1.1 and GCIG CA125, respectively. We identify effector regulatory T cells (eTregs) as key responders to HRD …
Myc Induces Oncogenic Stress Through Rna Decay And Ribonucleotide Catabolism In Breast Cancer, Jitendra K Meena, Jarey H Wang, Nicholas J Neill, Dianne Keough, Nagireddy Putluri, Panagiotis Katsonis, Amanda M Koire, Hyemin Lee, Elizabeth A Bowling, Siddhartha Tyagi, Mayra Orellana, Rocio Dominguez-Vidaña, Heyuan Li, Kenneth Eagle, Charles Danan, Hsiang-Ching Chung, Andrew D Yang, William Wu, Sarah J Kurley, Brian M Ho, Joseph R Zoeller, Calla M Olson, Kristen L Meerbrey, Olivier Lichtarge, Arun Sreekumar, Clifford C Dacso, Luke W Guddat, Dominik Rejman, Dana Hocková, Zlatko Janeba, Lukas M Simon, Charles Y Lin, Monica C Pillon, Thomas F Westbrook
Myc Induces Oncogenic Stress Through Rna Decay And Ribonucleotide Catabolism In Breast Cancer, Jitendra K Meena, Jarey H Wang, Nicholas J Neill, Dianne Keough, Nagireddy Putluri, Panagiotis Katsonis, Amanda M Koire, Hyemin Lee, Elizabeth A Bowling, Siddhartha Tyagi, Mayra Orellana, Rocio Dominguez-Vidaña, Heyuan Li, Kenneth Eagle, Charles Danan, Hsiang-Ching Chung, Andrew D Yang, William Wu, Sarah J Kurley, Brian M Ho, Joseph R Zoeller, Calla M Olson, Kristen L Meerbrey, Olivier Lichtarge, Arun Sreekumar, Clifford C Dacso, Luke W Guddat, Dominik Rejman, Dana Hocková, Zlatko Janeba, Lukas M Simon, Charles Y Lin, Monica C Pillon, Thomas F Westbrook
Faculty, Staff and Students Publications
Upregulation of MYC is a hallmark of cancer, wherein MYC drives oncogenic gene expression and elevates total RNA synthesis across cancer cell transcriptomes. Although this transcriptional anabolism fuels cancer growth and survival, the consequences and metabolic stresses induced by excess cellular RNA are poorly understood. Herein, we discover that RNA degradation and downstream ribonucleotide catabolism is a novel mechanism of MYC-induced cancer cell death. Combining genetics and metabolomics, we find that MYC increases RNA decay through the cytoplasmic exosome, resulting in the accumulation of cytotoxic RNA catabolites and reactive oxygen species. Notably, tumor-derived exosome mutations abrogate MYC-induced cell death, suggesting …
G Protein Selectivity Profile Of Gpr56/Adgrg1 And Its Effect On Downstream Effectors, Raida Jallouli, Ana L Moreno-Salinas, Andréanne Laniel, Brian Holleran, Charlotte Avet, Joan Jacob, Trang Hoang, Christine Lavoie, Kendra S Carmon, Michel Bouvier, Richard Leduc
G Protein Selectivity Profile Of Gpr56/Adgrg1 And Its Effect On Downstream Effectors, Raida Jallouli, Ana L Moreno-Salinas, Andréanne Laniel, Brian Holleran, Charlotte Avet, Joan Jacob, Trang Hoang, Christine Lavoie, Kendra S Carmon, Michel Bouvier, Richard Leduc
Faculty, Staff and Student Publications
GPR56, an adhesion G-protein coupled receptor (aGPCRs) with constitutive and ligand-promoted activity, is involved in many physiological and pathological processes. Whether the receptor's constitutive or ligand-promoted activation occur through the same molecular mechanism, and whether different activation modes lead to functional selectivity between G proteins is unknown. Here we show that GPR56 constitutively activates both G12 and G13. Unlike constitutive activation and activation with 3-α-acetoxydihydrodeoxygedunin (3αDOG), stimulation with an antibody, 10C7, directed against GPR56's extracellular domain (ECD) led to an activation that favors G13 over G12. An autoproteolytically deficient mutant, GPR56-T383A, was also activated by 10C7 indicating that the tethered …
Crizotinib Enhances Parp Inhibitor Efficacy In Ovarian Cancer Cells And Xenograft Models By Inducing Autophagy, Janice M Santiago-O'Farrill, Alicia Blessing Bollu, Hailing Yang, Vivian Orellana, Marc Pina, Xudong Zhang, Jinsong Liu, Robert C Bast, Zhen Lu
Crizotinib Enhances Parp Inhibitor Efficacy In Ovarian Cancer Cells And Xenograft Models By Inducing Autophagy, Janice M Santiago-O'Farrill, Alicia Blessing Bollu, Hailing Yang, Vivian Orellana, Marc Pina, Xudong Zhang, Jinsong Liu, Robert C Bast, Zhen Lu
Faculty, Staff and Student Publications
Poly (ADP-ribose) polymerase inhibitors (PARPi) can encounter resistance through various mechanisms, limiting their effectiveness. Our recent research showed that PARPi alone can induce drug resistance by promoting autophagy. Moreover, our studies have revealed that anaplastic lymphoma kinase (ALK) plays a role in regulating the survival of ovarian cancer cells undergoing autophagy. Here, we explored whether the ALK-inhibitor crizotinib could enhance the efficacy of PARPi by targeting drug-induced autophagic ovarian cancer cell and xenograft models. Our investigation demonstrates that crizotinib enhances the anti-tumor activity of PARPi across multiple ovarian cancer cells. Combination therapy with crizotinib and olaparib reduced cell viability and …
Identification Of Hypoxia-Alcamhigh Macrophage- Exhausted T Cell Axis In Tumor Microenvironment Remodeling For Immunotherapy Resistance, Zhenzhen Xun, Huanran Zhou, Mingyi Shen, Yao Liu, Chengcao Sun, Yanhua Du, Zhou Jiang, Liuqing Yang, Qing Zhang, Chunru Lin, Qingsong Hu, Youqiong Ye, Leng Han
Identification Of Hypoxia-Alcamhigh Macrophage- Exhausted T Cell Axis In Tumor Microenvironment Remodeling For Immunotherapy Resistance, Zhenzhen Xun, Huanran Zhou, Mingyi Shen, Yao Liu, Chengcao Sun, Yanhua Du, Zhou Jiang, Liuqing Yang, Qing Zhang, Chunru Lin, Qingsong Hu, Youqiong Ye, Leng Han
Faculty, Staff and Student Publications
Although hypoxia is known to be associated with immune resistance, the adaptability to hypoxia by different cell populations in the tumor microenvironment and the underlying mechanisms remain elusive. This knowledge gap has hindered the development of therapeutic strategies to overcome tumor immune resistance induced by hypoxia. Here, bulk, single-cell, and spatial transcriptomics are integrated to characterize hypoxia associated with immune escape during carcinogenesis and reveal a hypoxia-based intercellular communication hub consisting of malignant cells, ALCAM
Co-Targeting Sos1 Enhances The Antitumor Effects Of Krasg12c Inhibitors By Addressing Intrinsic And Acquired Resistance, Venu Thatikonda, Hengyu Lyu, Sabine Jurado, Kaja Kostyrko, Christopher A Bristow, Christoph Albrecht, Donat Alpar, Heribert Arnhof, Oliver Bergner, Karin Bosch, Ningping Feng, Sisi Gao, Daniel Gerlach, Michael Gmachl, Melanie Hinkel, Simone Lieb, Astrid Jeschko, Annette A Machado, Thomas Madensky, Ethan D Marszalek, Mikhila Mahendra, Gabriella Melo-Zainzinger, Jessica M Molkentine, Philipp A Jaeger, David H Peng, Robyn L Schenk, Alexey Sorokin, Sandra Strauss, Francesca Trapani, Scott Kopetz, Christopher P Vellano, Mark Petronczki, Norbert Kraut, Timothy P Heffernan, Joseph R Marszalek, Mark Pearson, Irene C Waizenegger, Marco H Hofmann
Co-Targeting Sos1 Enhances The Antitumor Effects Of Krasg12c Inhibitors By Addressing Intrinsic And Acquired Resistance, Venu Thatikonda, Hengyu Lyu, Sabine Jurado, Kaja Kostyrko, Christopher A Bristow, Christoph Albrecht, Donat Alpar, Heribert Arnhof, Oliver Bergner, Karin Bosch, Ningping Feng, Sisi Gao, Daniel Gerlach, Michael Gmachl, Melanie Hinkel, Simone Lieb, Astrid Jeschko, Annette A Machado, Thomas Madensky, Ethan D Marszalek, Mikhila Mahendra, Gabriella Melo-Zainzinger, Jessica M Molkentine, Philipp A Jaeger, David H Peng, Robyn L Schenk, Alexey Sorokin, Sandra Strauss, Francesca Trapani, Scott Kopetz, Christopher P Vellano, Mark Petronczki, Norbert Kraut, Timothy P Heffernan, Joseph R Marszalek, Mark Pearson, Irene C Waizenegger, Marco H Hofmann
Faculty, Staff and Student Publications
Combination approaches are needed to strengthen and extend the clinical response to KRASG12C inhibitors (KRASG12Ci). Here, we assessed the antitumor responses of KRASG12C mutant lung and colorectal cancer models to combination treatment with a SOS1 inhibitor (SOS1i), BI-3406, plus the KRASG12C inhibitor, adagrasib. We found that responses to BI-3406 plus adagrasib were stronger than to adagrasib alone, comparable to adagrasib with SHP2 (SHP2i) or EGFR inhibitors and correlated with stronger suppression of RAS-MAPK signaling. BI-3406 plus adagrasib treatment also delayed the emergence of acquired resistance and elicited antitumor responses from adagrasib-resistant models. Resistance to KRASG12Ci seemed to be driven by …
Targeting Nuclear Receptor Coactivator Src-1 Prevents Colorectal Cancer Immune Escape By Reducing Transcription And Protein Stability Of Pd-L1, Yilin Hong, Qiang Chen, Zinan Wang, Yong Zhang, Bei Li, Hanshi Guo, Chuanzhong Huang, Xu Kong, Pingli Mo, Nengming Xiao, Jianming Xu, Yunbin Ye, Chundong Yu
Targeting Nuclear Receptor Coactivator Src-1 Prevents Colorectal Cancer Immune Escape By Reducing Transcription And Protein Stability Of Pd-L1, Yilin Hong, Qiang Chen, Zinan Wang, Yong Zhang, Bei Li, Hanshi Guo, Chuanzhong Huang, Xu Kong, Pingli Mo, Nengming Xiao, Jianming Xu, Yunbin Ye, Chundong Yu
Faculty, Staff and Students Publications
Programmed death-ligand 1 (PD-L1) is overexpressed in multiple cancers and critical for their immune escape. It has previously shown that the nuclear coactivator SRC-1 promoted colorectal cancer (CRC) progression by enhancing CRC cell viability, yet its role in CRC immune escape is unclear. Here, we demonstrate that SRC-1 is positively correlated with PD-L1 in human CRC specimens. SRC-1 deficiency significantly inhibits PD-L1 expression in CRC cells and retards murine CRC growth in subcutaneous grafts by enhancing CRC immune escape via increasing tumor infiltration of CD8
Vascular Heterogeneity Of Tight Junction Claudins Guides Organotropic Metastasis, Xunian Zhou, Valerie S Lebleu, Eliot Fletcher-Sananikone, Jiha Kim, Jianli Dai, Bingrui Li, Chia-Chin Wu, Hikaru Sugimoto, Toru Miyake, Lisa M Becker, Olga V Volpert, Erica Lawson, Cristina Espinosa Da Silva, Sarah I Patel, Akane Kizu, Ehsan A Ehsanipour, Di Sha, Jose Antonio Karam, Kathleen M Mcandrews, Raghu Kalluri
Vascular Heterogeneity Of Tight Junction Claudins Guides Organotropic Metastasis, Xunian Zhou, Valerie S Lebleu, Eliot Fletcher-Sananikone, Jiha Kim, Jianli Dai, Bingrui Li, Chia-Chin Wu, Hikaru Sugimoto, Toru Miyake, Lisa M Becker, Olga V Volpert, Erica Lawson, Cristina Espinosa Da Silva, Sarah I Patel, Akane Kizu, Ehsan A Ehsanipour, Di Sha, Jose Antonio Karam, Kathleen M Mcandrews, Raghu Kalluri
Faculty, Staff and Student Publications
Carcinomas are associated with metastasis to specific organs while sparing others. Breast cancer presents with lung metastasis but rarely kidney metastasis. Using this difference as an example, we queried the mechanism(s) behind the proclivity for organ-specific metastasis. We used spontaneous and implant models of metastatic mammary carcinoma coupled with inflammatory tissue fibrosis, single-cell sequencing analyses and functional studies to unravel the causal determinants of organ-specific metastasis. Here we show that lung metastasis is facilitated by angiopoietin 2 (Ang2)-mediated suppression of lung-specific endothelial tight junction protein Claudin 5, which is augmented by the inflammatory fibrotic microenvironment and prevented by anti-Ang2 blocking …
Oric-101, A Glucocorticoid Receptor Antagonist, In Combination With Nab-Paclitaxel In Patients With Advanced Solid Tumors, Christopher T Chen, Vishesh Khanna, Shivaani Kummar, Raghad M Abdul-Karim, David Sommerhalder, Anthony W Tolcher, Naoto T Ueno, Sarah Lindsey Davis, Douglas W Orr, Erika Hamilton, Manish R Patel, Alexander I Spira, Shekeab Jauhari, Vaia Florou, Maureen Duff, Rongda Xu, Jian Wang, Shravani R Barkund, Haiying Zhou, Aleksandr Pankov, Wayne Kong, Nadine S Jahchan, Erica L Jackson, Jessica D Sun, Melissa R Junttila, Pratik S Multani, Anneleen Daemen, Edna Chow Maneval, Pamela N Munster
Oric-101, A Glucocorticoid Receptor Antagonist, In Combination With Nab-Paclitaxel In Patients With Advanced Solid Tumors, Christopher T Chen, Vishesh Khanna, Shivaani Kummar, Raghad M Abdul-Karim, David Sommerhalder, Anthony W Tolcher, Naoto T Ueno, Sarah Lindsey Davis, Douglas W Orr, Erika Hamilton, Manish R Patel, Alexander I Spira, Shekeab Jauhari, Vaia Florou, Maureen Duff, Rongda Xu, Jian Wang, Shravani R Barkund, Haiying Zhou, Aleksandr Pankov, Wayne Kong, Nadine S Jahchan, Erica L Jackson, Jessica D Sun, Melissa R Junttila, Pratik S Multani, Anneleen Daemen, Edna Chow Maneval, Pamela N Munster
Faculty, Staff and Student Publications
Purpose: In preclinical models, glucocorticoid receptor (GR) signaling drives resistance to taxane chemotherapy in multiple solid tumors via upregulation of antiapoptotic pathways. ORIC-101 is a potent and selective GR antagonist that was investigated in combination with taxane chemotherapy as an anticancer regimen preclinically and in a phase 1 clinical trial.
Patients and methods: The ability of ORIC-101 to reverse taxane resistance was assessed in cell lines and xenograft models, and a phase 1 study (NCT03928314) was conducted in patients with advanced solid tumors to determine the dose, safety, and antitumor activity of ORIC-101 with nab-paclitaxel.
Results: ORIC-101 reversed …
Nanoscale Gold Nanoparticle (Gnp)-Laden Tumor Cell Model And Its Use For Estimation Of Intracellular Dose From Gnp-Induced Secondary Electrons, Sandun Jayarathna, Amrit Kaphle, Sunil Krishnan, Sang Hyun Cho
Nanoscale Gold Nanoparticle (Gnp)-Laden Tumor Cell Model And Its Use For Estimation Of Intracellular Dose From Gnp-Induced Secondary Electrons, Sandun Jayarathna, Amrit Kaphle, Sunil Krishnan, Sang Hyun Cho
Faculty, Staff and Student Publications
Background: Gold nanoparticles (GNPs) accumulated within tumor cells have been shown to sensitize tumors to radiotherapy. From a physics point of view, the observed GNP-mediated radiosensitization is due to various downstream effects of the secondary electron (SE) production from internalized GNPs such as GNP-mediated dose enhancement. Over the years, numerous computational investigations on GNP-mediated dose enhancement/radiosensitization have been conducted. However, such investigations have relied mostly on simple cellular geometry models and/or artificial GNP distributions. Thus, it is at least desirable, if not necessary, to conduct further investigations using cellular geometry models that properly reflect realistic cell morphology as well as …
Co-Targeting Sos1 Enhances The Antitumor Effects Of Krasg12c Inhibitors By Addressing Intrinsic And Acquired Resistance, Venu Thatikonda, Hengyu Lyu, Sabine Jurado, Kaja Kostyrko, Christopher A Bristow, Christoph Albrecht, Donat Alpar, Heribert Arnhof, Oliver Bergner, Karin Bosch, Ningping Feng, Sisi Gao, Daniel Gerlach, Michael Gmachl, Melanie Hinkel, Simone Lieb, Astrid Jeschko, Annette A Machado, Thomas Madensky, Ethan D Marszalek, Mikhila Mahendra, Gabriella Melo-Zainzinger, Jessica M Molkentine, Philipp A Jaeger, David H Peng, Robyn L Schenk, Alexey Sorokin, Sandra Strauss, Francesca Trapani, Scott Kopetz, Christopher P Vellano, Mark Petronczki, Norbert Kraut, Timothy P Heffernan, Joseph R Marszalek, Mark Pearson, Irene C Waizenegger, Marco H Hofmann
Co-Targeting Sos1 Enhances The Antitumor Effects Of Krasg12c Inhibitors By Addressing Intrinsic And Acquired Resistance, Venu Thatikonda, Hengyu Lyu, Sabine Jurado, Kaja Kostyrko, Christopher A Bristow, Christoph Albrecht, Donat Alpar, Heribert Arnhof, Oliver Bergner, Karin Bosch, Ningping Feng, Sisi Gao, Daniel Gerlach, Michael Gmachl, Melanie Hinkel, Simone Lieb, Astrid Jeschko, Annette A Machado, Thomas Madensky, Ethan D Marszalek, Mikhila Mahendra, Gabriella Melo-Zainzinger, Jessica M Molkentine, Philipp A Jaeger, David H Peng, Robyn L Schenk, Alexey Sorokin, Sandra Strauss, Francesca Trapani, Scott Kopetz, Christopher P Vellano, Mark Petronczki, Norbert Kraut, Timothy P Heffernan, Joseph R Marszalek, Mark Pearson, Irene C Waizenegger, Marco H Hofmann
Faculty, Staff and Student Publications
Combination approaches are needed to strengthen and extend the clinical response to KRAS
Smyd5 Is A Ribosomal Methyltransferase That Catalyzes Rpl40 Lysine Methylation To Enhance Translation Output And Promote Hepatocellular Carcinoma, Bisi Miao, Ling Ge, Chenxi He, Xinghao Wang, Jibo Wu, Xiang Li, Kun Chen, Jinkai Wan, Shenghui Xing, Lingnan Ren, Zhennan Shi, Shengnan Liu, Yajun Hu, Jiajia Chen, Yanyan Yu, Lijian Feng, Natasha M Flores, Zhihui Liang, Xinyi Xu, Ruoxin Wang, Jian Zhou, Jia Fan, Bin Xiang, En Li, Yuanhui Mao, Jingdong Cheng, Kehao Zhao, Pawel K Mazur, Jiabin Cai, Fei Lan
Smyd5 Is A Ribosomal Methyltransferase That Catalyzes Rpl40 Lysine Methylation To Enhance Translation Output And Promote Hepatocellular Carcinoma, Bisi Miao, Ling Ge, Chenxi He, Xinghao Wang, Jibo Wu, Xiang Li, Kun Chen, Jinkai Wan, Shenghui Xing, Lingnan Ren, Zhennan Shi, Shengnan Liu, Yajun Hu, Jiajia Chen, Yanyan Yu, Lijian Feng, Natasha M Flores, Zhihui Liang, Xinyi Xu, Ruoxin Wang, Jian Zhou, Jia Fan, Bin Xiang, En Li, Yuanhui Mao, Jingdong Cheng, Kehao Zhao, Pawel K Mazur, Jiabin Cai, Fei Lan
Faculty, Staff and Student Publications
While lysine methylation is well-known for regulating gene expression transcriptionally, its implications in translation have been largely uncharted. Trimethylation at lysine 22 (K22me3) on RPL40, a core ribosomal protein located in the GTPase activation center, was first reported 27 years ago. Yet, its methyltransferase and role in translation remain unexplored. Here, we report that SMYD5 has robust in vitro activity toward RPL40 K22 and primarily catalyzes RPL40 K22me3 in cells. The loss of SMYD5 and RPL40 K22me3 leads to reduced translation output and disturbed elongation as evidenced by increased ribosome collisions. SMYD5 and RPL40 K22me3 are upregulated in hepatocellular carcinoma …
Inhibition Of Ulk1/2 And Kras G12c Controls Tumor Growth In Preclinical Models Of Lung Cancer, Phaedra C Ghazi, Kayla T O'Toole, Sanjana Srinivas Boggaram, Michael T Scherzer, Mark R Silvis, Yun Zhang, Madhumita Bogdan, Bryan D Smith, Guillermina Lozano, Daniel L Flynn, Eric L Snyder, Conan G Kinsey, Martin Mcmahon
Inhibition Of Ulk1/2 And Kras G12c Controls Tumor Growth In Preclinical Models Of Lung Cancer, Phaedra C Ghazi, Kayla T O'Toole, Sanjana Srinivas Boggaram, Michael T Scherzer, Mark R Silvis, Yun Zhang, Madhumita Bogdan, Bryan D Smith, Guillermina Lozano, Daniel L Flynn, Eric L Snyder, Conan G Kinsey, Martin Mcmahon
Faculty, Staff and Student Publications
Mutational activation of KRAS occurs commonly in lung carcinogenesis and, with the recent U.S. Food and Drug Administration approval of covalent inhibitors of KRASG12C such as sotorasib or adagrasib, KRAS oncoproteins are important pharmacological targets in non-small cell lung cancer (NSCLC). However, not all KRASG12C-driven NSCLCs respond to these inhibitors, and the emergence of drug resistance in those patients who do respond can be rapid and pleiotropic. Hence, based on a backbone of covalent inhibition of KRASG12C, efforts are underway to develop effective combination therapies. Here, we report that the inhibition of KRASG12C signaling increases autophagy in KRASG12C-expressing lung cancer …
Adenovirus Vaccine Targeting Kinases Induces Potent Antitumor Immunity In Solid Tumors, Fei Zhu, Zheng Lu, Wenjing Tang, Guangya Zhao, Yingxiang Shao, Bowen Lu, Jiage Ding, Yanyan Zheng, Lin Fang, Huizhong Li, Gang Wang, Renjin Chen, Junnian Zheng, Dafei Chai
Adenovirus Vaccine Targeting Kinases Induces Potent Antitumor Immunity In Solid Tumors, Fei Zhu, Zheng Lu, Wenjing Tang, Guangya Zhao, Yingxiang Shao, Bowen Lu, Jiage Ding, Yanyan Zheng, Lin Fang, Huizhong Li, Gang Wang, Renjin Chen, Junnian Zheng, Dafei Chai
Faculty, Staff and Students Publications
BACKGROUND: Targeting kinases presents a potential strategy for treating solid tumors; however, the therapeutic potential of vaccines targeting kinases remains uncertain.
METHODS: Adenovirus (Ad) vaccines encoding Aurora kinase A (AURKA) or cyclin-dependent kinase 7 (CDK7) were developed, and their therapeutic potentials were investigated by various methods including western blot, flow cytometry, cytotoxic T lymphocyte assay, and enzyme-linked immunospot (ELISpot), in mouse and humanized solid tumor models.
RESULTS: Co-immunization with Ad-AURKA/CDK7 effectively prevented subcutaneous tumor growth in the Renca, RM-1, MC38, and Hepa1-6 tumor models. In therapeutic tumor models, Ad-AURKA/CDK7 treatment impeded tumor growth and increased immune cell infiltration. Administration of …
Trim44, A Novel Prognostic Marker, Supports The Survival Of Proteasome-Resistant Multiple Myeloma Cells, Trung Vu, Yuqin Wang, Annaliese Fowler, Anton Simieou, Nami Mccarty
Trim44, A Novel Prognostic Marker, Supports The Survival Of Proteasome-Resistant Multiple Myeloma Cells, Trung Vu, Yuqin Wang, Annaliese Fowler, Anton Simieou, Nami Mccarty
Faculty, Staff and Student Publications
TRIM44, a tripartite motif (TRIM) family member, is pivotal in linking the ubiquitin-proteasome system (UPS) to autophagy in multiple myeloma (MM). However, its prognostic impact and therapeutic potential remain underexplored. Here, we report that TRIM44 overexpression is associated with poor prognosis in a Multiple Myeloma Research Foundation (MMRF) cohort of 858 patients, persisting across primary and recurrent MM cases. TRIM44 expression notably increases in advanced MM stages, indicating its potential role in disease progression. Single-cell RNA sequencing across MM stages showed significant TRIM44 upregulation in smoldering MM (SMM) and MM compared to normal bone marrow, especially in patients with t(4;14) …
The Dna Repair Pathway As A Therapeutic Target To Synergize With Trastuzumab Deruxtecan In Her2-Targeted Antibody-Drug Conjugate-Resistant Her2-Overexpressing Breast Cancer, Jangsoon Lee, Kumiko Kida, Jiwon Koh, Huey Liu, Ganiraju C Manyam, Young Jin Gi, Dileep R Rampa, Asha S Multani, Jing Wang, Gitanjali Jayachandran, Dae-Won Lee, James M Reuben, Aysegul Sahin, Lei Huo, Debu Tripathy, Seock-Ah Im, Naoto T Ueno
The Dna Repair Pathway As A Therapeutic Target To Synergize With Trastuzumab Deruxtecan In Her2-Targeted Antibody-Drug Conjugate-Resistant Her2-Overexpressing Breast Cancer, Jangsoon Lee, Kumiko Kida, Jiwon Koh, Huey Liu, Ganiraju C Manyam, Young Jin Gi, Dileep R Rampa, Asha S Multani, Jing Wang, Gitanjali Jayachandran, Dae-Won Lee, James M Reuben, Aysegul Sahin, Lei Huo, Debu Tripathy, Seock-Ah Im, Naoto T Ueno
Faculty, Staff and Student Publications
Background: Anti-HER2 therapies, including the HER2 antibody-drug conjugates (ADCs) trastuzumab emtansine (T-DM1) and trastuzumab deruxtecan (T-DXd), have led to improved survival outcomes in patients with HER2-overexpressing (HER2+) metastatic breast cancer. However, intrinsic or acquired resistance to anti-HER2-based therapies remains a clinical challenge in these patients, as there is no standard of care following disease progression. The purpose of this study was to elucidate the mechanisms of resistance to T-DM1 and T-DXd in HER2+ BC patients and preclinical models and identify targets whose inhibition enhances the antitumor activity of T-DXd in HER2-directed ADC-resistant HER2+ breast cancer in vitro and in vivo. …
Epcam-Targeted Betulinic Acid Analogue Nanotherapy Improves Therapeutic Efficacy And Induces Anti-Tumorigenic Immune Response In Colorectal Cancer Tumor Microenvironment, Debasmita Dutta, Ashique Al Hoque, Brahamacharry Paul, Jun Hyoung Park, Chinmay Chowdhury, Mohiuddin Quadir, Soumyabrata Banerjee, Arghadip Choudhury, Soumik Laha, Nayim Sepay, Priyanka Boro, Benny Abraham Kaipparettu, Biswajit Mukherjee
Epcam-Targeted Betulinic Acid Analogue Nanotherapy Improves Therapeutic Efficacy And Induces Anti-Tumorigenic Immune Response In Colorectal Cancer Tumor Microenvironment, Debasmita Dutta, Ashique Al Hoque, Brahamacharry Paul, Jun Hyoung Park, Chinmay Chowdhury, Mohiuddin Quadir, Soumyabrata Banerjee, Arghadip Choudhury, Soumik Laha, Nayim Sepay, Priyanka Boro, Benny Abraham Kaipparettu, Biswajit Mukherjee
Faculty, Staff and Students Publications
Background: Betulinic acid (BA) has been well investigated for its antiproliferative and mitochondrial pathway-mediated apoptosis-inducing effects on various cancers. However, its poor solubility and off-target activity have limited its utility in clinical trials. Additionally, the immune modulatory role of betulinic acid analogue in the tumor microenvironment (TME) is largely unknown. Here, we designed a potential nanotherapy for colorectal cancer (CRC) with a lead betulinic acid analogue, named as 2c, carrying a 1,2,3-triazole-moiety attached to BA through a linker, found more effective than BA for inhibiting CRC cell lines, and was chosen here for this investigation. Epithelial cell adhesion molecule (EpCAM) …
Trim44 Enhances Autophagy Via Sqstm1 Oligomerization In Response To Oxidative Stress, Yuqin Wang, Lin Lyu, Trung Vu, Nami Mccarty
Trim44 Enhances Autophagy Via Sqstm1 Oligomerization In Response To Oxidative Stress, Yuqin Wang, Lin Lyu, Trung Vu, Nami Mccarty
Faculty, Staff and Student Publications
The deubiquitinase tripartite motif containing 44 (TRIM44) plays a critical role in linking the proteotoxic stress response with autophagic degradation, which is significant in the context of cancer and neurological diseases. Although TRIM44 is recognized as a prognostic marker in various cancers, the complex molecular mechanisms through which it facilitates autophagic degradation, particularly under oxidative stress conditions, have not been fully explored. In this study, we demonstrate that TRIM44 significantly enhances autophagy in response to oxidative stress, reducing cytotoxicity in cancer cells treated with arsenic trioxide. Our research emphasizes the critical role of the posttranslational modification of sequestosome-1 (SQSTM1) and …
Prostate Cancer-Induced Endothelial-Cell-To-Osteoblast Transition Drives Immunosuppression In The Bone-Tumor Microenvironment Through Wnt Pathway-Induced M2 Macrophage Polarization, Guoyu Yu, Paul G Corn, Celia Sze Ling Mak, Xin Liang, Miao Zhang, Patricia Troncoso, Jian H Song, Song-Chang Lin, Xingzhi Song, Jingjing Liu, Jianhua Zhang, Christopher J Logothetis, Marites P Melancon, Theocharis Panaretakis, Guocan Wang, Sue-Hwa Lin
Prostate Cancer-Induced Endothelial-Cell-To-Osteoblast Transition Drives Immunosuppression In The Bone-Tumor Microenvironment Through Wnt Pathway-Induced M2 Macrophage Polarization, Guoyu Yu, Paul G Corn, Celia Sze Ling Mak, Xin Liang, Miao Zhang, Patricia Troncoso, Jian H Song, Song-Chang Lin, Xingzhi Song, Jingjing Liu, Jianhua Zhang, Christopher J Logothetis, Marites P Melancon, Theocharis Panaretakis, Guocan Wang, Sue-Hwa Lin
Faculty, Staff and Student Publications
Immune checkpoint therapy has limited efficacy for patients with bone-metastatic castration-resistant prostate cancer (bmCRPC). To improve immunotherapy for bmCRPC, we aimed to identify the mechanism of bmCRPC-induced changes in the immune microenvironment. Among bmCRPC patients, higher levels of a 32-gene M2-like macrophage signature in bone metastasis samples correlated with shorter overall survival. Immunohistochemistry showed that CD206-positive (CD206+) macrophages were enriched in bmCRPC bone biopsy specimens compared with primary tumors or lymph node metastases. In preclinical osteogenic prostate cancer (Pca) xenograft models, CD206+ macrophages were recruited to areas with tumor-induced bone. RNA sequencing (RNAseq) analysis showed higher expression of an M2-like …
Interleukin-21 Engineering Enhances Nk Cell Activity Against Glioblastoma Via Cebpd, Mayra Shanley, May Daher, Jinzhuang Dou, Sufang Li, Rafet Basar, Hind Rafei, Merve Dede, Joy Gumin, Jezreel Pantaleόn Garcίa, Ana Karen Nunez Cortes, Shan He, Corry M Jones, Sunil Acharya, Natalie W Fowlkes, Donghai Xiong, Sanjay Singh, Hila Shaim, Samantha Claire Hicks, Bin Liu, Abhinav Jain, Mohammad Fayyad Zaman, Qi Miao, Ye Li, Nadima Uprety, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Vakul Mohanty, Patrick Zhang, Scott E Evans, Elizabeth J Shpall, Frederick F Lang, Ken Chen, Katayoun Rezvani
Interleukin-21 Engineering Enhances Nk Cell Activity Against Glioblastoma Via Cebpd, Mayra Shanley, May Daher, Jinzhuang Dou, Sufang Li, Rafet Basar, Hind Rafei, Merve Dede, Joy Gumin, Jezreel Pantaleόn Garcίa, Ana Karen Nunez Cortes, Shan He, Corry M Jones, Sunil Acharya, Natalie W Fowlkes, Donghai Xiong, Sanjay Singh, Hila Shaim, Samantha Claire Hicks, Bin Liu, Abhinav Jain, Mohammad Fayyad Zaman, Qi Miao, Ye Li, Nadima Uprety, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Vakul Mohanty, Patrick Zhang, Scott E Evans, Elizabeth J Shpall, Frederick F Lang, Ken Chen, Katayoun Rezvani
Faculty, Staff and Student Publications
Glioblastoma (GBM) is an aggressive brain cancer with limited therapeutic options. Natural killer (NK) cells are innate immune cells with strong anti-tumor activity and may offer a promising treatment strategy for GBM. We compared the anti-GBM activity of NK cells engineered to express interleukin (IL)-15 or IL-21. Using multiple in vivo models, IL-21 NK cells were superior to IL-15 NK cells both in terms of safety and long-term anti-tumor activity, with locoregionally administered IL-15 NK cells proving toxic and ineffective at tumor control. IL-21 NK cells displayed a unique chromatin accessibility signature, with CCAAT/enhancer-binding proteins (C/EBP), especially CEBPD, serving as …
Mif/Nr3c2 Axis Regulates Glucose Metabolism Reprogramming In Pancreatic Cancer Through Mapk-Erk And Ap-1 Pathways, Shouhui Yang, Wei Tang, Azadeh Azizian, Jochen Gaedcke, Yuuki Ohara, Helen Cawley, Nader Hanna, Michael Ghadimi, Trisha Lal, Subrata Sen, Chad J Creighton, Jianjun Gao, Nagireddy Putluri, Stefan Ambs, Perwez Hussain
Mif/Nr3c2 Axis Regulates Glucose Metabolism Reprogramming In Pancreatic Cancer Through Mapk-Erk And Ap-1 Pathways, Shouhui Yang, Wei Tang, Azadeh Azizian, Jochen Gaedcke, Yuuki Ohara, Helen Cawley, Nader Hanna, Michael Ghadimi, Trisha Lal, Subrata Sen, Chad J Creighton, Jianjun Gao, Nagireddy Putluri, Stefan Ambs, Perwez Hussain
Faculty, Staff and Student Publications
Inflammation and aberrant cellular metabolism are widely recognized as hallmarks of cancer. In pancreatic ductal adenocarcinoma (PDAC), inflammatory signaling and metabolic reprogramming are tightly interwoven, playing pivotal roles in the pathogenesis and progression of the disease. However, the regulatory functions of inflammatory mediators in metabolic reprogramming in pancreatic cancer have not been fully explored. Earlier, we demonstrated that pro-inflammatory mediator macrophage migration inhibitory factor (MIF) enhances disease progression by inhibiting its downstream transcriptional factor nuclear receptor subfamily 3 group C member 2 (NR3C2). Here, we provide evidence that MIF and NR3C2 interactively regulate metabolic reprogramming, resulting in MIF-induced cancer growth …
Dual Inhibition Of The Trka And Jak2 Pathways Using Entrectinib And Pacritinib Suppresses The Growth And Metastasis Of Her2-Positive And Triple-Negative Breast Cancers, Angelina T Regua, Shivani Bindal, Mariana K Najjar, Chuling Zhuang, Munazza Khan, Austin B J Arrigo, Anneliese O Gonzalez, Xinhai R Zhang, Jay-Jiguang Zhu, Kounosuke Watabe, Hui-Wen Lo
Dual Inhibition Of The Trka And Jak2 Pathways Using Entrectinib And Pacritinib Suppresses The Growth And Metastasis Of Her2-Positive And Triple-Negative Breast Cancers, Angelina T Regua, Shivani Bindal, Mariana K Najjar, Chuling Zhuang, Munazza Khan, Austin B J Arrigo, Anneliese O Gonzalez, Xinhai R Zhang, Jay-Jiguang Zhu, Kounosuke Watabe, Hui-Wen Lo
Faculty, Staff and Student Publications
HER2-positive and triple-negative breast cancers (TNBC) are difficult to treat and associated with poor prognosis. Despite showing initial response, HER2-positive breast cancers often acquire resistance to HER2-targeted therapies, and TNBC lack effective therapies. To overcome these clinical challenges, we evaluated the therapeutic utility of co-targeting TrkA and JAK2/STAT3 pathways in these breast cancer subtypes. Here, we report the novel combination of FDA-approved TrkA inhibitors (Entrectinib or Larotrectinib) and JAK2 inhibitors (Pacritinib or Ruxolitinib) synergistically inhibited in vitro growth of HER2-positive breast cancer cells and TNBC cells. The Entrectinib-Pacritinib combination inhibited the breast cancer stem cell subpopulation, reduced expression of stemness …
Pan-Cancer Proteogenomics Expands The Landscape Of Therapeutic Targets, Sara R Savage, Xinpei Yi, Jonathan T Lei, Bo Wen, Hongwei Zhao, Yuxing Liao, Eric J Jaehnig, Lauren K Somes, Paul W Shafer, Tobie D Lee, Zile Fu, Yongchao Dou, Zhiao Shi, Daming Gao, Valentina Hoyos, Qiang Gao, Bing Zhang
Pan-Cancer Proteogenomics Expands The Landscape Of Therapeutic Targets, Sara R Savage, Xinpei Yi, Jonathan T Lei, Bo Wen, Hongwei Zhao, Yuxing Liao, Eric J Jaehnig, Lauren K Somes, Paul W Shafer, Tobie D Lee, Zile Fu, Yongchao Dou, Zhiao Shi, Daming Gao, Valentina Hoyos, Qiang Gao, Bing Zhang
Faculty, Staff and Students Publications
Fewer than 200 proteins are targeted by cancer drugs approved by the Food and Drug Administration (FDA). We integrate Clinical Proteomic Tumor Analysis Consortium (CPTAC) proteogenomics data from 1,043 patients across 10 cancer types with additional public datasets to identify potential therapeutic targets. Pan-cancer analysis of 2,863 druggable proteins reveals a wide abundance range and identifies biological factors that affect mRNA-protein correlation. Integration of proteomic data from tumors and genetic screen data from cell lines identifies protein overexpression- or hyperactivation-driven druggable dependencies, enabling accurate predictions of effective drug targets. Proteogenomic identification of synthetic lethality provides a strategy to target tumor …
Pkd1 Mutant Clones Within Cirrhotic Livers Inhibit Steatohepatitis Without Promoting Cancer, Min Zhu, Yunguan Wang, Tianshi Lu, Jason Guo, Lin Li, Meng-Hsiung Hsieh, Purva Gopal, Yi Han, Naoto Fujiwara, Darren P Wallace, Alan S L Yu, Xiangyi Fang, Crystal Ransom, Sara Verschleisser, David Hsiehchen, Yujin Hoshida, Amit G Singal, Adam Yopp, Tao Wang, Hao Zhu
Pkd1 Mutant Clones Within Cirrhotic Livers Inhibit Steatohepatitis Without Promoting Cancer, Min Zhu, Yunguan Wang, Tianshi Lu, Jason Guo, Lin Li, Meng-Hsiung Hsieh, Purva Gopal, Yi Han, Naoto Fujiwara, Darren P Wallace, Alan S L Yu, Xiangyi Fang, Crystal Ransom, Sara Verschleisser, David Hsiehchen, Yujin Hoshida, Amit G Singal, Adam Yopp, Tao Wang, Hao Zhu
Faculty, Staff and Student Publications
Somatic mutations in non-malignant tissues are selected for because they confer increased clonal fitness. However, it is uncertain whether these clones can benefit organ health. Here, ultra-deep targeted sequencing of 150 liver samples from 30 chronic liver disease patients revealed recurrent somatic mutations. PKD1 mutations were observed in 30% of patients, whereas they were only detected in 1.3% of hepatocellular carcinomas (HCCs). To interrogate tumor suppressor functionality, we perturbed PKD1 in two HCC cell lines and six in vivo models, in some cases showing that PKD1 loss protected against HCC, but in most cases showing no impact. However, Pkd1 haploinsufficiency …
Tumour-Intrinsic Endomembrane Trafficking By Arf6 Shapes An Immunosuppressive Microenvironment That Drives Melanomagenesis And Response To Checkpoint Blockade Therapy, Yinshen Wee, Junhua Wang, Emily C Wilson, Coulson P Rich, Aaron Rogers, Zongzhong Tong, Evelyn Degroot, Y N Vashisht Gopal, Michael A Davies, H Atakan Ekiz, Joshua K H Tay, Chris Stubben, Kenneth M Boucher, Juan M Oviedo, Keke C Fairfax, Matthew A Williams, Sheri L Holmen, Roger K Wolff, Allie H Grossmann
Tumour-Intrinsic Endomembrane Trafficking By Arf6 Shapes An Immunosuppressive Microenvironment That Drives Melanomagenesis And Response To Checkpoint Blockade Therapy, Yinshen Wee, Junhua Wang, Emily C Wilson, Coulson P Rich, Aaron Rogers, Zongzhong Tong, Evelyn Degroot, Y N Vashisht Gopal, Michael A Davies, H Atakan Ekiz, Joshua K H Tay, Chris Stubben, Kenneth M Boucher, Juan M Oviedo, Keke C Fairfax, Matthew A Williams, Sheri L Holmen, Roger K Wolff, Allie H Grossmann
Faculty, Staff and Student Publications
Tumour-host immune interactions lead to complex changes in the tumour microenvironment (TME), impacting progression, metastasis and response to therapy. While it is clear that cancer cells can have the capacity to alter immune landscapes, our understanding of this process is incomplete. Herein we show that endocytic trafficking at the plasma membrane, mediated by the small GTPase ARF6, enables melanoma cells to impose an immunosuppressive TME that accelerates tumour development. This ARF6-dependent TME is vulnerable to immune checkpoint blockade therapy (ICB) but in murine melanoma, loss of Arf6 causes resistance to ICB. Likewise, downregulation of ARF6 in patient tumours correlates with …
Caspase-2 Is Essential For Proliferation And Self-Renewal Of Nucleophosmin-Mutated Acute Myeloid Leukemia, Dharaniya Sakthivel, Alexandra N Brown-Suedel, Karla E Lopez, Suruchi Salgar, Luiza E Coutinho, Francesca Keane, Shixia Huang, Kenneth Mc Sherry, Chloé I Charendoff, Kevin P Dunne, Dexter J Robichaux, Alexander Vargas-Hernández, Baochau Le, Crystal S Shin, Alexandre F Carisey, Marcin Poreba, Jonathan M Flanagan, Lisa Bouchier-Hayes
Caspase-2 Is Essential For Proliferation And Self-Renewal Of Nucleophosmin-Mutated Acute Myeloid Leukemia, Dharaniya Sakthivel, Alexandra N Brown-Suedel, Karla E Lopez, Suruchi Salgar, Luiza E Coutinho, Francesca Keane, Shixia Huang, Kenneth Mc Sherry, Chloé I Charendoff, Kevin P Dunne, Dexter J Robichaux, Alexander Vargas-Hernández, Baochau Le, Crystal S Shin, Alexandre F Carisey, Marcin Poreba, Jonathan M Flanagan, Lisa Bouchier-Hayes
Faculty, Staff and Students Publications
Mutation in nucleophosmin (NPM1) causes relocalization of this normally nucleolar protein to the cytoplasm (NPM1c+). Despite NPM1 mutation being the most common driver mutation in cytogenetically normal adult acute myeloid leukemia (AML), the mechanisms of NPM1c+-induced leukemogenesis remain unclear. Caspase-2 is a proapoptotic protein activated by NPM1 in the nucleolus. Here, we show that caspase-2 is also activated by NPM1c+ in the cytoplasm and DNA damage–induced apoptosis is caspase-2 dependent in NPM1c+ but not in NPM1wt AML cells. Strikingly, in NPM1c+ cells, caspase-2 loss results in profound cell cycle arrest, differentiation, and down-regulation of stem cell pathways that regulate …