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Articles 61 - 90 of 476
Full-Text Articles in Biomedical Informatics
Quiescent Oxphos-High Triple-Negative Breast Cancer Cells That Persist After Chemotherapy Depend On Bcl-Xl For Survival, Slawomir Andrzejewski, Marie Winter, Leandro Encarnacao Garcia, Olusiji Akinrinmade, Francisco Madeira Marques, Emmanouil Zacharioudakis, Anna Skwarska, Julio Aguirre-Ghiso, Marina Konopleva, Guangrong Zheng, Susan A Fineberg, Daohong Zhou, Evripidis Gavathiotis, Tao Wang, Eugen Dhimolea
Quiescent Oxphos-High Triple-Negative Breast Cancer Cells That Persist After Chemotherapy Depend On Bcl-Xl For Survival, Slawomir Andrzejewski, Marie Winter, Leandro Encarnacao Garcia, Olusiji Akinrinmade, Francisco Madeira Marques, Emmanouil Zacharioudakis, Anna Skwarska, Julio Aguirre-Ghiso, Marina Konopleva, Guangrong Zheng, Susan A Fineberg, Daohong Zhou, Evripidis Gavathiotis, Tao Wang, Eugen Dhimolea
Faculty, Staff and Student Publications
The persistent residual tumor cells that survive after chemotherapy are a major cause of treatment failure, but their survival mechanisms remain largely elusive. These cancer cells are typically characterized by a quiescent state with suppressed activity of MYC and MTOR. We observed that the MYC-suppressed persistent triple-negative breast cancer (TNBC) cells are metabolically flexible and can upregulate mitochondrial oxidative phosphorylation (OXPHOS) genes and respiratory function ("OXPHOS-high" cell state) in response to DNA-damaging anthracyclines such as doxorubicin, but not to taxanes. The elevated biomass and respiratory function of mitochondria in OXPHOS-high persistent cancer cells were associated with mitochondrial elongation and remodeling, …
Preclinical Models Of Melanoma Leptomeningeal Disease To Assess Intrathecal Checkpoint Blockade, Renato A Guerrieri, Grant M Fischer, Jacob R Cortez, Barbara G Knighton, Debora A Ledesma, Courtney W Hudgens, Yimmy F Delcid, Qianghua Hu, Christian Y B Onana, Fernando C L Carapeto, Michael T Tezlaff, Jason T Huse, Patrick Hwu, Elizabeth M Burton, Isabella C Glitza Oliva, Michael A Davies, Sherise D Ferguson
Preclinical Models Of Melanoma Leptomeningeal Disease To Assess Intrathecal Checkpoint Blockade, Renato A Guerrieri, Grant M Fischer, Jacob R Cortez, Barbara G Knighton, Debora A Ledesma, Courtney W Hudgens, Yimmy F Delcid, Qianghua Hu, Christian Y B Onana, Fernando C L Carapeto, Michael T Tezlaff, Jason T Huse, Patrick Hwu, Elizabeth M Burton, Isabella C Glitza Oliva, Michael A Davies, Sherise D Ferguson
Faculty, Staff and Student Publications
Leptomeningeal disease (LMD) is a subtype of central nervous system metastatic disease that is associated with poor patient outcomes and limited treatment options. There is an unmet need to develop preclinical models of LMD to expedite and improve the development of new therapeutics. Here, we describe the development of multiple orthotopic immunocompetent murine models of melanoma LMD, including their use to assess the efficacy of systemic and/or intrathecal immunotherapy. LMD was established by direct intrathecal injection of murine cell lines (B16-F10, BP, D4M, D4M-UV2, MC38-gp100, RMS, YUMM3.1, and YUMMER1.7) into the cisterna magna of C57BL/6 mice. Tumor take rate, distribution, …
Dysregulated Sass6 Expression Promotes Increased Ciliogenesis And Cell Invasion Phenotypes, Eleanor Hargreaves, Rebecca Collinson, Andrew D Jenks, Adina Staszewski, Athanasios Tsalikis, Raquel Bodoque, Mar Arias-Garcia, Yasmin Abdi, Abdulaziz Al-Malki, Yinyin Yuan, Rachael Natrajan, Syed Haider, Thomas Iskratsch, Won-Jing Wang, Susana Godinho, Nicolaos J Palaskas, Fernando Calvo, Igor Vivanco, Tobias Zech, Barbara E Tanos
Dysregulated Sass6 Expression Promotes Increased Ciliogenesis And Cell Invasion Phenotypes, Eleanor Hargreaves, Rebecca Collinson, Andrew D Jenks, Adina Staszewski, Athanasios Tsalikis, Raquel Bodoque, Mar Arias-Garcia, Yasmin Abdi, Abdulaziz Al-Malki, Yinyin Yuan, Rachael Natrajan, Syed Haider, Thomas Iskratsch, Won-Jing Wang, Susana Godinho, Nicolaos J Palaskas, Fernando Calvo, Igor Vivanco, Tobias Zech, Barbara E Tanos
Faculty, Staff and Student Publications
Centriole and/or cilium defects are characteristic of cancer cells and have been linked to cancer cell invasion. However, the mechanistic bases of this regulation remain incompletely understood. Spindle assembly abnormal protein 6 homolog (SAS-6) is essential for centriole biogenesis and cilium formation. SAS-6 levels decrease at the end of mitosis and G1, resulting from APCCdh1-targeted degradation. To examine the biological consequences of unrestrained SAS-6 expression, we used a nondegradable SAS-6 mutant (SAS-6ND). This led to an increase in ciliation and cell invasion and caused an up-regulation of the YAP/TAZ pathway. SAS-6ND expression resulted in cell morphology changes, nuclear deformation, and …
Chromosome 20q Gene Signature Associated With Colorectal Cancer Progression, Jennifer Carter Jones, Apurva M Hegde, Yu-Jing Huang, Ganiraju Manyam, Vibhuti Srivastava, Jee Hoo Song, Yulan Cheng, Ralf Krahe, Warapen Treekitkarnmongkol, Stephen J Meltzer, Scott Kopetz, Stanley R Hamilton, Hiroshi Katayama, Subrata Sen
Chromosome 20q Gene Signature Associated With Colorectal Cancer Progression, Jennifer Carter Jones, Apurva M Hegde, Yu-Jing Huang, Ganiraju Manyam, Vibhuti Srivastava, Jee Hoo Song, Yulan Cheng, Ralf Krahe, Warapen Treekitkarnmongkol, Stephen J Meltzer, Scott Kopetz, Stanley R Hamilton, Hiroshi Katayama, Subrata Sen
Faculty, Staff and Student Publications
Amplification of human chromosome 20q has been reported as the most frequently recurring genetic abnormality associated with large scale changes in mRNA and protein levels in sporadic colorectal carcinomas. While some studies have found 20q amplification to be consistent between primary and metastatic samples from the same patient with a role in the development of metastasis and worse patient prognosis, others have reported association with improved overall survival for a subset of these patients with colorectal cancer (CRC). To fine map the Minimal Common Regions (MCRs) of amplification on chromosome 20q and identify the candidate genes playing roles in progression …
Pka-Driven Spp1 Activation As A Novel Mechanism Connecting The Bone Microenvironment To Prostate Cancer Progression, Pablo Sanchis, Agustina Sabater, Julia Lechuga, Jimena Rada, Rocio Seniuk, Gaston Pascual, Mora Gatti, Juan Bizzotto, Peter D A Shepherd, Jun Yang, Javier Cotignola, Elba Vazquez, Joaquin Mateo, Pia Valacco, Estefania Labanca, Christopher Logothetis, Geraldine Gueron, Nicolas Anselmino
Pka-Driven Spp1 Activation As A Novel Mechanism Connecting The Bone Microenvironment To Prostate Cancer Progression, Pablo Sanchis, Agustina Sabater, Julia Lechuga, Jimena Rada, Rocio Seniuk, Gaston Pascual, Mora Gatti, Juan Bizzotto, Peter D A Shepherd, Jun Yang, Javier Cotignola, Elba Vazquez, Joaquin Mateo, Pia Valacco, Estefania Labanca, Christopher Logothetis, Geraldine Gueron, Nicolas Anselmino
Faculty, Staff and Student Publications
Prostate cancer (PCa) bone metastasis (BM) poses a significant clinical challenge due to the heterogeneity of treatment responses and patient outcomes. In this study, we examined the role of Protein Kinase A (PKA) signaling in modulating the expression of osteopontin (SPP1/OPN), a protein associated with poor prognosis, within a subset of PCa BM patients. By integrating multi-omics results we identified a novel mechanism in which bone-derived type-I collagen (Col1a1) and fibronectin (Fn1) stimulate SPP1 expression in PCa cells through the activation of PKA signaling. This bone-induced regulation of SPP1 was confirmed both in vitro, using PCa-bone co-culture systems (PC3 or …
Systematic Targeting Of Gd2-Positive Neuroblastoma Tumors With A Photooncolytic Phage Nanovector Platform, Suleman Khan Zadran, Nicola Facchinello, Piergiuseppe De Rosa, Roberto Saporetti, Paolo Emidio Costantini, Luca Ulfo, Michela Nigro, Annapaola Petrosino, Lucia Pappagallo, Sara Aloisi, Giorgio Milazzo, Zainul Abe Din, Alberto Rigamonti, Leonardo Flora, Martina Santulli, Leonardo Cimadom, Giampaolo Zuccheri, Mattia Zangoli, Manuele Di Sante, Matteo Di Giosia, Francesca Di Maria, Roberto Bernardoni, Eveline Barbieri, Matteo Calvaresi, Alberto Danielli, Giovanni Perini
Systematic Targeting Of Gd2-Positive Neuroblastoma Tumors With A Photooncolytic Phage Nanovector Platform, Suleman Khan Zadran, Nicola Facchinello, Piergiuseppe De Rosa, Roberto Saporetti, Paolo Emidio Costantini, Luca Ulfo, Michela Nigro, Annapaola Petrosino, Lucia Pappagallo, Sara Aloisi, Giorgio Milazzo, Zainul Abe Din, Alberto Rigamonti, Leonardo Flora, Martina Santulli, Leonardo Cimadom, Giampaolo Zuccheri, Mattia Zangoli, Manuele Di Sante, Matteo Di Giosia, Francesca Di Maria, Roberto Bernardoni, Eveline Barbieri, Matteo Calvaresi, Alberto Danielli, Giovanni Perini
Faculty, Staff and Students Publications
Disialoganglioside-GD2 is a key molecular target for Neuroblastoma (NB) immunotherapy based on the employment of GD2-targeting antibodies. However, about 50% of treated patients can experience tumor relapse due to limited immune-mediated cytotoxicity and poor antibody penetration into tumors. To address this problem, a tumor-penetrating photo-oncolytic phage nanovector platform is genetically and chemically developed that selectively targets GD2-expressing NB cells. The phage bioconjugates, functionalized with different photosensitizers, result in specific and selective oncolysis of GD2-positive NB cells upon light irradiation, without affecting GD2-negative ones. The photo-oncolytic phage vectors are shown to deeply penetrate into GD2-positive tumor spheroids in vitro, and to …
Tigit Affects Car Nk-Cell Effector Function In The Solid Tumor Microenvironment By Modulating Immune Synapse Strength, Ishwar Navin, Matthew Dysthe, Prashant S Menon, Corrine Baumgartner, Tim Sauer, Navin Varadarajan, Robin Parihar
Tigit Affects Car Nk-Cell Effector Function In The Solid Tumor Microenvironment By Modulating Immune Synapse Strength, Ishwar Navin, Matthew Dysthe, Prashant S Menon, Corrine Baumgartner, Tim Sauer, Navin Varadarajan, Robin Parihar
Faculty, Staff and Students Publications
Therapies using NK cells that express chimeric antigen receptors (CAR-NK) have been successfully employed against hematologic malignancies. However, solid tumors resist CAR-NKs partly by enriching tumor microenvironments with ligands for NK cell inhibitory receptors. Although the NK inhibitory receptor T-cell immunoreceptor with immunoglobulin and immunoreceptor tyrosine-based inhibitory motif domain (TIGIT) has been implicated in impaired antitumor activity of endogenous NK cells, the consequences of TIGIT expression on engineered CAR-NKs have not been explored. To address this gap, we compared TIGIT-expressing and TIGIT-deleted human CAR-NKs targeting the GD2 solid tumor antigen in tumor immune microenvironment co-cultures and in vivo tumor immune …
Synthesis, Structure-Activity Relationships, And Antitumor Activities Of Quinoxiline-Containing Inhibitors Of The Protein-Protein Interactions Between Transcription Coactivator Af9/Enl And Dot1l/Af4, Chandra Bhushan Mishra, Xin Li, Bala Krishna Moku, Sehun Kwak, Dnyaneshwar N Garad, Yongcheng Song
Synthesis, Structure-Activity Relationships, And Antitumor Activities Of Quinoxiline-Containing Inhibitors Of The Protein-Protein Interactions Between Transcription Coactivator Af9/Enl And Dot1l/Af4, Chandra Bhushan Mishra, Xin Li, Bala Krishna Moku, Sehun Kwak, Dnyaneshwar N Garad, Yongcheng Song
Faculty, Staff and Students Publications
Mixed lineage leukemia (MLL) gene rearrangements cause ~75% of acute leukemia in infants and 5-10% in children and adults with poor clinical outcomes. Protein-protein interactions (PPI) between frequent MLL fusion partners AF9/ENL and AF4 or histone methyltransferase DOT1L are drug targets for MLL-rearranged (MLL-r) leukemia. Sixty-seven quinoxiline compounds were synthesized and tested for their ability to inhibit such PPIs. Compounds 16, 17, 59 and 63 were found to be potent inhibitors with IC50 values of 0.35-1.5 μM. Structure-activity relationships are discussed. Potent inhibitors can suppress expression of MLL target genes Myc and Meis1 and selectively block proliferation of MLL-r and …
Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J Purwin, Casey D Stefanski, Renaira Oliveira Da Silva, Mitchell E Fane, Yash Chhabra, Jelan I Haj, Jessica Lf Teh, Rama Kadamb, Weijia Cai, Sheera R Rosenbaum, Vivian Chua, Nir Hacohen, Michael A Davies, Jessie Villanueva, Inna Chervoneva, Ashani T Weeraratna, Dan A Erkes, Claudia Capparelli, Julio A Aguirre-Ghiso, Andrew E Aplin
Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J Purwin, Casey D Stefanski, Renaira Oliveira Da Silva, Mitchell E Fane, Yash Chhabra, Jelan I Haj, Jessica Lf Teh, Rama Kadamb, Weijia Cai, Sheera R Rosenbaum, Vivian Chua, Nir Hacohen, Michael A Davies, Jessie Villanueva, Inna Chervoneva, Ashani T Weeraratna, Dan A Erkes, Claudia Capparelli, Julio A Aguirre-Ghiso, Andrew E Aplin
Faculty, Staff and Student Publications
Despite the success of targeted inhibitors in cutaneous melanoma, therapeutic responses are limited by the aged tumor microenvironment and drug-tolerant residual cells. Given the similarities between drug tolerance and cellular dormancy, we studied the dormancy marker, nuclear receptor subfamily 2 group F member 1 (NR2F1), in response to BRAF-V600E inhibitors (BRAFi) plus MEK inhibitors (MEKi) in BRAF-mutant melanoma models. Transcriptomic analysis of melanoma patient samples treated with BRAFi + MEKi showed increased NR2F1. NR2F1 was highly expressed in the drug-tolerant invasive cell state of minimal residual disease in patient-derived and mouse-derived xenografts on BRAFi + MEKi. NR2F1 over-expression was sufficient …
Loss Of Ptdss1 In Tumor Cells Improves Immunogenicity And Response To Anti-Pd-1 Therapy, Jielin Liu, Shelley Herbrich, Sreyashi Basu, Yulong Chen, Ashwat Nagarajan, Swetha Anandhan, Sangeeta Goswami, Liangwen Xiong, Baoxiang Guan, Padmanee Sharma
Loss Of Ptdss1 In Tumor Cells Improves Immunogenicity And Response To Anti-Pd-1 Therapy, Jielin Liu, Shelley Herbrich, Sreyashi Basu, Yulong Chen, Ashwat Nagarajan, Swetha Anandhan, Sangeeta Goswami, Liangwen Xiong, Baoxiang Guan, Padmanee Sharma
Faculty, Staff and Student Publications
PTDSS1 (phosphatidylserine synthase 1) encodes an enzyme that facilitates production of phosphatidylserine (PS), which mediates a global immunosuppressive signal. Here, based on in vivo CRISPR screen, we identified PTDSS1 as a target to improve anti-PD-1 therapy. Depletion of Ptdss1 in tumor cells increased expression of interferon-γ (IFN-γ)-regulated genes, including B2m, Cxcl9, Cxcl10, and Stat1, even in the absence of IFN-γ stimulation in vitro. Loss of Ptdss1 in tumor cells also led to increased expression of MHC-I, enhanced cytotoxicity of CD8+ T cells, and increased frequency of an iNOS+ myeloid subset. A gene signature derived from the …
An Allele-Agnostic Mutant-Kras Inhibitor Suppresses Tumor Maintenance Signals And Reprograms Tumor Immunity In Pancreatic Cancer, Kathleen M Mcandrews, Francesca Paradiso, Clint A Stalnecker, Benson S Chellakkan, Fredrik I Thege, David H Peng, Barbara A Moreno Diaz, Hikaru Sugimoto, Sarah I Patel, Krishnan K Mahadevan, Michelle L Kirtley, Danielle Wills, Amari M Sockwell, Andre Luis F Fonseca, Yunhe Liu, Kimal I Rajapakshe, Nathaniel G Yee, Phuong Thao Tran, Huda Alchikh Omar, Antonio Tedeschi, Fiorella Schischlik-Siegl, Andrew S Boghossian, Matthew G Rees, Melissa M Ronan, Jennifer A Roth, Dorothea Rudolph, Martin Aichinger, Florian Ebner, Artem V Artemov, Jesse Lipp, Laura Pisarsky, Valerie Laura Herrmann, John Park, Jörg F Rippmann, Otmar Schaaf, Vanessa Chandler, Mariah Williams, Charles E Deckard, Linghua Wang, Channing J Der, Christopher Vellano, Paola A Guerrero, Timothy P Heffernan, Raghu Kalluri, Anirban Maitra
An Allele-Agnostic Mutant-Kras Inhibitor Suppresses Tumor Maintenance Signals And Reprograms Tumor Immunity In Pancreatic Cancer, Kathleen M Mcandrews, Francesca Paradiso, Clint A Stalnecker, Benson S Chellakkan, Fredrik I Thege, David H Peng, Barbara A Moreno Diaz, Hikaru Sugimoto, Sarah I Patel, Krishnan K Mahadevan, Michelle L Kirtley, Danielle Wills, Amari M Sockwell, Andre Luis F Fonseca, Yunhe Liu, Kimal I Rajapakshe, Nathaniel G Yee, Phuong Thao Tran, Huda Alchikh Omar, Antonio Tedeschi, Fiorella Schischlik-Siegl, Andrew S Boghossian, Matthew G Rees, Melissa M Ronan, Jennifer A Roth, Dorothea Rudolph, Martin Aichinger, Florian Ebner, Artem V Artemov, Jesse Lipp, Laura Pisarsky, Valerie Laura Herrmann, John Park, Jörg F Rippmann, Otmar Schaaf, Vanessa Chandler, Mariah Williams, Charles E Deckard, Linghua Wang, Channing J Der, Christopher Vellano, Paola A Guerrero, Timothy P Heffernan, Raghu Kalluri, Anirban Maitra
Faculty, Staff and Student Publications
KRAS is among the most frequently mutated oncogenes in cancer, and for decades, efforts at pharmacological blockade of its function in solid cancers have been unsuccessful. A notable advance in this endeavor is the recent development of small molecule KRAS inhibitors, which enable direct targeting of the mutant oncoprotein. Here, we comprehensively evaluate the pre-clinical efficacy of BI-2493 a panKRASi, a first-in-class allele agnostic mutant KRAS inhibitor, in pancreatic ductal adenocarcinoma (PDAC). We report effective tumor growth suppression across a broad range of models, including cell lines, patient-derived xenografts (PDXs), syngeneic orthotopic models, and prolonged survival in genetically engineered mouse …
An Isoform-Specific Runx1c-Btg2 Axis Governs Aml Quiescence And Chemoresistance, Cuijuan Han, Zhiping Zhang, Edie I Crosse, Sogand Sajedi, Bin Lu, Xiyue Wang, Sadik Karma, Mitch Kostich, Sakthi Harini Rajendran, Dylan B Udy, Steven Chen, Alexander Arnuk, Abimbola Eunice Lawal, Kayla R Koenig, Meryl Mckenna, Patrick K Reville, Hussein A Abbas, Omar Abdel-Wahab, Pedro Miura, Robert K Bradley, Eric Wang
An Isoform-Specific Runx1c-Btg2 Axis Governs Aml Quiescence And Chemoresistance, Cuijuan Han, Zhiping Zhang, Edie I Crosse, Sogand Sajedi, Bin Lu, Xiyue Wang, Sadik Karma, Mitch Kostich, Sakthi Harini Rajendran, Dylan B Udy, Steven Chen, Alexander Arnuk, Abimbola Eunice Lawal, Kayla R Koenig, Meryl Mckenna, Patrick K Reville, Hussein A Abbas, Omar Abdel-Wahab, Pedro Miura, Robert K Bradley, Eric Wang
Faculty, Staff and Student Publications
Aberrant levels or structures of RNA isoforms are a hallmark of many cancers, including acute myeloid leukemia (AML), yet their role in AML chemoresistance remains unclear. We conducted a paired analysis of RNA isoform changes in patients with AML before therapy and at relapse after chemotherapy and identified intragenic DNA methylation at the proximal promoter of the transcription factor RUNX1, which resulted in elevated expression of the long-isoform RUNX1C through its alternative distal promoter. The unique N-terminal region of RUNX1C orchestrated an isoform-specific transcriptional program that promoted chemoresistance, with its direct target BTG2 playing a role in chemotherapy resistance. …
Targeting Aldh16a1 Mediated Thioredoxin Lysosomal Degradation To Enhance Ferroptosis Susceptibility In Smarca4-Deficient Nsclc, Guoshu Bi, Jiaqi Liang, Yunyi Bian, Guangyao Shan, Shencheng Ren, Haochun Shi, Xiaolong Huang, Junkan Zhu, Qun Wang, Wei Jiang, Boyi Gan, Cheng Zhan
Targeting Aldh16a1 Mediated Thioredoxin Lysosomal Degradation To Enhance Ferroptosis Susceptibility In Smarca4-Deficient Nsclc, Guoshu Bi, Jiaqi Liang, Yunyi Bian, Guangyao Shan, Shencheng Ren, Haochun Shi, Xiaolong Huang, Junkan Zhu, Qun Wang, Wei Jiang, Boyi Gan, Cheng Zhan
Faculty, Staff and Student Publications
Ferroptosis, an iron-dependent form of cell death, holds promise for cancer therapy. However, the intricate link between ferroptosis and oncogenic mutations remains unclear. Here we show that SMARCA4, a well-established tumour suppressor whose deficiency is associated with poor prognosis and resistance to treatments, sensitizes non-small cell lung cancer (NSCLC) cells to ferroptosis. Mechanistically, SMARCA4 promotes chromatin accessibility and expression of ALDH16A1. Surprisingly, ALDH16A1 lacks ALDH enzymatic activity, but binds to the anti-ferroptotic oxidoreductase thioredoxin (TXN), facilitating its translocation to the lysosome and subsequent degradation. Meanwhile, ALDH16A1 directly inhibits TXN's oxidoreductase function by occluding its active site. We also show that …
Inhibition Of Mcl-1 And Mek Overcomes Mek Inhibitor Resistance In Triple-Negative And Inflammatory Breast Cancers, Mohd Mughees, Moises Tacam, Alex W Tan, Mary Kathryn Pitner, Lakesla R Iles, Xiaoding Hu, Emilly S Villodre, Bisrat G Debeb, Takahiro Kogawa, Bora Lim, Rachel M Layman, Wendy A Woodward, Naoto T Ueno, Debu Tripathy, Savitri Krishnamurthy, Yuan Qi, Lajos Pusztai, Jian Wang, Varsha Gandhi, Geoffrey Bartholomeusz, Chandra Bartholomeusz
Inhibition Of Mcl-1 And Mek Overcomes Mek Inhibitor Resistance In Triple-Negative And Inflammatory Breast Cancers, Mohd Mughees, Moises Tacam, Alex W Tan, Mary Kathryn Pitner, Lakesla R Iles, Xiaoding Hu, Emilly S Villodre, Bisrat G Debeb, Takahiro Kogawa, Bora Lim, Rachel M Layman, Wendy A Woodward, Naoto T Ueno, Debu Tripathy, Savitri Krishnamurthy, Yuan Qi, Lajos Pusztai, Jian Wang, Varsha Gandhi, Geoffrey Bartholomeusz, Chandra Bartholomeusz
Faculty, Staff and Student Publications
The MAPK pathway can drive resistance in highly aggressive breast cancers. Our previous work showed that the MEK inhibitor (MEKi) AZD6244 (selumetinib) prevented lung metastasis in a breast cancer xenograft model. In clinical studies, MEKis as single agents have had only modest activity against solid tumors due to the onset of resistance. Using synthetic lethality siRNA screening, we identified myeloid cell leukemia-1 (MCL-1) as a potential contributor to AZD6244 resistance. We hypothesized that MCL-1 promotes MEKi resistance in highly aggressive breast cancers and that MCL-1 inhibition overcomes AZD6244 resistance. We established two AZD6244-resistant cell lines: MDA-MB-231-R (triple-negative breast cancer) and …
Efficacy Of Atr Kinase Inhibitor Elimusertib Monotherapy Or Combination In Tumors With Dna Damage Response Pathway And Other Genomic Alterations, Kaushik Varadarajan, Christian X Cruz Pico, Kurt W Evans, Maria Gabriela Raso, Yasmeen Qamar Rizvi, Xiaofeng Zheng, Dhruv Chachad, Timothy P Diperi, Bailiang Wang, Stephen M Scott, Ming Zhao, Argun Akcakanat, Antje M Wengner, Timothy A Yap, Funda Meric-Bernstam
Efficacy Of Atr Kinase Inhibitor Elimusertib Monotherapy Or Combination In Tumors With Dna Damage Response Pathway And Other Genomic Alterations, Kaushik Varadarajan, Christian X Cruz Pico, Kurt W Evans, Maria Gabriela Raso, Yasmeen Qamar Rizvi, Xiaofeng Zheng, Dhruv Chachad, Timothy P Diperi, Bailiang Wang, Stephen M Scott, Ming Zhao, Argun Akcakanat, Antje M Wengner, Timothy A Yap, Funda Meric-Bernstam
Faculty, Staff and Student Publications
The ataxia telangiectasia and RAD3-related (ATR) kinase functions with ataxia telangiectasia-mutated (ATM) kinase as a modulator of DNA damage response (DDR). We assessed the antitumor effects of the ATR inhibitor elimusertib (BAY-1895344) in patient-derived xenograft (PDX) models with DDR alterations. Antitumor activity was assessed by change in tumor volume (TV) from baseline. Responses were categorized as follows: partial response (PR), ≥30% decrease in TV; ≥20% increase in TV, progressive disease; and non-PR/progressive disease, stable disease (SD). Event-free survival was defined as time for tumor doubling (EFS-2). Of 21 PDX models tested, 11 had significant prolongation of EFS-2 with elimusertib monotherapy. …
Trop2 Expression In Salivary Gland Adenoidcystic Carcinoma (Acc) According To Histologic Subtype: Therapeutic Implications, Juliana Mota Siqueira, Yoshitsugu Mitani, Mario L Marques-Piubelli, Camilla Oliveira Hoff, Flavia Bonini, Luana Guimaraes De Sousa, Mutsumi Mitani, Giovanna Lopes Carvalho, Fabio Daumas Nunes, Leandro Luongo Matos, Shiaw-Yih Lin, Michael T Spiotto, Ehab Y Hanna, Daniel J Mcgrail, Adel K El-Naggar, Renata Ferrarotto
Trop2 Expression In Salivary Gland Adenoidcystic Carcinoma (Acc) According To Histologic Subtype: Therapeutic Implications, Juliana Mota Siqueira, Yoshitsugu Mitani, Mario L Marques-Piubelli, Camilla Oliveira Hoff, Flavia Bonini, Luana Guimaraes De Sousa, Mutsumi Mitani, Giovanna Lopes Carvalho, Fabio Daumas Nunes, Leandro Luongo Matos, Shiaw-Yih Lin, Michael T Spiotto, Ehab Y Hanna, Daniel J Mcgrail, Adel K El-Naggar, Renata Ferrarotto
Faculty, Staff and Student Publications
Background: Adenoid cystic carcinoma (ACC) is a common salivary gland carcinoma with high recurrence and distant metastasis rates. Currently, there is no standard systemic treatment available. TROP2 is a transmembrane glycoprotein involved in the oncogenesis of several tumors that can be therapeutically targeted by a TROP2-antibody-drug conjugate (ADC). We aimed to characterize TROP2 expression in ACC and assess TROP2 as a potential therapeutic target.
Methods: TROP2 immunohistochemistry was performed in a tissue microarray including 165 ACC of salivary gland. The tumors were grouped according to the histological pattern as non-solid, solid + non-solid, or solid. TROP2 protein expression in ACC …
Generation Of Human Induced Pluripotent Stem Cell Line From A Familial Alzheimer’S Disease Patient Carrying Missense Mutations In Psen1 And Mapt Genes, Ashaq H Najar, Sofia E Sepulveda, Camila Gherardelli, Fatemeh Elahian, Amber Fontenot-Roberts, Aleksandar Bajic, David H Hunter, Claudio Soto, Paul E Schulz, Abhisek Mukherjee
Generation Of Human Induced Pluripotent Stem Cell Line From A Familial Alzheimer’S Disease Patient Carrying Missense Mutations In Psen1 And Mapt Genes, Ashaq H Najar, Sofia E Sepulveda, Camila Gherardelli, Fatemeh Elahian, Amber Fontenot-Roberts, Aleksandar Bajic, David H Hunter, Claudio Soto, Paul E Schulz, Abhisek Mukherjee
Faculty, Staff and Student Publications
Alzheimer's disease (AD), pathologically characterized by misfolding and accumulation of amyloid beta (Aβ) and hyperphosphorylated tau, is the leading cause of neurodegenerative dementia, accounting for 60-80 % of cases. The familial form of AD is caused by mutations in amyloid precursor protein (APP), presenilin-1 (PSEN1), and presenilin-2 (PSEN2) genes. Here, we report the generation of an iPSC line from a 39-year-old AD patient carrying a missense mutation in PSEN1 (F177S), leading to very early onset of AD. The patient also carries a rare variant Q49E in the microtubule-associated protein tau gene (MAPT) with an as yet unknown clinical significance.
Secretogranin 2 Binds Lilrb4 Resulting In Immunosuppression, Xing Yang, Ryan Huang, Meng Fang, Yubo He, Jingjing Xie, Xiaoye Liu, Chengcheng Zhang, Qi Lou, Mi Deng, Wei Xiong, Cheryl Lewis, Zade Sadek, Ankit Gupta, Lianqi Chen, Xuewu Zhang, Lei Guo, Lin Xu, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang
Secretogranin 2 Binds Lilrb4 Resulting In Immunosuppression, Xing Yang, Ryan Huang, Meng Fang, Yubo He, Jingjing Xie, Xiaoye Liu, Chengcheng Zhang, Qi Lou, Mi Deng, Wei Xiong, Cheryl Lewis, Zade Sadek, Ankit Gupta, Lianqi Chen, Xuewu Zhang, Lei Guo, Lin Xu, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang
Faculty, Staff and Student Publications
Immunosuppressive myeloid cells are important in a variety of physiological and pathological contexts, including tumor development, but how hormones might regulate their activity is unclear. Secretogranins, a family of secretory proteins in endocrine and neuronal cells, are proposed to function as prohormones or hormones, but their specific receptors are unknown. Here we show that secretogranin 2 (SCG2), a granin family member, functionally interacts with leukocyte immunoglobulin-like receptor B4 (LILRB4) on monocytic cells. Tumor-derived SCG2 promotes tumor growth in myeloid-specific LILRB4 transgenic mice in a T cell-dependent manner, whereas SCG2 deficiency in host mice impairs tumor progression and reduces infiltration of …
Using Extension-Based Mrna Display To Design Antibody-Like Proteinogenic Peptides For Human Pd-L1, Justin N Ong, Brian J Grindel, Scott A Rankin, Sarah H Naylon, Anupallavi Srinivasamani, Guillaume J Trusz, Xiaowen Liang, Md Nasir Uddin, Lauren Fuller, Michael Curran, Stephane P Roche, Terry T Takahashi, Richard W Roberts, Steven W Millward
Using Extension-Based Mrna Display To Design Antibody-Like Proteinogenic Peptides For Human Pd-L1, Justin N Ong, Brian J Grindel, Scott A Rankin, Sarah H Naylon, Anupallavi Srinivasamani, Guillaume J Trusz, Xiaowen Liang, Md Nasir Uddin, Lauren Fuller, Michael Curran, Stephane P Roche, Terry T Takahashi, Richard W Roberts, Steven W Millward
Faculty, Staff and Student Publications
Many peptide drugs rely on nonproteinogenic amino acids and chemical modifications for improved activity and proteolytic stability. However, these features also make drug production expensive and challenging to scale. Here, we engineered small, linear, proteinogenic peptides that bind human programmed death-ligand 1 (hPD-L1) with high affinity and stability using mRNA display affinity maturation. The resulting peptides, SPAM2 and SPAM3, have antibody-like affinities for hPD-L1 (dissociation constants between ~250 and 300 pM) and are selective for hPD-L1. Both SPAM2 and SPAM3 compete with hPD-L1 ligands known to interact with the programmed cell death protein 1 site and are stable in human …
Spatial Colocalization And Molecular Crosstalk Of Myofibroblastic Cafs And Tumor Cells Shape Lymph Node Metastasis In Oral Squamous Cell Carcinoma, Ken Furudate, Shuya Kasai, Tadashi Yoshizawa, Yuya Sasaki, Kohei Fujikura, Shintaro Goto, Ryohei Ito, Koki Takagi, Tomoyuki Tanaka, Hiroshi Kijima, Kosei Kubota, Ken Itoh, Wataru Kobayashi, Koichi Takahashi
Spatial Colocalization And Molecular Crosstalk Of Myofibroblastic Cafs And Tumor Cells Shape Lymph Node Metastasis In Oral Squamous Cell Carcinoma, Ken Furudate, Shuya Kasai, Tadashi Yoshizawa, Yuya Sasaki, Kohei Fujikura, Shintaro Goto, Ryohei Ito, Koki Takagi, Tomoyuki Tanaka, Hiroshi Kijima, Kosei Kubota, Ken Itoh, Wataru Kobayashi, Koichi Takahashi
Faculty, Staff and Student Publications
Lymph node metastasis (LNM) is a critical prognostic factor for patients with oral squamous cell carcinoma (OSCC). Previous research has implicated the partial epithelial-to-mesenchymal transition of tumor cells and myofibroblastic cancer-associated fibroblasts (myCAFs) in the LNM process. However, the underlying molecular mechanisms remain poorly understood. Here, we conducted a comprehensive molecular analysis integrating original and publicly available OSCC data from bulk genome and transcriptome, single-cell transcriptome, and spatial transcriptome analyses. We found that myCAFs were quantitatively and functionally activated in LNM-positive samples and spatially colocalized with OSCC cells within the invasive tumor front (ITF), providing a niche that may facilitate …
In Situ Programming Of The Tumor Microenvironment To Alleviate Immunosuppression For Pancreatic Cancer Immunotherapy, Man Sun, Huan Zhang, Yarui Ma, Simiao Wang, Jiayi Chen, Yaxin Cui, Yun Zhang, Siyuan Hu, Dan Zhou, Pengchen Zhang, Yahui Liu, Betty Y S Kim, Wen Jiang, Xiaobing Wang, Zhaogang Yang
In Situ Programming Of The Tumor Microenvironment To Alleviate Immunosuppression For Pancreatic Cancer Immunotherapy, Man Sun, Huan Zhang, Yarui Ma, Simiao Wang, Jiayi Chen, Yaxin Cui, Yun Zhang, Siyuan Hu, Dan Zhou, Pengchen Zhang, Yahui Liu, Betty Y S Kim, Wen Jiang, Xiaobing Wang, Zhaogang Yang
Faculty, Staff and Student Publications
Recent studies have highlighted the pivotal role of the cGAS‐STING pathway in cancer immunotherapy. However, clinical trials with cGAS‐STING pathway agonists have faced setbacks thanks to their short biological half‐life, lack of tumor specificity, and potential to promote tumor immune evasion. To address these challenges, a novel exosome‐based drug delivery platform, termed cmExoaCD11b is developed, designed to precisely target and reprogram the tumor microenvironment (TME) in situ for pancreatic cancer immunotherapy. cmExoaCD11b is engineered to encapsulate high copy numbers of IL‐12 mRNA and 2′3’‐cGAMP (cGAMP) and is functionalized with CD11b antibodies for targeted delivery to macrophages. Notably, cmExoaCD11b facilitated the …
Adams Contribute To Triple Negative Breast Cancer Via Mtorc1 Pathway: Targeting Adam-Mtor Axis Improves Efficacy, Shuying Liu, Huiqin Chen, Mihai Gagea, Lorenzo Federico, Fan Zhang, Javier Gomez, Kim-Anh Do, William F Symmans, Gabriel N Hortobagyi, Gordon B Mills, Ana M Gonzalez-Angulo, Debasish Tripathy
Adams Contribute To Triple Negative Breast Cancer Via Mtorc1 Pathway: Targeting Adam-Mtor Axis Improves Efficacy, Shuying Liu, Huiqin Chen, Mihai Gagea, Lorenzo Federico, Fan Zhang, Javier Gomez, Kim-Anh Do, William F Symmans, Gabriel N Hortobagyi, Gordon B Mills, Ana M Gonzalez-Angulo, Debasish Tripathy
Faculty, Staff and Student Publications
Breast cancer is the most frequently diagnosed cancer globally and the second leading cause of cancer-related deaths in American women. Triple-negative breast cancer (TNBC) lacks estrogen receptor, progesterone receptor, and human epidermal growth factor receptor 2. Thus, fewer targeting therapies are available for this most aggressive subtype. The A Disintegrin and Metalloproteinase (ADAM) family plays a vital role in cancer pathophysiology. Previous studies focused on single ADAM members. However, none of these have entered into the clinical arena as diagnostics or therapeutics for breast cancer. In this study, we demonstrate the upregulation of a panel of ADAM members in TNBC, …
Nf1-Depleted Er+ Breast Cancers Are Differentially Sensitive To Cdk4/6 Inhibitors, Ze-Yi Zheng, Anran Chen, Eric J Jaehnig, Meenakshi Anurag, Jonathan T Lei, Long Feng, Chenwei Wang, Diana Fandino, Purba Singh, Hilda Kennedy, Ghazal Yadav, Craig T Vollert, Jill Tsai, Xi Chen, Yi Li, Bora Lim, Alastair Thompson, Shunqiang Li, Charles E Foulds, Bing Zhang, Matthew J Ellis, Eric C Chang
Nf1-Depleted Er+ Breast Cancers Are Differentially Sensitive To Cdk4/6 Inhibitors, Ze-Yi Zheng, Anran Chen, Eric J Jaehnig, Meenakshi Anurag, Jonathan T Lei, Long Feng, Chenwei Wang, Diana Fandino, Purba Singh, Hilda Kennedy, Ghazal Yadav, Craig T Vollert, Jill Tsai, Xi Chen, Yi Li, Bora Lim, Alastair Thompson, Shunqiang Li, Charles E Foulds, Bing Zhang, Matthew J Ellis, Eric C Chang
Faculty, Staff and Students Publications
Neurofibromin/NF1 is a RAS (rat sarcoma virus) GTPase activating protein and estrogen receptor (ER) transcriptional corepressor. NF1low status, identified by copy number loss or low mRNA/protein expression is associated with endocrine therapy resistance in approximately 20% of ER+/HER2− (human epidermal growth factor receptor 2) early-stage breast cancers. The identification of targeted treatments for NF1low ER+/HER2− breast cancer is therefore a priority. In this study proteogenomic analysis of ER+/HER2− breast cancer demonstrated that NF1low tumors exhibited elevated cyclin-dependent kinase 4/6 (CDK4/6) activity. In cell lines, NF1-deletion had a dual effect on CDK4 activity. First, by promoting ER recruitment to CCND1 …
Prolonging Lung Cancer Response To Egfr Inhibition By Targeting The Selective Advantage Of Resistant Cells, Lisa Brunet, David Alexandre, Jiyoung Lee, Maria Del Mar Blanquer-Rosselló, David Bracquemond, Alexis Guernet, Houssein Chhouri, Mathilde Goupil, Zoulika Kherrouche, Arnaud Arabo, Maicol Mancini, Dorthe Cartier, Shen Yao, David Godefroy, Julie Dehedin, Jian-Rong Li, Céline Duparc, Philippe Jamme, Audrey Vinchent, Caroline Bérard, David Tulasne, Sabrina Arena, Alberto Bardelli, Chao Cheng, Byoung Chul Cho, Olivier Wurtz, Cédric Coulouarn, Antonio Maraver, Stuart A Aaronson, Alexis B Cortot, Youssef Anouar, Luca Grumolato
Prolonging Lung Cancer Response To Egfr Inhibition By Targeting The Selective Advantage Of Resistant Cells, Lisa Brunet, David Alexandre, Jiyoung Lee, Maria Del Mar Blanquer-Rosselló, David Bracquemond, Alexis Guernet, Houssein Chhouri, Mathilde Goupil, Zoulika Kherrouche, Arnaud Arabo, Maicol Mancini, Dorthe Cartier, Shen Yao, David Godefroy, Julie Dehedin, Jian-Rong Li, Céline Duparc, Philippe Jamme, Audrey Vinchent, Caroline Bérard, David Tulasne, Sabrina Arena, Alberto Bardelli, Chao Cheng, Byoung Chul Cho, Olivier Wurtz, Cédric Coulouarn, Antonio Maraver, Stuart A Aaronson, Alexis B Cortot, Youssef Anouar, Luca Grumolato
Faculty, Staff and Students Publications
Non-small cell lung cancers (NSCLCs) treated with tyrosine kinase inhibitors (TKIs) of the epidermal growth factor receptor (EGFR) almost invariably relapse in the long term, due to the emergence of subpopulations of resistant cells. Through a DNA barcoding approach, we show that the clinically approved drug sorafenib specifically abolishes the selective advantage of EGFR-TKI-resistant cells, while preserving the response of EGFR-TKI-sensitive cells. Sorafenib is active against multiple mechanisms of resistance/tolerance to EGFR-TKIs and its effects depend on early inhibition of MAPK-interacting kinase (MKNK) activity and signal transducer and activator of transcription 3 (STAT3) phosphorylation, and later down-regulation of MCL1 and …
Circzfr/Ythdf3 Axis Drives Lymph Node Metastasis In Cervical Cancer Via Fasn Translation, Mingyi Zhou, Yan Gao, Yong Zhang, Lian He, Bo Gao, Yue Zhang, Francois X Claret, George A Calin, Danbo Wang
Circzfr/Ythdf3 Axis Drives Lymph Node Metastasis In Cervical Cancer Via Fasn Translation, Mingyi Zhou, Yan Gao, Yong Zhang, Lian He, Bo Gao, Yue Zhang, Francois X Claret, George A Calin, Danbo Wang
Faculty, Staff and Student Publications
Background: Lymph node metastasis is a key driver of poor outcomes in cervical cancer. However, the molecular mechanisms of circular RNAs (circRNAs) driving cervical cancer lymph node metastasis remain unclear.
Methods: We identified circZFR, fatty acid synthase (FASN) and YTH N6-methyladenosine RNA binding protein F3 (YTHDF3) protein expression in the cervical cancer patients with long and short disease-free survival (DFS). Functional experiments were performed to investigate the function of circZFR, FASN and YTHDF3 on cell migration and invasion. MeRIP-qPCR, RNA pulldown, RNA Immunoprecipitation (RIP), and Co-Immunoprecipitation (Co-IP) assays were executed to investigate the mechanism of circZFR regulating FASN protein expression. …
Therapeutic Targeting Of Syndecan-1 Axis Overcomes Acquired Resistance To Kras-Targeted Therapy In Gastrointestinal Cancers, Madelaine S Theardy, Mitsunobu Takeda, Alexey Sorokin, Shuaitong Chen, Zecheng Yang, Xiaofei Wang, Preeti Kanikarla, Oluwadara Coker, Phuoc Nguyen, Yongkun Wei, Jun Yao, Liang Yan, Yanqing Jin, Yiming Cai, Masakatsu Paku, Ziheng Chen, Kara Z Li, Francesca Citron, Hideo Tomihara, Sisi Gao, Angela K Deem, Jun Zhao, Huamin Wang, Samir Hanash, Ronald A Depinho, Anirban Maitra, Giulio F Draetta, Haoqiang Ying, Scott Kopetz, Wantong Yao
Therapeutic Targeting Of Syndecan-1 Axis Overcomes Acquired Resistance To Kras-Targeted Therapy In Gastrointestinal Cancers, Madelaine S Theardy, Mitsunobu Takeda, Alexey Sorokin, Shuaitong Chen, Zecheng Yang, Xiaofei Wang, Preeti Kanikarla, Oluwadara Coker, Phuoc Nguyen, Yongkun Wei, Jun Yao, Liang Yan, Yanqing Jin, Yiming Cai, Masakatsu Paku, Ziheng Chen, Kara Z Li, Francesca Citron, Hideo Tomihara, Sisi Gao, Angela K Deem, Jun Zhao, Huamin Wang, Samir Hanash, Ronald A Depinho, Anirban Maitra, Giulio F Draetta, Haoqiang Ying, Scott Kopetz, Wantong Yao
Faculty, Staff and Student Publications
The therapeutic benefit of recently developed mutant KRAS (KRAS∗) inhibitors remains limited by the rapid onset of resistance. Here, we aim to delineate mechanisms underlying acquired resistance and identify actionable targets for overcoming this clinical challenge. Previously, we identified syndecan-1 (SDC1) as a key effector for pancreatic cancer progression whose surface expression is driven by KRAS∗. By leveraging both pancreatic and colorectal cancer models, we show that surface SDC1 expression initially diminishes upon KRAS∗ inhibition but recovers in tumor cells that bypass KRAS∗ dependency. Mechanistically, we reveal that YAP1 activation drives the recovery of SDC1 surface localization to enhance macropinocytosis-mediated …
Keap1 And Stk11/Lkb1 Alterations Enhance Vulnerability To Atr Inhibition In Kras Mutant Non-Small Cell Lung Cancer, Ana Galan-Cobo, Natalie I Vokes, Yu Qian, David Molkentine, Kavya Ramkumar, Alvaro G Paula, Marlese Pisegna, Daniel J Mcgrail, Alissa Poteete, Sungnam Cho, Minh Truong Do, Amirali Karimi, Yifan Kong, Anisha Solanki, Ankur Karmokar, Nicolas Floc'h, Adina Hughes, Rebecca Sargeant, Lucy Young, Li Shen, Gozde Kar, Caezaan Keshvani, Claudio Arrechedera, Sharia Hernandez, Katharina Schlacher, Jing Wang, Sonia Iyer, James Conway, Mohamed Reda Keddar, Marta Milo, Ilario De Toma, Susan E Critchlow, J Carl Barrett, Jan Cosaert, Alan Lau, Viia Valge-Archer, Lauren A Byers, Simon T Barry, John V Heymach
Keap1 And Stk11/Lkb1 Alterations Enhance Vulnerability To Atr Inhibition In Kras Mutant Non-Small Cell Lung Cancer, Ana Galan-Cobo, Natalie I Vokes, Yu Qian, David Molkentine, Kavya Ramkumar, Alvaro G Paula, Marlese Pisegna, Daniel J Mcgrail, Alissa Poteete, Sungnam Cho, Minh Truong Do, Amirali Karimi, Yifan Kong, Anisha Solanki, Ankur Karmokar, Nicolas Floc'h, Adina Hughes, Rebecca Sargeant, Lucy Young, Li Shen, Gozde Kar, Caezaan Keshvani, Claudio Arrechedera, Sharia Hernandez, Katharina Schlacher, Jing Wang, Sonia Iyer, James Conway, Mohamed Reda Keddar, Marta Milo, Ilario De Toma, Susan E Critchlow, J Carl Barrett, Jan Cosaert, Alan Lau, Viia Valge-Archer, Lauren A Byers, Simon T Barry, John V Heymach
Faculty, Staff and Student Publications
KRAS mutations frequently co-occur with alterations in STK11/LKB1 and/or KEAP1, defining an aggressive subset of lung cancers resistant to immuno- and chemotherapy. While LKB1 loss is associated with vulnerability to DNA damage response-based therapies, the impact of KEAP1 alterations remains unknown. We demonstrate that KEAP1-NRF2 pathway drives a compensatory modulation of ATR-CHK1 signaling, enhancing vulnerability to ATR inhibitors (ATRi), particularly in the setting of increased replication stress associated with LKB1 loss. ATRi shows enhanced anti-tumor activity in LKB1 and/or KEAP1-deficient non-small cell lung cancer (NSCLC) models and synergizes with gemcitabine. ATRi also enhances antitumor immunity and mitigates the immunosuppressed phenotype …
Mutant P53 Confers Chemoresistance By Activating Kmt5b-Mediated Dna Repair Pathway In Nasopharyngeal Carcinoma, Haidan Luo, Mo-Fan Huang, An Xu, Donghui Wang, Julian A Gingold, Jian Tu, Ruoyu Wang, Zijun Huo, Yen-Ting Chiang, Kuang-Lei Tsai, Jie Su, Danielle A Bazer, Mien-Chie Hung, Canmao Xie, Yubiao Guo, Dung-Fang Lee, Huiling Yang, Ruiying Zhao
Mutant P53 Confers Chemoresistance By Activating Kmt5b-Mediated Dna Repair Pathway In Nasopharyngeal Carcinoma, Haidan Luo, Mo-Fan Huang, An Xu, Donghui Wang, Julian A Gingold, Jian Tu, Ruoyu Wang, Zijun Huo, Yen-Ting Chiang, Kuang-Lei Tsai, Jie Su, Danielle A Bazer, Mien-Chie Hung, Canmao Xie, Yubiao Guo, Dung-Fang Lee, Huiling Yang, Ruiying Zhao
Faculty, Staff and Student Publications
Nasopharyngeal carcinoma (NPC), a malignancy arising from the nasopharyngeal epithelium, is common in the east and southeast area of Asia. Treatments for locally advanced and recurrent NPC include chemotherapy (usually combined with 5-Fluorouracil, 5-FU) and radiotherapy, but response is limited due to chemo-resistance. p53 mutation is a critical factor for 5-FU resistance in some cancers, but its role in NPC chemo-resistance remains unclear. Here, we demonstrate that p53(R280T), a common p53 somatic mutation found in multiple NPC tumor samples, induces gain-of-function upregulation of DNA repair genes which leads to 5-FU resistance in NPC. p53(R280T) specifically upregulates the expression of DNA …
Gd3 Synthase Drives Resistance To P53-Induced Apoptosis In Breast Cancer By Modulating Mitochondrial Function, Vivek Anand, Fouad El-Dana, Natalia Baran, Jenny Borgman, Zheng Yin, Hong Zhao, Stephen T Wong, Michael Andreeff, V Lokesh Battula
Gd3 Synthase Drives Resistance To P53-Induced Apoptosis In Breast Cancer By Modulating Mitochondrial Function, Vivek Anand, Fouad El-Dana, Natalia Baran, Jenny Borgman, Zheng Yin, Hong Zhao, Stephen T Wong, Michael Andreeff, V Lokesh Battula
Faculty, Staff and Student Publications
TP53 mutations are common in breast cancer (BC) and are associated with poor prognosis. GD3 synthase (GD3S/ST8SIA1), a gene associated with breast cancer stem cells, is upregulated in tumors with p53 mutations. However, the functional relationship between GD3S and p53 is unknown. Here, we show that GD3S levels are highest in breast tumors with specific p53 mutations. Functional studies revealed that wild-type (WT) p53 inhibits GD3S expression, whereas mutation in p53 enhances GD3S expression by upregulating GD3S promoter activity. Moreover, we found that GD3S inhibits wild-type p53-induced apoptosis in BC cells, while BC cells harboring gain-of-function p53 mutations are dependent …
Melanoma Antigens In Pediatric Medulloblastoma Contribute To Tumor Heterogeneity And Species-Specificity Of Group 3 Tumors, Rebecca R J Collins, Rebecca R Florke Gee, Sima Tozandehjani, Tara Bayat, Maria Camila Hoyos Sanchez, Juan Sebastian Solano Gutierrez, Barbara Breznik, Anna K Lee, Samuel T Peters, Jon P Connelly, Shondra M Pruett-Miller, Martine F Roussel, Dinesh Rakheja, Heather S Tillman, Patrick Ryan Potts, Klementina Fon Tacer
Melanoma Antigens In Pediatric Medulloblastoma Contribute To Tumor Heterogeneity And Species-Specificity Of Group 3 Tumors, Rebecca R J Collins, Rebecca R Florke Gee, Sima Tozandehjani, Tara Bayat, Maria Camila Hoyos Sanchez, Juan Sebastian Solano Gutierrez, Barbara Breznik, Anna K Lee, Samuel T Peters, Jon P Connelly, Shondra M Pruett-Miller, Martine F Roussel, Dinesh Rakheja, Heather S Tillman, Patrick Ryan Potts, Klementina Fon Tacer
Faculty, Staff and Student Publications
Medulloblastoma (MB) is the most malignant childhood brain cancer. Group 3 MB (G3 MB) subtype accounts for about 25% of MB and is associated with the worst outcomes. Herein, we report that more than half of G3 MB tumors express melanoma antigens (MAGEs), which are potential prognostic and therapeutic markers. MAGEs are cancer-testis antigens, aberrantly expressed in several adult cancers, and associated with poorer prognosis and therapy resistance; however, their role in pediatric cancers is mostly unknown. This study aimed to determine whether MAGEs are activated and important in pediatric MB. We obtained formalin-fixed paraffin-embedded tumor samples of 34 patients, …