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Cell Line, Tumor

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Full-Text Articles in Medical Specialties

Competing Engagement Of Β-Arrestin Isoforms Balances Igf1r/P53 Signaling And Controls Melanoma Cell Chemotherapeutic Responsiveness, Sonia Cismas, Sylvya Pasca, Caitrin Crudden, Iara Trocoli Drakensjo, Naida Suleymanova, Simin Zhang, Benjamin Gebhard, Dawei Song, Shiyong Neo, Takashi Shibano, Terry J Smith, George A Calin, Ada Girnita, Leonard Girnita Dec 2023

Competing Engagement Of Β-Arrestin Isoforms Balances Igf1r/P53 Signaling And Controls Melanoma Cell Chemotherapeutic Responsiveness, Sonia Cismas, Sylvya Pasca, Caitrin Crudden, Iara Trocoli Drakensjo, Naida Suleymanova, Simin Zhang, Benjamin Gebhard, Dawei Song, Shiyong Neo, Takashi Shibano, Terry J Smith, George A Calin, Ada Girnita, Leonard Girnita

Faculty, Staff and Student Publications

Constraints on the p53 tumor suppressor pathway have long been associated with the progression, therapeutic resistance, and poor prognosis of melanoma, the most aggressive form of skin cancer. Likewise, the insulin-like growth factor type 1 receptor (IGF1R) is recognized as an essential coordinator of transformation, proliferation, survival, and migration of melanoma cells. Given that β-arrestin (β-arr) system critically governs the anti/pro-tumorigenic p53/IGF1R signaling pathways through their common E3 ubiquitin-protein ligase MDM2, we explore whether unbalancing this system downstream of IGF1R can enhance the response of melanoma cells to chemotherapy. Altering β-arr expression demonstrated that both β-arr1-silencing and β-arr2-overexpression (-β-arr1/+β-arr2) facilitated …


Kinome Profiling Identifies Mark3 And Stk10 As Potential Therapeutic Targets In Uveal Melanoma, Usman Baqai, Alison M Kurimchak, Isabella V Trachtenberg, Timothy J Purwin, Jelan I Haj, Anna Han, Kristine Luo, Nikole Fandino Pachon, Angela Jeon, Vivian Chua, Michael A Davies, J Silvio Gutkind, Jeffrey L Benovic, James S Duncan, Andrew E Aplin Dec 2023

Kinome Profiling Identifies Mark3 And Stk10 As Potential Therapeutic Targets In Uveal Melanoma, Usman Baqai, Alison M Kurimchak, Isabella V Trachtenberg, Timothy J Purwin, Jelan I Haj, Anna Han, Kristine Luo, Nikole Fandino Pachon, Angela Jeon, Vivian Chua, Michael A Davies, J Silvio Gutkind, Jeffrey L Benovic, James S Duncan, Andrew E Aplin

Faculty, Staff and Student Publications

Most uveal melanoma cases harbor activating mutations in either GNAQ or GNA11. Despite activation of the mitogen-activated protein kinase (MAPK) signaling pathway downstream of Gαq/11, there are no effective targeted kinase therapies for metastatic uveal melanoma. The human genome encodes numerous understudied kinases, also called the "dark kinome". Identifying additional kinases regulated by Gαq/11 may uncover novel therapeutic targets for uveal melanoma. In this study, we treated GNAQ-mutant uveal melanoma cell lines with a Gαq/11 inhibitor, YM-254890, and conducted a kinase signaling proteomic screen using multiplexed-kinase inhibitors followed by mass spectrometry. We observed downregulated expression and/or activity of 22 kinases. …


Enhanced Tp53 Reactivation Disrupts Myc Transcriptional Program And Overcomes Venetoclax Resistance In Acute Myeloid Leukemias, Yuki Nishida, Jo Ishizawa, Edward Ayoub, Rafael Heinz Montoya, Lauren B Ostermann, Muharrem Muftuoglu, Vivian R Ruvolo, Tallie Patsilevas, Darah A Scruggs, Shayaun Khazaei, Po Yee Mak, Wenjing Tao, Bing Z Carter, Steffen Boettcher, Benjamin L Ebert, Naval G Daver, Marina Konopleva, Takahiko Seki, Kensuke Kojima, Michael Andreeff Dec 2023

Enhanced Tp53 Reactivation Disrupts Myc Transcriptional Program And Overcomes Venetoclax Resistance In Acute Myeloid Leukemias, Yuki Nishida, Jo Ishizawa, Edward Ayoub, Rafael Heinz Montoya, Lauren B Ostermann, Muharrem Muftuoglu, Vivian R Ruvolo, Tallie Patsilevas, Darah A Scruggs, Shayaun Khazaei, Po Yee Mak, Wenjing Tao, Bing Z Carter, Steffen Boettcher, Benjamin L Ebert, Naval G Daver, Marina Konopleva, Takahiko Seki, Kensuke Kojima, Michael Andreeff

Faculty, Staff and Student Publications

The tumor suppressor TP53 is frequently inactivated in a mutation-independent manner in cancers and is reactivated by inhibiting its negative regulators. We here cotarget MDM2 and the nuclear exporter XPO1 to maximize transcriptional activity of p53. MDM2/XPO1 inhibition accumulated nuclear p53 and elicited a 25- to 60-fold increase of its transcriptional targets. TP53 regulates MYC, and MDM2/XPO1 inhibition disrupted the c-MYC-regulated transcriptome, resulting in the synergistic induction of apoptosis in acute myeloid leukemia (AML). Unexpectedly, venetoclax-resistant AMLs express high levels of c-MYC and are vulnerable to MDM2/XPO1 inhibition in vivo. However, AML cells persisting after MDM2/XPO1 inhibition exhibit a …


Ezh2 Cooperates With Brd4-Nut To Drive Nut Carcinoma Growth By Silencing Key Tumor Suppressor Genes, Yeying Huang, R Taylor Durall, Nhi M Luong, Hans J Hertzler, Julianna Huang, Prafulla C Gokhale, Brittaney A Leeper, Nicole S Persky, David E Root, Praju V Anekal, Paula D L M Montero Llopis, Clement N David, Jeffery L Kutok, Alejandra Raimondi, Karan Saluja, Jia Luo, Cynthia A Zahnow, Biniam Adane, Kimberly Stegmaier, Catherine E Hawkins, Christopher Ponne, Quan Le, Geoffrey I Shapiro, Madeleine E Lemieux, Kyle P Eagen, Christopher A French Dec 2023

Ezh2 Cooperates With Brd4-Nut To Drive Nut Carcinoma Growth By Silencing Key Tumor Suppressor Genes, Yeying Huang, R Taylor Durall, Nhi M Luong, Hans J Hertzler, Julianna Huang, Prafulla C Gokhale, Brittaney A Leeper, Nicole S Persky, David E Root, Praju V Anekal, Paula D L M Montero Llopis, Clement N David, Jeffery L Kutok, Alejandra Raimondi, Karan Saluja, Jia Luo, Cynthia A Zahnow, Biniam Adane, Kimberly Stegmaier, Catherine E Hawkins, Christopher Ponne, Quan Le, Geoffrey I Shapiro, Madeleine E Lemieux, Kyle P Eagen, Christopher A French

Faculty, Staff and Student Publications

NUT carcinoma (NC) is an aggressive carcinoma driven by the BRD4-NUT fusion oncoprotein, which activates chromatin to promote expression of pro-growth genes. BET bromodomain inhibitors (BETi) are a promising treatment for NC that can impede BRD4-NUT’s ability to activate genes, but the efficacy of BETi as monotherapy are limited. Here, we demonstrated that EZH2, which silences genes through establishment of repressive chromatin, is a dependency in NC. Inhibition of EZH2 with the clinical compound tazemetostat (taz) potently blocked growth of NC cells. Epigenetic and transcriptomic analysis revealed that taz reversed the EZH2-specific H3K27me3 silencing mark and restored expression of multiple …


Rcc2 Promotes Prostate Cancer Cell Proliferation And Migration Through Hh/Gli1 Signaling Pathway And Cancer Stem-Like Cells, Shenghan Wang, Zhentao Lei, Wei Liu, Jie Xiong, Yuqiang Shi, Lin Yang, Qiang Gao, Kai Le, Bao Zhang Nov 2023

Rcc2 Promotes Prostate Cancer Cell Proliferation And Migration Through Hh/Gli1 Signaling Pathway And Cancer Stem-Like Cells, Shenghan Wang, Zhentao Lei, Wei Liu, Jie Xiong, Yuqiang Shi, Lin Yang, Qiang Gao, Kai Le, Bao Zhang

Faculty, Staff and Student Publications

BACKGROUND: Regulator of chromosome condensation 2 (RCC2) was a telophase disk-binding protein on mitosis, and functions as an oncogene in many human cancers. However, its role on prostate cancer (PCa) was unknown. The goal of this study is to explore the function of RCC 2 on PCa development.

METHODS: The expression of RCC2 and its methylation level, its correlation with lymph node metastasis or disease-free survival (DFS) was analyzed using TCGA database. The effect of RCC2 on PCa cell proliferation, migration and invasion were detected using CCK-8, cell colony formation, Transwell and wood healing assays. RNA-seq and GSEA analysis were …


Targeting The Αvβ3/Ngr2 Pathway In Neuroendocrine Prostate Cancer, Anna Testa, Fabio Quaglia, Nicole M. Naranjo, Cecilia E. Verrillo, Christopher D. Shields, Stephen Lin, Maxwell W. Pickles, Drini F. Hamza, Tami Von Schalscha, David A. Cheresh, Benjamin E Leiby, Qin Liu, Jianyi Ding, William K. Kelly, D. Craig Hooper, Eva Corey, Edward F. Plow, Dario C. Altieri, Lucia R. Languino Nov 2023

Targeting The Αvβ3/Ngr2 Pathway In Neuroendocrine Prostate Cancer, Anna Testa, Fabio Quaglia, Nicole M. Naranjo, Cecilia E. Verrillo, Christopher D. Shields, Stephen Lin, Maxwell W. Pickles, Drini F. Hamza, Tami Von Schalscha, David A. Cheresh, Benjamin E Leiby, Qin Liu, Jianyi Ding, William K. Kelly, D. Craig Hooper, Eva Corey, Edward F. Plow, Dario C. Altieri, Lucia R. Languino

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

Highly aggressive, metastatic, neuroendocrine prostate cancer, which typically develops from prostate cancer cells acquiring resistance to androgen deprivation therapy, is associated with limited treatment options and hence poor prognosis. We have previously demonstrated that the αVβ3 integrin is over-expressed in neuroendocrine prostate cancer. We now show that LM609, a monoclonal antibody that specifically targets the human αVβ3 integrin, hinders the growth of neuroendocrine prostate cancer patient-derived xenografts in vivo. Our group has recently identified a novel αVβ3 integrin binding partner, NgR2, responsible for regulating the expression of neuroendocrine markers and for inducing neuroendocrine differentiation in prostate cancer cells. Through in …


Potentiation Of Apoptosis In Drug-Resistant Mantle Cell Lymphoma Cells By Mcl-1 Inhibitor Involves Downregulation Of Inhibitor Of Apoptosis Proteins, Yijing Li, Heng-Huan Lee, Vivian Changying Jiang, Yuxuan Che, Joseph Mcintosh, Alexa Jordan, Jovanny Vargas, Tianci Zhang, Fangfang Yan, Margaret Elizabeth Simmons, Wei Wang, Lei Nie, Yixin Yao, Preetesh Jain, Michael Wang, Yang Liu Nov 2023

Potentiation Of Apoptosis In Drug-Resistant Mantle Cell Lymphoma Cells By Mcl-1 Inhibitor Involves Downregulation Of Inhibitor Of Apoptosis Proteins, Yijing Li, Heng-Huan Lee, Vivian Changying Jiang, Yuxuan Che, Joseph Mcintosh, Alexa Jordan, Jovanny Vargas, Tianci Zhang, Fangfang Yan, Margaret Elizabeth Simmons, Wei Wang, Lei Nie, Yixin Yao, Preetesh Jain, Michael Wang, Yang Liu

Faculty, Staff and Student Publications

Bruton's tyrosine kinase inhibitors (BTKi) and CAR T-cell therapy have demonstrated tremendous clinical benefits in mantle cell lymphoma (MCL) patients, but intrinsic or acquired resistance inevitably develops. In this study, we assessed the efficacy of the highly potent and selective MCL-1 inhibitor AZD5991 in various therapy-resistant MCL cell models. AZD5991 markedly induced apoptosis in these cells. In addition to liberating BAK from the antiapoptotic MCL-1/BAK complex for the subsequent apoptosis cascade, AZD5991 downregulated inhibitor of apoptosis proteins (IAPs) through a BAK-dependent mechanism to amplify the apoptotic signal. The combination of AZD5991 with venetoclax enhanced apoptosis and reduced mitochondrial oxygen consumption …


Exosomes Modified With Anti-Mek1 Sirna Lead To An Effective Silencing Of Triple Negative Breast Cancer Cells, Débora Ferreira, Cátia Santos-Pereira, Marta Costa, Julieta Afonso, Sujuan Yang, Janine Hensel, Kathleen M Mcandrews, Adhemar Longatto-Filho, Rui Fernandes, Joana B Melo, Fátima Baltazar, João N Moreira, Raghu Kalluri, Ligia R Rodrigues Nov 2023

Exosomes Modified With Anti-Mek1 Sirna Lead To An Effective Silencing Of Triple Negative Breast Cancer Cells, Débora Ferreira, Cátia Santos-Pereira, Marta Costa, Julieta Afonso, Sujuan Yang, Janine Hensel, Kathleen M Mcandrews, Adhemar Longatto-Filho, Rui Fernandes, Joana B Melo, Fátima Baltazar, João N Moreira, Raghu Kalluri, Ligia R Rodrigues

Faculty, Staff and Student Publications

Triple negative breast cancer (TNBC) is a highly heterogenous disease not sensitive to endocrine or HER2 therapy and standardized treatment regimens are still missing. Therefore, development of novel TNBC treatment approaches is of utmost relevance. Herein, the potential of MAPK/ERK downregulation by RNAi-based therapeutics in a panel of mesenchymal stem-like TNBC cell lines was uncovered. Our data revealed that suppression of one of the central nodes of this signaling pathway, MEK1, affects proliferation, migration, and invasion of TNBC cells, that may be explained by the reversion of the epithelial-mesenchymal transition phenotype, which is facilitated by the MMP-2/MMP-9 downregulation. Moreover, an …


Acaa2 Is A Novel Molecular Indicator For Cancers With Neuroendocrine Phenotype, Michelle Shen, Shiqin Liu, Angus Toland, En-Chi Hsu, Alifiani B Hartono, Busola R Alabi, Merve Aslan, Holly M Nguyen, Conner J Sessions, Rosalie Nolley, Chanjuan Shi, Jiaoti Huang, James D Brooks, Eva Corey, Tanya Stoyanova Nov 2023

Acaa2 Is A Novel Molecular Indicator For Cancers With Neuroendocrine Phenotype, Michelle Shen, Shiqin Liu, Angus Toland, En-Chi Hsu, Alifiani B Hartono, Busola R Alabi, Merve Aslan, Holly M Nguyen, Conner J Sessions, Rosalie Nolley, Chanjuan Shi, Jiaoti Huang, James D Brooks, Eva Corey, Tanya Stoyanova

Faculty, Staff and Student Publications

BACKGROUND: Neuroendocrine phenotype is commonly associated with therapy resistance and poor prognoses in small-cell neuroendocrine cancers (SCNCs), such as neuroendocrine prostate cancer (NEPC) and small-cell lung cancer (SCLC). Expression levels of current neuroendocrine markers exhibit high case-by-case variability, so multiple markers are used in combination to identify SCNCs. Here, we report that ACAA2 is elevated in SCNCs and is a potential molecular indicator for SCNCs.

METHODS: ACAA2 expressions in tumour xenografts, tissue microarrays (TMAs), and patient tissues from prostate and lung cancers were analysed via immunohistochemistry. ACAA2 mRNA levels in lung and prostate cancer (PC) patients were assessed in published …


Targeted Inhibition Of Lncrna Malat1 Alters The Tumor Immune Microenvironment In Preclinical Syngeneic Mouse Models Of Triple-Negative Breast Cancer, Oluwatoyosi Adewunmi, Yichao Shen, Xiang H-F Zhang, Jeffrey M Rosen Nov 2023

Targeted Inhibition Of Lncrna Malat1 Alters The Tumor Immune Microenvironment In Preclinical Syngeneic Mouse Models Of Triple-Negative Breast Cancer, Oluwatoyosi Adewunmi, Yichao Shen, Xiang H-F Zhang, Jeffrey M Rosen

Faculty, Staff and Students Publications

Long noncoding RNAs (lncRNA) play an important role in gene regulation in both normal tissues and cancer. Targeting lncRNAs is a promising therapeutic approach that has become feasible through the development of gapmer antisense oligonucleotides (ASO). Metastasis-associated lung adenocarcinoma transcript (Malat1) is an abundant lncRNA whose expression is upregulated in several cancers. Although Malat1 increases the migratory and invasive properties of tumor cells, its role in the tumor microenvironment (TME) is still not well defined. We explored the connection between Malat1 and the tumor immune microenvironment (TIME) using several immune-competent preclinical syngeneic Tp53-null triple-negative breast cancer (TNBC) mouse models that …


The Lin28b/Wnt5a Axis Drives Pancreas Cancer Through Crosstalk Between Cancer Associated Fibroblasts And Tumor Epithelium, Zhaoqi Shu, Minghe Fan, Bo Tu, Zhiheng Tang, Haojie Wang, Haimeng Li, Hengchao Li, Meng Yuan, Jingru Bai, Sihan Huo, Lina Wang, Wei-Guo Zhu, Wei Wang, Xiaoyun Liu, Shaokun Shu, Ying Zhao Oct 2023

The Lin28b/Wnt5a Axis Drives Pancreas Cancer Through Crosstalk Between Cancer Associated Fibroblasts And Tumor Epithelium, Zhaoqi Shu, Minghe Fan, Bo Tu, Zhiheng Tang, Haojie Wang, Haimeng Li, Hengchao Li, Meng Yuan, Jingru Bai, Sihan Huo, Lina Wang, Wei-Guo Zhu, Wei Wang, Xiaoyun Liu, Shaokun Shu, Ying Zhao

Faculty, Staff and Student Publications

Bidirectional signal transduction between tumor epithelial cells and tumor microenvironment (TME) is important for tumor development. Here we show that Lin28b/let-7 pathway is indispensable for modulating the expression of Wnt5a in tumor epithelium, which could be secreted and then up-regulates Lin28b in cancer-associated fibroblasts (CAFs). Moreover, we demonstrate that Lin28b in CAFs promoted growth of PDAC by inducing cytokine PCSK9's production. Using an orthotopic mouse model of PDAC, we find that depletion of Lin28b in CAFs reduced tumor weight, highlighting the importance of Lin28b in PDAC stroma. Thus, our study shows that the Lin28b-Wnt5a axis plays a critical role in …


Impacting T-Cell Fitness In Multiple Myeloma: Potential Roles For Selinexor And Xpo1 Inhibitors, Adam Binder, Christopher Walker, Tomer Mark, Muhamed Baljevic Oct 2023

Impacting T-Cell Fitness In Multiple Myeloma: Potential Roles For Selinexor And Xpo1 Inhibitors, Adam Binder, Christopher Walker, Tomer Mark, Muhamed Baljevic

Department of Medical Oncology Faculty Papers

Competent T-cells with sufficient levels of fitness combat cancer formation and progression. In multiple myeloma (MM), T-cell exhaustion is caused by several factors including tumor burden, constant immune activation due to chronic disease, age, nutritional status, and certain MM treatments such as alkylating agents and proteasome inhibitors. Many currently used therapies, including bispecific T-cell engagers, anti-CD38 antibodies, proteasome inhibitors, and CART-cells, directly or indirectly depend on the anti-cancer activity of T-cells. Reduced T-cell fitness not only diminishes immune defenses, increasing patient susceptibility to opportunistic infections, but can impact effectiveness MM therapy effectiveness, bringing into focus sequencing strategies that could modulate …


Dual Targeted Extracellular Vesicles Regulate Oncogenic Genes In Advanced Pancreatic Cancer, Chi-Ling Chiang, Yifan Ma, Ya-Chin Hou, Junjie Pan, Sin-Yu Chen, Ming-Hsien Chien, Zhi-Xuan Zhang, Wei-Hsiang Hsu, Xinyu Wang, Jingjing Zhang, Hong Li, Lili Sun, Shannon Fallen, Inyoul Lee, Xing-Yu Chen, Yeh-Shiu Chu, Chi Zhang, Tai-Shan Cheng, Wen Jiang, Betty Y S Kim, Eduardo Reategui, Robert Lee, Yuan Yuan, Hsiao-Chun Liu, Kai Wang, Michael Hsiao, Chi-Ying F Huang, Yan-Shen Shan, Andrew S Lee, L James Lee Oct 2023

Dual Targeted Extracellular Vesicles Regulate Oncogenic Genes In Advanced Pancreatic Cancer, Chi-Ling Chiang, Yifan Ma, Ya-Chin Hou, Junjie Pan, Sin-Yu Chen, Ming-Hsien Chien, Zhi-Xuan Zhang, Wei-Hsiang Hsu, Xinyu Wang, Jingjing Zhang, Hong Li, Lili Sun, Shannon Fallen, Inyoul Lee, Xing-Yu Chen, Yeh-Shiu Chu, Chi Zhang, Tai-Shan Cheng, Wen Jiang, Betty Y S Kim, Eduardo Reategui, Robert Lee, Yuan Yuan, Hsiao-Chun Liu, Kai Wang, Michael Hsiao, Chi-Ying F Huang, Yan-Shen Shan, Andrew S Lee, L James Lee

Faculty, Staff and Student Publications

Pancreatic ductal adenocarcinoma (PDAC) tumours carry multiple gene mutations and respond poorly to treatments. There is currently an unmet need for drug carriers that can deliver multiple gene cargoes to target high solid tumour burden like PDAC. Here, we report a dual targeted extracellular vesicle (dtEV) carrying high loads of therapeutic RNA that effectively suppresses large PDAC tumours in mice. The EV surface contains a CD64 protein that has a tissue targeting peptide and a humanized monoclonal antibody. Cells sequentially transfected with plasmid DNAs encoding for the RNA and protein of interest by Transwell®-based asymmetric cell electroporation release abundant targeted …


Oncolytic Virus M1 Functions As A Bifunctional Checkpoint Inhibitor To Enhance The Antitumor Activity Of Dc Vaccine, Jia Dan, Jing Cai, Yingqian Zhong, Chaoqun Wang, Shanyu Huang, Ying Zeng, Zhen Fan, Cuiying Xu, Linyi Hu, Jiayu Zhang, Jun Hu, Ying Liu, Xingwen Su, Wenbo Zhu, Guangmei Yan, Jiankai Liang, Yuan Lin Oct 2023

Oncolytic Virus M1 Functions As A Bifunctional Checkpoint Inhibitor To Enhance The Antitumor Activity Of Dc Vaccine, Jia Dan, Jing Cai, Yingqian Zhong, Chaoqun Wang, Shanyu Huang, Ying Zeng, Zhen Fan, Cuiying Xu, Linyi Hu, Jiayu Zhang, Jun Hu, Ying Liu, Xingwen Su, Wenbo Zhu, Guangmei Yan, Jiankai Liang, Yuan Lin

Faculty, Staff and Student Publications

Although promising, dendritic cell (DC) vaccines still provide limited clinical benefits, mainly due to the immunosuppressive tumor microenvironment (TME) and the lack of tumor-associated antigens (TAAs). Oncolytic virus therapy is an ideal strategy to overcome immunosuppression and expose TAAs; therefore, they may work synergistically with DC vaccines. In this study, we demonstrate that oncolytic virus M1 (OVM) can enhance the antitumor effects of DC vaccines across diverse syngeneic mouse tumor models by increasing the infiltration of CD8+ effector T cells in the TME. Mechanically, we show that tumor cells counteract DC vaccines through the SIRPα-CD47 immune checkpoint, while OVM can …


Endocrine Therapy Synergizes With Smac Mimetics To Potentiate Antigen Presentation And Tumor Regression In Hormone Receptor-Positive Breast Cancer, Francisco Hermida-Prado, Yingtian Xie, Shira Sherman, Zsuzsanna Nagy, Douglas Russo, Tara Akhshi, Zhengtao Chu, Avery Feit, Marco Campisi, Minyue Chen, Agostina Nardone, Cristina Guarducci, Klothilda Lim, Alba Font-Tello, Irene Lee, Juana García-Pedrero, Israel Cañadas, Judith Agudo, Ying Huang, Tal Sella, Qingchun Jin, Nabihah Tayob, Elizabeth A Mittendorf, Sara M Tolaney, Xintao Qiu, Henry Long, William F Symmans, Jia-Ren Lin, Sandro Santagata, Isabelle Bedrosian, Denise A Yardley, Ingrid A Mayer, Edward T Richardson, Giacomo Oliveira, Catherine J Wu, Eugene F Schuster, Mitch Dowsett, Alana L Welm, David Barbie, Otto Metzger, Rinath Jeselsohn Oct 2023

Endocrine Therapy Synergizes With Smac Mimetics To Potentiate Antigen Presentation And Tumor Regression In Hormone Receptor-Positive Breast Cancer, Francisco Hermida-Prado, Yingtian Xie, Shira Sherman, Zsuzsanna Nagy, Douglas Russo, Tara Akhshi, Zhengtao Chu, Avery Feit, Marco Campisi, Minyue Chen, Agostina Nardone, Cristina Guarducci, Klothilda Lim, Alba Font-Tello, Irene Lee, Juana García-Pedrero, Israel Cañadas, Judith Agudo, Ying Huang, Tal Sella, Qingchun Jin, Nabihah Tayob, Elizabeth A Mittendorf, Sara M Tolaney, Xintao Qiu, Henry Long, William F Symmans, Jia-Ren Lin, Sandro Santagata, Isabelle Bedrosian, Denise A Yardley, Ingrid A Mayer, Edward T Richardson, Giacomo Oliveira, Catherine J Wu, Eugene F Schuster, Mitch Dowsett, Alana L Welm, David Barbie, Otto Metzger, Rinath Jeselsohn

Faculty, Staff and Student Publications

Immunotherapies have yet to demonstrate significant efficacy in the treatment of hormone receptor-positive (HR+) breast cancer. Given that endocrine therapy (ET) is the primary approach for treating HR+ breast cancer, we investigated the effects of ET on the tumor immune microenvironment (TME) in HR+ breast cancer. Spatial proteomics of primary HR+ breast cancer samples obtained at baseline and after ET from patients enrolled in a neoadjuvant clinical trial (NCT02764541) indicated that ET upregulated β2-microglobulin and influenced the TME in a manner that promotes enhanced immunogenicity. To gain a deeper understanding of the underlying mechanisms, the intrinsic effects of …


Setd2 Loss And Atr Inhibition Synergize To Promote Cgas Signaling And Immunotherapy Response In Renal Cell Carcinoma, Xian-De Liu, Yan-Ting Zhang, Daniel J Mcgrail, Xuesong Zhang, Truong Lam, Anh Hoang, Elshad Hasanov, Ganiraju Manyam, Christine B Peterson, Haifeng Zhu, Shwetha V Kumar, Rehan Akbani, Patrick G Pilie, Nizar M Tannir, Guang Peng, Eric Jonasch Oct 2023

Setd2 Loss And Atr Inhibition Synergize To Promote Cgas Signaling And Immunotherapy Response In Renal Cell Carcinoma, Xian-De Liu, Yan-Ting Zhang, Daniel J Mcgrail, Xuesong Zhang, Truong Lam, Anh Hoang, Elshad Hasanov, Ganiraju Manyam, Christine B Peterson, Haifeng Zhu, Shwetha V Kumar, Rehan Akbani, Patrick G Pilie, Nizar M Tannir, Guang Peng, Eric Jonasch

Faculty, Staff and Student Publications

PURPOSE: Immune checkpoint blockade (ICB) demonstrates durable clinical benefits in a minority of patients with renal cell carcinoma (RCC). We aimed to identify the molecular features that determine the response and develop approaches to enhance it.

EXPERIMENTAL DESIGN: We investigated the effects of SET domain-containing protein 2 (SETD2) loss on the DNA damage response pathway, the cytosolic DNA-sensing pathway, the tumor immune microenvironment, and the response to ataxia telangiectasia and rad3-related (ATR) and checkpoint inhibition in RCC.

RESULTS: ATR inhibition activated the cyclic GMP-AMP synthase (cGAS)-interferon regulatory factor 3 (IRF3)-dependent cytosolic DNA-sensing pathway, resulting in the concurrent expression of inflammatory …


Co-Targeting Bcl-Xl And Bcl-2 By Protac 753b Eliminates Leukemia Cells And Enhances Efficacy Of Chemotherapy By Targeting Senescent Cells, Yannan Jia, Lina Han, Cassandra L Ramage, Zhe Wang, Connie C Weng, Lei Yang, Simona Colla, Helen Ma, Weiguo Zhang, Michael Andreeff, Naval Daver, Nitin Jain, Naveen Pemmaraju, Kapil Bhalla, Satu Mustjoki, Peiyi Zhang, Guangrong Zheng, Daohong Zhou, Qi Zhang, Marina Konopleva Oct 2023

Co-Targeting Bcl-Xl And Bcl-2 By Protac 753b Eliminates Leukemia Cells And Enhances Efficacy Of Chemotherapy By Targeting Senescent Cells, Yannan Jia, Lina Han, Cassandra L Ramage, Zhe Wang, Connie C Weng, Lei Yang, Simona Colla, Helen Ma, Weiguo Zhang, Michael Andreeff, Naval Daver, Nitin Jain, Naveen Pemmaraju, Kapil Bhalla, Satu Mustjoki, Peiyi Zhang, Guangrong Zheng, Daohong Zhou, Qi Zhang, Marina Konopleva

Faculty, Staff and Student Publications

BCL-XL and BCL-2 are key anti-apoptotic proteins and validated cancer targets. 753B is a novel BCL-XL/BCL-2 proteolysis targeting chimera (PROTAC) that targets both BCL-XL and BCL-2 to the von Hippel-Lindau (VHL) E3 ligase, leading to BCLX L/BCL-2 ubiquitination and degradation selectively in cells expressing VHL. Because platelets lack VHL expression, 753B spares on-target platelet toxicity caused by the first-generation dual BCL-XL/BCL-2 inhibitor navitoclax (ABT-263). Here, we report pre-clinical single-agent activity of 753B against different leukemia subsets. 753B effectively reduced cell viability and induced dose-dependent degradation of BCL-XL and BCL-2 in a subset of hematopoietic cell lines, acute myeloid leukemia (AML) …


Kunitz-Type Protease Inhibitor Tfpi2 Remodels Stemness And Immunosuppressive Tumor Microenvironment In Glioblastoma, Lizhi Pang, Madeline Dunterman, Songlin Guo, Fatima Khan, Yang Liu, Erfan Taefi, Atousa Bahrami, Changiz Geula, Wen-Hao Hsu, Craig Horbinski, Charles David James, Peiwen Chen Oct 2023

Kunitz-Type Protease Inhibitor Tfpi2 Remodels Stemness And Immunosuppressive Tumor Microenvironment In Glioblastoma, Lizhi Pang, Madeline Dunterman, Songlin Guo, Fatima Khan, Yang Liu, Erfan Taefi, Atousa Bahrami, Changiz Geula, Wen-Hao Hsu, Craig Horbinski, Charles David James, Peiwen Chen

Faculty, Staff and Student Publications

Glioblastoma (GBM) tumors consist of multiple cell populations, including self-renewing glioblastoma stem cells (GSCs) and immunosuppressive microglia. Here we identified Kunitz-type protease inhibitor TFPI2 as a critical factor connecting these cell populations and their associated GBM hallmarks of stemness and immunosuppression. TFPI2 promotes GSC self-renewal and tumor growth via activation of the c-Jun N-terminal kinase-signal transducer and activator of transcription (STAT)3 pathway. Secreted TFPI2 interacts with its functional receptor CD51 on microglia to trigger the infiltration and immunosuppressive polarization of microglia through activation of STAT6 signaling. Inhibition of the TFPI2-CD51-STAT6 signaling axis activates T cells and synergizes with anti-PD1 therapy …


Axl-Initiated Paracrine Activation Of Pstat3 Enhances Mesenchymal And Vasculogenic Supportive Features Of Tumor-Associated Macrophages, Chia-Nung Hung, Meizhen Chen, Daniel T Dearmond, Cheryl H-L Chiu, Catherine A Limboy, Xi Tan, Meena Kusi, Chih-Wei Chou, Li-Ling Lin, Zhao Zhang, Chiou-Miin Wang, Chun-Liang Chen, Kohzoh Mitsuya, Pawel A Osmulski, Maria E Gaczynska, Nameer B Kirma, Ratna K Vadlamudi, Don L Gibbons, Steve Warner, Andrew J Brenner, Daruka Mahadevan, Joel E Michalek, Tim H-M Huang, Josephine A Taverna Sep 2023

Axl-Initiated Paracrine Activation Of Pstat3 Enhances Mesenchymal And Vasculogenic Supportive Features Of Tumor-Associated Macrophages, Chia-Nung Hung, Meizhen Chen, Daniel T Dearmond, Cheryl H-L Chiu, Catherine A Limboy, Xi Tan, Meena Kusi, Chih-Wei Chou, Li-Ling Lin, Zhao Zhang, Chiou-Miin Wang, Chun-Liang Chen, Kohzoh Mitsuya, Pawel A Osmulski, Maria E Gaczynska, Nameer B Kirma, Ratna K Vadlamudi, Don L Gibbons, Steve Warner, Andrew J Brenner, Daruka Mahadevan, Joel E Michalek, Tim H-M Huang, Josephine A Taverna

Faculty, Staff and Student Publications

Tumor-associated macrophages (TAMs) are integral to the development of complex tumor microenvironments (TMEs) and can execute disparate cellular programs in response to extracellular cues. However, upstream signaling processes underpinning this phenotypic plasticity remain to be elucidated. Here, we report that concordant AXL-STAT3 signaling in TAMs is triggered by lung cancer cells or cancer-associated fibroblasts in the cytokine milieu. This paracrine action drives TAM differentiation toward a tumor-promoting "M2-like" phenotype with upregulation of CD163 and putative mesenchymal markers, contributing to TAM heterogeneity and diverse cellular functions. One of the upregulated markers, CD44, mediated by AXL-IL-11-pSTAT3 signaling cascade, enhances macrophage ability to …


Epichaperome Inhibition Targets Tp53-Mutant Aml And Aml Stem/Progenitor Cells, Bing Z Carter, Po Yee Mak, Muharrem Muftuoglu, Wenjing Tao, Baozhen Ke, Jingqi Pei, Andrea D Bedoy, Lauren B Ostermann, Yuki Nishida, Sevinj Isgandarova, Mary Sobieski, Nghi Nguyen, Reid T Powell, Margarita Martinez-Moczygemba, Clifford Stephan, Mahesh Basyal, Naveen Pemmaraju, Steffen Boettcher, Benjamin L Ebert, Elizabeth J Shpall, Barbara Wallner, Robert A Morgan, Georgios I Karras, Ute M Moll, Michael Andreeff Sep 2023

Epichaperome Inhibition Targets Tp53-Mutant Aml And Aml Stem/Progenitor Cells, Bing Z Carter, Po Yee Mak, Muharrem Muftuoglu, Wenjing Tao, Baozhen Ke, Jingqi Pei, Andrea D Bedoy, Lauren B Ostermann, Yuki Nishida, Sevinj Isgandarova, Mary Sobieski, Nghi Nguyen, Reid T Powell, Margarita Martinez-Moczygemba, Clifford Stephan, Mahesh Basyal, Naveen Pemmaraju, Steffen Boettcher, Benjamin L Ebert, Elizabeth J Shpall, Barbara Wallner, Robert A Morgan, Georgios I Karras, Ute M Moll, Michael Andreeff

Faculty, Staff and Student Publications

TP 53-mutant acute myeloid leukemia (AML) remains the ultimate therapeutic challenge. Epichaperomes, formed in malignant cells, consist of heat shock protein 90 (HSP90) and associated proteins that support the maturation, activity, and stability of oncogenic kinases and transcription factors including mutant p53. High-throughput drug screening identified HSP90 inhibitors as top hits in isogenic TP53-wild-type (WT) and -mutant AML cells. We detected epichaperomes in AML cells and stem/progenitor cells with TP53 mutations but not in healthy bone marrow (BM) cells. Hence, we investigated the therapeutic potential of specifically targeting epichaperomes with PU-H71 in TP53-mutant AML based on its preferred binding to …


A Novel Grk3-Hdac2 Regulatory Pathway Is A Key Direct Link Between Neuroendocrine Differentiation And Angiogenesis In Prostate Cancer Progression, Samira Naderinezhad, Guoliang Zhang, Zheng Wang, Dayong Zheng, Mohit Hulsurkar, Michael Bakhoum, Ning Su, Han Yang, Tao Shen, Wenliang Li Sep 2023

A Novel Grk3-Hdac2 Regulatory Pathway Is A Key Direct Link Between Neuroendocrine Differentiation And Angiogenesis In Prostate Cancer Progression, Samira Naderinezhad, Guoliang Zhang, Zheng Wang, Dayong Zheng, Mohit Hulsurkar, Michael Bakhoum, Ning Su, Han Yang, Tao Shen, Wenliang Li

Faculty, Staff and Students Publications

The mechanisms underlying the progression of prostate cancer (PCa) to neuroendocrine prostate cancer (NEPC), an aggressive PCa variant, are largely unclear. Two prominent NEPC phenotypes are elevated NE marker expression and heightened angiogenesis. Identifying the still elusive direct molecular links connecting angiogenesis and neuroendocrine differentiation (NED) is crucial for our understanding and targeting of NEPC. Here we found that histone deacetylase 2 (HDAC2), whose role in NEPC has not been reported, is one of the most upregulated epigenetic regulators in NEPC. HDAC2 promotes both NED and angiogenesis. G protein-coupled receptor kinase 3 (GRK3), also upregulated in NEPC, is a critical …


Archival Single-Cell Genomics Reveals Persistent Subclones During Dcis Progression, Kaile Wang, Tapsi Kumar, Junke Wang, Darlan Conterno Minussi, Emi Sei, Jianzhuo Li, Tuan M Tran, Aatish Thennavan, Min Hu, Anna K Casasent, Zhenna Xiao, Shanshan Bai, Lei Yang, Lorraine M King, Vandna Shah, Petra Kristel, Carolien L Van Der Borden, Jeffrey R Marks, Yuehui Zhao, Amado J Zurita, Ana Aparicio, Brian Chapin, Jie Ye, Jianjun Zhang, Don L Gibbons, Ellinor Sawyer, Alastair M Thompson, Andrew Futreal, E Shelley Hwang, Jelle Wesseling, Esther H Lips, Nicholas E Navin Aug 2023

Archival Single-Cell Genomics Reveals Persistent Subclones During Dcis Progression, Kaile Wang, Tapsi Kumar, Junke Wang, Darlan Conterno Minussi, Emi Sei, Jianzhuo Li, Tuan M Tran, Aatish Thennavan, Min Hu, Anna K Casasent, Zhenna Xiao, Shanshan Bai, Lei Yang, Lorraine M King, Vandna Shah, Petra Kristel, Carolien L Van Der Borden, Jeffrey R Marks, Yuehui Zhao, Amado J Zurita, Ana Aparicio, Brian Chapin, Jie Ye, Jianjun Zhang, Don L Gibbons, Ellinor Sawyer, Alastair M Thompson, Andrew Futreal, E Shelley Hwang, Jelle Wesseling, Esther H Lips, Nicholas E Navin

Faculty, Staff and Student Publications

Ductal carcinoma in situ (DCIS) is a common precursor of invasive breast cancer. Our understanding of its genomic progression to recurrent disease remains poor, partly due to challenges associated with the genomic profiling of formalin-fixed paraffin-embedded (FFPE) materials. Here, we developed Arc-well, a high-throughput single-cell DNA-sequencing method that is compatible with FFPE materials. We validated our method by profiling 40,330 single cells from cell lines, a frozen tissue, and 27 FFPE samples from breast, lung, and prostate tumors stored for 3-31 years. Analysis of 10 patients with matched DCIS and cancers that recurred 2-16 years later show that many primary …


Targeting Bcl2 Overcomes Resistance And Augments Response To Aurora Kinase B Inhibition By Azd2811 In Small Cell Lung Cancer, Kavya Ramkumar, Azusa Tanimoto, Carminia M Della Corte, C Allison Stewart, Qi Wang, Li Shen, Robert J Cardnell, Jing Wang, Urszula M Polanska, Courtney Andersen, Jamal Saeh, J Elizabeth Pease, Jon Travers, Giulia Fabbri, Carl M Gay, Jelena Urosevic, Lauren A Byers Aug 2023

Targeting Bcl2 Overcomes Resistance And Augments Response To Aurora Kinase B Inhibition By Azd2811 In Small Cell Lung Cancer, Kavya Ramkumar, Azusa Tanimoto, Carminia M Della Corte, C Allison Stewart, Qi Wang, Li Shen, Robert J Cardnell, Jing Wang, Urszula M Polanska, Courtney Andersen, Jamal Saeh, J Elizabeth Pease, Jon Travers, Giulia Fabbri, Carl M Gay, Jelena Urosevic, Lauren A Byers

Faculty, Staff and Student Publications

PURPOSE: Therapeutic resistance to frontline therapy develops rapidly in small cell lung cancer (SCLC). Treatment options are also limited by the lack of targetable driver mutations. Therefore, there is an unmet need for developing better therapeutic strategies and biomarkers of response. Aurora kinase B (AURKB) inhibition exploits an inherent genomic vulnerability in SCLC and is a promising therapeutic approach. Here, we identify biomarkers of response and develop rational combinations with AURKB inhibition to improve treatment efficacy.

EXPERIMENTAL DESIGN: Selective AURKB inhibitor AZD2811 was profiled in a large panel of SCLC cell lines (n = 57) and patient-derived xenograft (PDX) models. …


Proteomic Profiling Across Breast Cancer Cell Lines And Models, Marian Kalocsay, Matthew J Berberich, Robert A Everley, Maulik K Nariya, Mirra Chung, Benjamin Gaudio, Chiara Victor, Gary A Bradshaw, Robyn J Eisert, Marc Hafner, Peter K Sorger, Caitlin E Mills, Kartik Subramanian Aug 2023

Proteomic Profiling Across Breast Cancer Cell Lines And Models, Marian Kalocsay, Matthew J Berberich, Robert A Everley, Maulik K Nariya, Mirra Chung, Benjamin Gaudio, Chiara Victor, Gary A Bradshaw, Robyn J Eisert, Marc Hafner, Peter K Sorger, Caitlin E Mills, Kartik Subramanian

Faculty, Staff and Student Publications

We performed quantitative proteomics on 60 human-derived breast cancer cell line models to a depth of ~13,000 proteins. The resulting high-throughput datasets were assessed for quality and reproducibility. We used the datasets to identify and characterize the subtypes of breast cancer and showed that they conform to known transcriptional subtypes, revealing that molecular subtypes are preserved even in under-sampled protein feature sets. All datasets are freely available as public resources on the LINCS portal. We anticipate that these datasets, either in isolation or in combination with complimentary measurements such as genomics, transcriptomics and phosphoproteomics, can be mined for the purpose …


Multiomics Analyses Reveal Dars1-As1/Ybx1-Controlled Posttranscriptional Circuits Promoting Glioblastoma Tumorigenesis/Radioresistance, Caishang Zheng, Yanjun Wei, Qiang Zhang, Ming Sun, Yunfei Wang, Jiakai Hou, Peng Zhang, Xiangdong Lv, Dan Su, Yujie Jiang, Joy Gumin, Nidhi Sahni, Baoli Hu, Wenyi Wang, Xi Chen, Daniel J Mcgrail, Chaolin Zhang, Suyun Huang, Han Xu, Junjie Chen, Frederick F Lang, Jian Hu, Yiwen Chen Aug 2023

Multiomics Analyses Reveal Dars1-As1/Ybx1-Controlled Posttranscriptional Circuits Promoting Glioblastoma Tumorigenesis/Radioresistance, Caishang Zheng, Yanjun Wei, Qiang Zhang, Ming Sun, Yunfei Wang, Jiakai Hou, Peng Zhang, Xiangdong Lv, Dan Su, Yujie Jiang, Joy Gumin, Nidhi Sahni, Baoli Hu, Wenyi Wang, Xi Chen, Daniel J Mcgrail, Chaolin Zhang, Suyun Huang, Han Xu, Junjie Chen, Frederick F Lang, Jian Hu, Yiwen Chen

Faculty, Staff and Student Publications

The glioblastoma (GBM) stem cell-like cells (GSCs) are critical for tumorigenesis/therapeutic resistance of GBM. Mounting evidence supports tumor-promoting function of long noncoding RNAs (lncRNAs), but their role in GSCs remains poorly understood. By combining CRISPRi screen with orthogonal multiomics approaches, we identified a lncRNA DARS1-AS1-controlled posttranscriptional circuitry that promoted the malignant properties of GBM cells/GSCs. Depleting DARS1-AS1 inhibited the proliferation of GBM cells/GSCs and self-renewal of GSCs, prolonging survival in orthotopic GBM models. DARS1-AS1 depletion also impaired the homologous recombination (HR)-mediated double-strand break (DSB) repair and enhanced the radiosensitivity of GBM cells/GSCs. Mechanistically, DARS1-AS1 interacted with YBX1 to promote …


Skp2-Mediated Mlkl Degradation Confers Cisplatin-Resistant In Non-Small Cell Lung Cancer Cells, Huiling Zhou, Li Zhou, Qing Guan, Xuyang Hou, Cong Wang, Lijun Liu, Jian Wang, Xinfang Yu, Wei Li, Haidan Liu Aug 2023

Skp2-Mediated Mlkl Degradation Confers Cisplatin-Resistant In Non-Small Cell Lung Cancer Cells, Huiling Zhou, Li Zhou, Qing Guan, Xuyang Hou, Cong Wang, Lijun Liu, Jian Wang, Xinfang Yu, Wei Li, Haidan Liu

Faculty, Staff and Students Publications

Non-small cell lung cancer (NSCLC) is the most prevalent type of cancer and the leading cause of cancer-related death. Chemotherapeutic resistance is a major obstacle in treating NSCLC patients. Here, we discovered that the E3 ligase Skp2 is overexpressed, accompanied by the downregulation of necroptosis-related regulator MLKL in human NSCLC tissues and cell lines. Knockdown of Skp2 inhibited viability, anchorage-independent growth, and in vivo tumor development of NSCLC cells. We also found that the Skp2 protein is negatively correlated with MLKL in NSCLC tissues. Moreover, Skp2 is increased and accompanied by an upregulation of MLKL ubiquitination and degradation in cisplatin-resistant …


Zeb1 Is Regulated By K811 Acetylation To Promote Stability, Nurd Complex Interactions, Emt, And Nsclc Metastasis, Mabel Perez-Oquendo, Roxsan Manshouri, Yanhua Tian, Jared J Fradette, B Leticia Rodriguez, Samrat T Kundu, Don L Gibbons Aug 2023

Zeb1 Is Regulated By K811 Acetylation To Promote Stability, Nurd Complex Interactions, Emt, And Nsclc Metastasis, Mabel Perez-Oquendo, Roxsan Manshouri, Yanhua Tian, Jared J Fradette, B Leticia Rodriguez, Samrat T Kundu, Don L Gibbons

Faculty, Staff and Student Publications

Epithelial-to-mesenchymal transition results in loss of specialized epithelial cell contacts and acquisition of mesenchymal invasive capacity. The transcription repressor zinc finger E-box-binding homeobox 1 (ZEB1) binds to E-boxes of gene promoter regions to suppress the expression of epithelial genes. ZEB1 has inconsistent molecular weights, which have been attributed to posttranslational modifications (PTM). We performed mass spectrometry and identified K811 acetylation as a novel PTM in ZEB1. To define the role of ZEB1 acetylation in regulating function, we generated ZEB1 acetyl-mimetic (K811Q) and acetyl-deficient (K811R) mutant-expressing non-small cell lung cancer cell lines (NSCLC). We demonstrate that the K811R ZEB1 (125 kDa) …


Vincristine Enhances The Efficacy Of Mek Inhibitors In Preclinical Models Of Kras-Mutant Colorectal Cancer, Susmita Ghosh, Fan Fan, Reid T Powell, Jason Roszik, Yong Sung Park, Clifford Stephan, Manu Sebastian, Lin Tan, Alexey V Sorokin, Philip L Lorenzi, Scott Kopetz, Lee M Ellis, Rajat Bhattacharya Aug 2023

Vincristine Enhances The Efficacy Of Mek Inhibitors In Preclinical Models Of Kras-Mutant Colorectal Cancer, Susmita Ghosh, Fan Fan, Reid T Powell, Jason Roszik, Yong Sung Park, Clifford Stephan, Manu Sebastian, Lin Tan, Alexey V Sorokin, Philip L Lorenzi, Scott Kopetz, Lee M Ellis, Rajat Bhattacharya

Faculty, Staff and Student Publications

Mutations in KRAS are found in more than 50% of tumors from patients with metastatic colorectal cancer (mCRC). However, direct targeting of most KRAS mutations is difficult; even the recently developed KRASG12C inhibitors failed to show significant benefit in patients with mCRC. Single agents targeting mitogen-activated protein kinase kinase (MEK), a downstream mediator of RAS, have also been ineffective in colorectal cancer. To identify drugs that can enhance the efficacy of MEK inhibitors, we performed unbiased high-throughput screening using colorectal cancer spheroids. We used trametinib as the anchor drug and examined combinations of trametinib with the NCI-approved Oncology Library version …


Single-Cell Transcriptomic Analysis Uncovers Intratumoral Heterogeneity And Drug-Tolerant Persister In Alk-Rearranged Lung Adenocarcinoma, Hoi-Hin Kwok, Huiyu Li, Jiashuang Yang, Junyang Deng, Nerissa Chui-Mei Lee, Timmy Wing-Kuk Au, Alva Ko-Yung Sit, Michael Kuan-Yew Hsin, Stephanie Kwai-Yee Ma, Lydia Wai-Ting Cheung, Luc Girard, Junya Fujimoto, Ignacio Ivan Wistuba, Boning Gao, John Dorrance Minna, David Chi-Leung Lam Aug 2023

Single-Cell Transcriptomic Analysis Uncovers Intratumoral Heterogeneity And Drug-Tolerant Persister In Alk-Rearranged Lung Adenocarcinoma, Hoi-Hin Kwok, Huiyu Li, Jiashuang Yang, Junyang Deng, Nerissa Chui-Mei Lee, Timmy Wing-Kuk Au, Alva Ko-Yung Sit, Michael Kuan-Yew Hsin, Stephanie Kwai-Yee Ma, Lydia Wai-Ting Cheung, Luc Girard, Junya Fujimoto, Ignacio Ivan Wistuba, Boning Gao, John Dorrance Minna, David Chi-Leung Lam

Faculty, Staff and Student Publications

No abstract provided.


The Role Of Fas Receptor Methylation In Osteosarcoma Metastasis, Jiayi M Sun, Wing-Yuk Chow, Gufeng Xu, M John Hicks, Manjula Nakka, Jianhe Shen, Patrick Kwok Shing Ng, Aaron M Taylor, Alexander Yu, Jason E Farrar, Donald A Barkauskas, Richard Gorlick, Jaime M Guidry Auvil, Daniela Gerhard, Paul Meltzer, Rudy Guerra, Tsz-Kwong Man, Ching C Lau, On Behalf Of The Target Osteosarcoma Consortium Jul 2023

The Role Of Fas Receptor Methylation In Osteosarcoma Metastasis, Jiayi M Sun, Wing-Yuk Chow, Gufeng Xu, M John Hicks, Manjula Nakka, Jianhe Shen, Patrick Kwok Shing Ng, Aaron M Taylor, Alexander Yu, Jason E Farrar, Donald A Barkauskas, Richard Gorlick, Jaime M Guidry Auvil, Daniela Gerhard, Paul Meltzer, Rudy Guerra, Tsz-Kwong Man, Ching C Lau, On Behalf Of The Target Osteosarcoma Consortium

Faculty, Staff and Students Publications

Osteosarcoma is the most frequent primary malignant bone tumor with an annual incidence of about 400 cases in the United States. Osteosarcoma primarily metastasizes to the lungs, where FAS ligand (FASL) is constitutively expressed. The interaction of FASL and its cell surface receptor, FAS, triggers apoptosis in normal cells; however, this function is altered in cancer cells. DNA methylation has previously been explored as a mechanism for altering FAS expression, but no variability was identified in the CpG island (CGI) overlapping the promoter. Analysis of an expanded region, including CGI shores and shelves, revealed high variability in the methylation of …