Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Medical Sciences (453)
- Medical Specialties (444)
- Life Sciences (438)
- Bioinformatics (434)
- Oncology (424)
-
- Medical Genetics (299)
- Genetic Phenomena (292)
- Biological Phenomena, Cell Phenomena, and Immunity (22)
- Diseases (22)
- Medical Molecular Biology (18)
- Hematology (15)
- Medical Cell Biology (14)
- Hemic and Lymphatic Diseases (12)
- Immunology and Infectious Disease (12)
- Immunotherapy (12)
- Data Science (9)
- Physical Sciences and Mathematics (9)
- Obstetrics and Gynecology (8)
- Public Health (8)
- Gastroenterology (7)
- Women's Health (6)
- Biochemical Phenomena, Metabolism, and Nutrition (5)
- Medical Immunology (5)
- Neoplasms (5)
- Otolaryngology (5)
- Genetics and Genomics (4)
- Neurology (4)
- Internal Medicine (3)
- Publication Year
Articles 391 - 420 of 463
Full-Text Articles in Biomedical Informatics
Prmt3-Mediated Arginine Methylation Of Igf2bp1 Promotes Oxaliplatin Resistance In Liver Cancer, Yunxing Shi, Yi Niu, Yichuan Yuan, Kai Li, Chengrui Zhong, Zhiyu Qiu, Keren Li, Zhu Lin, Zhiwen Yang, Dinglan Zuo, Jiliang Qiu, Wei He, Chenwei Wang, Yadi Liao, Guocan Wang, Yunfei Yuan, Binkui Li
Prmt3-Mediated Arginine Methylation Of Igf2bp1 Promotes Oxaliplatin Resistance In Liver Cancer, Yunxing Shi, Yi Niu, Yichuan Yuan, Kai Li, Chengrui Zhong, Zhiyu Qiu, Keren Li, Zhu Lin, Zhiwen Yang, Dinglan Zuo, Jiliang Qiu, Wei He, Chenwei Wang, Yadi Liao, Guocan Wang, Yunfei Yuan, Binkui Li
Faculty, Staff and Student Publications
Although oxaliplatin-based chemotherapy has been effective in the treatment of hepatocellular carcinoma (HCC), primary or acquired resistance to oxaliplatin remains a major challenge in the clinic. Through functional screening using CRISPR/Cas9 activation library, transcriptomic profiling of clinical samples, and functional validation in vitro and in vivo, we identify PRMT3 as a key driver of oxaliplatin resistance. Mechanistically, PRMT3-mediated oxaliplatin-resistance is in part dependent on the methylation of IGF2BP1 at R452, which is critical for the function of IGF2BP1 in stabilizing the mRNA of HEG1, an effector of PRMT3-IGF2BP1 axis. Also, PRMT3 overexpression may serve as a biomarker for oxaliplatin resistance …
Il6 Mediates Suppression Of T- And Nk-Cell Function In Emt-Associated Tki-Resistant Egfr-Mutant Nsclc, Sonia A Patel, Monique B Nilsson, Yan Yang, Xiuning Le, Hai T Tran, Yasir Y Elamin, Xiaoxing Yu, Fahao Zhang, Alissa Poteete, Xiaoyang Ren, Li Shen, Jing Wang, Seyed Javad Moghaddam, Tina Cascone, Michael Curran, Don L Gibbons, John V Heymach
Il6 Mediates Suppression Of T- And Nk-Cell Function In Emt-Associated Tki-Resistant Egfr-Mutant Nsclc, Sonia A Patel, Monique B Nilsson, Yan Yang, Xiuning Le, Hai T Tran, Yasir Y Elamin, Xiaoxing Yu, Fahao Zhang, Alissa Poteete, Xiaoyang Ren, Li Shen, Jing Wang, Seyed Javad Moghaddam, Tina Cascone, Michael Curran, Don L Gibbons, John V Heymach
Faculty, Staff and Student Publications
Purpose: Patients with advanced non-small cell lung cancer (NSCLC) harboring activating EGFR mutations are initially responsive to tyrosine kinase inhibitors (TKI). However, therapeutic resistance eventually emerges, often via secondary EGFR mutations or EGFR-independent mechanisms such as epithelial-to-mesenchymal transition. Treatment options after EGFR-TKI resistance are limited as anti-PD-1/PD-L1 inhibitors typically display minimal benefit. Given that IL6 is associated with worse outcomes in patients with NSCLC, we investigate whether IL6 in part contributes to this immunosuppressed phenotype.
Experimental design: We utilized a syngeneic genetically engineered mouse model (GEMM) of EGFR-mutant NSCLC to investigate the effects of IL6 on the tumor microenvironment and …
Dysregulation And Epigenetic Reprogramming Of Nrf2 Signaling Axis Promote Acquisition Of Cisplatin Resistance And Metastasis In Head And Neck Squamous Cell Carcinoma, Abdullah A Osman, Emre Arslan, Mason Bartels, Chieko Michikawa, Antje Lindemann, Katarzyna Tomczak, Wangjie Yu, Vlad Sandulache, Wencai Ma, Li Shen, Jing Wang, Anand K Singh, Mitchell J Frederick, Nakia D Spencer, Jeffery Kovacs, Timothy Heffernan, William F Symmans, Kunal Rai, Jeffrey N Myers
Dysregulation And Epigenetic Reprogramming Of Nrf2 Signaling Axis Promote Acquisition Of Cisplatin Resistance And Metastasis In Head And Neck Squamous Cell Carcinoma, Abdullah A Osman, Emre Arslan, Mason Bartels, Chieko Michikawa, Antje Lindemann, Katarzyna Tomczak, Wangjie Yu, Vlad Sandulache, Wencai Ma, Li Shen, Jing Wang, Anand K Singh, Mitchell J Frederick, Nakia D Spencer, Jeffery Kovacs, Timothy Heffernan, William F Symmans, Kunal Rai, Jeffrey N Myers
Faculty, Staff and Student Publications
PURPOSE: Cisplatin (CDDP)-based chemotherapy is a first-line treatment for patients with advanced head and neck squamous cell carcinomas (HNSCC), despite a high rate of treatment failures, acquired resistance, and subsequent aggressive behavior. The purpose of this study was to study the mechanism of CDDP resistance and metastasis in HNSCC. We investigated the role of NRF2 pathway activation as a driven event for tumor progression and metastasis of HNSCC.
EXPERIMENTAL DESIGN: Human HNSCC cell lines that are highly resistant to CDDP were generated. Clonogenic survival assays and a mouse model of oral cancer were used to examine the impact of NRF2 …
How Erastin Assassinates Cells By Ferroptosis Revealed, Boyi Gan
How Erastin Assassinates Cells By Ferroptosis Revealed, Boyi Gan
Faculty, Staff and Student Publications
No abstract provided.
Mitochondrial Structure And Function Adaptation In Residual Triple Negative Breast Cancer Cells Surviving Chemotherapy Treatment, Mokryun L Baek, Junegoo Lee, Katherine E Pendleton, Mariah J Berner, Emily B Goff, Lin Tan, Sara A Martinez, Iqbal Mahmud, Tao Wang, Matthew D Meyer, Bora Lim, James P Barrish, Weston Porter, Philip L Lorenzi, Gloria V Echeverria
Mitochondrial Structure And Function Adaptation In Residual Triple Negative Breast Cancer Cells Surviving Chemotherapy Treatment, Mokryun L Baek, Junegoo Lee, Katherine E Pendleton, Mariah J Berner, Emily B Goff, Lin Tan, Sara A Martinez, Iqbal Mahmud, Tao Wang, Matthew D Meyer, Bora Lim, James P Barrish, Weston Porter, Philip L Lorenzi, Gloria V Echeverria
Faculty, Staff and Student Publications
Neoadjuvant chemotherapy (NACT) used for triple negative breast cancer (TNBC) eradicates tumors in ~45% of patients. Unfortunately, TNBC patients with substantial residual cancer burden have poor metastasis free and overall survival rates. We previously demonstrated mitochondrial oxidative phosphorylation (OXPHOS) was elevated and was a unique therapeutic dependency of residual TNBC cells surviving NACT. We sought to investigate the mechanism underlying this enhanced reliance on mitochondrial metabolism. Mitochondria are morphologically plastic organelles that cycle between fission and fusion to maintain mitochondrial integrity and metabolic homeostasis. The functional impact of mitochondrial structure on metabolic output is highly context dependent. Several chemotherapy agents …
Deep Learning-Based Pathology Image Analysis Predicts Cancer Progression Risk In Patients With Oral Leukoplakia, Xinyi Zhang, Frederico O Gleber-Netto, Shidan Wang, Roberta Rayra Martins-Chaves, Ricardo Santiago Gomez, Nadarajah Vigneswaran, Arunangshu Sarkar, William N William, Vassiliki Papadimitrakopoulou, Michelle Williams, Diana Bell, Doreen Palsgrove, Justin Bishop, John V Heymach, Ann M Gillenwater, Jeffrey N Myers, Renata Ferrarotto, Scott M Lippman, Curtis Rg Pickering, Guanghua Xiao
Deep Learning-Based Pathology Image Analysis Predicts Cancer Progression Risk In Patients With Oral Leukoplakia, Xinyi Zhang, Frederico O Gleber-Netto, Shidan Wang, Roberta Rayra Martins-Chaves, Ricardo Santiago Gomez, Nadarajah Vigneswaran, Arunangshu Sarkar, William N William, Vassiliki Papadimitrakopoulou, Michelle Williams, Diana Bell, Doreen Palsgrove, Justin Bishop, John V Heymach, Ann M Gillenwater, Jeffrey N Myers, Renata Ferrarotto, Scott M Lippman, Curtis Rg Pickering, Guanghua Xiao
Faculty, Staff and Student Publications
BACKGROUND: Oral leukoplakia (OL) is associated with an increased risk for oral cancer (OC) development. Prediction of OL cancer progression may contribute to decreased OC morbidity and mortality by favoring early intervention. Current OL progression risk assessment approaches face large interobserver variability and is weakly prognostic. We hypothesized that convolutional neural networks (CNN)-based histology image analyses could accelerate the discovery of better OC progression risk models.
METHODS: Our CNN-based oral mucosa risk stratification model (OMRS) was trained to classify a set of nondysplastic oral mucosa (OM) and a set of OC H&E slides. As a result, the OMRS model could …
Recovering False Negatives In Crispr Fitness Screens With Jloe, Merve Dede, Traver Hart
Recovering False Negatives In Crispr Fitness Screens With Jloe, Merve Dede, Traver Hart
Faculty, Staff and Student Publications
It is widely accepted that pooled library CRISPR knockout screens offer greater sensitivity and specificity than prior technologies in detecting genes whose disruption leads to fitness defects, a critical step in identifying candidate cancer targets. However, the assumption that CRISPR screens are saturating has been largely untested. Through integrated analysis of screen data in cancer cell lines generated by the Cancer Dependency Map, we show that a typical CRISPR screen has a ∼20% false negative rate, in addition to library-specific false negatives. Replicability falls sharply as gene expression decreases, while cancer subtype-specific genes within a tissue show distinct profiles compared …
Combination Of Epha2- And Wee1-Targeted Therapies In Endometrial Cancer, Santosh K Dasari, Robiya Joseph, Sujanitha Umamaheswaran, Lingegowda S Mangala, Emine Bayraktar, Cristian Rodriguez-Aguayo, Yutuan Wu, Nghi Nguyen, Reid T Powell, Mary Sobieski, Yuan Liu, Mamur A Chowdhury, Paola Amero, Clifford Stephan, Gabriel Lopez-Berestein, Shannon N Westin, Anil K Sood
Combination Of Epha2- And Wee1-Targeted Therapies In Endometrial Cancer, Santosh K Dasari, Robiya Joseph, Sujanitha Umamaheswaran, Lingegowda S Mangala, Emine Bayraktar, Cristian Rodriguez-Aguayo, Yutuan Wu, Nghi Nguyen, Reid T Powell, Mary Sobieski, Yuan Liu, Mamur A Chowdhury, Paola Amero, Clifford Stephan, Gabriel Lopez-Berestein, Shannon N Westin, Anil K Sood
Faculty, Staff and Student Publications
EphA2 tyrosine kinase is upregulated in many cancers and correlated with poor survival of patients, including those with endometrial cancer. EphA2-targeted drugs have shown modest clinical benefit. To improve the therapeutic response to such drugs, we performed a high-throughput chemical screen to discover novel synergistic partners for EphA2-targeted therapeutics. Our screen identified the Wee1 kinase inhibitor, MK1775, as a synergistic partner to EphA2, and this finding was confirmed using both in vitro and in vivo experiments. We hypothesized that Wee1 inhibition would sensitize cells to EphA2-targeted therapy. Combination treatment decreased cell viability, induced apoptosis, and reduced clonogenic potential in endometrial …
Cd70 Is A Therapeutic Target Upregulated In Emt-Associated Egfr Tyrosine Kinase Inhibitor Resistance, Monique B Nilsson, Yan Yang, Simon Heeke, Sonia A Patel, Alissa Poteete, Hibiki Udagawa, Yasir Y Elamin, Cesar A Moran, Yukie Kashima, Thiruvengadam Arumugam, Xiaoxing Yu, Xiaoyang Ren, Lixia Diao, Li Shen, Qi Wang, Minying Zhang, Jacqulyne P Robichaux, Chunhua Shi, Allyson N Pfeil, Hai Tran, Don L Gibbons, Jason Bock, Jing Wang, John D Minna, Susumu S Kobayashi, Xiuning Le, John V Heymach
Cd70 Is A Therapeutic Target Upregulated In Emt-Associated Egfr Tyrosine Kinase Inhibitor Resistance, Monique B Nilsson, Yan Yang, Simon Heeke, Sonia A Patel, Alissa Poteete, Hibiki Udagawa, Yasir Y Elamin, Cesar A Moran, Yukie Kashima, Thiruvengadam Arumugam, Xiaoxing Yu, Xiaoyang Ren, Lixia Diao, Li Shen, Qi Wang, Minying Zhang, Jacqulyne P Robichaux, Chunhua Shi, Allyson N Pfeil, Hai Tran, Don L Gibbons, Jason Bock, Jing Wang, John D Minna, Susumu S Kobayashi, Xiuning Le, John V Heymach
Faculty, Staff and Student Publications
Effective therapeutic strategies are needed for non-small cell lung cancer (NSCLC) patients with epidermal growth factor receptor (EGFR) mutations that acquire resistance to EGFR tyrosine kinase inhibitors (TKIs) mediated by epithelial-to-mesenchymal transition (EMT). We investigate cell surface proteins that could be targeted by antibody-based or adoptive cell therapy approaches and identify CD70 as being highly upregulated in EMT-associated resistance. Moreover, CD70 upregulation is an early event in the evolution of resistance and occurs in drug-tolerant persister cells (DTPCs). CD70 promotes cell survival and invasiveness, and stimulation of CD70 triggers signal transduction pathways known to be re-activated with acquired TKI resistance. …
Tumor-Associated Nonmyelinating Schwann Cell-Expressed Nuclear Export Signal Mutation Of Epidermal Growth Factor Receptor Enhances Malignant Phenotypes Of Cancer Cells, Chengcao Sun, Youqiong Ye, Zhi Tan, Yuan Liu, Yajuan Li, Wei Hu, Ke Liang, Sergey D Egranov, Lisa Angela Huang, Zhao Zhang, Yaohua Zhang, Jun Yao, Tina K Nguyen, Zilong Zhao, Andrew Wu, Jeffrey R Marks, Abigail S Caudle, Aysegul A Sahin, Jianjun Gao, Seth T Gammon, David Piwnica-Worms, Jian Hu, Paul J Chiao, Dihua Yu, Mien-Chie Hung, Michael A Curran, George A Calin, Haoqiang Ying, Leng Han, Chunru Lin, Liuqing Yang
Tumor-Associated Nonmyelinating Schwann Cell-Expressed Nuclear Export Signal Mutation Of Epidermal Growth Factor Receptor Enhances Malignant Phenotypes Of Cancer Cells, Chengcao Sun, Youqiong Ye, Zhi Tan, Yuan Liu, Yajuan Li, Wei Hu, Ke Liang, Sergey D Egranov, Lisa Angela Huang, Zhao Zhang, Yaohua Zhang, Jun Yao, Tina K Nguyen, Zilong Zhao, Andrew Wu, Jeffrey R Marks, Abigail S Caudle, Aysegul A Sahin, Jianjun Gao, Seth T Gammon, David Piwnica-Worms, Jian Hu, Paul J Chiao, Dihua Yu, Mien-Chie Hung, Michael A Curran, George A Calin, Haoqiang Ying, Leng Han, Chunru Lin, Liuqing Yang
Faculty, Staff and Student Publications
One of the major obstacles to treating pancreatic ductal adenocarcinoma (PDAC) is its immunoresistant microenvironment. The functional importance and molecular mechanisms of Schwann cells in PDAC remains largely elusive. We characterized the gene signature of tumor-associated nonmyelinating Schwann cells (TASc) in PDAC and indicated that the abundance of TASc was correlated with immune suppressive tumor microenvironment and the unfavorable outcome of patients with PDAC. Depletion of pancreatic-specific TASc promoted the tumorigenesis of PDAC tumors. TASc-expressed long noncoding RNA (lncRNA) plasmacytoma variant translocation 1 (
Structural Basis For Transcription Factor Zbtb7a Recognition Of Dna And Effects Of Zbtb7a Somatic Mutations That Occur In Human Acute Myeloid Leukemia, Ren Ren, John R Horton, Qin Chen, Jie Yang, Bin Liu, Yun Huang, Robert M Blumenthal, Xing Zhang, Xiaodong Cheng
Structural Basis For Transcription Factor Zbtb7a Recognition Of Dna And Effects Of Zbtb7a Somatic Mutations That Occur In Human Acute Myeloid Leukemia, Ren Ren, John R Horton, Qin Chen, Jie Yang, Bin Liu, Yun Huang, Robert M Blumenthal, Xing Zhang, Xiaodong Cheng
Faculty, Staff and Student Publications
ZBTB7A belongs to a small family of transcription factors having three members in humans (7A, 7B, and 7C). They share a BTB/POZ protein interaction domain at the amino end and a zinc-finger DNA-binding domain at the carboxyl end. They control the transcription of a wide range of genes, having varied functions in hematopoiesis, oncogenesis, and metabolism (in particular glycolysis). ZBTB7A-binding profiles at gene promoters contain a consensus G(a/c)CCC motif, followed by a CCCC sequence in some instances. Structural and mutational investigations suggest that DNA-specific contacts with the four-finger tandem array of ZBTB7A are formed sequentially, initiated from ZF1-ZF2 binding to …
Cotargeting Of Btk And Malt1 Overcomes Resistance To Btk Inhibitors In Mantle Cell Lymphoma, Vivian Changying Jiang, Yang Liu, Junwei Lian, Shengjian Huang, Alexa Jordan, Qingsong Cai, Ruitao Lin, Fangfang Yan, Joseph Mcintosh, Yijing Li, Yuxuan Che, Zhihong Chen, Jovanny Vargas, Maria Badillo, John Nelson Bigcal, Heng-Huan Lee, Wei Wang, Yixin Yao, Lei Nie, Christopher R Flowers, Michael Wang
Cotargeting Of Btk And Malt1 Overcomes Resistance To Btk Inhibitors In Mantle Cell Lymphoma, Vivian Changying Jiang, Yang Liu, Junwei Lian, Shengjian Huang, Alexa Jordan, Qingsong Cai, Ruitao Lin, Fangfang Yan, Joseph Mcintosh, Yijing Li, Yuxuan Che, Zhihong Chen, Jovanny Vargas, Maria Badillo, John Nelson Bigcal, Heng-Huan Lee, Wei Wang, Yixin Yao, Lei Nie, Christopher R Flowers, Michael Wang
Faculty, Staff and Student Publications
Bruton's tyrosine kinase (BTK) is a proven target in mantle cell lymphoma (MCL), an aggressive subtype of non-Hodgkin lymphoma. However, resistance to BTK inhibitors is a major clinical challenge. We here report that MALT1 is one of the top overexpressed genes in ibrutinib-resistant MCL cells, while expression of CARD11, which is upstream of MALT1, is decreased. MALT1 genetic knockout or inhibition produced dramatic defects in MCL cell growth regardless of ibrutinib sensitivity. Conversely, CARD11-knockout cells showed antitumor effects only in ibrutinib-sensitive cells, suggesting that MALT1 overexpression could drive ibrutinib resistance via bypassing BTK/CARD11 signaling. Additionally, BTK knockdown and MALT1 knockout …
Malignant Transformation By Oncogenic K-Ras Requires Idh2-Mediated Reductive Carboxylation To Promote Glutamine Utilization, Rui Liu, Panpan Liu, Huichang Bi, Jianhua Ling, Huiqin Zhang, Mingquan Zhang, Yumin Hu, Paul J Chiao, Peng Huang, Jinyun Liu
Malignant Transformation By Oncogenic K-Ras Requires Idh2-Mediated Reductive Carboxylation To Promote Glutamine Utilization, Rui Liu, Panpan Liu, Huichang Bi, Jianhua Ling, Huiqin Zhang, Mingquan Zhang, Yumin Hu, Paul J Chiao, Peng Huang, Jinyun Liu
Faculty, Staff and Student Publications
No abstract provided.
Cbx5 Loss Drives Egfr Inhibitor Resistance And Results In Therapeutically Actionable Vulnerabilities In Lung Cancer, Suresh Bugide, Yvonne J K Edwards, Romi Gupta, Michael R Green, Narendra Wajapeyee
Cbx5 Loss Drives Egfr Inhibitor Resistance And Results In Therapeutically Actionable Vulnerabilities In Lung Cancer, Suresh Bugide, Yvonne J K Edwards, Romi Gupta, Michael R Green, Narendra Wajapeyee
Faculty, Staff and Student Publications
Although epidermal growth factor receptor (EGFR) tyrosine kinase inhibitors (EGFRi) are approved for treating EGFR-mutant lung adenocarcinoma (LUAD), emergence of acquired resistance limits their clinical benefits. Several mechanisms for acquired resistance to EGFRi in LUAD have been identified; however, the molecular basis for this resistance remains unknown in ~30% of LUAD. Chromatin and DNA modifiers and their regulators play important roles in determining response to anticancer therapies. Therefore, to identify nongenetic mechanisms of EGFRi resistance in LUAD, we performed an epigenome-wide shRNA screen targeting 363 human epigenetic regulator genes. This screen identified loss of the transcriptional repressor chromobox homolog 5 …
Ccsynergy: An Integrative Deep-Learning Framework Enabling Context-Aware Prediction Of Anti-Cancer Drug Synergy, Sayed-Rzgar Hosseini, Xiaobo Zhou
Ccsynergy: An Integrative Deep-Learning Framework Enabling Context-Aware Prediction Of Anti-Cancer Drug Synergy, Sayed-Rzgar Hosseini, Xiaobo Zhou
Faculty, Staff and Student Publications
Combination therapy is a promising strategy for confronting the complexity of cancer. However, experimental exploration of the vast space of potential drug combinations is costly and unfeasible. Therefore, computational methods for predicting drug synergy are much needed for narrowing down this space, especially when examining new cellular contexts. Here, we thus introduce CCSynergy, a flexible, context aware and integrative deep-learning framework that we have established to unleash the potential of the Chemical Checker extended drug bioactivity profiles for the purpose of drug synergy prediction. We have shown that CCSynergy enables predictions of superior accuracy, remarkable robustness and improved context generalizability …
Mechanisms Of Mcl-1 Protein Stability Induced By Mcl-1 Antagonists In B-Cell Malignancies, Shady I Tantawy, Aloke Sarkar, Stefan Hubner, Zhi Tan, William G Wierda, Abdelraouf Eldeib, Shuxing Zhang, Steven Kornblau, Varsha Gandhi
Mechanisms Of Mcl-1 Protein Stability Induced By Mcl-1 Antagonists In B-Cell Malignancies, Shady I Tantawy, Aloke Sarkar, Stefan Hubner, Zhi Tan, William G Wierda, Abdelraouf Eldeib, Shuxing Zhang, Steven Kornblau, Varsha Gandhi
Faculty, Staff and Student Publications
PURPOSE: Several MCL-1 inhibitors (MCL-1i), including AMG-176 and AZD5991, have shown promise in preclinical studies and are being tested for the treatment of hematologic malignancies. A unique feature of these agents is induction and stability of Mcl-1 protein; however, the precise mechanism is unknown. We aim to study the mechanism of MCL-1i-induced Mcl-1 protein stability.
EXPERIMENTAL DESIGN: Using several B-cell leukemia and lymphoma cell lines and primary chronic lymphocytic leukemia (CLL) lymphocytes, we evaluated molecular events associated with Mcl-1 protein stability including protein half-life, reverse-phase protein array, protein-protein interaction, phosphorylation, ubiquitination, and de-ubiquitination, followed by molecular simulation and modeling.
RESULTS: …
A Molecular Switch Between Mammalian Mll Complexes Dictates Response To Menin-Mll Inhibition, Yadira M Soto-Feliciano, Francisco J Sánchez-Rivera, Florian Perner, Douglas W Barrows, Edward R Kastenhuber, Yu-Jui Ho, Thomas Carroll, Yijun Xiong, Disha Anand, Alexey A Soshnev, Leah Gates, Mary Clare Beytagh, David Cheon, Shengqing Gu, X Shirley Liu, Andrei V Krivtsov, Maximiliano Meneses, Elisa De Stanchina, Richard M Stone, Scott A Armstrong, Scott W Lowe, C David Allis
A Molecular Switch Between Mammalian Mll Complexes Dictates Response To Menin-Mll Inhibition, Yadira M Soto-Feliciano, Francisco J Sánchez-Rivera, Florian Perner, Douglas W Barrows, Edward R Kastenhuber, Yu-Jui Ho, Thomas Carroll, Yijun Xiong, Disha Anand, Alexey A Soshnev, Leah Gates, Mary Clare Beytagh, David Cheon, Shengqing Gu, X Shirley Liu, Andrei V Krivtsov, Maximiliano Meneses, Elisa De Stanchina, Richard M Stone, Scott A Armstrong, Scott W Lowe, C David Allis
Faculty, Staff and Student Publications
Menin interacts with oncogenic MLL1-fusion proteins, and small molecules that disrupt these associations are in clinical trials for leukemia treatment. By integrating chromatin-focused and genome-wide CRISPR screens with genetic, pharmacologic, and biochemical approaches, we discovered a conserved molecular switch between the MLL1-Menin and MLL3/4-UTX chromatin-modifying complexes that dictates response to Menin-MLL inhibitors. MLL1-Menin safeguards leukemia survival by impeding the binding of the MLL3/4-UTX complex at a subset of target gene promoters. Disrupting the Menin-MLL1 interaction triggers UTX-dependent transcriptional activation of a tumor-suppressive program that dictates therapeutic responses in murine and human leukemia. Therapeutic reactivation of this program using CDK4/6 inhibitors …
Inhibiting Androgen Receptor Splice Variants With Cysteine-Selective Irreversible Covalent Inhibitors To Treat Prostate Cancer, Thirumagal Thiyagarajan, Suriyan Ponnusamy, Dong-Jin Hwang, Yali He, Sarah Asemota, Kirsten L Young, Daniel L Johnson, Vera Bocharova, Weidong Zhou, Abhinav K Jain, Emanuel F Petricoin, Zheng Yin, Lawrence M Pfeffer, Duane D Miller, Ramesh Narayanan
Inhibiting Androgen Receptor Splice Variants With Cysteine-Selective Irreversible Covalent Inhibitors To Treat Prostate Cancer, Thirumagal Thiyagarajan, Suriyan Ponnusamy, Dong-Jin Hwang, Yali He, Sarah Asemota, Kirsten L Young, Daniel L Johnson, Vera Bocharova, Weidong Zhou, Abhinav K Jain, Emanuel F Petricoin, Zheng Yin, Lawrence M Pfeffer, Duane D Miller, Ramesh Narayanan
Faculty, Staff and Student Publications
Androgen receptor (AR) and its splice variants (AR-SVs) promote prostate cancer (PCa) growth by orchestrating transcriptional reprogramming. Mechanisms by which the low complexity and intrinsically disordered primary transactivation domain (AF-1) of AR and AR-SVs regulate transcriptional programming in PCa remains poorly defined. Using omics, live and fixed fluorescent microscopy of cells, and purified AF-1 and AR-V7 recombinant proteins we show here that AF-1 and the AR-V7 splice variant form molecular condensates by liquid-liquid phase separation (LLPS) that exhibit disorder characteristics such as rapid intracellular mobility, coactivator interaction, and euchromatin induction. The LLPS and other disorder characteristics were reversed by a …
Subtype And Site Specific-Induced Metabolic Vulnerabilities In Prostate Cancer, Federica Mossa, Daniele Robesti, Ramachandran Sumankalai, Eva Corey, Mark Titus, Yuqi Kang, Jianhua Zhang, Alberto Briganti, Francesco Montorsi, Christopher P Vellano, Joseph R Marszalek, Daniel E Frigo, Christopher J Logothetis, Taranjit S Gujral, Eleonora Dondossola
Subtype And Site Specific-Induced Metabolic Vulnerabilities In Prostate Cancer, Federica Mossa, Daniele Robesti, Ramachandran Sumankalai, Eva Corey, Mark Titus, Yuqi Kang, Jianhua Zhang, Alberto Briganti, Francesco Montorsi, Christopher P Vellano, Joseph R Marszalek, Daniel E Frigo, Christopher J Logothetis, Taranjit S Gujral, Eleonora Dondossola
Faculty, Staff and Student Publications
Aberrant metabolic functions play a crucial role in prostate cancer progression and lethality. Currently, limited knowledge is available on subtype-specific metabolic features and their implications for treatment. We therefore investigated the metabolic determinants of the two major subtypes of castration-resistant prostate cancer [androgen receptor-expressing prostate cancer (ARPC) and aggressive variant prostate cancer (AVPC)]. Transcriptomic analyses revealed enrichment of gene sets involved in oxidative phosphorylation (OXPHOS) in ARPC tumor samples compared with AVPC. Unbiased screening of metabolic signaling pathways in patient-derived xenograft models by proteomic analyses further supported an enrichment of OXPHOS in ARPC compared with AVPC, and a skewing toward …
Ribonuclease 1 Enhances Antitumor Immunity Against Breast Cancer By Boosting T Cell Activation, Ying-Nai Wang, Heng-Huan Lee, Zhou Jiang, Li-Chuan Chan, Gabriel N Hortobagyi, Dihua Yu, Mien-Chie Hung
Ribonuclease 1 Enhances Antitumor Immunity Against Breast Cancer By Boosting T Cell Activation, Ying-Nai Wang, Heng-Huan Lee, Zhou Jiang, Li-Chuan Chan, Gabriel N Hortobagyi, Dihua Yu, Mien-Chie Hung
Faculty, Staff and Student Publications
The secretory enzyme human ribonuclease 1 (RNase1) is involved in innate immunity and anti-inflammation, achieving host defense and anti-cancer effects; however, whether RNase1 contributes to adaptive immune response in the tumor microenvironment (TME) remains unclear. Here, we established a syngeneic immunocompetent mouse model in breast cancer and demonstrated that ectopic RNase1 expression significantly inhibited tumor progression. Overall changes in immunological profiles in the mouse tumors were analyzed by mass cytometry and showed that the RNase1-expressing tumor cells significantly induced CD4+ Th1 and Th17 cells and natural killer cells and reduced granulocytic myeloid-derived suppressor cells, supporting that RNase1 favors an antitumor …
Combining Mek And Src Inhibitors For Treatment Of Colorectal Cancer Demonstrate Increased Efficacy In Vitro But Not In Vivo, Fan Fan, Susmita Ghosh, Reid Powell, Jason Roszik, Yongsun Park, Mary Sobieski, Alexey Sorokin, Clifford Stephan, Scott Kopetz, Lee M Ellis, Rajat Bhattacharya
Combining Mek And Src Inhibitors For Treatment Of Colorectal Cancer Demonstrate Increased Efficacy In Vitro But Not In Vivo, Fan Fan, Susmita Ghosh, Reid Powell, Jason Roszik, Yongsun Park, Mary Sobieski, Alexey Sorokin, Clifford Stephan, Scott Kopetz, Lee M Ellis, Rajat Bhattacharya
Faculty, Staff and Student Publications
Metastatic colorectal cancer (mCRC) is the second leading cause of cancer deaths in the United States. More than 50% of patients with mCRC harbor mutations of the oncogenic driver RAS (KRAS or NRAS). Because directly targeting most mutations of RAS is technically challenging, researchers have concentrated on targeting MEK, a downstream mediator of RAS. However, targeting MEK as single-agent therapy is ineffective in patients with mCRC. We hypothesize that combining a MEK inhibitor with other agents can enhance the efficacy of MEK targeting in mCRC. Unbiased high-throughput screening (HTS) was performed to identify drugs that enhance the efficacy of MEK …
Il-8 Produced Via Bidirectional Communication Between Prostate Cancer And M2 Macrophages As A Potential Diagnostic And Prognostic Biomarker, Huihui Fan, Zheng Tang, Yaling Tian, Qingsong Lv, Fangyin Zeng
Il-8 Produced Via Bidirectional Communication Between Prostate Cancer And M2 Macrophages As A Potential Diagnostic And Prognostic Biomarker, Huihui Fan, Zheng Tang, Yaling Tian, Qingsong Lv, Fangyin Zeng
Faculty, Staff and Student Publications
PURPOSE: Owing to the mortality associated with metastatic prostate cancer and the shortcomings of the current parameters in predicting the disease prognosis, we require the identification of viable biomarkers, which would help in the diagnosis and prognosis of the disease. We aimed to determine whether the interleukin-8 level in the tumor microenvironment could serve as a potential clinical diagnostic marker and prognostic factor for prostate cancer.
METHODS: The migration assay of prostate cancer cells was performed in an in vitro co-culture model. Cell lines PC3 and DU145 were divided into two groups and co-cultured with M0 and M2 macrophages, respectively. …
Egfr-Phosphorylated Gdh1 Harmonizes With Rsk2 To Drive Creb Activation And Tumor Metastasis In Egfr-Activated Lung Cancer, Jihoon Kang, Jaemoo Chun, Jung Seok Hwang, Chaoyun Pan, Jie Li, Austin C Boese, Isabelle Young, Courteney M Malin, Yibin Kang, Don L Gibbons, Gabriel Sica, Haian Fu, Suresh S Ramalingam, Lingtao Jin, Sumin Kang
Egfr-Phosphorylated Gdh1 Harmonizes With Rsk2 To Drive Creb Activation And Tumor Metastasis In Egfr-Activated Lung Cancer, Jihoon Kang, Jaemoo Chun, Jung Seok Hwang, Chaoyun Pan, Jie Li, Austin C Boese, Isabelle Young, Courteney M Malin, Yibin Kang, Don L Gibbons, Gabriel Sica, Haian Fu, Suresh S Ramalingam, Lingtao Jin, Sumin Kang
Faculty, Staff and Student Publications
The cancer metastasis process involves dysregulated oncogenic kinase signaling, but how this orchestrates metabolic networks and signal cascades to promote metastasis is largely unclear. Here we report that inhibition of glutamate dehydrogenase 1 (GDH1) and ribosomal S6 kinase 2 (RSK2) synergistically attenuates cell invasion, anoikis resistance, and immune escape in lung cancer and more evidently in tumors harboring epidermal growth factor receptor (EGFR)-activating or EGFR inhibitor-resistant mutations. Mechanistically, GDH1 is activated by EGFR through phosphorylation at tyrosine 135 and, together with RSK2, enhances the cAMP response element-binding protein (CREB) activity via CaMKIV signaling, thereby promoting metastasis. Co-targeting RSK2 and GDH1 …
Sustained Aurora Kinase B Expression Confers Resistance To Pi3k Inhibition In Head And Neck Squamous Cell Carcinoma, Pooja A Shah, Vaishnavi Sambandam, Anne M Fernandez, Hongyun Zhao, Tuhina Mazumdar, Li Shen, Qi Wang, Kazi M Ahmed, Soma Ghosh, Mitchell J Frederick, Jing Wang, Faye M Johnson
Sustained Aurora Kinase B Expression Confers Resistance To Pi3k Inhibition In Head And Neck Squamous Cell Carcinoma, Pooja A Shah, Vaishnavi Sambandam, Anne M Fernandez, Hongyun Zhao, Tuhina Mazumdar, Li Shen, Qi Wang, Kazi M Ahmed, Soma Ghosh, Mitchell J Frederick, Jing Wang, Faye M Johnson
Faculty, Staff and Student Publications
UNLABELLED: Tumor suppressor mutations in head and neck squamous cell carcinoma (HNSCC) dominate the genomic landscape, hindering the development of effective targeted therapies. Truncating and missense mutations in NOTCH1 are frequent in HNSCC, and inhibition of PI3K can selectively target NOTCH1 mutant (NOTCH1MUT) HNSCC cells. In this study, we identify several proteins that are differentially regulated in HNSCC cells after PI3K inhibition based on NOTCH1MUT status. Expression of Aurora kinase B (Aurora B), AKT, and PDK1 following PI3K inhibition was significantly lower in NOTCH1MUT cell lines than in wild-type NOTCH1 (NOTCH1WT) cells or NOTCH1MUT cells with acquired resistance to PI3K …
Structural Variants Drive Context-Dependent Oncogene Activation In Cancer, Zhichao Xu, Dong-Sung Lee, Sahaana Chandran, Victoria T Le, Rosalind Bump, Jean Yasis, Sofia Dallarda, Samantha Marcotte, Benjamin Clock, Nicholas Haghani, Chae Yun Cho, Kadir C Akdemir, Selene Tyndale, P Andrew Futreal, Graham Mcvicker, Geoffrey M Wahl, Jesse R Dixon
Structural Variants Drive Context-Dependent Oncogene Activation In Cancer, Zhichao Xu, Dong-Sung Lee, Sahaana Chandran, Victoria T Le, Rosalind Bump, Jean Yasis, Sofia Dallarda, Samantha Marcotte, Benjamin Clock, Nicholas Haghani, Chae Yun Cho, Kadir C Akdemir, Selene Tyndale, P Andrew Futreal, Graham Mcvicker, Geoffrey M Wahl, Jesse R Dixon
Faculty, Staff and Student Publications
Higher-order chromatin structure is important for the regulation of genes by distal regulatory sequences. Structural variants (SVs) that alter three-dimensional (3D) genome organization can lead to enhancer-promoter rewiring and human disease, particularly in the context of cancer3. However, only a small minority of SVs are associated with altered gene expression4,5, and it remains unclear why certain SVs lead to changes in distal gene expression and others do not. To address these questions, we used a combination of genomic profiling and genome engineering to identify sites of recurrent changes in 3D genome structure in cancer and determine the effects of specific …
Tumor Suppressor Dear1 Regulates Mammary Epithelial Cell Fate And Predicts Early Onset And Metastasis In Triple Negative Breast Cancer, Uyen Q Le, Nanyue Chen, Seetharaman Balasenthil, Eugene Lurie, Fei Yang, Suyu Liu, Laura Rubin, Luisa Maren Solis Soto, Maria Gabriela Raso, Harsh Batra, Aysegul A Sahin, Ignacio I Wistuba, Ann Mcneill Killary
Tumor Suppressor Dear1 Regulates Mammary Epithelial Cell Fate And Predicts Early Onset And Metastasis In Triple Negative Breast Cancer, Uyen Q Le, Nanyue Chen, Seetharaman Balasenthil, Eugene Lurie, Fei Yang, Suyu Liu, Laura Rubin, Luisa Maren Solis Soto, Maria Gabriela Raso, Harsh Batra, Aysegul A Sahin, Ignacio I Wistuba, Ann Mcneill Killary
Faculty, Staff and Student Publications
Triple negative breast cancer (TNBC) is a disease of poor prognosis, with the majority classified as the basal-like subtype associated with epithelial-mesenchymal transition and metastasis. Because basal breast cancers originate from proliferative luminal progenitor-like cells upon dysregulation of proper luminal differentiation, genes regulating luminal-basal transition are critical to elucidate novel therapeutic targets to improve TNBC outcomes. Herein we demonstrate that the tumor suppressor DEAR1/TRIM62 is a critical regulator of luminal cell fate. DEAR1 loss in human mammary epithelial cells results in significantly enhanced mammosphere formation that is accelerated in the presence of TGF-β/SMAD3 signaling. Mammospheres formed following DEAR1 loss are …
Pancreatic Tumor Microenvironmental Acidosis And Hypoxia Transform Gold Nanorods Into Cell-Penetrant Particles For Potent Radiosensitization, Pradipta Ranjan Rauta, Yuri Mackeyev, Keith Sanders, Joseph B K Kim, Valeria V Gonzalez, Yasmin Zahra, Muhammad A Shohayeb, Belal Abousaida, Geraldine V Vijay, Okan Tezcan, Paul Derry, Anton V Liopo, Eugene R Zubarev, Rickey Carter, Pankaj Singh, Sunil Krishnan
Pancreatic Tumor Microenvironmental Acidosis And Hypoxia Transform Gold Nanorods Into Cell-Penetrant Particles For Potent Radiosensitization, Pradipta Ranjan Rauta, Yuri Mackeyev, Keith Sanders, Joseph B K Kim, Valeria V Gonzalez, Yasmin Zahra, Muhammad A Shohayeb, Belal Abousaida, Geraldine V Vijay, Okan Tezcan, Paul Derry, Anton V Liopo, Eugene R Zubarev, Rickey Carter, Pankaj Singh, Sunil Krishnan
Faculty, Staff and Student Publications
Coating nanoparticles with stealth epilayers increases circulation time by evading opsonization, macrophage phagocytosis, and reticuloendothelial sequestration. However, this also reduces internalization by cancer cells upon reaching the tumor. We designed gold nanorods (GNRs) with an epilayer that retains stealth properties in circulation but transforms spontaneously in the acidotic tumor microenvironment to a cell-penetrating particle. We used a customized stoichiometric ratio of l-glutamic acid and l-lysine within an amphiphilic polymer of poly(l-glutamic acid-co-l-lysine), or P(Glu-co-Lys), to effect this transformation in acidotic environments. P(Glu-co-Lys)-GNRs were internalized by cancer cells to facilitate potent in vitro radiosensitization. When administered intravenously in mice, they accumulate …
Potential Focal Adhesion Kinase Inhibitors In Management Of Cancer: Therapeutic Opportunities From Herbal Medicine, Feiyu Chen, Zhangfeng Zhong, Cheng Zhang, Yuanjun Lu, Yau-Tuen Chan, Ning Wang, Di Zhao, Yibin Feng
Potential Focal Adhesion Kinase Inhibitors In Management Of Cancer: Therapeutic Opportunities From Herbal Medicine, Feiyu Chen, Zhangfeng Zhong, Cheng Zhang, Yuanjun Lu, Yau-Tuen Chan, Ning Wang, Di Zhao, Yibin Feng
Faculty, Staff and Student Publications
Focal adhesion kinase (FAK) is a multifunctional protein involved in cellular communication, integrating and transducing extracellular signals from cell-surface membrane receptors. It plays a central role intracellularly and extracellularly within the tumor microenvironment. Perturbations in FAK signaling promote tumor occurrence and development, and studies have revealed its biological behavior in tumor cell proliferation, migration, and adhesion. Herein we provide an overview of the complex biology of the FAK family members and their context-dependent nature. Next, with a focus on cancer, we highlight the activities of FAK signaling in different types of cancer and how knowledge of them is being used …
Acetyl-Coenzyme A Synthetase 2 Potentiates Macropinocytosis And Muscle Wasting Through Metabolic Reprogramming In Pancreatic Cancer, Zhijun Zhou, Yu Ren, Jingxuan Yang, Mingyang Liu, Xiuhui Shi, Wenyi Luo, Kar-Ming Fung, Chao Xu, Michael S Bronze, Yuqing Zhang, Courtney W Houchen, Min Li
Acetyl-Coenzyme A Synthetase 2 Potentiates Macropinocytosis And Muscle Wasting Through Metabolic Reprogramming In Pancreatic Cancer, Zhijun Zhou, Yu Ren, Jingxuan Yang, Mingyang Liu, Xiuhui Shi, Wenyi Luo, Kar-Ming Fung, Chao Xu, Michael S Bronze, Yuqing Zhang, Courtney W Houchen, Min Li
Faculty, Staff and Student Publications
BACKGROUND & AIMS: Rapid deconditioning, also called cachexia, and metabolic reprogramming are two hallmarks of pancreatic cancer. Acetyl-coenzyme A synthetase short-chain family member 2 (ACSS2) is an acetyl-enzyme A synthetase that contributes to lipid synthesis and epigenetic reprogramming. However, the role of ACSS2 on the nonselective macropinocytosis and cancer cachexia in pancreatic cancer remains elusive. In this study, we demonstrate that ACSS2 potentiates macropinocytosis and muscle wasting through metabolic reprogramming in pancreatic cancer.
METHODS: Clinical significance of ACSS2 was analyzed using samples from patients with pancreatic cancer. ACSS2-knockout cells were established using the clustered regularly interspaced short palindromic repeats-associated protein …
Kir-Based Inhibitory Cars Overcome Car-Nk Cell Trogocytosis-Mediated Fratricide And Tumor Escape, Ye Li, Rafet Basar, Guohui Wang, Enli Liu, Judy S Moyes, Li Li, Lucila N Kerbauy, Nadima Uprety, Mohsen Fathi, Ali Rezvan, Pinaki P Banerjee, Luis Muniz-Feliciano, Tamara J Laskowski, Emily Ensley, May Daher, Mayra Shanley, Mayela Mendt, Sunil Acharya, Bin Liu, Alexander Biederstädt, Hind Rafei, Xingliang Guo, Luciana Melo Garcia, Paul Lin, Sonny Ang, David Marin, Ken Chen, Laura Bover, Richard E Champlin, Navin Varadarajan, Elizabeth J Shpall, Katayoun Rezvani
Kir-Based Inhibitory Cars Overcome Car-Nk Cell Trogocytosis-Mediated Fratricide And Tumor Escape, Ye Li, Rafet Basar, Guohui Wang, Enli Liu, Judy S Moyes, Li Li, Lucila N Kerbauy, Nadima Uprety, Mohsen Fathi, Ali Rezvan, Pinaki P Banerjee, Luis Muniz-Feliciano, Tamara J Laskowski, Emily Ensley, May Daher, Mayra Shanley, Mayela Mendt, Sunil Acharya, Bin Liu, Alexander Biederstädt, Hind Rafei, Xingliang Guo, Luciana Melo Garcia, Paul Lin, Sonny Ang, David Marin, Ken Chen, Laura Bover, Richard E Champlin, Navin Varadarajan, Elizabeth J Shpall, Katayoun Rezvani
Faculty, Staff and Student Publications
Trogocytosis is an active process that transfers surface material from targeted to effector cells. Using multiple in vivo tumor models and clinical data, we report that chimeric antigen receptor (CAR) activation in natural killer (NK) cells promoted transfer of the CAR cognate antigen from tumor to NK cells, resulting in (1) lower tumor antigen density, thus impairing the ability of CAR-NK cells to engage with their target, and (2) induced self-recognition and continuous CAR-mediated engagement, resulting in fratricide of trogocytic antigen-expressing NK cells (NK