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Articles 931 - 960 of 1023
Full-Text Articles in Genetic Phenomena
Mediating And Maintaining Methylation While Minimizing Mutation: Recent Advances On Mammalian Dna Methyltransferases, Xiaodong Cheng, Robert M Blumenthal
Mediating And Maintaining Methylation While Minimizing Mutation: Recent Advances On Mammalian Dna Methyltransferases, Xiaodong Cheng, Robert M Blumenthal
Faculty, Staff and Student Publications
Mammalian genomes are methylated on carbon-5 of many cytosines, mostly in CpG dinucleotides. Methylation patterns are maintained during mitosis via DNMT1, and regulatory factors involved in processes that include histone modifications. Methylation in a sequence longer than CpG can influence the binding of sequence-specific transcription factors, thus affecting gene expression. 5-Methylcytosine deamination results in C-to-T transition. While some mutations are beneficial, most are not; so boosting C-to-T transitions can be dangerous. Given the role of DNMT3A in establishing de novo DNA methylation during development, it is this CpG methylation and deamination that provide the major mutagenic impetus in the DNMT3A …
Targeting De Novo Lipogenesis And The Lands Cycle Induces Ferroptosis In Kras-Mutant Lung Cancer, Caterina Bartolacci, Cristina Andreani, Gonçalo Vale, Stefano Berto, Margherita Melegari, Anna Colleen Crouch, Dodge L Baluya, George Kemble, Kurt Hodges, Jacqueline Starrett, Katerina Politi, Sandra L Starnes, Daniele Lorenzini, Maria Gabriela Raso, Luisa M Solis Soto, Carmen Behrens, Humam Kadara, Boning Gao, Ignacio I Wistuba, John D Minna, Jeffrey G Mcdonald, Pier Paolo Scaglioni
Targeting De Novo Lipogenesis And The Lands Cycle Induces Ferroptosis In Kras-Mutant Lung Cancer, Caterina Bartolacci, Cristina Andreani, Gonçalo Vale, Stefano Berto, Margherita Melegari, Anna Colleen Crouch, Dodge L Baluya, George Kemble, Kurt Hodges, Jacqueline Starrett, Katerina Politi, Sandra L Starnes, Daniele Lorenzini, Maria Gabriela Raso, Luisa M Solis Soto, Carmen Behrens, Humam Kadara, Boning Gao, Ignacio I Wistuba, John D Minna, Jeffrey G Mcdonald, Pier Paolo Scaglioni
Faculty, Staff and Student Publications
Mutant KRAS (KM), the most common oncogene in lung cancer (LC), regulates fatty acid (FA) metabolism. However, the role of FA in LC tumorigenesis is still not sufficiently characterized. Here, we show that KMLC has a specific lipid profile, with high triacylglycerides and phosphatidylcholines (PC). We demonstrate that FASN, the rate-limiting enzyme in FA synthesis, while being dispensable in EGFR-mutant or wild-type KRAS LC, is required for the viability of KMLC cells. Integrating lipidomic, transcriptomic and functional analyses, we demonstrate that FASN provides saturated and monounsaturated FA to the Lands cycle, the process remodeling oxidized phospholipids, such as PC. Accordingly, …
Sox9 Directs Divergent Epigenomic States In Brain Tumor Subtypes, Debosmita Sardar, Hsiao-Chi Chen, Amanda Reyes, Srinidhi Varadharajan, Antrix Jain, Carrie Mohila, Rachel Curry, Brittney Lozzi, Kavitha Rajendran, Alexis Cervantes, Kwanha Yu, Ali Jalali, Ganesh Rao, Stephen C Mack, Benjamin Deneen
Sox9 Directs Divergent Epigenomic States In Brain Tumor Subtypes, Debosmita Sardar, Hsiao-Chi Chen, Amanda Reyes, Srinidhi Varadharajan, Antrix Jain, Carrie Mohila, Rachel Curry, Brittney Lozzi, Kavitha Rajendran, Alexis Cervantes, Kwanha Yu, Ali Jalali, Ganesh Rao, Stephen C Mack, Benjamin Deneen
Duncan NRI Faculty and Staff Publications
Epigenetic dysregulation is a universal feature of cancer that results in altered patterns of gene expression that drive malignancy. Brain tumors exhibit subtype-specific epigenetic alterations; however, the molecular mechanisms responsible for these diverse epigenetic states remain unclear. Here, we show that the developmental transcription factor Sox9 differentially regulates epigenomic states in high-grade glioma (HGG) and ependymoma (EPN). Using our autochthonous mouse models, we found that Sox9 suppresses HGG growth and expands associated H3K27ac states, while promoting ZFTA-RELA (ZR
Neuronal Activity Induces Glucosylceramide That Is Secreted Via Exosomes For Lysosomal Degradation In Glia, Liping Wang, Guang Lin, Zhongyuan Zuo, Yarong Li, Seul Kee Byeon, Akhilesh Pandey, Hugo J Bellen
Neuronal Activity Induces Glucosylceramide That Is Secreted Via Exosomes For Lysosomal Degradation In Glia, Liping Wang, Guang Lin, Zhongyuan Zuo, Yarong Li, Seul Kee Byeon, Akhilesh Pandey, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
Recessive variants in GBA1 cause Gaucher disease, a prevalent form of lysosome storage disease. GBA1 encodes a lysosomal enzyme that hydrolyzes glucosylceramide (GlcCer) into glucose and ceramide. Its loss causes lysosomal dysfunction and increased levels of GlcCer. We generated a null allele of the Drosophila ortholog Gba1b by inserting the Gal4 using CRISPR-Cas9. Here, we show that Gba1b is expressed in glia but not in neurons. Glial-specific knockdown recapitulates the defects found in Gba1b mutants, and these can be rescued by glial expression of human GBA1. We show that GlcCer is synthesized upon neuronal activity, and it is transported …
Infiltration Of Peripheral Immune Cells Into The Olfactory Bulb In A Mouse Model Of Acute Nasal Inflammation, Hinami Asano, Sanae Hasegawa-Ishii, Ken Arae, Aki Obara, Geoffroy Laumet, Robert Dantzer, Atsuyoshi Shimada
Infiltration Of Peripheral Immune Cells Into The Olfactory Bulb In A Mouse Model Of Acute Nasal Inflammation, Hinami Asano, Sanae Hasegawa-Ishii, Ken Arae, Aki Obara, Geoffroy Laumet, Robert Dantzer, Atsuyoshi Shimada
Faculty, Staff and Student Publications
Chronic nasal inflammation induces robust olfactory bulb (OB) atrophy in mice. Here we examined initial events that occur in the OB after bilateral intranasal administration of lipopolysaccharide, focusing on the olfactory nerve fibers and meninges. We analyzed the time course of OB and meninges inflammation using histological and biochemical approaches. Within 12 h, we observed increased chemokine expression and transient infiltration of peripheral immune cells into the OB, resulting in the development of pro-inflammatory status in the OB. Meningeal immunity was activated. Resident microglia produced anti-inflammatory cytokines within 24 h. These could be the initial events that lead to OB …
Gut Bacterial Isoamylamine Promotes Age-Related Cognitive Dysfunction By Promoting Microglial Cell Death, Yun Teng, Jingyao Mu, Fangyi Xu, Xiangcheng Zhang, Mukesh K Sriwastva, Qiaohong M Liu, Xiaohong Li, Chao Lei, Kumaran Sundaram, Xin Hu, Lifeng Zhang, Juw Won Park, Jae Yeon Hwang, Eric C Rouchka, Xiang Zhang, Jun Yan, Michael L Merchant, Huang-Ge Zhang
Gut Bacterial Isoamylamine Promotes Age-Related Cognitive Dysfunction By Promoting Microglial Cell Death, Yun Teng, Jingyao Mu, Fangyi Xu, Xiangcheng Zhang, Mukesh K Sriwastva, Qiaohong M Liu, Xiaohong Li, Chao Lei, Kumaran Sundaram, Xin Hu, Lifeng Zhang, Juw Won Park, Jae Yeon Hwang, Eric C Rouchka, Xiang Zhang, Jun Yan, Michael L Merchant, Huang-Ge Zhang
Faculty, Staff and Student Publications
The intestinal microbiome releases a plethora of small molecules. Here, we show that the Ruminococcaceae metabolite isoamylamine (IAA) is enriched in aged mice and elderly people, whereas Ruminococcaceae phages, belonging to the Myoviridae family, are reduced. Young mice orally administered IAA show cognitive decline, whereas Myoviridae phage administration reduces IAA levels. Mechanistically, IAA promotes apoptosis of microglial cells by recruiting the transcriptional regulator p53 to the S100A8 promoter region. Specifically, IAA recognizes and binds the S100A8 promoter region to facilitate the unwinding of its self-complementary hairpin structure, thereby subsequently enabling p53 to access the S100A8 promoter and enhance S100A8 expression. …
Metabolic Requirement For Got2 In Pancreatic Cancer Depends On Environmental Context, Samuel A Kerk, Lin Lin, Amy L Myers, Damien J Sutton, Anthony Andren, Peter Sajjakulnukit, Li Zhang, Yaqing Zhang, Jennifer A Jiménez, Barbara S Nelson, Brandon Chen, Anthony Robinson, Galloway Thurston, Samantha B Kemp, Nina G Steele, Megan T Hoffman, Hui-Ju Wen, Daniel Long, Sarah E Ackenhusen, Johanna Ramos, Xiaohua Gao, Zeribe C Nwosu, Stefanie Galban, Christopher J Halbrook, David B Lombard, David R Piwnica-Worms, Haoqiang Ying, Marina Pasca Di Magliano, Howard C Crawford, Yatrik M Shah, Costas A Lyssiotis
Metabolic Requirement For Got2 In Pancreatic Cancer Depends On Environmental Context, Samuel A Kerk, Lin Lin, Amy L Myers, Damien J Sutton, Anthony Andren, Peter Sajjakulnukit, Li Zhang, Yaqing Zhang, Jennifer A Jiménez, Barbara S Nelson, Brandon Chen, Anthony Robinson, Galloway Thurston, Samantha B Kemp, Nina G Steele, Megan T Hoffman, Hui-Ju Wen, Daniel Long, Sarah E Ackenhusen, Johanna Ramos, Xiaohua Gao, Zeribe C Nwosu, Stefanie Galban, Christopher J Halbrook, David B Lombard, David R Piwnica-Worms, Haoqiang Ying, Marina Pasca Di Magliano, Howard C Crawford, Yatrik M Shah, Costas A Lyssiotis
Faculty, Staff and Student Publications
Mitochondrial glutamate-oxaloacetate transaminase 2 (GOT2) is part of the malate-aspartate shuttle, a mechanism by which cells transfer reducing equivalents from the cytosol to the mitochondria. GOT2 is a key component of mutant KRAS (KRAS*)-mediated rewiring of glutamine metabolism in pancreatic ductal adenocarcinoma (PDA). Here, we demonstrate that the loss of GOT2 disturbs redox homeostasis and halts proliferation of PDA cells in vitro. GOT2 knockdown (KD) in PDA cell lines in vitro induced NADH accumulation, decreased Asp and α-ketoglutarate (αKG) production, stalled glycolysis, disrupted the TCA cycle, and impaired proliferation. Oxidizing NADH through chemical or genetic means resolved the redox imbalance …
Vitamin E Enhances Cancer Immunotherapy By Reinvigorating Dendritic Cells Via Targeting Checkpoint Shp1, Xiangliang Yuan, Yimin Duan, Yi Xiao, Kai Sun, Yutao Qi, Yuan Zhang, Zamal Ahmed, Davide Moiani, Jun Yao, Hongzhong Li, Lin Zhang, Arseniy E Yuzhalin, Ping Li, Chenyu Zhang, Akosua Badu-Nkansah, Yohei Saito, Xianghua Liu, Wen-Ling Kuo, Haoqiang Ying, Shao-Cong Sun, Jenny C Chang, John A Tainer, Dihua Yu
Vitamin E Enhances Cancer Immunotherapy By Reinvigorating Dendritic Cells Via Targeting Checkpoint Shp1, Xiangliang Yuan, Yimin Duan, Yi Xiao, Kai Sun, Yutao Qi, Yuan Zhang, Zamal Ahmed, Davide Moiani, Jun Yao, Hongzhong Li, Lin Zhang, Arseniy E Yuzhalin, Ping Li, Chenyu Zhang, Akosua Badu-Nkansah, Yohei Saito, Xianghua Liu, Wen-Ling Kuo, Haoqiang Ying, Shao-Cong Sun, Jenny C Chang, John A Tainer, Dihua Yu
Faculty, Staff and Student Publications
Despite the popular use of dietary supplements during conventional cancer treatments, their impacts on the efficacies of prevalent immunotherapies, including immune-checkpoint therapy (ICT), are unknown. Surprisingly, our analyses of electronic health records revealed that ICT-treated patients with cancer who took vitamin E (VitE) had significantly improved survival. In mouse models, VitE increased ICT antitumor efficacy, which depended on dendritic cells (DC). VitE entered DCs via the SCARB1 receptor and restored tumor-associated DC functionality by directly binding to and inhibiting protein tyrosine phosphatase SHP1, a DC-intrinsic checkpoint. SHP1 inhibition, genetically or by VitE treatment, enhanced tumor antigen cross-presentation by DCs and …
Redirecting Host Preexisting Influenza A Virus Immunity For Cancer Immunotherapy, Bharat K R Chaganty, Songbo Qiu, Yang Lu, Gabriel Lopez-Berestein, Bulent Ozpolat, Zhen Fan
Redirecting Host Preexisting Influenza A Virus Immunity For Cancer Immunotherapy, Bharat K R Chaganty, Songbo Qiu, Yang Lu, Gabriel Lopez-Berestein, Bulent Ozpolat, Zhen Fan
Faculty, Staff and Student Publications
We tested the concept that host preexisting influenza A virus immunity can be redirected to inhibit tumor growth and metastasis through systemic administration of influenza A virus-related peptides to targeted tumors. Mice infected with influenza A virus strain A/Puerto Rico/8/34 (PR8) were used as a model of a host with preexisting viral immunity. The extent to which preexisting influenza A immunity in PR8-immunized mice can be redirected to inhibit tumor growth and metastasis was first examined by ectopic expression of influenza A nucleoprotein (NP) and hemagglutinin (HA) in syngeneic mammary tumor cells via lentiviral transduction. Then, the feasibility of implementing …
Mice Lacking Wnt9a Or Wnt4 Are Prone To Develop Spontaneous Osteoarthritis With Age And Display Alteration In Either The Trabecular Or Cortical Bone Compartment, Stefan Teufel, Lena Wolff, Ulrich König, Akio Kobayashi, Richard Behringer, Christine Hartmann
Mice Lacking Wnt9a Or Wnt4 Are Prone To Develop Spontaneous Osteoarthritis With Age And Display Alteration In Either The Trabecular Or Cortical Bone Compartment, Stefan Teufel, Lena Wolff, Ulrich König, Akio Kobayashi, Richard Behringer, Christine Hartmann
Faculty, Staff and Student Publications
Osteoarthritis (OA) is a common degenerative disease of the joint, with a complex multifactorial not yet fully understood etiology. Over the past years, the Wnt signaling pathway has been implicated in osteoarthritis. In a recent genomewide association study (GWAS), the chromosomal location on chromosome 1, linked to the Wnt3a-Wnt9a gene locus, was identified as the most significant locus associated with a thumb osteoarthritis endophenotype. Previously, it was shown that WNT9a is involved in maintaining synovial cell identity in the elbow joint during embryogenesis. Here, we report that the conditional loss of Wnt9a in the Prx1-Cre expressing limb mesenchyme or Prg4-CreER …
Hap40 Is A Conserved Central Regulator Of Huntingtin And A Potential Modulator Of Huntington’S Disease Pathogenesis, Shiyu Xu, Gang Li, Xin Ye, Dongsheng Chen, Zhihua Chen, Zhen Xu, Moretti Daniele, Sara Tambone, Alessandra Ceccacci, Licia Tomei, Lili Ye, Yue Yu, Amanda Solbach, Stephen M Farmer, Erin Furr Stimming, George Mcallister, Deanna M Marchionini, Sheng Zhang
Hap40 Is A Conserved Central Regulator Of Huntingtin And A Potential Modulator Of Huntington’S Disease Pathogenesis, Shiyu Xu, Gang Li, Xin Ye, Dongsheng Chen, Zhihua Chen, Zhen Xu, Moretti Daniele, Sara Tambone, Alessandra Ceccacci, Licia Tomei, Lili Ye, Yue Yu, Amanda Solbach, Stephen M Farmer, Erin Furr Stimming, George Mcallister, Deanna M Marchionini, Sheng Zhang
Faculty, Staff and Student Publications
Perturbation of huntingtin (HTT)'s physiological function is one postulated pathogenic factor in Huntington's disease (HD). However, little is known how HTT is regulated in vivo. In a proteomic study, we isolated a novel ~40kDa protein as a strong binding partner of Drosophila HTT and demonstrated it was the functional ortholog of HAP40, an HTT associated protein shown recently to modulate HTT's conformation but with unclear physiological and pathologic roles. We showed that in both flies and human cells, HAP40 maintained conserved physical and functional interactions with HTT. Additionally, loss of HAP40 resulted in similar phenotypes as HTT knockout. More strikingly, …
Prospecting Cellular Gold Nanoparticle Biomineralization As A Viable Alternative To Prefabricated Gold Nanoparticles, Aaron S Schwartz-Duval, Konstantin V Sokolov
Prospecting Cellular Gold Nanoparticle Biomineralization As A Viable Alternative To Prefabricated Gold Nanoparticles, Aaron S Schwartz-Duval, Konstantin V Sokolov
Faculty, Staff and Student Publications
Gold nanoparticles (GNPs) have shown considerable potential in a vast number of biomedical applications. However, currently there are no clinically approved injectable GNP formulations. Conversely, gold salts have been used in the clinic for nearly a century. Further, there is evidence of GNP formation in patients treated with gold salts (i.e., chrysiasis). Recent reports evaluating this phenomenon in human cells and in murine models indicate that the use of gold ions for in situ formation of theranostic GNPs could greatly improve the delivery within dense biological tissues, increase efficiency of intracellular gold uptake, and specificity of GNP formation within cancer …
High-Throughput Profiling Of Histone Post-Translational Modifications And Chromatin Modifying Proteins By Reverse Phase Protein Array, Xuan Wang, Zhongcheng Shi, Hsin-Yi Lu, Jean J Kim, Wen Bu, Jose A Villalobos, Dimuthu N Perera, Sung Yun Jung, Tao Wang, Sandra L Grimm, Bethany C Taylor, Kimal Rajapakshe, Hyekyung Park, Julia Wulfkuhle, Nicolas L Young, Yi Li, Cristian Coarfa, Dean P Edwards, Shixia Huang
High-Throughput Profiling Of Histone Post-Translational Modifications And Chromatin Modifying Proteins By Reverse Phase Protein Array, Xuan Wang, Zhongcheng Shi, Hsin-Yi Lu, Jean J Kim, Wen Bu, Jose A Villalobos, Dimuthu N Perera, Sung Yun Jung, Tao Wang, Sandra L Grimm, Bethany C Taylor, Kimal Rajapakshe, Hyekyung Park, Julia Wulfkuhle, Nicolas L Young, Yi Li, Cristian Coarfa, Dean P Edwards, Shixia Huang
Faculty, Staff and Students Publications
Epigenetic variation plays a significant role in normal development and human diseases including cancer, in part through post-translational modifications (PTMs) of histones. Identification and profiling of changes in histone PTMs, and in proteins regulating PTMs, are crucial to understanding diseases, and for discovery of epigenetic therapeutic agents. In this study, we have adapted and validated an antibody-based reverse phase protein array (RPPA) platform for profiling 20 histone PTMs and expression of 40 proteins that modify histones and other epigenomic regulators. The specificity of the RPPA assay for histone PTMs was validated with synthetic peptides corresponding to histone PTMs and by …
The Three Two-Pore Channel Subtypes From Rabbit Exhibit Distinct Sensitivity To Phosphoinositides, Voltage, And Extracytosolic Ph, Xinghua Feng, Jian Xiong, Weijie Cai, Jin-Bin Tian, Michael X Zhu
The Three Two-Pore Channel Subtypes From Rabbit Exhibit Distinct Sensitivity To Phosphoinositides, Voltage, And Extracytosolic Ph, Xinghua Feng, Jian Xiong, Weijie Cai, Jin-Bin Tian, Michael X Zhu
Faculty, Staff and Student Publications
Two pore channels (TPCs) are implicated in vesicle trafficking, virus infection, and autophagy regulation. As Na+- or Ca2+-permeable channels, TPCs have been reported to be activated by NAADP, PI(3,5)P2, and/or high voltage. However, a comparative study on the function and regulation of the three mammalian TPC subtypes is currently lacking. Here, we used the electrophysiological recording of enlarged endolysosome vacuoles, inside-out and outside-out membrane patches to examine the three TPCs of rabbit (Oryctolagus cuniculus, or Oc) heterologously expressed in HEK293 cells. While PI(3,5)P2 evoked Na+ currents with a potency order of OcTPC1 > OcTPC3 > OcTPC2, only OcTPC2 displayed a strict dependence …
Effect Of Neoadjuvant Chemotherapy On Intraoperative Core Temperature In Patients With Breast Cancer: A Retrospective Cohort Study, Daniel B Zamler, Takashi Shingu, Laura M Kahn, Kristin Huntoon, Cynthia Kassab, Martina Ott, Katarzyna Tomczak, Jintan Liu, Yating Li, Ivy Lai, Rocio Zorilla-Veloz, Cassian Yee, Kunal Rai, Betty Ys Kim, Stephanie S Watowich, Amy B Heimberger, Giulio F Draetta, Jian Hu
Effect Of Neoadjuvant Chemotherapy On Intraoperative Core Temperature In Patients With Breast Cancer: A Retrospective Cohort Study, Daniel B Zamler, Takashi Shingu, Laura M Kahn, Kristin Huntoon, Cynthia Kassab, Martina Ott, Katarzyna Tomczak, Jintan Liu, Yating Li, Ivy Lai, Rocio Zorilla-Veloz, Cassian Yee, Kunal Rai, Betty Ys Kim, Stephanie S Watowich, Amy B Heimberger, Giulio F Draetta, Jian Hu
Faculty, Staff and Student Publications
Novel therapeutic strategies targeting glioblastoma (GBM) often fail in the clinic, partly because preclinical models in which hypotheses are being tested do not recapitulate human disease. To address this challenge, we took advantage of our previously developed spontaneous Qk/Trp53/Pten (QPP) triple-knockout model of human GBM, comparing the immune microenvironment of QPP mice with that of patient-derived tumors to determine whether this model provides opportunity for gaining insights into tumor physiopathology and preclinical evaluation of therapeutic agents. Immune profiling analyses and single-cell sequencing of implanted and spontaneous tumors from QPP mice and from patients with glioma revealed intratumoral immune components that …
Immune Landscape Of A Genetically Engineered Murine Model Of Glioma Compared With Human Glioma, Daniel B Zamler, Takashi Shingu, Laura M Kahn, Kristin Huntoon, Cynthia Kassab, Martina Ott, Katarzyna Tomczak, Jintan Liu, Yating Li, Ivy Lai, Rocio Zorilla-Veloz, Cassian Yee, Kunal Rai, Betty Ys Kim, Stephanie S Watowich, Amy B Heimberger, Giulio F Draetta, Jian Hu
Immune Landscape Of A Genetically Engineered Murine Model Of Glioma Compared With Human Glioma, Daniel B Zamler, Takashi Shingu, Laura M Kahn, Kristin Huntoon, Cynthia Kassab, Martina Ott, Katarzyna Tomczak, Jintan Liu, Yating Li, Ivy Lai, Rocio Zorilla-Veloz, Cassian Yee, Kunal Rai, Betty Ys Kim, Stephanie S Watowich, Amy B Heimberger, Giulio F Draetta, Jian Hu
Faculty, Staff and Student Publications
Novel therapeutic strategies targeting glioblastoma (GBM) often fail in the clinic, partly because preclinical models in which hypotheses are being tested do not recapitulate human disease. To address this challenge, we took advantage of our previously developed spontaneous Qk/Trp53/Pten (QPP) triple-knockout model of human GBM, comparing the immune microenvironment of QPP mice with that of patient-derived tumors to determine whether this model provides opportunity for gaining insights into tumor physiopathology and preclinical evaluation of therapeutic agents. Immune profiling analyses and single-cell sequencing of implanted and spontaneous tumors from QPP mice and from patients with glioma revealed intratumoral immune components that …
Integrated Screens Uncover A Cell Surface Tumor Suppressor Gene Kirrel Involved In Hippo Pathway, Chao Wang, Xu Feng, Dan Su, Zhen Chen, Shimin Wang, Mengfan Tang, Min Huang, Litong Nie, Huimin Zhang, Siting Li, Ling Yin, Randy L Johnson, Traver Hart, Junjie Chen
Integrated Screens Uncover A Cell Surface Tumor Suppressor Gene Kirrel Involved In Hippo Pathway, Chao Wang, Xu Feng, Dan Su, Zhen Chen, Shimin Wang, Mengfan Tang, Min Huang, Litong Nie, Huimin Zhang, Siting Li, Ling Yin, Randy L Johnson, Traver Hart, Junjie Chen
Faculty, Staff and Student Publications
Cell surface proteins play essential roles in various biological processes and are highly related to cancer development. They also serve as important markers for cell identity and targets for pharmacological intervention. Despite their great potentials in biomedical research, comprehensive functional analysis of cell surface proteins remains scarce. Here, with a de novo designed library targeting cell surface proteins, we performed in vivo CRISPR screens to evaluate the effects of cell surface proteins on tumor survival and proliferation. We found that
Directed Evolution Of Pd-L1-Targeted Affibodies By Mrna Display, Brian J Grindel, Brian J Engel, Justin N Ong, Anupallavi Srinivasamani, Xiaowen Liang, Niki M Zacharias, Robert C Bast, Michael A Curran, Terry T Takahashi, Richard W Roberts, Steven W Millward
Directed Evolution Of Pd-L1-Targeted Affibodies By Mrna Display, Brian J Grindel, Brian J Engel, Justin N Ong, Anupallavi Srinivasamani, Xiaowen Liang, Niki M Zacharias, Robert C Bast, Michael A Curran, Terry T Takahashi, Richard W Roberts, Steven W Millward
Faculty, Staff and Student Publications
Therapeutic monoclonal antibodies directed against PD-L1 (e.g., atezolizumab) disrupt PD-L1:PD-1 signaling and reactivate exhausted cytotoxic T-cells in the tumor compartment. Although anti-PD-L1 antibodies are successful as immune checkpoint inhibitor (ICI) therapeutics, there is still a pressing need to develop high-affinity, low-molecular-weight ligands for molecular imaging and diagnostic applications. Affibodies are small polypeptides (∼60 amino acids) that provide a stable molecular scaffold from which to evolve high-affinity ligands. Despite its proven utility in the development of imaging probes, this scaffold has never been optimized for use in mRNA display, a powerful
Chemotherapy Coupled To Macrophage Inhibition Induces T-Cell And B-Cell Infiltration And Durable Regression In Triple-Negative Breast Cancer, Swarnima Singh, Nigel Lee, Diego A Pedroza, Igor L Bado, Clark Hamor, Licheng Zhang, Sergio Aguirre, Jingyuan Hu, Yichao Shen, Yitian Xu, Yang Gao, Na Zhao, Shu-Hsia Chen, Ying-Wooi Wan, Zhandong Liu, Jeffrey T Chang, Daniel Hollern, Charles M Perou, Xiang H F Zhang, Jeffrey M Rosen
Chemotherapy Coupled To Macrophage Inhibition Induces T-Cell And B-Cell Infiltration And Durable Regression In Triple-Negative Breast Cancer, Swarnima Singh, Nigel Lee, Diego A Pedroza, Igor L Bado, Clark Hamor, Licheng Zhang, Sergio Aguirre, Jingyuan Hu, Yichao Shen, Yitian Xu, Yang Gao, Na Zhao, Shu-Hsia Chen, Ying-Wooi Wan, Zhandong Liu, Jeffrey T Chang, Daniel Hollern, Charles M Perou, Xiang H F Zhang, Jeffrey M Rosen
Duncan NRI Faculty and Staff Publications
Immunosuppressive elements within the tumor microenvironment, such as tumor-associated macrophages (TAM), can present a barrier to successful anti-tumor responses by cytolytic T cells. Here we employed preclinical syngeneic p53 null mouse models of triple-negative breast cancer (TNBC) to develop a treatment regimen that harnessed the immunostimulatory effects of low-dose cyclophosphamide coupled with the pharmacologic inhibition of TAMs using either a small molecule CSF1R inhibitor or an anti-CSF1R antibody. This therapeutic combination was effective in treating several highly aggressive TNBC murine mammary tumor and lung metastasis models. Single cell RNA sequencing characterized tumor-infiltrating lymphocytes (TIL) including helper T cells and antigen-presenting …
Genome-Wide Crispr Screens Using Isogenic Cells Reveal Vulnerabilities Conferred By Loss Of Tumor Suppressors, Rodney Cheng-En Hsieh, Sunil Krishnan, Ren-Chin Wu, Akash R Boda, Arthur Liu, Michelle Winkler, Wen-Hao Hsu, Steven Hsesheng Lin, Mien-Chie Hung, Li-Chuan Chan, Krithikaa Rajkumar Bhanu, Anupallavi Srinivasamani, Ricardo Alexandre De Azevedo, Yung-Chih Chou, Ronald A Depinho, Matthew Gubin, Eduardo Vilar, Chao Hsien Chen, Ravaen Slay, Priyamvada Jayaprakash, Shweta Mahendra Hegde, Genevieve Hartley, Spencer T Lea, Rishika Prasad, Brittany Morrow, Coline Agnes Couillault, Madeline Steiner, Chun-Chieh Wang, Bhanu Prasad Venkatesulu, Cullen Taniguchi, Yon Son Betty Kim, Junjie Chen, Nils-Petter Rudqvist, Michael A Curran
Genome-Wide Crispr Screens Using Isogenic Cells Reveal Vulnerabilities Conferred By Loss Of Tumor Suppressors, Rodney Cheng-En Hsieh, Sunil Krishnan, Ren-Chin Wu, Akash R Boda, Arthur Liu, Michelle Winkler, Wen-Hao Hsu, Steven Hsesheng Lin, Mien-Chie Hung, Li-Chuan Chan, Krithikaa Rajkumar Bhanu, Anupallavi Srinivasamani, Ricardo Alexandre De Azevedo, Yung-Chih Chou, Ronald A Depinho, Matthew Gubin, Eduardo Vilar, Chao Hsien Chen, Ravaen Slay, Priyamvada Jayaprakash, Shweta Mahendra Hegde, Genevieve Hartley, Spencer T Lea, Rishika Prasad, Brittany Morrow, Coline Agnes Couillault, Madeline Steiner, Chun-Chieh Wang, Bhanu Prasad Venkatesulu, Cullen Taniguchi, Yon Son Betty Kim, Junjie Chen, Nils-Petter Rudqvist, Michael A Curran
Faculty, Staff and Student Publications
Radiotherapy (RT) of colorectal cancer (CRC) can prime adaptive immunity against tumor-associated antigen (TAA)-expressing CRC cells systemically. However, abscopal tumor remissions are extremely rare, and the postirradiation immune escape mechanisms in CRC remain elusive. Here, we found that irradiated CRC cells used ATR-mediated DNA repair signaling pathway to up-regulate both CD47 and PD-L1, which through engagement of SIRPα and PD-1, respectively, prevented phagocytosis by antigen-presenting cells and thereby limited TAA cross-presentation and innate immune activation. This postirradiation CD47 and PD-L1 up-regulation was observed across various human solid tumor cells. Concordantly, rectal cancer patients with poor responses to neoadjuvant RT exhibited …
Atr-Mediated Cd47 And Pd-L1 Up-Regulation Restricts Radiotherapy-Induced Immune Prming And Abscopal Responses In Colorectal Cancer, Rodney Cheng-En Hsieh, Sunil Krishnan, Ren-Chin Wu, Akash R Boda, Arthur Liu, Michelle Winkler, Wen-Hao Hsu, Steven Hsesheng Lin, Mien-Chie Hung, Li-Chuan Chan, Krithikaa Rajkumar Bhanu, Anupallavi Srinivasamani, Ricardo Alexandre De Azevedo, Yung-Chih Chou, Ronald A Depinho, Matthew Gubin, Eduardo Vilar, Chao Hsien Chen, Ravaen Slay, Priyamvada Jayaprakash, Shweta Mahendra Hegde, Genevieve Hartley, Spencer T Lea, Rishika Prasad, Brittany Morrow, Coline Agnes Couillault, Madeline Steiner, Chun-Chieh Wang, Bhanu Prasad Venkatesulu, Cullen Taniguchi, Yon Son Betty Kim, Junjie Chen, Nils-Petter Rudqvist, Michael A Curran
Atr-Mediated Cd47 And Pd-L1 Up-Regulation Restricts Radiotherapy-Induced Immune Prming And Abscopal Responses In Colorectal Cancer, Rodney Cheng-En Hsieh, Sunil Krishnan, Ren-Chin Wu, Akash R Boda, Arthur Liu, Michelle Winkler, Wen-Hao Hsu, Steven Hsesheng Lin, Mien-Chie Hung, Li-Chuan Chan, Krithikaa Rajkumar Bhanu, Anupallavi Srinivasamani, Ricardo Alexandre De Azevedo, Yung-Chih Chou, Ronald A Depinho, Matthew Gubin, Eduardo Vilar, Chao Hsien Chen, Ravaen Slay, Priyamvada Jayaprakash, Shweta Mahendra Hegde, Genevieve Hartley, Spencer T Lea, Rishika Prasad, Brittany Morrow, Coline Agnes Couillault, Madeline Steiner, Chun-Chieh Wang, Bhanu Prasad Venkatesulu, Cullen Taniguchi, Yon Son Betty Kim, Junjie Chen, Nils-Petter Rudqvist, Michael A Curran
Faculty, Staff and Student Publications
Radiotherapy (RT) of colorectal cancer (CRC) can prime adaptive immunity against tumor-associated antigen (TAA)-expressing CRC cells systemically. However, abscopal tumor remissions are extremely rare, and the postirradiation immune escape mechanisms in CRC remain elusive. Here, we found that irradiated CRC cells used ATR-mediated DNA repair signaling pathway to up-regulate both CD47 and PD-L1, which through engagement of SIRPα and PD-1, respectively, prevented phagocytosis by antigen-presenting cells and thereby limited TAA cross-presentation and innate immune activation. This postirradiation CD47 and PD-L1 up-regulation was observed across various human solid tumor cells. Concordantly, rectal cancer patients with poor responses to neoadjuvant RT exhibited …
Targeting Il-1Β As An Immunopreventive And Therapeutic Modality For K-Ras-Mutant Lung Cancer, Bo Yuan, Michael J Clowers, Walter V Velasco, Stephen Peng, Qian Peng, Yewen Shi, Marco Ramos-Castaneda, Melody Zarghooni, Shuanying Yang, Rachel L Babcock, Seon Hee Chang, John V Heymach, Jianjun Zhang, Edwin J Ostrin, Stephanie S Watowich, Humam Kadara, Seyed Javad Moghaddam
Targeting Il-1Β As An Immunopreventive And Therapeutic Modality For K-Ras-Mutant Lung Cancer, Bo Yuan, Michael J Clowers, Walter V Velasco, Stephen Peng, Qian Peng, Yewen Shi, Marco Ramos-Castaneda, Melody Zarghooni, Shuanying Yang, Rachel L Babcock, Seon Hee Chang, John V Heymach, Jianjun Zhang, Edwin J Ostrin, Stephanie S Watowich, Humam Kadara, Seyed Javad Moghaddam
Faculty, Staff and Student Publications
K-ras-mutant lung adenocarcinoma (KM-LUAD) is associated with abysmal prognosis and is tightly linked to tumor-promoting inflammation. A human mAb, canakinumab, targeting the proinflammatory cytokine IL-1β, significantly decreased the risk of lung cancer in the Canakinumab Anti-inflammatory Thrombosis Outcomes Study. Interestingly, we found high levels of IL-1β in the lungs of mice with K-rasG12D-mutant tumors (CC-LR mice). Here, we blocked IL-1β using an anti-IL-1β mAb in cohorts of 6- or 14-week-old CC-LR mice to explore its preventive and therapeutic effect, respectively. IL-1β blockade significantly reduced lung tumor burden, which was associated with reprogramming of the lung microenvironment toward an antitumor phenotype …
Phosphorylation And Stabilization Of Pd-L1 By Ck2 Suppresses Dendritic Cell Function, Xixi Zhao, Yongkun Wei, Yu-Yi Chu, Yintao Li, Jung-Mao Hsu, Zhou Jiang, Chunxiao Liu, Jennifer L Hsu, Wei-Chao Chang, Riyao Yang, Li-Chuan Chan, Jingkun Qu, Shuqun Zhang, Haoqiang Ying, Dihua Yu, Mien-Chie Hung
Phosphorylation And Stabilization Of Pd-L1 By Ck2 Suppresses Dendritic Cell Function, Xixi Zhao, Yongkun Wei, Yu-Yi Chu, Yintao Li, Jung-Mao Hsu, Zhou Jiang, Chunxiao Liu, Jennifer L Hsu, Wei-Chao Chang, Riyao Yang, Li-Chuan Chan, Jingkun Qu, Shuqun Zhang, Haoqiang Ying, Dihua Yu, Mien-Chie Hung
Faculty, Staff and Student Publications
UNLABELLED: Targeting immune checkpoints such as programmed cell death 1 (PD-1) and programmed cell death ligand 1 (PD-L1) has transformed cancer treatment, with durable clinical responses across a wide range of tumor types. However, a high percentage of patients fail to respond to anti-PD-1/PD-L1 treatment. A greater understanding of PD-L1 regulation is critical to improving the clinical response rate of PD-1/PD-L1 blockade. Here, we demonstrate that PD-L1 is phosphorylated and stabilized by casein kinase 2 (CK2) in cancer and dendritic cells (DC). Phosphorylation of PD-L1 at Thr285 and Thr290 by CK2 disrupted PD-L1 binding with speckle-type POZ protein, an adaptor …
Identification Of Functional Heterogeneity Of Carcinoma-Associated Fibroblasts With Distinct Il6-Mediated Therapy Resistance In Pancreatic Cancer, Kathleen M Mcandrews, Yang Chen, J Kebbeh Darpolor, Xiaofeng Zheng, Sujuan Yang, Julienne L Carstens, Bingrui Li, Huamin Wang, Toru Miyake, Pedro Correa De Sampaio, Michelle L Kirtley, Mariangela Natale, Chia-Chin Wu, Hikaru Sugimoto, Valerie S Lebleu, Raghu Kalluri
Identification Of Functional Heterogeneity Of Carcinoma-Associated Fibroblasts With Distinct Il6-Mediated Therapy Resistance In Pancreatic Cancer, Kathleen M Mcandrews, Yang Chen, J Kebbeh Darpolor, Xiaofeng Zheng, Sujuan Yang, Julienne L Carstens, Bingrui Li, Huamin Wang, Toru Miyake, Pedro Correa De Sampaio, Michelle L Kirtley, Mariangela Natale, Chia-Chin Wu, Hikaru Sugimoto, Valerie S Lebleu, Raghu Kalluri
Faculty, Staff and Student Publications
The tumor microenvironment in pancreatic ductal adenocarcinoma (PDAC) involves a significant accumulation of fibroblasts as part of the host response to cancer. Employing single-cell RNA-sequencing, multiplex immunostaining, and several genetic mouse models, we identify carcinoma-associated fibroblasts (CAFs) with opposing functions in PDAC progression. Depletion of fibroblast activation protein (FAP)+ CAFs results in increased survival, in contrast to depletion of alpha smooth muscle actin (αSMA)+ CAFs that leads to decreased survival. Tumor-promoting FAP+ CAFs (TP-CAFs) and tumor-restraining αSMA+ CAFs (TR-CAFs) differentially regulate cancer-associated pathways and accumulation of Tregs. Improved efficacy of gemcitabine is observed when IL-6 is deleted from αSMA+ CAFs …
Diversity Of Two-Pore Channels And The Accessory Naadp Receptors In Intracellular Ca2+ Signaling, Kunal R Shah, Xin Guan, Jiusheng Yan
Diversity Of Two-Pore Channels And The Accessory Naadp Receptors In Intracellular Ca2+ Signaling, Kunal R Shah, Xin Guan, Jiusheng Yan
Faculty, Staff and Student Publications
Intracellular Ca2+ signaling via changes or oscillation in cytosolic Ca2+ concentration controls almost every aspect of cellular function and physiological processes, such as gene transcription, cell motility and proliferation, muscle contraction, and learning and memory. Two-pore channels (TPCs) are a class of eukaryotic cation channels involved in intracellular Ca2+ signaling, likely present in a multitude of organisms from unicellular organisms to mammals. Accumulated evidence indicates that TPCs play a critical role in Ca2+ mobilization from intracellular stores mediated by the second messenger molecule, nicotinic acid adenine dinucleotide phosphate (NAADP). In recent years, significant progress has been made regarding our understanding …
The Life Cycle Of Polyploid Giant Cancer Cells And Dormancy In Cancer: Opportunities For Novel Therapeutic Interventions, Jinsong Liu, Na Niu, Xiaoran Li, Xudong Zhang, Anil K Sood
The Life Cycle Of Polyploid Giant Cancer Cells And Dormancy In Cancer: Opportunities For Novel Therapeutic Interventions, Jinsong Liu, Na Niu, Xiaoran Li, Xudong Zhang, Anil K Sood
Faculty, Staff and Student Publications
Recent data suggest that most genotoxic agents in cancer therapy can lead to shock of genome and increase in cell size, which leads whole genome duplication or multiplication, formation of polyploid giant cancer cells, activation of an early embryonic program, and dedifferentiation of somatic cells. This process is achieved via the giant cell life cycle, a recently proposed mechanism for malignant transformation of somatic cells. Increase in both cell size and ploidy allows cells to completely or partially restructures the genome and develop into a blastocyst-like structure, similar to that observed in blastomere-stage embryogenesis. Although blastocyst-like structures with reprogrammed genome …
The Androgen Receptor Is A Therapeutic Target In Desmoplastic Small Round Cell Sarcoma, Salah-Eddine Lamhamedi-Cherradi, Mayinuer Maitituoheti, Brian A Menegaz, Sandhya Krishnan, Amelia M Vetter, Pamela Camacho, Chia-Chin Wu, Hannah C Beird, Robert W Porter, Davis R Ingram, Vandhana Ramamoorthy, Sana Mohiuddin, David Mccall, Danh D Truong, Branko Cuglievan, P Andrew Futreal, Alejandra Ruiz Velasco, Nazanin Esmaeili Anvar, Budi Utama, Mark Titus, Alexander J Lazar, Wei-Lien Wang, Cristian Rodriguez-Aguayo, Ravin Ratan, J Andrew Livingston, Kunal Rai, A Robert Macleod, Najat C Daw, Andrea Hayes-Jordan, Joseph A Ludwig
The Androgen Receptor Is A Therapeutic Target In Desmoplastic Small Round Cell Sarcoma, Salah-Eddine Lamhamedi-Cherradi, Mayinuer Maitituoheti, Brian A Menegaz, Sandhya Krishnan, Amelia M Vetter, Pamela Camacho, Chia-Chin Wu, Hannah C Beird, Robert W Porter, Davis R Ingram, Vandhana Ramamoorthy, Sana Mohiuddin, David Mccall, Danh D Truong, Branko Cuglievan, P Andrew Futreal, Alejandra Ruiz Velasco, Nazanin Esmaeili Anvar, Budi Utama, Mark Titus, Alexander J Lazar, Wei-Lien Wang, Cristian Rodriguez-Aguayo, Ravin Ratan, J Andrew Livingston, Kunal Rai, A Robert Macleod, Najat C Daw, Andrea Hayes-Jordan, Joseph A Ludwig
Faculty, Staff and Student Publications
Desmoplastic small round cell tumor (DSRCT) is an aggressive, usually incurable sarcoma subtype that predominantly occurs in post-pubertal young males. Recent evidence suggests that the androgen receptor (AR) can promote tumor progression in DSRCTs. However, the mechanism of AR-induced oncogenic stimulation remains undetermined. Herein, we demonstrate that enzalutamide and AR-directed antisense oligonucleotides (AR-ASO) block 5α-dihydrotestosterone (DHT)-induced DSRCT cell proliferation and reduce xenograft tumor burden. Gene expression analysis and chromatin immunoprecipitation sequencing (ChIP-seq) were performed to elucidate how AR signaling regulates cellular epigenetic programs. Remarkably, ChIP-seq revealed novel DSRCT-specific AR DNA binding sites adjacent to key oncogenic regulators, including WT1 (the …
Experimental Models Of Undifferentiated Pleomorphic Sarcoma And Malignant Peripheral Nerve Sheath Tumor, Angela D Bhalla, Sharon M Landers, Anand K Singh, Jace P Landry, Michelle G Yeagley, Gabryella S B Myerson, Cristian B Delgado-Baez, Stephanie Dunnand, Theresa Nguyen, Xiaoyan Ma, Svetlana Bolshakov, Brian A Menegaz, Salah-Eddine Lamhamedi-Cherradi, Xizeng Mao, Xingzhi Song, Alexander J Lazar, Ian E Mccutcheon, John M Slopis, Joseph A Ludwig, Dina C Lev, Kunal Rai, Keila E Torres
Experimental Models Of Undifferentiated Pleomorphic Sarcoma And Malignant Peripheral Nerve Sheath Tumor, Angela D Bhalla, Sharon M Landers, Anand K Singh, Jace P Landry, Michelle G Yeagley, Gabryella S B Myerson, Cristian B Delgado-Baez, Stephanie Dunnand, Theresa Nguyen, Xiaoyan Ma, Svetlana Bolshakov, Brian A Menegaz, Salah-Eddine Lamhamedi-Cherradi, Xizeng Mao, Xingzhi Song, Alexander J Lazar, Ian E Mccutcheon, John M Slopis, Joseph A Ludwig, Dina C Lev, Kunal Rai, Keila E Torres
Faculty, Staff and Student Publications
Undifferentiated pleomorphic sarcoma (UPS) and malignant peripheral nerve sheath tumor (MPNST) are aggressive soft tissue sarcomas that do not respond well to current treatment modalities. The limited availability of UPS and MPNST cell lines makes it challenging to identify potential therapeutic targets in a laboratory setting. Understanding the urgent need for improved treatments for these tumors and the limited cellular models available, we generated additional cell lines to study these rare cancers. Patient-derived tumors were used to establish 4 new UPS models, including one radiation-associated UPS-UPS271.1, UPS511, UPS0103, and RIS620, one unclassified spindle cell sarcoma-USC060.1, and 3 new models of …
Gli1 Activates Pro-Fibrotic Pathways In Myelofibrosis Fibrocytes, Taghi Manshouri, Ivo Veletic, Ping Li, C Cameron Yin, Sean M Post, Srdan Verstovsek, Zeev Estrov
Gli1 Activates Pro-Fibrotic Pathways In Myelofibrosis Fibrocytes, Taghi Manshouri, Ivo Veletic, Ping Li, C Cameron Yin, Sean M Post, Srdan Verstovsek, Zeev Estrov
Faculty, Staff and Student Publications
Bone marrow (BM) fibrosis was thought to be induced exclusively by mesenchymal stromal cells (MSCs). However, we and others found that neoplastic fibrocytes induce BM fibrosis in myelofibrosis (MF). Because glioma-associated oncogene-1 (GLI1), an effector of the Hedgehog pathway, plays a role in the induction of BM fibrosis, we wondered whether GLI1 affects fibrocyte-induced BM fibrosis in MF. Multiplexed fluorescence immunohistochemistry analysis of MF patients' BM detected high levels of GLI1 in MF fibrocytes compared to MSCs or normal fibrocytes. Immunostaining, RNA in situ hybridization, gene expression analysis, and western immunoblotting detected high levels of GLI1 and GLI1-induced matrix metalloproteases …
Rapid Acceleration Of Kras-Mutant Pancreatic Carcinogenesis Via Remodeling Of Tumor Immune Microenvironment By Pparδ, Yi Liu, Yasunori Deguchi, Daoyan Wei, Fuyao Liu, Micheline J Moussalli, Eriko Deguchi, Donghui Li, Huamin Wang, Lovie Ann Valentin, Jennifer K Colby, Jing Wang, Xiaofeng Zheng, Haoqiang Ying, Mihai Gagea, Baoan Ji, Jiaqi Shi, James C Yao, Xiangsheng Zuo, Imad Shureiqi
Rapid Acceleration Of Kras-Mutant Pancreatic Carcinogenesis Via Remodeling Of Tumor Immune Microenvironment By Pparδ, Yi Liu, Yasunori Deguchi, Daoyan Wei, Fuyao Liu, Micheline J Moussalli, Eriko Deguchi, Donghui Li, Huamin Wang, Lovie Ann Valentin, Jennifer K Colby, Jing Wang, Xiaofeng Zheng, Haoqiang Ying, Mihai Gagea, Baoan Ji, Jiaqi Shi, James C Yao, Xiangsheng Zuo, Imad Shureiqi
Faculty, Staff and Student Publications
Pancreatic intraepithelial neoplasia (PanIN) is a precursor of pancreatic ductal adenocarcinoma (PDAC), which commonly occurs in the general populations with aging. Although most PanIN lesions (PanINs) harbor oncogenic KRAS mutations that initiate pancreatic tumorigenesis; PanINs rarely progress to PDAC. Critical factors that promote this progression, especially targetable ones, remain poorly defined. We show that peroxisome proliferator-activated receptor-delta (PPARδ), a lipid nuclear receptor, is upregulated in PanINs in humans and mice. Furthermore, PPARδ ligand activation by a high-fat diet or GW501516 (a highly selective, synthetic PPARδ ligand) in mutant KRASG12D (KRASmu) pancreatic epithelial cells strongly accelerates PanIN progression to PDAC. This …