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Articles 121 - 150 of 385
Full-Text Articles in Medical Cell Biology
Targeted Insertion Of Conditional Expression Cassettes Into The Mouse Genome Using The Modified I-Pitt, Hiromi Miura, Ayaka Nakamura, Aki Kurosaki, Ai Kotani, Masaru Motojima, Keiko Tanaka, Shigeru Kakuta, Sanae Ogiwara, Yuhsuke Ohmi, Hirotaka Komaba, Samantha L. P. Schilit, Cynthia C. Morton, Channabasavaiah B. Gurumurthy, Masato Ohtsuka
Targeted Insertion Of Conditional Expression Cassettes Into The Mouse Genome Using The Modified I-Pitt, Hiromi Miura, Ayaka Nakamura, Aki Kurosaki, Ai Kotani, Masaru Motojima, Keiko Tanaka, Shigeru Kakuta, Sanae Ogiwara, Yuhsuke Ohmi, Hirotaka Komaba, Samantha L. P. Schilit, Cynthia C. Morton, Channabasavaiah B. Gurumurthy, Masato Ohtsuka
Journal Articles: Genetics, Cell Biology & Anatomy
BACKGROUND: Transgenic (Tg) mice are widely used in biomedical research, and they are typically generated by injecting transgenic DNA cassettes into pronuclei of one-cell stage zygotes. Such animals often show unreliable expression of the transgenic DNA, one of the major reasons for which is random insertion of the transgenes. We previously developed a method called "pronuclear injection-based targeted transgenesis" (PITT), in which DNA constructs are directed to insert at pre-designated genomic loci. PITT was achieved by pre-installing so called landing pad sequences (such as heterotypic LoxP sites or attP sites) to create seed mice and then injecting Cre recombinase or …
Folate Regulation Of Planar Cell Polarity Pathway And F-Actin Through Folate Receptor Alpha, Xiao Han, Xuanye Cao, Robert M Cabrera, Paula Andrea Pimienta Ramirez, Ying Linda Lin, Bogdan J Wlodarczyk, Cuilian Zhang, Richard H Finnell, Yunping Lei
Folate Regulation Of Planar Cell Polarity Pathway And F-Actin Through Folate Receptor Alpha, Xiao Han, Xuanye Cao, Robert M Cabrera, Paula Andrea Pimienta Ramirez, Ying Linda Lin, Bogdan J Wlodarczyk, Cuilian Zhang, Richard H Finnell, Yunping Lei
Faculty, Staff and Students Publications
Folate deficiency contribute to neural tube defects (NTDs) which could be rescued by folate supplementation. However, the underlying mechanisms are still not fully understood. Besides, there is considerable controversy concerning the forms of folate used for supplementation. To address this controversy, we prepared culture medium with different forms of folate, Folic acid (FA) and 5-methyltetrahydrofolate(5mTHF), at concentration of 5uM, 500nM, 50nM and folate free, respectively. Mouse embryonic fibroblasts (MEFs) were treated with different folates continuously for three passages and cell proliferation and F-actin was monitored. We determined that compared to 5mTHF, FA showed stronger effects on promoting cell proliferation and …
Triobp Modulates Β-Catenin Signaling By Regulation Of Mir-29b In Idiopathic Pulmonary Fibrosis, Lan Wang, Wenyu Zhao, Cong Xia, Shuaichen Ma, Zhongzheng Li, Ningdan Wang, Linke Ding, Yaxuan Wang, Lianhui Cheng, Huibing Liu, Juntang Yang, Yajun Li, Ivan Rosas, Guoying Yu
Triobp Modulates Β-Catenin Signaling By Regulation Of Mir-29b In Idiopathic Pulmonary Fibrosis, Lan Wang, Wenyu Zhao, Cong Xia, Shuaichen Ma, Zhongzheng Li, Ningdan Wang, Linke Ding, Yaxuan Wang, Lianhui Cheng, Huibing Liu, Juntang Yang, Yajun Li, Ivan Rosas, Guoying Yu
Faculty, Staff and Students Publications
Idiopathic pulmonary fibrosis (IPF) is a fatal and devastating lung disease of unknown etiology, described as the result of multiple cycles of epithelial cell injury and fibroblast activation. Despite this impressive increase in understanding, a therapy that reverses this form of fibrosis remains elusive. In our previous study, we found that miR-29b has a therapeutic effect on pulmonary fibrosis. However, its anti-fibrotic mechanism is not yet clear. Recently, our study identified that F-Actin Binding Protein (TRIOBP) is one of the target genes of miR-29b and found that deficiency of TRIOBP increases resistance to lung fibrosis in vivo. TRIOBP knockdown inhibited …
Xtx101, A Tumor-Activated, Fc-Enhanced Anti-Ctla-4 Monoclonal Antibody, Demonstrates Tumor-Growth Inhibition And Tumor-Selective Pharmacodynamics In Mouse Models Of Cancer, Kurt A. Jenkins, Miso Park, Magali Pederzoli-Ribeil, Ugur Eskiocak, Parker Johnson, Wilson Guzman, Megan Mclaughlin, Deborah Moore-Lai, Caitlin O'Toole, Zhen Liu, Benjamin Nicholson, Veronica Flesch, Huawei Qiu, Tim Clackson, Ronan C. O'Hagan, Ulrich Rodeck, Margaret Karow, Jennifer O'Neil, John C. Williams
Xtx101, A Tumor-Activated, Fc-Enhanced Anti-Ctla-4 Monoclonal Antibody, Demonstrates Tumor-Growth Inhibition And Tumor-Selective Pharmacodynamics In Mouse Models Of Cancer, Kurt A. Jenkins, Miso Park, Magali Pederzoli-Ribeil, Ugur Eskiocak, Parker Johnson, Wilson Guzman, Megan Mclaughlin, Deborah Moore-Lai, Caitlin O'Toole, Zhen Liu, Benjamin Nicholson, Veronica Flesch, Huawei Qiu, Tim Clackson, Ronan C. O'Hagan, Ulrich Rodeck, Margaret Karow, Jennifer O'Neil, John C. Williams
Department of Dermatology and Cutaneous Biology Faculty Papers
INTRODUCTION: The clinical benefit of the anti-CTLA-4 monoclonal antibody (mAb) ipilimumab has been well established but limited by immune-related adverse events, especially when ipilimumab is used in combination with anti-PD-(L)1 mAb therapy. To overcome these limitations, we have developed XTX101, a tumor-activated, Fc-enhanced anti-CTLA-4 mAb.
METHODS: XTX101 consists of an anti-human CTLA-4 mAb covalently linked to masking peptides that block the complementarity-determining regions, thereby minimizing the mAb binding to CTLA-4. The masking peptides are designed to be released by proteases that are typically dysregulated within the tumor microenvironment (TME), resulting in activation of XTX101 intratumorally. Mutations within the Fc region …
Hnf4Α Isoforms Regulate The Circadian Balance Between Carbohydrate And Lipid Metabolism In The Liver, Jonathan R Deans, Poonamjot Deol, Nina Titova, Sarah H Radi, Linh M Vuong, Jane R Evans, Songqin Pan, Johannes Fahrmann, Jun Yang, Bruce D Hammock, Oliver Fiehn, Baharan Fekry, Kristin Eckel-Mahan, Frances M Sladek
Hnf4Α Isoforms Regulate The Circadian Balance Between Carbohydrate And Lipid Metabolism In The Liver, Jonathan R Deans, Poonamjot Deol, Nina Titova, Sarah H Radi, Linh M Vuong, Jane R Evans, Songqin Pan, Johannes Fahrmann, Jun Yang, Bruce D Hammock, Oliver Fiehn, Baharan Fekry, Kristin Eckel-Mahan, Frances M Sladek
Faculty, Staff and Student Publications
Hepatocyte Nuclear Factor 4α (HNF4α), a master regulator of hepatocyte differentiation, is regulated by two promoters (P1 and P2) which drive the expression of different isoforms. P1-HNF4α is the major isoform in the adult liver while P2-HNF4α is thought to be expressed only in fetal liver and liver cancer. Here, we show that P2-HNF4α is indeed expressed in the normal adult liver at Zeitgeber time (ZT)9 and ZT21. Using exon swap mice that express only P2-HNF4α we show that this isoform orchestrates a distinct transcriptome and metabolome via unique chromatin and protein-protein interactions, including with different clock proteins at different …
Enhanced Cd19 Activity In B Cells Contributes To Immunodeficiency In Mice Deficient In The Icf Syndrome Gene Zbtb24, Zhengzhou Ying, Swanand Hardikar, Joshua B Plummer, Tewfik Hamidi, Bin Liu, Yueping Chen, Jianjun Shen, Yunxiang Mu, Kevin M Mcbride, Taiping Chen
Enhanced Cd19 Activity In B Cells Contributes To Immunodeficiency In Mice Deficient In The Icf Syndrome Gene Zbtb24, Zhengzhou Ying, Swanand Hardikar, Joshua B Plummer, Tewfik Hamidi, Bin Liu, Yueping Chen, Jianjun Shen, Yunxiang Mu, Kevin M Mcbride, Taiping Chen
Faculty, Staff and Student Publications
Immunodeficiency, centromeric instability, and facial anomalies (ICF) syndrome is a rare autosomal recessive disorder characterized by DNA hypomethylation and antibody deficiency. It is caused by mutations in DNMT3B, ZBTB24, CDCA7, or HELLS. While progress has been made in elucidating the roles of these genes in regulating DNA methylation, little is known about the pathogenesis of the life-threatening hypogammaglobulinemia phenotype. Here, we show that mice deficient in Zbtb24 in the hematopoietic lineage recapitulate the major clinical features of patients with ICF syndrome. Specifically, Vav-Cre-mediated ablation of Zbtb24 does not affect lymphocyte development but results in reduced plasma cells and low levels …
The Brd4-Nut Fusion Alone Drives Malignant Transformation Of Nut Carcinoma, R Taylor Durall, Julianna Huang, Luke Wojenski, Yeying Huang, Prafulla C Gokhale, Brittaney A Leeper, Joshua O Nash, Pedro L Ballester, Scott Davidson, Adam Shlien, Emmanuel Sotirakis, Fabien Bertaux, Vincent Dubus, Jia Luo, Catherine J Wu, Derin B Keskin, Kyle P Eagen, Geoffrey I Shapiro, Christopher A French
The Brd4-Nut Fusion Alone Drives Malignant Transformation Of Nut Carcinoma, R Taylor Durall, Julianna Huang, Luke Wojenski, Yeying Huang, Prafulla C Gokhale, Brittaney A Leeper, Joshua O Nash, Pedro L Ballester, Scott Davidson, Adam Shlien, Emmanuel Sotirakis, Fabien Bertaux, Vincent Dubus, Jia Luo, Catherine J Wu, Derin B Keskin, Kyle P Eagen, Geoffrey I Shapiro, Christopher A French
Faculty, Staff and Students Publications
NUT carcinoma (NC) is an aggressive squamous carcinoma defined by the BRD4-NUT fusion oncoprotein. Routinely effective systemic treatments are unavailable for most NC patients. The lack of an adequate animal model precludes identifying and leveraging cell-extrinsic factors therapeutically in NC. Here, we created a genetically engineered mouse model (GEMM) of NC that forms a Brd4::NUTM1 fusion gene upon tamoxifen induction of Sox2-driven Cre. The model displayed complete disease penetrance, with tumors arising from the squamous epithelium weeks after induction and all mice succumbing to the disease shortly thereafter. Closely resembling human NC (hNC), GEMM tumors (mNC) were poorly differentiated squamous …
Molecular Basis Of Retinal Remodeling In A Zebrafish Model Of Retinitis Pigmentosa, Abirami Santhanam, Eyad Shihabeddin, Haichao Wei, Jiaqian Wu, John O'Brien
Molecular Basis Of Retinal Remodeling In A Zebrafish Model Of Retinitis Pigmentosa, Abirami Santhanam, Eyad Shihabeddin, Haichao Wei, Jiaqian Wu, John O'Brien
Faculty, Staff and Student Publications
A hallmark of inherited retinal degenerative diseases such as retinitis pigmentosa (RP) is progressive structural and functional remodeling of the remaining retinal cells as photoreceptors degenerate. Extensive remodeling of the retina stands as a barrier for the successful implementation of strategies to restore vision. To understand the molecular basis of remodeling, we performed analyses of single-cell transcriptome data from adult zebrafish retina of wild type AB strain (WT) and a P23H mutant rhodopsin transgenic model of RP with continuous degeneration and regeneration. Retinas from both female and male fish were pooled to generate each library, combining data from both sexes. …
The Role Of Noncoding Rnas In Pancreatic Birth Defects, Ziyue Zoey Yang, Ronald J Parchem
The Role Of Noncoding Rnas In Pancreatic Birth Defects, Ziyue Zoey Yang, Ronald J Parchem
Faculty, Staff and Students Publications
Congenital defects in the pancreas can cause severe health issues such as pancreatic cancer and diabetes which require lifelong treatment. Regenerating healthy pancreatic cells to replace malfunctioning cells has been considered a promising cure for pancreatic diseases including birth defects. However, such therapies are currently unavailable in the clinic. The developmental gene regulatory network underlying pancreatic development must be reactivated for in vivo regeneration and recapitulated in vitro for cell replacement therapy. Thus, understanding the mechanisms driving pancreatic development will pave the way for regenerative therapies. Pancreatic progenitor cells are the precursors of all pancreatic cells which use epigenetic changes …
Nad+ Rescues Aging-Induced Blood-Brain Barrier Damage Via The Cx43-Parp1 Axis, Rui Zhan, Xia Meng, Dongping Tian, Jie Xu, Hongtu Cui, Jialei Yang, Yangkai Xu, Mingming Shi, Jing Xue, Weiwei Yu, Gaofei Hu, Ke Li, Xiaoxiao Ge, Qi Zhang, Mingming Zhao, Jianyong Du, Xin Guo, Wenli Xu, Yang Gao, Changyu Yao, Fan Chen, Yue Chen, Wenxin Shan, Yujie Zhu, Liang Ji, Bing Pan, Yan Yu, Wenguang Li, Xuyang Zhao, Qihua He, Xiaohui Liu, Yue Huang, Shengyou Liao, Bin Zhou, Dehua Chui, Y Eugene Chen, Zheng Sun, Erdan Dong, Yongjun Wang, Lemin Zheng
Nad+ Rescues Aging-Induced Blood-Brain Barrier Damage Via The Cx43-Parp1 Axis, Rui Zhan, Xia Meng, Dongping Tian, Jie Xu, Hongtu Cui, Jialei Yang, Yangkai Xu, Mingming Shi, Jing Xue, Weiwei Yu, Gaofei Hu, Ke Li, Xiaoxiao Ge, Qi Zhang, Mingming Zhao, Jianyong Du, Xin Guo, Wenli Xu, Yang Gao, Changyu Yao, Fan Chen, Yue Chen, Wenxin Shan, Yujie Zhu, Liang Ji, Bing Pan, Yan Yu, Wenguang Li, Xuyang Zhao, Qihua He, Xiaohui Liu, Yue Huang, Shengyou Liao, Bin Zhou, Dehua Chui, Y Eugene Chen, Zheng Sun, Erdan Dong, Yongjun Wang, Lemin Zheng
Faculty, Staff and Students Publications
Blood-brain barrier (BBB) function deteriorates during aging, contributing to cognitive impairment and neurodegeneration. It is unclear what drives BBB leakage in aging and how it can be prevented. Using single-nucleus transcriptomics, we identified decreased connexin 43 (CX43) expression in cadherin-5
Srcap Mutations Drive Clonal Hematopoiesis Through Epigenetic And Dna Repair Dysregulation, Chun-Wei Chen, Linda Zhang, Ravi Dutta, Abhishek Niroula, Peter G Miller, Christopher J Gibson, Alexander G Bick, Jaime M Reyes, Yi-Tang Lee, Ayala Tovy, Tianpeng Gu, Sarah Waldvogel, Yi-Hung Chen, Bryan J Venters, Pierre-Olivier Estève, Sriharsa Pradhan, Michael-Christopher Keogh, Pradeep Natarajan, Koichi Takahashi, Adam S Sperling, Margaret A Goodell
Srcap Mutations Drive Clonal Hematopoiesis Through Epigenetic And Dna Repair Dysregulation, Chun-Wei Chen, Linda Zhang, Ravi Dutta, Abhishek Niroula, Peter G Miller, Christopher J Gibson, Alexander G Bick, Jaime M Reyes, Yi-Tang Lee, Ayala Tovy, Tianpeng Gu, Sarah Waldvogel, Yi-Hung Chen, Bryan J Venters, Pierre-Olivier Estève, Sriharsa Pradhan, Michael-Christopher Keogh, Pradeep Natarajan, Koichi Takahashi, Adam S Sperling, Margaret A Goodell
Faculty, Staff and Students Publications
Somatic mutations accumulate in all cells with age and can confer a selective advantage, leading to clonal expansion over time. In hematopoietic cells, mutations in a subset of genes regulating DNA repair or epigenetics frequently lead to clonal hematopoiesis (CH). Here, we describe the context and mechanisms that lead to enrichment of hematopoietic stem cells (HSCs) with mutations in SRCAP, which encodes a chromatin remodeler that also influences DNA repair. We show that SRCAP mutations confer a selective advantage in human cells and in mice upon treatment with the anthracycline-class chemotherapeutic doxorubicin and bone marrow transplantation. Furthermore, Srcap mutations lead …
Camkk2 As An Emerging Treatment Target For Bipolar Disorder, Jacqueline Kaiser, Kevin Nay, Christopher R Horne, Luke M Mcaloon, Oliver K Fuller, Abbey G Muller, Douglas G Whyte, Anthony R Means, Ken Walder, Michael Berk, Anthony J Hannan, James M Murphy, Mark A Febbraio, Andrew L Gundlach, John W Scott
Camkk2 As An Emerging Treatment Target For Bipolar Disorder, Jacqueline Kaiser, Kevin Nay, Christopher R Horne, Luke M Mcaloon, Oliver K Fuller, Abbey G Muller, Douglas G Whyte, Anthony R Means, Ken Walder, Michael Berk, Anthony J Hannan, James M Murphy, Mark A Febbraio, Andrew L Gundlach, John W Scott
Faculty, Staff and Students Publications
Current pharmacological treatments for bipolar disorder are inadequate and based on serendipitously discovered drugs often with limited efficacy, burdensome side-effects, and unclear mechanisms of action. Advances in drug development for the treatment of bipolar disorder remain incremental and have come largely from repurposing drugs used for other psychiatric conditions, a strategy that has failed to find truly revolutionary therapies, as it does not target the mood instability that characterises the condition. The lack of therapeutic innovation in the bipolar disorder field is largely due to a poor understanding of the underlying disease mechanisms and the consequent absence of validated drug …
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
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 …
P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther
P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther
Faculty, Staff and Students Publications
The liver plays a significant role in regulating a wide range of metabolic, homeostatic, and host-defense functions. However, the impact of liver injury on the host's ability to control bacteremia and morbidity in sepsis is not well understood. Leukocyte recruitment and activation lead to cytokine and chemokine release, which, in turn, trigger hepatocellular injury and elevate nucleotide levels in the extracellular milieu. P2Y2 purinergic receptors, G protein-coupled and activated by extracellular ATP/UTP, are expressed at the cell surface of hepatocytes and nonparenchymal cells. We sought to determine whether P2Y2 purinergic receptor function is necessary for the maladaptive host response to …
Pax3 Lineage-Specific Deletion Of Gpr161 Is Associated With Spinal Neural Tube And Craniofacial Malformations During Embryonic Development, Sung-Eun Kim, Pooja J Chothani, Rehana Shaik, Westley Pollard, Richard H Finnell
Pax3 Lineage-Specific Deletion Of Gpr161 Is Associated With Spinal Neural Tube And Craniofacial Malformations During Embryonic Development, Sung-Eun Kim, Pooja J Chothani, Rehana Shaik, Westley Pollard, Richard H Finnell
Faculty, Staff and Students Publications
Sonic hedgehog (Shh) signaling is the morphogen signaling that regulates embryonic craniofacial and neural tube development. G protein-coupled receptor 161 (Gpr161) is a negative regulator of Shh signaling, and its inactivation in mice results in embryo lethality associated with craniofacial defects and neural tube defects. However, the structural defects of later embryonic stages and cell lineages underlying abnormalities have not been well characterized due to the limited lifespan of Gpr161 null mice. We found that embryos with Pax3 lineage-specific deletion of Gpr161 presented with tectal hypertrophy (anterior dorsal neuroepithelium), cranial vault and facial bone hypoplasia (cranial neural crest), vertebral abnormalities …
P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther
P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther
Faculty, Staff and Students Publications
Prostate cancer (PCa) remains a leading cause of mortality among American men, with metastatic and recurrent disease posing significant therapeutic challenges due to a limited comprehension of the underlying biological processes governing disease initiation, dormancy, and progression. The conventional use of PCa cell lines has proven inadequate in elucidating the intricate molecular mechanisms driving PCa carcinogenesis, hindering the development of effective treatments. To address this gap, patient-derived primary cell cultures have been developed and play a pivotal role in unraveling the pathophysiological intricacies unique to PCa in each individual, offering valuable insights for translational research. This review explores the applications …
A Small-Molecule Inhibitor Of Topbp1 Exerts Anti-Myc Activity And Synergy With Parp Inhibitors, Fang-Tsyr Lin, Kang Liu, Lidija A Wilhelms Garan, Helena Folly-Kossi, Yongcheng Song, Shwu-Jiuan Lin, Weei-Chin Lin
A Small-Molecule Inhibitor Of Topbp1 Exerts Anti-Myc Activity And Synergy With Parp Inhibitors, Fang-Tsyr Lin, Kang Liu, Lidija A Wilhelms Garan, Helena Folly-Kossi, Yongcheng Song, Shwu-Jiuan Lin, Weei-Chin Lin
Faculty, Staff and Students Publications
We have previously identified TopBP1 (topoisomerase IIβ-binding protein 1) as a promising target for cancer therapy, given its role in the convergence of Rb, PI(3)K/Akt, and p53 pathways. Based on this, we conducted a large-scale molecular docking screening to identify a small-molecule inhibitor that specifically targets the BRCT7/8 domains of TopBP1, which we have named 5D4. Our studies show that 5D4 inhibits TopBP1 interactions with E2F1, mutant p53, and Cancerous Inhibitor of Protein Phosphatase 2A. This leads to the activation of E2F1-mediated apoptosis and the inhibition of mutant p53 gain of function. In addition, 5D4 disrupts the interaction of TopBP1 …
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
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 …
Functional Analysis Reveals Driver Cooperativity And Novel Mechanisms In Endometrial Carcinogenesis, Matthew Brown, Alicia Leon, Katarzyna Kedzierska, Charlotte Moore, Hayley L Belnoue-Davis, Susanne Flach, John P Lydon, Francesco J Demayo, Annabelle Lewis, Tjalling Bosse, Ian Tomlinson, David N Church
Functional Analysis Reveals Driver Cooperativity And Novel Mechanisms In Endometrial Carcinogenesis, Matthew Brown, Alicia Leon, Katarzyna Kedzierska, Charlotte Moore, Hayley L Belnoue-Davis, Susanne Flach, John P Lydon, Francesco J Demayo, Annabelle Lewis, Tjalling Bosse, Ian Tomlinson, David N Church
Faculty, Staff and Students Publications
High-risk endometrial cancer has poor prognosis and is increasing in incidence. However, understanding of the molecular mechanisms which drive this disease is limited. We used genetically engineered mouse models (GEMM) to determine the functional consequences of missense and loss of function mutations in Fbxw7, Pten and Tp53, which collectively occur in nearly 90% of high-risk endometrial cancers. We show that Trp53 deletion and missense mutation cause different phenotypes, with the latter a substantially stronger driver of endometrial carcinogenesis. We also show that Fbxw7 missense mutation does not cause endometrial neoplasia on its own, but potently accelerates carcinogenesis caused by Pten …
Sex Hormone-Binding Globulin (Shbg) Mitigates Er Stress And Improves Viability And Insulin Sensitivity In Adipose-Derived Mesenchymal Stem Cells (Asc) Of Equine Metabolic Syndrome (Ems)-Affected Horses, Nabila Bourebaba, Mateusz Sikora, Badr Qasem, Lynda Bourebaba, Krzysztof Marycz
Sex Hormone-Binding Globulin (Shbg) Mitigates Er Stress And Improves Viability And Insulin Sensitivity In Adipose-Derived Mesenchymal Stem Cells (Asc) Of Equine Metabolic Syndrome (Ems)-Affected Horses, Nabila Bourebaba, Mateusz Sikora, Badr Qasem, Lynda Bourebaba, Krzysztof Marycz
Faculty, Staff and Student Publications
BACKGROUND: Equine metabolic syndrome (EMS), which encompasses insulin resistance, low-grade inflammation and predisposition to laminitis is a critical endocrine disorder among the most prevalent conditions affecting horses from different breeds. According to the most recent research, low human sex hormone-binding globulin (SHBG) serum levels correlate with an increased risk of obesity, insulin resistance and diabetes, and may contribute to overall metabolic dysregulations. This study aimed to test whether exogenous SHBG could protect EMS affected adipose-derived stromal stem cells (EqASC
METHODS: EqASC
RESULTS: Obtained data demonstrated that exogenous SHBG treatment significantly promoted ASCs cells proliferation, cell cycle and survival with reduced …
Antimicrobial Mitochondrial Reactive Oxygen Species Induction By Lung Epithelial Immunometabolic Modulation, Yongxing Wang, Vikram V Kulkarni, Jezreel Pantaleón García, Miguel M Leiva-Juárez, David L Goldblatt, Fahad Gulraiz, Lisandra Vila Ellis, Jichao Chen, Michael K Longmire, Sri Ramya Donepudi, Philip L Lorenzi, Hao Wang, Lee-Jun Wong, Michael J Tuvim, Scott E Evans
Antimicrobial Mitochondrial Reactive Oxygen Species Induction By Lung Epithelial Immunometabolic Modulation, Yongxing Wang, Vikram V Kulkarni, Jezreel Pantaleón García, Miguel M Leiva-Juárez, David L Goldblatt, Fahad Gulraiz, Lisandra Vila Ellis, Jichao Chen, Michael K Longmire, Sri Ramya Donepudi, Philip L Lorenzi, Hao Wang, Lee-Jun Wong, Michael J Tuvim, Scott E Evans
Faculty, Staff and Student Publications
Pneumonia is a worldwide threat, making discovery of novel means to combat lower respiratory tract infection an urgent need. Manipulating the lungs' intrinsic host defenses by therapeutic delivery of certain pathogen-associated molecular patterns protects mice against pneumonia in a reactive oxygen species (ROS)-dependent manner. Here we show that antimicrobial ROS are induced from lung epithelial cells by interactions of CpG oligodeoxynucleotides (ODN) with mitochondrial voltage-dependent anion channel 1 (VDAC1). The ODN-VDAC1 interaction alters cellular ATP/ADP/AMP localization, increases delivery of electrons to the electron transport chain (ETC), increases mitochondrial membrane potential (ΔΨm), differentially modulates ETC complex activities and consequently results in …
Bcl-2 Inhibition Combined With Pparα Activation Synergistically Targets Leukemic Stem Cell-Like Cells In Acute Myeloid Leukemia, Chendi Xie, Hui Zhou, Dongmei Qin, Huijian Zheng, Yuanfang Tang, Wenjuan Li, Jie Zhou, Long Liu, Xinxin Yu, Hongpeng Duan, Yong Zhou, Zhifeng Li, Zhihong Fang, Yiming Luo, Bing Z Carter, Bing Xu, Jie Zha
Bcl-2 Inhibition Combined With Pparα Activation Synergistically Targets Leukemic Stem Cell-Like Cells In Acute Myeloid Leukemia, Chendi Xie, Hui Zhou, Dongmei Qin, Huijian Zheng, Yuanfang Tang, Wenjuan Li, Jie Zhou, Long Liu, Xinxin Yu, Hongpeng Duan, Yong Zhou, Zhifeng Li, Zhihong Fang, Yiming Luo, Bing Z Carter, Bing Xu, Jie Zha
Faculty, Staff and Student Publications
Persistence of leukemic stem cells (LSCs) is one of the determining factors to acute myeloid leukemia (AML) treatment failure and responsible for the poor prognosis of the disease. Hence, novel therapeutic strategies that target LSCs are crucial for treatment success. We investigated if targeting Bcl-2 and peroxisome proliferator activated receptor α (PPARα), two distinct cell survival regulating mechanisms could eliminate LSCs. This study demonstrate that the Bcl-2 inhibitor venetoclax combined with the PPARα agonist chiglitazar resulted in synergistic killing of LSC-like cell lines and CD34+ primary AML cells while sparing their normal counterparts. Furthermore, the combination regimen significantly suppressed AML …
Flavonoids Quercetin And Kaempferol Are Nr4a1 Antagonists And Suppress Endometriosis In Female Mice, Lei Zhang, Kumaravel Mohankumar, Gregory Martin, Fuada Mariyam, Yuri Park, Sang Jun Han, Stephen Safe
Flavonoids Quercetin And Kaempferol Are Nr4a1 Antagonists And Suppress Endometriosis In Female Mice, Lei Zhang, Kumaravel Mohankumar, Gregory Martin, Fuada Mariyam, Yuri Park, Sang Jun Han, Stephen Safe
Faculty, Staff and Students Publications
Nuclear receptor 4A1 (NR4A1) plays an important role in endometriosis progression; levels of NR4A1 in endometriotic lesions are higher than in normal endometrium, and substituted bis-indole analogs (NR4A1) antagonists suppress endometriosis progression in mice with endometriosis. In addition, the flavonoids kaempferol and quercetin are natural products that directly bind NR4A1 and significantly repress the intrinsic NR4A1-dependent transcriptional activity in human endometriotic epithelial and stromal cells and Ishikawa endometrial cancer cells. NR4A1 knockdown and inhibition of NR4A1 by kaempferol and quercetin suppressed proliferation of human endometriotic epithelial cells and Ishikawa cells by inhibiting epidermal growth factor receptor/c-Myc/survivin-mediated growth-promoting and survival pathways, …
A Non-Coding Insertional Mutation Of Grhl2 Causes Gene Over-Expression And Multiple Structural Anomalies Including Cleft Palate, Spina Bifida And Encephalocele, Zoe Crane-Smith, Sandra C P De Castro, Evanthia Nikolopoulou, Paul Wolujewicz, Damian Smedley, Yunping Lei, Emma Mather, Chloe Santos, Mark Hopkinson, Andrew A Pitsillides, Richard H Finnell, M Elisabeth Ross, Andrew J Copp, Nicholas D E Greene
A Non-Coding Insertional Mutation Of Grhl2 Causes Gene Over-Expression And Multiple Structural Anomalies Including Cleft Palate, Spina Bifida And Encephalocele, Zoe Crane-Smith, Sandra C P De Castro, Evanthia Nikolopoulou, Paul Wolujewicz, Damian Smedley, Yunping Lei, Emma Mather, Chloe Santos, Mark Hopkinson, Andrew A Pitsillides, Richard H Finnell, M Elisabeth Ross, Andrew J Copp, Nicholas D E Greene
Faculty, Staff and Students Publications
Orofacial clefts, including cleft lip and palate (CL/P) and neural tube defects (NTDs) are among the most common congenital anomalies, but knowledge of the genetic basis of these conditions remains incomplete. The extent to which genetic risk factors are shared between CL/P, NTDs and related anomalies is also unclear. While identification of causative genes has largely focused on coding and loss of function mutations, it is hypothesized that regulatory mutations account for a portion of the unidentified heritability. We found that excess expression of Grainyhead-like 2 (Grhl2) causes not only spinal NTDs in Axial defects (Axd) mice but also multiple …
Identifying The Reactive Metabolites Of Tyrosine Kinase Inhibitor Pexidartinib In Vitro Using Lc-Ms-Based Metabolomic Approaches, Xuan Qin, Yong Wang, Kevin R Mackenzie, John M Hakenjos, Si Chen, Saleh M Khalil, Sung Yun Jung, Damian W Young, Lei Guo, Feng Li
Identifying The Reactive Metabolites Of Tyrosine Kinase Inhibitor Pexidartinib In Vitro Using Lc-Ms-Based Metabolomic Approaches, Xuan Qin, Yong Wang, Kevin R Mackenzie, John M Hakenjos, Si Chen, Saleh M Khalil, Sung Yun Jung, Damian W Young, Lei Guo, Feng Li
Faculty, Staff and Students Publications
Pexidartinib (PEX, TURALIO), a selective and potent inhibitor of the macrophage colony-stimulating factor-1 receptor, has been approved for the treatment of tenosynovial giant cell tumor. However, frequent and severe adverse effects have been reported in the clinic, resulting in a boxed warning on PEX for its risk of liver injury. The mechanisms underlying PEX-related hepatotoxicity, particularly metabolism-related toxicity, remain unknown. In the current study, the metabolic activation of PEX was investigated in human/mouse liver microsomes (HLM/MLM) and primary human hepatocytes (PHH) using glutathione (GSH) and methoxyamine (NH2OMe) as trapping reagents. A total of 11 PEX-GSH and 7 PEX-NH2OMe adducts were …
Loss Of Microrna-30a And Sex-Specific Effects On The Neonatal Hyperoxic Lung Injury, Sandra L Grimm, Samuel Reddick, Xiaoyu Dong, Connor Leek, Amy Xiao Wang, Manuel Cantu Gutierrez, Sean M Hartig, Bhagavatula Moorthy, Cristian Coarfa, Krithika Lingappan
Loss Of Microrna-30a And Sex-Specific Effects On The Neonatal Hyperoxic Lung Injury, Sandra L Grimm, Samuel Reddick, Xiaoyu Dong, Connor Leek, Amy Xiao Wang, Manuel Cantu Gutierrez, Sean M Hartig, Bhagavatula Moorthy, Cristian Coarfa, Krithika Lingappan
Faculty, Staff and Students Publications
BACKGROUND: Bronchopulmonary dysplasia (BPD) is characterized by an arrest in lung development and is a leading cause of morbidity in premature neonates. It has been well documented that BPD disproportionally affects males compared to females, but the molecular mechanisms behind this sex-dependent bias remain unclear. Female mice show greater preservation of alveolarization and angiogenesis when exposed to hyperoxia, accompanied by increased miR-30a expression. In this investigation, we tested the hypothesis that loss of miR-30a would result in male and female mice experiencing similar impairments in alveolarization and angiogenesis under hyperoxic conditions.
METHODS: Wild-type and miR-30a−/− neonatal mice were exposed …
Fibroblast-Derived Pi16 Sustains Inflammatory Pain Via Regulation Of Cd206+ Myeloid Cells, Rachelle Garrity, Neha Arora, Md Areeful Haque, Drew Weis, Ronnie T Trinh, Sanjay V Neerukonda, Susmita Kumari, Ibdanelo Cortez, Eroboghene E Ubogu, Rajasekaran Mahalingam, Diana Tavares-Ferreira, Theodore J Price, Annemieke Kavelaars, Cobi J Heijnen, Andrew J Shepherd
Fibroblast-Derived Pi16 Sustains Inflammatory Pain Via Regulation Of Cd206+ Myeloid Cells, Rachelle Garrity, Neha Arora, Md Areeful Haque, Drew Weis, Ronnie T Trinh, Sanjay V Neerukonda, Susmita Kumari, Ibdanelo Cortez, Eroboghene E Ubogu, Rajasekaran Mahalingam, Diana Tavares-Ferreira, Theodore J Price, Annemieke Kavelaars, Cobi J Heijnen, Andrew J Shepherd
Faculty, Staff and Student Publications
Originally identified in fibroblasts, Protease Inhibitor (PI)16 was recently shown to be crucial for the development of neuropathic pain via effects on blood-nerve barrier permeability and leukocyte infiltration, though its impact on inflammatory pain has not been established. Using the complete Freund’s Adjuvant inflammatory pain model, we show that Pi16-/- mice are protected against sustained inflammatory pain. Accordingly, intrathecal delivery of a PI16 neutralizing antibody in wild-type mice prevented sustained CFA pain. In contrast to neuropathic pain models, we did not observe any changes in blood-nerve barrier permeability due to PI16 deletion. Instead, Pi16-/- mice display reduced macrophage density …
Loss Of Cytochrome P450 (Cyp)1b1 Mitigates Hyperoxia Response In Adult Mouse Lung By Reprogramming Metabolism And Translation, Sandra L Grimm, Rachel E Stading, Matthew J Robertson, Tanmay Gandhi, Chenlian Fu, Weiwu Jiang, Guobin Xia, Krithika Lingappan, Cristian Coarfa, Bhagavatula Moorthy
Loss Of Cytochrome P450 (Cyp)1b1 Mitigates Hyperoxia Response In Adult Mouse Lung By Reprogramming Metabolism And Translation, Sandra L Grimm, Rachel E Stading, Matthew J Robertson, Tanmay Gandhi, Chenlian Fu, Weiwu Jiang, Guobin Xia, Krithika Lingappan, Cristian Coarfa, Bhagavatula Moorthy
Faculty, Staff and Students Publications
Oxygen supplementation is life saving for premature infants and for COVID-19 patients but can induce long-term pulmonary injury by triggering inflammation, with xenobiotic-metabolizing CYP enzymes playing a critical role. Murine studies showed that CYP1B1 enhances, while CYP1A1 and CYP1A2 protect from, hyperoxic lung injury. In this study we tested the hypothesis that Cyp1b1-null mice would revert hyperoxia-induced transcriptomic changes observed in WT mice at the transcript and pathway level. Wild type (WT) C57BL/6J and Cyp1b1-null mice aged 8-10 weeks were maintained in room air (21% O
Chromatin Architectural Factor Ctcf Is Essential For Progesterone-Dependent Uterine Maturation, Sylvia C Hewitt, Artiom Gruzdev, Cynthia J Willson, San-Pin Wu, John P Lydon, Niels Galjart, Francesco J Demayo
Chromatin Architectural Factor Ctcf Is Essential For Progesterone-Dependent Uterine Maturation, Sylvia C Hewitt, Artiom Gruzdev, Cynthia J Willson, San-Pin Wu, John P Lydon, Niels Galjart, Francesco J Demayo
Faculty, Staff and Students Publications
Receptors for estrogen and progesterone frequently interact, via Cohesin/CTCF loop extrusion, at enhancers distal from regulated genes. Loss-of-function CTCF mutation in >20% of human endometrial tumors indicates its importance in uterine homeostasis. To better understand how CTCF-mediated enhancer-gene interactions impact endometrial development and function, the Ctcf gene was selectively deleted in female reproductive tissues of mice. Prepubertal Ctcf
Myc Regulates Csf1 Expression Via Microrna 17/20a To Modulate Tumor-Associated Macrophages In Osteosarcoma, Bikesh K Nirala, Tajhal D Patel, Lyazat Kurenbekova, Ryan Shuck, Atreyi Dasgupta, Nino Rainusso, Cristian Coarfa, Jason T Yustein
Myc Regulates Csf1 Expression Via Microrna 17/20a To Modulate Tumor-Associated Macrophages In Osteosarcoma, Bikesh K Nirala, Tajhal D Patel, Lyazat Kurenbekova, Ryan Shuck, Atreyi Dasgupta, Nino Rainusso, Cristian Coarfa, Jason T Yustein
Faculty, Staff and Students Publications
Osteosarcoma (OS) is the most common primary bone tumor of childhood. Approximately 20%-30% of OSs carry amplification of chromosome 8q24, which harbors the oncogene c-MYC and correlates with a poor prognosis. To understand the mechanisms that underlie the ability of MYC to alter both the tumor and its surrounding tumor microenvironment (TME), we generated and molecularly characterized an osteoblast-specific Cre-Lox-Stop-Lox-c-MycT58A p53fl/+ knockin genetically engineered mouse model (GEMM). Phenotypically, the Myc-knockin GEMM had rapid tumor development with a high incidence of metastasis. MYC-dependent gene signatures in our murine model demonstrated significant homology to the human hyperactivated MYC OS. We established that …