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Deep Learning Reveals How Cells Pull, Buckle, And Navigate Fibrous Environments, Abinash Padhi, Arka Daw, Atharva Agashe, Medha Sawhney, Maahi M Talukder, Mehran M H Pour, Mohammad Jafari, Guy M Genin, Farid Alisafaei, Sohan Kale, Anuj Karpatne, Amrinder S Nain Nov 2025

Deep Learning Reveals How Cells Pull, Buckle, And Navigate Fibrous Environments, Abinash Padhi, Arka Daw, Atharva Agashe, Medha Sawhney, Maahi M Talukder, Mehran M H Pour, Mohammad Jafari, Guy M Genin, Farid Alisafaei, Sohan Kale, Anuj Karpatne, Amrinder S Nain

2020-Current year OA Pubs

Cells in tissues navigate fibrous environments fundamentally differently than they do on flat substrates, but the establishment of cell forces in physiological fibrous settings remains poorly understood. Although factors such as the stiffness of the extracellular matrix (ECM) are known to drive behaviors, including cell motility on flat nonfibrous substrates, the interplay between fiber architecture and stiffness in fibrous ECM is not known. Here, we find that in fibrous environments, the directionality of mechanical forces overrides ECM stiffness as the primary regulator of contractility in migrating cells. Using an approach combining phase microscopy with deep learning to map forces in …


Mitochondrial Iron Transport Via Mfrn1 Is Required For Erythroid Cell Cycle Progression, Mark Perfetto, Aidan Danoff, Muhammad Ishfaq, Heidi Monroe, Aiden Mohideen, Meilin Chen, Jesus Tejero, Amber N Stratman, Satoshi Okawa, Yvette Y Yien Nov 2025

Mitochondrial Iron Transport Via Mfrn1 Is Required For Erythroid Cell Cycle Progression, Mark Perfetto, Aidan Danoff, Muhammad Ishfaq, Heidi Monroe, Aiden Mohideen, Meilin Chen, Jesus Tejero, Amber N Stratman, Satoshi Okawa, Yvette Y Yien

2020-Current year OA Pubs

Iron metabolism drives key erythropoietic processes, including hemoglobinization, survival, and proliferation. Here, we developed in vivo methods to interrogate how iron regulates erythropoiesis and report that mitochondrial iron transport via mitoferrin-1 (MFRN1) is essential for erythroid cell cycle progression. mfrn1 embryos had severely decreased erythroid cell number caused by cell cycle arrest at G2/M. They had enlarged nuclei, suggesting a mitotic defect. Iron supplementation rescued the cell cycle defect, implicating mitochondrial iron deficiency as its cause. In contrast, fpn1 mutants, anemic from systemic iron deficiency, had less severe decreases in erythroid mitochondrial iron than mfrn1 mutants and no proliferative defects. …


Nivolumab Plus Ipilimumab Induce Hyper-Progression In Renal Medullary Carcinoma: Results Of A Phase Ii Trial And Preclinical Evidence, Melinda Soeung, Xinmiao Yan, Ciro Zanca, Jing Qian, Menuka Karki, Fei Duan, Hania Khan, Li Zhang, David H Peng, Mariah Williams, Rong He, Ziheng Chen, Luigi Perelli, Jianfeng Chen, Rebecca S Tidwell, Pankaj K Chauhan, Courtney N Le, Truong N A Lam, Nirjar Bhattacharya, Rutvi Shah, I-Lin Ho, Jason P Gay, Caroline C Carrillo, Ningping Feng, Kang Le, Guang Gao, Teresa L Perry, Faika Mseeh, Yongying Jiang, Quanyun A Xu, Niki Marie Zacharias, Rahul A Sheth, Tharakeswara K Bathala, Priya Rao, Najat C Daw, Durga N Tripathi, Cheryl L Walker, Mohammad M Mohammad, Jianhua Zhang, Guangchun Han, Yanshuo Chu, Ruiping Wang, Minghao Dang, Enyu Dai, Fuduan Peng, Yunhe Liu, Akshaya Jadhav, Wenhua Lang, Claudio A Arrechedera, Leticia Campos Clemente, Edwin R Parra, Hsinyi Lu, Cara L Haymaker, Ignacio I Wistuba, Andrew Futreal, Andrea Viale, Michael J Soth, Philip Jones, Joseph R Marszalek, Timothy Heffernan, Giulio F Draetta, Nizar M Tannir, Jianjun Gao, Linghua Wang, Giannicola Genovese, Pavlos Msaouel Nov 2025

Nivolumab Plus Ipilimumab Induce Hyper-Progression In Renal Medullary Carcinoma: Results Of A Phase Ii Trial And Preclinical Evidence, Melinda Soeung, Xinmiao Yan, Ciro Zanca, Jing Qian, Menuka Karki, Fei Duan, Hania Khan, Li Zhang, David H Peng, Mariah Williams, Rong He, Ziheng Chen, Luigi Perelli, Jianfeng Chen, Rebecca S Tidwell, Pankaj K Chauhan, Courtney N Le, Truong N A Lam, Nirjar Bhattacharya, Rutvi Shah, I-Lin Ho, Jason P Gay, Caroline C Carrillo, Ningping Feng, Kang Le, Guang Gao, Teresa L Perry, Faika Mseeh, Yongying Jiang, Quanyun A Xu, Niki Marie Zacharias, Rahul A Sheth, Tharakeswara K Bathala, Priya Rao, Najat C Daw, Durga N Tripathi, Cheryl L Walker, Mohammad M Mohammad, Jianhua Zhang, Guangchun Han, Yanshuo Chu, Ruiping Wang, Minghao Dang, Enyu Dai, Fuduan Peng, Yunhe Liu, Akshaya Jadhav, Wenhua Lang, Claudio A Arrechedera, Leticia Campos Clemente, Edwin R Parra, Hsinyi Lu, Cara L Haymaker, Ignacio I Wistuba, Andrew Futreal, Andrea Viale, Michael J Soth, Philip Jones, Joseph R Marszalek, Timothy Heffernan, Giulio F Draetta, Nizar M Tannir, Jianjun Gao, Linghua Wang, Giannicola Genovese, Pavlos Msaouel

Faculty, Staff and Students Publications

Therapeutic options for patients with renal medullary carcinoma (RMC) are limited. Here we report the results of a phase II clinical trial (NCT03274258) of anti-PD1 nivolumab plus anti-CTLA4 ipilimumab in patients with RMC, with objective response rate as primary outcome. Enrollment was halted for futility at a prespecified interim analysis as all 10 treated patients experienced rapid disease progression. 5/10 met radiological criteria for hyperprogression and median progression-free survival (secondary outcome) was 1.38 months (95% confidence interval: 1.28, 1.60). In a post-hoc single-cell RNA sequencing analysis, data from patients with RMC before and after nivolumab plus ipilimumab treatment indicated that …


Depth-Variant Deconvolution Applied To Widefield Microscopy For Rapid Large-Volume Tissue Imaging, Daniel D Lee, Kevin A Telfer, Mark A J Koenis, Yim K Lee, Kevin W Namink, Brian T Saunders, Heyun Lee, Hailey Kelley, Heather S Ruiz, Joseph P Gaut, Gwendalyn J Randolph, Bernd H Zinselmeyer Nov 2025

Depth-Variant Deconvolution Applied To Widefield Microscopy For Rapid Large-Volume Tissue Imaging, Daniel D Lee, Kevin A Telfer, Mark A J Koenis, Yim K Lee, Kevin W Namink, Brian T Saunders, Heyun Lee, Hailey Kelley, Heather S Ruiz, Joseph P Gaut, Gwendalyn J Randolph, Bernd H Zinselmeyer

2020-Current year OA Pubs

Innovations in 3D tissue imaging have revolutionized research, but limitations stemming from lengthy protocols and equipment accessibility persist. Widefield microscopy is fast and accessible but often excluded from 3D imaging workflows due to its lack of optical sectioning. Here we combine tissue clearing with a commercial depth-variant deconvolution approach that we optimized for large-volume widefield imaging. By implementing prefiltering with z-brick splitting, we achieve subnuclear axial resolution in tissues to a depth of 500 µm in multi-tile scan images. We illustrate the utility of this method in a model of ileitis and to gain a 3D perspective in thick brain …


Tlr2 Agonism Suppresses Myeloid Leukemogenesis By Reprogramming Leukemia Stem Cells, Michael E. Lawler, Jennifer S. Romer-Seibert, Michael S. Bowman, Ramkrishna Mitra, Christine M. Eischen, Robert L. Bowman, Sara E. Meyer Nov 2025

Tlr2 Agonism Suppresses Myeloid Leukemogenesis By Reprogramming Leukemia Stem Cells, Michael E. Lawler, Jennifer S. Romer-Seibert, Michael S. Bowman, Ramkrishna Mitra, Christine M. Eischen, Robert L. Bowman, Sara E. Meyer

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

The consequences of activated innate immune signaling in acute myeloid leukemia (AML) is not well understood. Using ligands directed at the toll-like family receptors (TLR) in models of high-risk AML, we uncover that TLR2 ligands exert unique antileukemic effects that are distinct from other TLRs. Although TLR2 signaling broadly induces inflammatory gene expression in AML cells, at the single-cell level, cell-type-dependent, divergent transcriptional responses coordinate cellular outputs of proliferation, differentiation, cell death, and activation of immune cell function. TLR2 ligands were the only TLR agonists capable of extending survival of AML-bearing mice through leukemia stem cell (LSC) reprogramming that elevated …


Multiomic Analysis Reveals A Key Bcat1 Role In Mtor Activation By B Cell Receptor And Tlr9, Rui Guo, Yizhe Sun, Matthew Y Lim, Hardik Shah, Joao A Paulo, Rahaman A Ahmed, Weixing Li, Yuchen Zhang, Haopeng Yang, Liang Wei Wang, Daniel Strebinger, Nicholas A Smith, Meng Li, Merrin Man Long Leong, Michael Lutchenkov, Jin Hua Liang, Zhixuan Li, Yin Wang, Rishi Puri, Ari Melnick, Michael R Green, John M Asara, Adonia E Papathanassiu, Duane R Wesemann, Steven P Gygi, Vamsi K Mootha, Benjamin E Gewurz Nov 2025

Multiomic Analysis Reveals A Key Bcat1 Role In Mtor Activation By B Cell Receptor And Tlr9, Rui Guo, Yizhe Sun, Matthew Y Lim, Hardik Shah, Joao A Paulo, Rahaman A Ahmed, Weixing Li, Yuchen Zhang, Haopeng Yang, Liang Wei Wang, Daniel Strebinger, Nicholas A Smith, Meng Li, Merrin Man Long Leong, Michael Lutchenkov, Jin Hua Liang, Zhixuan Li, Yin Wang, Rishi Puri, Ari Melnick, Michael R Green, John M Asara, Adonia E Papathanassiu, Duane R Wesemann, Steven P Gygi, Vamsi K Mootha, Benjamin E Gewurz

Faculty, Staff and Student Publications

B lymphocytes play major adaptive immune roles, producing antibodies and driving T cell responses. However, how immunometabolism networks support B cell activation and differentiation in response to distinct receptor stimuli remains incompletely understood. To gain insights, we systematically investigated acute primary human B cell transcriptional, translational, and metabolomic responses to B cell receptor (BCR), TLR9, CD40-ligand (CD40L), IL-4, or combinations thereof. T cell-independent BCR/TLR9 costimulation, which drives malignant and autoimmune B cell states, highly induced transaminase branched chain amino acid transaminase 1 (BCAT1), which localized to lysosomal membranes to support branched chain amino acid synthesis and mTORC1 activation. BCAT1 inhibition …


Generation And Characterization Of A Knockout Mouse Of An Enhancer Of Ebf3., Emily Cordova Hurtado, Janine M Wotton, Alexander Gulka, Crystal Burke, Jeffrey K Ng, Ibrahim Bah, Juana Manuel, Hillary Heins, Stephen A Murray, David U Gorkin, Jacqueline K White, Kevin A Peterson, Tychele N Turner Nov 2025

Generation And Characterization Of A Knockout Mouse Of An Enhancer Of Ebf3., Emily Cordova Hurtado, Janine M Wotton, Alexander Gulka, Crystal Burke, Jeffrey K Ng, Ibrahim Bah, Juana Manuel, Hillary Heins, Stephen A Murray, David U Gorkin, Jacqueline K White, Kevin A Peterson, Tychele N Turner

Faculty Research 2025

Genomic studies of neurodevelopmental disorders (NDDs) have identified several relevant genomic variants. EBF3 is a gene with an excess of protein-coding de novo variants and underlies Hypotonia, Ataxia, and Delayed Development Syndrome. We previously identified noncoding de novo variants in an enhancer of EBF3 and further found enrichment of deletions of this enhancer in NDDs. In this study, we generated a novel mouse line that deletes the highly conserved, orthologous mouse region within the Rr169617 regulatory region, and characterized the molecular and phenotypic aspects of this mouse model. We found a deviation from Mendelian expectation (P=0.02) with significant depletion of …


Multisite Assembly Of Gateway Induced Clones (Magic): A Flexible Cloning Toolbox For Use In Vertebrate Model Systems, William B Gillespie, Yuwen Zhang, Oscar E Ruiz, Juan Cerda, Joshua Ortiz-Guzman, Michelle Sherman, Williamson D Turner, Gabrielle Largoza, Lili E Mosser, Esther Fujimoto, Chi-Bin Chien, Kristen M Kwan, Benjamin R Arenkiel, W Patrick Devine, Joshua D Wythe Nov 2025

Multisite Assembly Of Gateway Induced Clones (Magic): A Flexible Cloning Toolbox For Use In Vertebrate Model Systems, William B Gillespie, Yuwen Zhang, Oscar E Ruiz, Juan Cerda, Joshua Ortiz-Guzman, Michelle Sherman, Williamson D Turner, Gabrielle Largoza, Lili E Mosser, Esther Fujimoto, Chi-Bin Chien, Kristen M Kwan, Benjamin R Arenkiel, W Patrick Devine, Joshua D Wythe

Duncan NRI Faculty and Staff Publications

Here, we present MultiSite Assembly of Gateway Induced Clones (MAGIC), which leverages Gateway-based recombinatorial cloning technology for rapid, modular assembly of plasmids to facilitate transgenesis in cells and vertebrate animal models. The MAGIC collection of plasmids spans a range of in vitro and in vivo uses, from tools for optically and chemically tunable gene expression, to simultaneous expression of microRNAs and fluorescent reporters, to a suite of distinct subcellular compartmental fluorescent reporters, to Cre and Dre recombinase-dependent gene expression. MAGIC system components are compatible with existing MultiSite Gateway Tol2 systems currently used in zebrafish and mammalian lentiviral and adenoviral Destination …


Characterizing The Metabolites Of The Tyrosine-Kinase Inhibitor Pexidartinib In Mouse Feces, Urine, Plasma, And Liver, Xuan Qin, Si Chen, John M Hakenjos, Jian Wang, Lei Guo, Ashish Dogra, Zhaoyong Hu, Kevin R Mackenzie, Feng Li Nov 2025

Characterizing The Metabolites Of The Tyrosine-Kinase Inhibitor Pexidartinib In Mouse Feces, Urine, Plasma, And Liver, Xuan Qin, Si Chen, John M Hakenjos, Jian Wang, Lei Guo, Ashish Dogra, Zhaoyong Hu, Kevin R Mackenzie, Feng Li

Faculty, Staff and Students Publications

Pexidartinib (PEX, TURALIO®), a tyrosine kinase inhibitor, is approved for treating tenosynovial giant cell tumor in adults. However, its potential to cause fatal liver injury has prompted the U.S. FDA to issue a black box warning, and the mechanisms underlying its hepatotoxicity remain largely unknown. As biotransformation may contribute to PEX-induced hepatotoxicity, understanding its metabolism is essential. Our previous research indicated that PEX forms reactive metabolites in human and mouse liver microsomes and in human hepatocytes. We investigated PEX metabolism and liver distribution in mice with a focus on metabolite characterization. Our data shows that PEX is mainly excreted into …


Generation And Characterization Of A Knockout Mouse Of An Enhancer Of Ebf3, Emily Cordova Hurtado, Janine M Wotton, Alexander Gulka, Crystal Burke, Jeffrey K Ng, Ibrahim Bah, Juana Manuel, Hillary Heins, Stephen A Murray, David U Gorkin, Jacqueline K White, Kevin A Peterson, Tychele N Turner Nov 2025

Generation And Characterization Of A Knockout Mouse Of An Enhancer Of Ebf3, Emily Cordova Hurtado, Janine M Wotton, Alexander Gulka, Crystal Burke, Jeffrey K Ng, Ibrahim Bah, Juana Manuel, Hillary Heins, Stephen A Murray, David U Gorkin, Jacqueline K White, Kevin A Peterson, Tychele N Turner

2020-Current year OA Pubs

Genomic studies of neurodevelopmental disorders (NDDs) have identified several relevant genomic variants. EBF3 is a gene with an excess of protein-coding de novo variants and underlies Hypotonia, Ataxia, and Delayed Development Syndrome. We previously identified noncoding de novo variants in an enhancer of EBF3 and further found enrichment of deletions of this enhancer in NDDs. In this study, we generated a novel mouse line that deletes the highly conserved, orthologous mouse region within the Rr169617 regulatory region, and characterized the molecular and phenotypic aspects of this mouse model. We found a deviation from Mendelian expectation (P=0.02) with significant depletion of …


Mechanism Of Anticancer Action Of Bifidobacterium: Insights From Gut Microbiota, Hoang Do, Esther Asiamah, Mayanijesu Olorife, Arathi Pillai, Sakshi Patel, Ponniah Selvakumar, Sidhartha D Ray, Ashakumary Lakshmikuttyamma Nov 2025

Mechanism Of Anticancer Action Of Bifidobacterium: Insights From Gut Microbiota, Hoang Do, Esther Asiamah, Mayanijesu Olorife, Arathi Pillai, Sakshi Patel, Ponniah Selvakumar, Sidhartha D Ray, Ashakumary Lakshmikuttyamma

College of Pharmacy Faculty Papers

Bifidobacterium has captured major attention recently because of its health benefits and extensive research highlighting its potential in cancer treatment and prevention. Evidence suggests that bifidobacterium can actively fight against various types of cancer, including those of the colon, lungs, breast, and stomach. Research indicates that several species of bifidobacterium can potentiate the action of chemotherapy, immunotherapy and radiation therapy in battling tumors, and reducing their adverse effects. Bifidobacteria shows its multipronged effect by modulating various immunomodulatory and inflammatory signaling pathways, potentially leading to the suppression of tumor growth. Moreover, different species of bifidobacteria are known to regulate signaling molecules …


A Role For Gut Mycobiome And Altered Fungal-Bacterial Interactions In Women With Endometriosis†, Chandni Talwar, Ashirbad Guria, Kristi Hoffman, Scott Biest, Patricia Jimenez, Ramakrishna Kommagani Nov 2025

A Role For Gut Mycobiome And Altered Fungal-Bacterial Interactions In Women With Endometriosis†, Chandni Talwar, Ashirbad Guria, Kristi Hoffman, Scott Biest, Patricia Jimenez, Ramakrishna Kommagani

Faculty, Staff and Students Publications

Endometriosis is a gynecological pathology prevalent in reproductive age women in which the inner uterine wall (endometrium) grows outside as ectopic lesions. The inflammation resulting from these growing implants closely associates with disease severity, causing chronic pain and infertility. Emerging studies have found altered bacterial communities in endometriosis and a causal role for gut bacteria in endometriosis. However, the role of the gut mycobiome, i.e., the fungal component of the microbiome in endometriosis is a current knowledge gap that needs to be addressed. In this study, utilizing the stool samples from women with endometriosis, we found that the gut fungal …


Mta-Cooperative Prmt5 Inhibitors Are Efficacious In Mtap-Deleted Malignant Peripheral Nerve Sheath Tumor Models, Xiaochun Zhang, Dana C Borcherding, Yang Lyu, Guangfeng Wang, Kevin He, Gorkem Oztosun, Ishita Sachdeva, Liuzhan Yang, Kuangying Yang, Angela C Hirbe, Et Al. Nov 2025

Mta-Cooperative Prmt5 Inhibitors Are Efficacious In Mtap-Deleted Malignant Peripheral Nerve Sheath Tumor Models, Xiaochun Zhang, Dana C Borcherding, Yang Lyu, Guangfeng Wang, Kevin He, Gorkem Oztosun, Ishita Sachdeva, Liuzhan Yang, Kuangying Yang, Angela C Hirbe, Et Al.

2020-Current year OA Pubs

PURPOSE: Malignant peripheral nerve sheath tumors (MPNST) are highly aggressive sarcomas with poor prognosis. The enzyme methylthioadenosine phosphorylase (MTAP) is lost in ∼25% to 50% of MPNSTs, which is associated with loss of the tumor suppressor gene CDKN2A. Inhibition of PRMT5 was found to be synthetically lethal in cells with MTAP loss due to accumulation of the substrate methylthioadenosine (MTA), an endogenous PRMT5 inhibitor. TNG908 and TNG462 are clinical-stage MTA-cooperative PRMT5 inhibitors that demonstrate selectivity for MTAP-deleted (null) cells over MTAP-proficient [wild-type (WT)] cells. Both compounds drive durable tumor regressions in various cancer xenograft models with MTAP loss.

EXPERIMENTAL DESIGN: …


Design, Optimization, And Development Of Ripk1 Degraders With Improved Pharmacokinetic And Pharmacodynamic Properties, Dong Lu, Xin Yu, Hanfeng Lin, Ran Cheng, Bin Yang, Min Zhang, Jingjing Chen, Feng Li, Xiaoli Qi, Jin Wang Nov 2025

Design, Optimization, And Development Of Ripk1 Degraders With Improved Pharmacokinetic And Pharmacodynamic Properties, Dong Lu, Xin Yu, Hanfeng Lin, Ran Cheng, Bin Yang, Min Zhang, Jingjing Chen, Feng Li, Xiaoli Qi, Jin Wang

Faculty, Staff and Students Publications

Pharmacological degradation of receptor-interacting protein kinase 1 (RIPK1) offers a compelling therapeutic strategy to overcome its scaffolding role in tumor resistance and to enhance the efficacy of immune checkpoint blockade (ICB) therapies. In this study, we report the discovery of a novel RIPK1 degrader, LD5097(24b), developed through systematic optimization of its precursor compound, LD4172—specifically refining the linker, RIPK1 warhead exit vector, and VHL ligand components. LD5097(24b) exhibits potent and selective RIPK1 degradation, triggering rapid and efficient downregulation of RIPK1 and significantly enhancing TNFα-mediated apoptosis in Jurkat cells. Compared to LD4172, LD5097(24b) demonstrates markedly improved metabolic stability and pharmacokinetic properties. In …


Targeting Tomm40 And Tomm22 To Rescue Statin-Impaired Mitochondrial Function, Dynamics, And Mitophagy In Skeletal Myotubes, Neil V Yang, Sean Rogers, Rachel Guerra, Justin Y Chao, David J Pagliarini, Elizabeth Theusch, Ronald M Krauss Nov 2025

Targeting Tomm40 And Tomm22 To Rescue Statin-Impaired Mitochondrial Function, Dynamics, And Mitophagy In Skeletal Myotubes, Neil V Yang, Sean Rogers, Rachel Guerra, Justin Y Chao, David J Pagliarini, Elizabeth Theusch, Ronald M Krauss

2020-Current year OA Pubs

Statins are the drugs most commonly used for lowering plasma low-density lipoprotein (LDL) cholesterol levels and reducing cardiovascular disease risk. Although generally well-tolerated, statins can induce myopathy, a major cause of non-adherence to treatment. Impaired mitochondrial function has been implicated in the development of statin-induced myopathy, but the underlying mechanism remains unclear. We have shown that simvastatin downregulates the transcription of


Low Mutation Rate But High Male-Bias In The Germline Of A Short-Lived Opossum, Yadira Peña-García, Richard J Wang, Muthuswamy Raveendran, R Alan Harris, Paul B Samollow, Jeffrey Rogers, Matthew W Hahn Nov 2025

Low Mutation Rate But High Male-Bias In The Germline Of A Short-Lived Opossum, Yadira Peña-García, Richard J Wang, Muthuswamy Raveendran, R Alan Harris, Paul B Samollow, Jeffrey Rogers, Matthew W Hahn

Faculty, Staff and Students Publications

Age and sex have been found to be important determinants of the mutation rate per generation in mammals, but the mechanisms underlying these factors are still unclear. One approach to distinguishing between alternative mechanisms is to study species that reproduce at very young ages, as competing hypotheses make different predictions about patterns of mutation in these organisms. Here, we study the germline mutation rate in the gray short-tailed opossum, Monodelphis domestica, a laboratory model species that becomes reproductively mature at less than 6 mo of age. Whole-genome sequencing of 22 trios reveals one of the lowest mutation rates per generation …


Slc35g3 Is A Udp-N-Acetylglucosamine Transporter For Sperm Glycoprotein Formation And Underpins Male Fertility In Mice, Daisuke Mashiko, Shingo Tonai, Haruhiko Miyata, Martin M Matzuk, Masahito Ikawa Nov 2025

Slc35g3 Is A Udp-N-Acetylglucosamine Transporter For Sperm Glycoprotein Formation And Underpins Male Fertility In Mice, Daisuke Mashiko, Shingo Tonai, Haruhiko Miyata, Martin M Matzuk, Masahito Ikawa

Faculty, Staff and Students Publications

Despite the recognized importance of glycans in biological phenomena, their complex roles in spermatogenesis and sperm function remain unclear. SLC35G3, a 10-transmembrane protein specifically found in early round spermatids, belongs to the sugar-nucleotide transporter family, indicating its involvement in glycan formation. In this study, we found that Slc35g3 knockout male mice were sterile due to impaired sperm functions in uterotubal junction passage, zona pellucida binding, and oocyte fusion. Mouse SLC35G3 has UDP-GlcNAc transporter activity, and its ablation caused abnormal processing of the sperm plasma membrane and acrosome membrane proteins. Reported human SLC35G3 mutations (F267L and T179HfsTer27) diminished the UDP-GlcNAc transporter …


Cardiac Sr-Mitochondria Contacts-Impact On Cardiac Physiology And Mitochondrial Fitness, Celia Fernandez-Sanz, Shey-Shing Sheu, Sergio De La Fuente Nov 2025

Cardiac Sr-Mitochondria Contacts-Impact On Cardiac Physiology And Mitochondrial Fitness, Celia Fernandez-Sanz, Shey-Shing Sheu, Sergio De La Fuente

Center for Translational Medicine Faculty Papers

In adult cardiomyocytes, within the Mitochondrial Associated Membranes (MAMs), the sarcoplasmic reticulum (SR) and mitochondria juxtapose each other, forming a unique and highly repetitive functional structure throughout the cells. These SR-mitochondria contact sites have emerged as critical structures that regulate various physiological processes, including lipid exchange, calcium (Ca2+) communication, control of excitation-contraction bioenergetics coupling, and reactive oxygen species (ROS) production. Over the years, several scientific studies have reported the accumulation of diverse proteins within these SR-mitochondria close contacts. Some proteins strategically accumulate in these areas to enhance their function, such as the mitochondrial Ca2+ uniporter, while others …


Reprogramming Tumor Microenvironment Via Systemic Delivery Of Tlr3 Agonist And Manganese Nanoparticle, Young Seok Cho, Xingwu Zhou, Xiaoqi Sun, Ziye Wan, Julia Crowther, Mariko Takahashi, Swetha Kodamasimham, Qi Wu, May Thazin Phoo, Youngseo Na, Kai Han, Zaiye Li, Anna Schwendeman, Steven P Schwendeman, Yu Leo Lei, James J Moon Nov 2025

Reprogramming Tumor Microenvironment Via Systemic Delivery Of Tlr3 Agonist And Manganese Nanoparticle, Young Seok Cho, Xingwu Zhou, Xiaoqi Sun, Ziye Wan, Julia Crowther, Mariko Takahashi, Swetha Kodamasimham, Qi Wu, May Thazin Phoo, Youngseo Na, Kai Han, Zaiye Li, Anna Schwendeman, Steven P Schwendeman, Yu Leo Lei, James J Moon

Faculty, Staff and Student Publications

Toll-like receptor (TLR) agonists, as potent immunostimulatory adjuvants, play a critical role in linking the innate and adaptive immune responses. However, their antitumor effects as cancer immunotherapeutic agents have been limited. Here, we report our finding that manganese ion (Mn2+) potentiates various TLR agonists, leading to robust activation of the TLR pathway and the stimulator of interferon genes (STING) pathway among innate immune cells. In particular, we have observed robust antitumor efficacy after intratumoral administration of a TLR3 agonist and Mn2+. To achieve systemic codelivery of TLR3 agonist and Mn2+, we have developed a low-molecular-weight poly(inosinic:cytidylic acid)-Mn2+ coordination lipid nanoparticle …


Preclinical Efficacy Of Tasquinimod-Based Combinations In Advanced Myeloproliferative Neoplasms In Blastic Phase, Warren Fiskus, Lucia Masarova, Christopher P Mill, Christine E Birdwell, Kaberi Das, Hanxi Hou, John A Davis, Antrix Jain, Anna Malovannaya, Taghi Manshouri, Andrew Dunbar, Surbhi Sharma, Tapan M Kadia, Courtney D Dinardo, Prithviraj Bose, Naveen Pemmaraju, Sanam Loghavi, Xiaoping Su, Raajit K Rampal, Marie Törngren, Kapil N Bhalla Nov 2025

Preclinical Efficacy Of Tasquinimod-Based Combinations In Advanced Myeloproliferative Neoplasms In Blastic Phase, Warren Fiskus, Lucia Masarova, Christopher P Mill, Christine E Birdwell, Kaberi Das, Hanxi Hou, John A Davis, Antrix Jain, Anna Malovannaya, Taghi Manshouri, Andrew Dunbar, Surbhi Sharma, Tapan M Kadia, Courtney D Dinardo, Prithviraj Bose, Naveen Pemmaraju, Sanam Loghavi, Xiaoping Su, Raajit K Rampal, Marie Törngren, Kapil N Bhalla

Faculty, Staff and Students Publications

The alarmins, S100A8 (A8) and S100A9 (A9), are low molecular weight proteins belonging to the S100 protein family. A8 and A9 are secreted into the extracellular space and plasma, in which they interact with Toll-like receptor 4, receptor for advanced glycation end products, and CD33. In these studies, we determined the preclinical efficacy of tasquinimod (TQ) against advanced myeloproliferative neoplasm (MPN) cell lines and patient-derived (PD) CD34+ blastic phase (BP; >5% blasts in the peripheral blood) MPN cells. TQ induced loss of viability in cell lines and PD MPN-BP cells, but not in normal CD34+ progenitor cells. In TQ-treated PD …


Genome-Wide Crispr Screens Identify Critical Targets To Enhance Car-Nk Cell Antitumor Potency, Alexander Biederstädt, Rafet Basar, Jeong-Min Park, Nadima Uprety, Rejeena Shrestha, Francia Reyes Silva, Merve Dede, John Watts, Sunil Acharya, Donghai Xiong, Bin Liu, May Daher, Hind Rafei, Pinaki Banerjee, Ping Li, Sanjida Islam, Huihui Fan, Mayra Shanley, Jingling Jin, Bijender Kumar, Vernikka Woods, Paul Lin, Silvia Tiberti, Ana Karen Nunez Cortes, Xin Ru Jiang, Inci Biederstädt, Patrick Zhang, Ye Li, Seema Rawal, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Elizabeth J Shpall, Natalie Wall Fowlkes, Ken Chen, Katayoun Rezvani Nov 2025

Genome-Wide Crispr Screens Identify Critical Targets To Enhance Car-Nk Cell Antitumor Potency, Alexander Biederstädt, Rafet Basar, Jeong-Min Park, Nadima Uprety, Rejeena Shrestha, Francia Reyes Silva, Merve Dede, John Watts, Sunil Acharya, Donghai Xiong, Bin Liu, May Daher, Hind Rafei, Pinaki Banerjee, Ping Li, Sanjida Islam, Huihui Fan, Mayra Shanley, Jingling Jin, Bijender Kumar, Vernikka Woods, Paul Lin, Silvia Tiberti, Ana Karen Nunez Cortes, Xin Ru Jiang, Inci Biederstädt, Patrick Zhang, Ye Li, Seema Rawal, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Elizabeth J Shpall, Natalie Wall Fowlkes, Ken Chen, Katayoun Rezvani

Faculty, Staff and Student Publications

Adoptive cell therapy using engineered natural killer (NK) cells is a promising approach for cancer treatment, with targeted gene editing offering the potential to further enhance their therapeutic efficacy. However, the spectrum of actionable genetic targets to overcome tumor and microenvironment-mediated immunosuppression remains largely unexplored. We performed multiple genome-wide CRISPR screens in primary human NK cells and identified critical checkpoints regulating resistance to immunosuppressive pressures. Ablation of MED12, ARIH2, and CCNC significantly improved NK cell antitumor activity against multiple treatment-refractory human cancers in vitro and in vivo. CRISPR editing augmented both innate and CAR-mediated NK cell function, associated with enhanced …


Development Of A Targeted Bioprotac Degrader Selective For Misfolded Sod1, Christen G Chisholm, Rachael Bartlett, Mikayla L Brown, Emma-Jayne Proctor, Natalie E Farrawell, Jody Gorman, Fabien Delerue, Lars M Ittner, Kara L Vine-Perrow, Heath Ecroyd, Neil R Cashman, Darren N Saunders, Luke Mcalary, Jeremy S Lum, Justin J Yerbury Nov 2025

Development Of A Targeted Bioprotac Degrader Selective For Misfolded Sod1, Christen G Chisholm, Rachael Bartlett, Mikayla L Brown, Emma-Jayne Proctor, Natalie E Farrawell, Jody Gorman, Fabien Delerue, Lars M Ittner, Kara L Vine-Perrow, Heath Ecroyd, Neil R Cashman, Darren N Saunders, Luke Mcalary, Jeremy S Lum, Justin J Yerbury

Faculty, Staff and Student Publications

The accumulation of misfolded proteins underlies a broad range of neurodegenerative diseases, including amyotrophic lateral sclerosis (ALS). Due to their dynamic nature, these misfolded proteins have proven challenging to target therapeutically. Here, we specifically target misfolded disease variants of the ALS-associated protein superoxide dismutase 1 (SOD1), using a biological proteolysis targeting chimera (BioPROTAC) composed of a SOD1-specific intrabody and an E3 ubiquitin ligase. Screening of intrabodies and E3 ligases for optimal BioPROTAC construction reveals a candidate capable of degrading multiple disease variants of SOD1, preventing their aggregation in cells. Using CRISPR/Cas9 technology to develop a BioPROTAC transgenic mouse line, we …


Cofilin Inhibition Ameliorates Piezo2 And Ampa Dysfunction In A Mouse Model Of Angelman Syndrome, Luis O Romero, Manisha Bade, Elisa Carrillo, Sonia Paz-López, Syed A M Hasan, William James Antonisamy, Vasanthi Jayaraman, Zahoor A Shah, Valeria Vásquez, Julio F Cordero-Morales Nov 2025

Cofilin Inhibition Ameliorates Piezo2 And Ampa Dysfunction In A Mouse Model Of Angelman Syndrome, Luis O Romero, Manisha Bade, Elisa Carrillo, Sonia Paz-López, Syed A M Hasan, William James Antonisamy, Vasanthi Jayaraman, Zahoor A Shah, Valeria Vásquez, Julio F Cordero-Morales

Faculty, Staff and Student Publications

Angelman syndrome (AS) is a neurogenetic disorder characterized by motor coordination and cognitive deficits. In AS, hippocampal neurons show reduced filamentous (F-)actin, a decrease we also reported in dorsal root ganglia (DRG) neurons, along with impaired mechanosensitive ion channel activity. Currently, there are no pharmacological targets to prevent the decrease of F-actin in AS. Here, we utilize a first-in-class selective cofilin inhibitor (SZ-3) to restore PIEZO2 function in DRG neurons and glutamate-evoked currents in hippocampal neurons from AS mice. Using atomic force microscopy, we demonstrate that inhibiting cofilin, an actin-severing protein, with SZ-3 increases cellular stiffness by stabilizing the actin …


Mutant P53 Variants Differentially Impact Replication Initiation And Activate Cgas-Sting To Affect Immune Checkpoint Inhibition, Kang Liu, Lidija A Wilhelms Garan, Fang-Tsyr Lin, Weei-Chin Lin Nov 2025

Mutant P53 Variants Differentially Impact Replication Initiation And Activate Cgas-Sting To Affect Immune Checkpoint Inhibition, Kang Liu, Lidija A Wilhelms Garan, Fang-Tsyr Lin, Weei-Chin Lin

Faculty, Staff and Students Publications

Prior research shows that Akt-dependent phosphorylation of TopBP1 in S phase results in the switch of TopBP1/Treslin binding to TopBP1/E2F1 binding, which is important to prevent replication re-initiation in late S and G2 phases. Here, we demonstrate that contact, but not conformational, mutant p53 can override this switch by binding to both TopBP1 and Treslin, thereby facilitating persistent TopBP1/Treslin interaction in late S and G2 phases, which ultimately leads to over-firing of replication initiation. This increases micronuclei formation, which is further enhanced by genotoxic stressors such as doxorubicin, PARP inhibitors, or ATR inhibitors. Consequently, contact mutant p53 increases the sensitivity …


Serum Response Factor Is Essential For Endometrial Function And Prevention Of Inflammatory Fibrosis, Ryan M Marquardt, Sara A Grimm, San-Pin Wu, Peter F Lais, Shu-Yun Li, Xin Xu, Erin Smithberger, David Cunefare, Charan Ganta, David Olson, Eunhee M Jeong, Jae-Wook Jeong, Bruce A Lessey, John P Lydon, Francesco J Demayo Nov 2025

Serum Response Factor Is Essential For Endometrial Function And Prevention Of Inflammatory Fibrosis, Ryan M Marquardt, Sara A Grimm, San-Pin Wu, Peter F Lais, Shu-Yun Li, Xin Xu, Erin Smithberger, David Cunefare, Charan Ganta, David Olson, Eunhee M Jeong, Jae-Wook Jeong, Bruce A Lessey, John P Lydon, Francesco J Demayo

Faculty, Staff and Students Publications

Pregnancy requires a supportive uterine environment facilitated by steroid hormone–regulated differentiation of endometrial stromal fibroblasts into decidual cells and tight control of inflammation. Serum response factor (SRF) is a widely expressed transcription factor essential for mesenchymal cell growth and differentiation with noted roles in hormonal regulation of muscle tissues but little characterization in reproductive organs. Here, we reveal that endometrial SRF is dysregulated in human endometriosis and is critical for female reproductive success in mice through regulation of endometrial stromal and epithelial cells. Immunohistochemical analysis identified decreased endometrial SRF expression in infertile endometriosis patient tissues. RNAi-based SRF knockdown in human …


A Functional Clock In Only Two Dorsal Clock Neurons Is Sufficient To Restore The Basal Circadian Activity Pattern Of Drosophila Melanogaster, Nils Reinhard, Enrico Bertolini, Takuya Kuwahara, Manabu Sekiguchi, Dirk Rieger, Weihua Li, Paul H Taghert, Taishi Yoshii, Charlotte Helfrich-Förster Nov 2025

A Functional Clock In Only Two Dorsal Clock Neurons Is Sufficient To Restore The Basal Circadian Activity Pattern Of Drosophila Melanogaster, Nils Reinhard, Enrico Bertolini, Takuya Kuwahara, Manabu Sekiguchi, Dirk Rieger, Weihua Li, Paul H Taghert, Taishi Yoshii, Charlotte Helfrich-Förster

2020-Current year OA Pubs

Circadian clocks form complex networks to orchestrate the behavior and physiology of animals. Elucidating the organization of these clock networks is critical to understanding how circadian clocks achieve robust timing. Clock neurons have been best characterized in the model organism


Human Kallikrein 2: A Novel Lineage-Specific Surface Target In Prostate Cancer, Fei Shen, Ryan Smith, Theresa Mcdevitt, Krista Menard, Shaozhou Tian, Gerald Chu, Ruchi Chaudhary, Jennifer Mccann, Halley Oyer, Sherry C. Wang, Steven Max, Peter Francis, William K. Kelly, Charles G. Drake Nov 2025

Human Kallikrein 2: A Novel Lineage-Specific Surface Target In Prostate Cancer, Fei Shen, Ryan Smith, Theresa Mcdevitt, Krista Menard, Shaozhou Tian, Gerald Chu, Ruchi Chaudhary, Jennifer Mccann, Halley Oyer, Sherry C. Wang, Steven Max, Peter Francis, William K. Kelly, Charles G. Drake

Kimmel Cancer Center Faculty Papers

PURPOSE: Targeted therapies for metastatic prostate cancer are limited, highlighting the need for novel drug targets and mechanisms of action (MoA). Human kallikrein 2 (KLK2) is a prostate-specific antigen expressed across the prostate cancer disease continuum. However, it was not recognized as a therapeutic target for prostate cancer in the past due to limited evidence of its cell surface expression. In this study, we systematically characterized KLK2 expression in prostate cancer, confirmed its cell surface expression, and demonstrated the preclinical efficacy of three KLK2-targeting therapeutics with distinct MoA.

EXPERIMENTAL DESIGN: The KLK2 expression profile in different stages of prostate cancer …


A Temperature-Sensitive Crispr-Cas12a System For Sterile Insect Technique, Christina Nguyen, Ahmed Idowu Omotayo, Sara Sanz Juste, Xuechun Feng, Víctor López Del Amo Nov 2025

A Temperature-Sensitive Crispr-Cas12a System For Sterile Insect Technique, Christina Nguyen, Ahmed Idowu Omotayo, Sara Sanz Juste, Xuechun Feng, Víctor López Del Amo

Faculty, Staff and Student Publications

The sterile insect technique (SIT) reduces population numbers by releasing sterile males that produce non-viable progeny. Specifically, CRISPR/Cas9-based precision-guided SIT (pgSIT) generates sterile males through genetic crosses of two transgenic lines: a Cas9 strain and a guide RNA (gRNA) strain targeting male sterility and female viability or infertility. However, pgSIT requires separate maintenance of the two lines and sorting to obtain sterile males, creating possible challenges for scaling. To overcome this, we propose using Cas12a nuclease, which is inoperative at lower temperatures but active at higher temperatures. Here, we develop a Cas12a-based pgSIT system involving a single strain containing both …


Preclinical Fluorescence-Guided Imaging Leveraging Surrounding Sentinel Tumor Microenvironment Identifies High-Risk Premalignant Pancreatic Lesions, Shilpa Sharma, Xiaoxia Wen, Jianbo Wang, Beibei Huang, Denise A Hernandez, Cong-Dat Pham, Zhiwen Liu, Susanne Je-Han Lin, Aiko Yamaguchi, Dimitra K Georgiou, Ryan P Coll, H Charles Manning Nov 2025

Preclinical Fluorescence-Guided Imaging Leveraging Surrounding Sentinel Tumor Microenvironment Identifies High-Risk Premalignant Pancreatic Lesions, Shilpa Sharma, Xiaoxia Wen, Jianbo Wang, Beibei Huang, Denise A Hernandez, Cong-Dat Pham, Zhiwen Liu, Susanne Je-Han Lin, Aiko Yamaguchi, Dimitra K Georgiou, Ryan P Coll, H Charles Manning

Faculty, Staff and Student Publications

Purpose: Because surgery is the only potential cure for pancreatic cancer, high-risk premalignant pancreatic lesions often evade detection by palpation or white-light visualization, increasing the risk of recurrence. We asked whether near-infrared fluorescence imaging of tumor-associated inflammation could identify high-risk premalignant lesions, leveraging the tumor microenvironment as a sentinel of local disease and, thus, enhance surgery outcomes.

Experimental design: Fluorescence-guided surgery was performed on genetically engineered mice [Ptf1a-Cre; LSL-KrasG12D/+; Smad4flox/flox (KSC)] at discrete stages of disease progression, histologically confirmed high-risk, premalignant lesions in postnatal mice to locally advanced pancreatic tumors in adults, using the imaging agent V-1520, a translocator protein …


An Annotated Biobank Of Triple-Negative Breast Cancer Patient-Derived Xenografts Features Treatment-Naïve And Longitudinal Samples During Neoadjuvant Chemotherapy, Amanda L Rinkenbaugh, Yuan Qi, Shirong Cai, Jiansu Shao, Faiza Baameur Hancock, Sabrina L Jeter-Jones, Xiaomei Zhang, Emily Powell, Lei Huo, Rosanna Lau, Chunxiao Fu, Rebekah Gould, Petra Den Hollander, Elizabeth E Ravenberg, Jason B White, Gaiane M Rauch, Banu Arun, Clinton Yam, Alastair M Thompson, Gloria V Echeverria, Stacy L Moulder, W Fraser Symmans, Jeffrey T Chang, Helen Piwnica-Worms Nov 2025

An Annotated Biobank Of Triple-Negative Breast Cancer Patient-Derived Xenografts Features Treatment-Naïve And Longitudinal Samples During Neoadjuvant Chemotherapy, Amanda L Rinkenbaugh, Yuan Qi, Shirong Cai, Jiansu Shao, Faiza Baameur Hancock, Sabrina L Jeter-Jones, Xiaomei Zhang, Emily Powell, Lei Huo, Rosanna Lau, Chunxiao Fu, Rebekah Gould, Petra Den Hollander, Elizabeth E Ravenberg, Jason B White, Gaiane M Rauch, Banu Arun, Clinton Yam, Alastair M Thompson, Gloria V Echeverria, Stacy L Moulder, W Fraser Symmans, Jeffrey T Chang, Helen Piwnica-Worms

Faculty, Staff and Student Publications

Triple-negative breast cancer (TNBC) that fails to respond to neoadjuvant chemotherapy (NACT) can be lethal. Developing effective strategies to eradicate chemoresistant disease requires experimental models that recapitulate the heterogeneity characteristic of TNBC. To that end, we established a biobank of 92 orthotopic patient-derived xenograft (PDX) models of TNBC from the tumors of 75 patients enrolled in the ARTEMIS clinical trial (NCT02276443), including 12 longitudinal sets generated from serial patient biopsies collected throughout NACT treatment and from metastatic disease. Models were established from both chemosensitive and chemoresistant tumors, and nearly 30% of the PDX models were capable of metastasizing …