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Articles 451 - 480 of 6285
Full-Text Articles in Entire DC Network
Method For Generation And Ex Vivo Expansion Of Genetically Edited Mouse Tregs, Yosef Gilad, Adam M Dean, Yan Xia, Sang Jun Han, David M Lonard, Bert W O'Malley
Method For Generation And Ex Vivo Expansion Of Genetically Edited Mouse Tregs, Yosef Gilad, Adam M Dean, Yan Xia, Sang Jun Han, David M Lonard, Bert W O'Malley
Faculty, Staff and Students Publications
Regulatory T cells (Tregs) play a crucial role in the immune system, and their dysfunction can lead to the development of autoimmune conditions. In cancer, tumors frequently hijack the immunosuppressive function of Tregs to evade immune responses. Due to their central role in key pathological processes, Tregs have gained increasing attention as promising targets for various clinical applications. However, their relative scarcity (∼5% to 10% of CD4+ T cells) and instability presents a technical challenge for research and therapeutic development. In congenic animal models used to investigate autologous cell transfer-based therapies, this challenge is even greater, as Treg donor animals …
Loss Of The Lysosomal Protein Cln3 Triggers C-Abl-Dependent Yap1 Pro-Apoptotic Signaling, Neuza Domingues, Alessia Calcagni', Sofia Freire, Joana Pires, Ricardo Casqueiro, Ivan L Salazar, Niculin Joachim Herz, Tuong Huynh, Katarzyna Wieciorek, Tiago Fleming Outeiro, Henrique Girão, Ira Milosevic, Andrea Ballabio, Nuno Raimundo
Loss Of The Lysosomal Protein Cln3 Triggers C-Abl-Dependent Yap1 Pro-Apoptotic Signaling, Neuza Domingues, Alessia Calcagni', Sofia Freire, Joana Pires, Ricardo Casqueiro, Ivan L Salazar, Niculin Joachim Herz, Tuong Huynh, Katarzyna Wieciorek, Tiago Fleming Outeiro, Henrique Girão, Ira Milosevic, Andrea Ballabio, Nuno Raimundo
Duncan NRI Faculty and Staff Publications
Batten disease is characterized by early-onset blindness, juvenile dementia and death within the second decade of life. The most common genetic cause are mutations in CLN3, encoding a lysosomal protein. Currently, no therapies targeting disease progression are available, largely because its molecular mechanisms remain poorly understood. To understand how CLN3 loss affects cellular signaling, we generated human CLN3 knock-out cells (CLN3-KO) and performed RNA-seq analysis. Our multi-dimensional analysis reveals the transcriptional regulator YAP1 as a key factor in remodeling the transcriptome in CLN3-KO cells. YAP1-mediated pro-apoptotic signaling is also increased as a consequence of CLN3 functional loss in retinal pigment …
Surgical Removal Of Implanted Microchips To Correct Mri Susceptibility Artifacts In Mice, Elizabeth Hipskind, Nicole Hernandez, Sydney Fox, Tina Manirambona, Rita Schack, Brian Gibson, Robia G Pautler
Surgical Removal Of Implanted Microchips To Correct Mri Susceptibility Artifacts In Mice, Elizabeth Hipskind, Nicole Hernandez, Sydney Fox, Tina Manirambona, Rita Schack, Brian Gibson, Robia G Pautler
Center on Aging Staff Publications
Purpose: Implanted microchips are becoming increasingly common in research for animal identification and have been adopted by commercial vendors for some mouse strains. However, they often contain metal components, which generate magnetic susceptibility artifacts on MR images. Despite this, some microchips are marketed as MR-compatible, even though they are likely to affect image quality.
Methods: We assessed the impact of a radiofrequency identification microchip on MR images of the mouse brain and present a method for precise surgical removal. A handheld magnet was used to locate and stabilize the microchips during removal. Mice were imaged before and after microchip removal. …
Ataxia-Telangiectasia Mutated Activation Mediates Transforming Growth Factor Beta Signaling In Acetaminophen-Induced Liver Injury In Mice, Matthew Mcmillin, Christopher S Chu, Elaina Williams, Juliet Venter, Kiersten Bell, Anca D Petrescu, Patrick Mireles, Sharon Demorrow
Ataxia-Telangiectasia Mutated Activation Mediates Transforming Growth Factor Beta Signaling In Acetaminophen-Induced Liver Injury In Mice, Matthew Mcmillin, Christopher S Chu, Elaina Williams, Juliet Venter, Kiersten Bell, Anca D Petrescu, Patrick Mireles, Sharon Demorrow
Faculty and Staff Publications
Acetaminophen (APAP) overdose is associated with increased transforming growth factor beta 1 (TGFβ1) signaling and elevated oxidative stress, which exacerbate DNA damage. TGFβ1 has been shown to regulate ataxia-telangiectasia mutated (ATM) signaling and DNA repair in other cell types. This study investigates the DNA damage response (DDR) during APAP-induced liver injury, focusing on ATM-mediated regulation of TGFβ1 signaling. APAP administration in vitro and in vivo resulted in DNA damage, increased ATM signaling, accumulation of γH2AX, and activation of phosphorylated ataxia telangiectasia mutated (pATM) and phosphorylated checkpoint kinase 2 (pChk2). Pretreatment with an ATM inhibitor, KU55933, attenuated APAP-induced hepatocyte damage and …
The Microstructure Of Metastatic Bone Lesions Suggests Tumor Mediated Alterations In Bone Mineralization, Hanwen Fan, Zhan Xu, Carla Berrospe Rodriguez, Noah Dover, Andrei Demkov, Morgan Lilly, Guillermo Aguilar, Larry J Suva, Xiang H-F Zhang, Yuxiao Zhou
The Microstructure Of Metastatic Bone Lesions Suggests Tumor Mediated Alterations In Bone Mineralization, Hanwen Fan, Zhan Xu, Carla Berrospe Rodriguez, Noah Dover, Andrei Demkov, Morgan Lilly, Guillermo Aguilar, Larry J Suva, Xiang H-F Zhang, Yuxiao Zhou
Faculty, Staff and Students Publications
Breast, prostate and lung cancer cells frequently metastasize to bone, leading to disruption of the bone microstructure. This study utilized mechanical testing coupled with micro-CT imaging, digital volume correlation (DVC), and atomic force microscopy (AFM) nanomechanical testing to examine the mechanical property variations in mouse long bones (tibia) with metastatic lung cancer cell involvement, spanning from the whole-bone scale to the microstructural level. In addition, we also investigated how metastatic invasion alters the morphology of hydroxyapatite nanocrystals in bone at the nanometer scale. The biochemical composition within metastatic lesions was assessed using Raman spectroscopy and correlated with AFM mechanical testing …
Gene Therapy Cm-Yapon Protects The Mouse Heart From Myocardial Infarction, Fansen Meng, Jeffrey D Steimle, Elizabeth Straight, Rich G Li, Yuka Morikawa, Zohaib Iqbal, Bing Xie, Jun Wang, Wyatt G Paltzer, Yi Zhao, Chang-Ru Tsai, Lin Liu, Maggie Lim, Rita A Schack, Daniel Ramirez, Katherine Carlson, Vaibhav Deshmukh, Jason M Karch, Robia G Pautler, Xiao Li, James F Martin
Gene Therapy Cm-Yapon Protects The Mouse Heart From Myocardial Infarction, Fansen Meng, Jeffrey D Steimle, Elizabeth Straight, Rich G Li, Yuka Morikawa, Zohaib Iqbal, Bing Xie, Jun Wang, Wyatt G Paltzer, Yi Zhao, Chang-Ru Tsai, Lin Liu, Maggie Lim, Rita A Schack, Daniel Ramirez, Katherine Carlson, Vaibhav Deshmukh, Jason M Karch, Robia G Pautler, Xiao Li, James F Martin
Faculty, Staff and Students Publications
Myocardial infarction (MI) affects millions of people worldwide, causing irreversible injury to the heart and impairing cardiac function1. In both mouse and pig MI models, activating YAP in cardiomyocytes (CMs) stimulates regenerative repair2,3. Here we developed an adeno-associated virus 9 (AAV9)-based therapy, termed CM-YAPon, which enables transient expression of an active YAP variant (YAP5SA) in CMs following exposure to the small molecule LMI070. A single LMI070 dose in mice triggers YAP5SA expression, CM cell cycle re-entry, and reprogramming of the cardiac microenvironment. YAP5SA induction after MI rapidly improves cardiac function while pre-MI induction confers …
Alternative Splicing Of The Snap23 Microexon Is Regulated By Mbnl, Qki, And Rbfox2 In A Tissue-Specific Manner And Is Altered In Striated Muscle Diseases, Gabrielle M Gentile, R Eric Blue, Grant A Goda, Bryan B Guzman, Rachel A Szymanski, Eunice Y Lee, Nichlas M Engels, Emma R Hinkle, Hannah J Wiedner, Aubriana N Bishop, Jonathan T Harrison, Hua Zhang, Xander H T Wehrens, Daniel Dominguez, Jimena Giudice
Alternative Splicing Of The Snap23 Microexon Is Regulated By Mbnl, Qki, And Rbfox2 In A Tissue-Specific Manner And Is Altered In Striated Muscle Diseases, Gabrielle M Gentile, R Eric Blue, Grant A Goda, Bryan B Guzman, Rachel A Szymanski, Eunice Y Lee, Nichlas M Engels, Emma R Hinkle, Hannah J Wiedner, Aubriana N Bishop, Jonathan T Harrison, Hua Zhang, Xander H T Wehrens, Daniel Dominguez, Jimena Giudice
Faculty, Staff and Students Publications
The reprogramming of alternative splicing networks during development is a hallmark of tissue maturation and identity. Alternative splicing of microexons (small, genomic regions ≤ 51 nucleotides) functionally regulate protein-protein interactions in the brain and is altered in several neuronal diseases. However, little is known about the regulation and function of alternatively spliced microexons in striated muscle. Here, we investigated alternative splicing of a microexon in the synaptosome-associated protein 23 (Snap23) encoded gene. We found that inclusion of this microexon is developmentally regulated and tissue-specific, as it occurs exclusively in adult heart and skeletal muscle. The alternative region is …
Adrenomedullin Overexpression Protects Mice From Experimental Bronchopulmonary Dysplasia And Associated Pulmonary Hypertension, Shyam Thapa, Poonam Sarkar, M Waleed Gaber, Roberto Barrios, Madhulata Chauhan, Chandrasekhar Yallampalli, Binoy Shivanna
Adrenomedullin Overexpression Protects Mice From Experimental Bronchopulmonary Dysplasia And Associated Pulmonary Hypertension, Shyam Thapa, Poonam Sarkar, M Waleed Gaber, Roberto Barrios, Madhulata Chauhan, Chandrasekhar Yallampalli, Binoy Shivanna
Faculty, Staff and Students Publications
Bronchopulmonary dysplasia (BPD) associated pulmonary hypertension (PH) or BPD-PH is a lung disease of infants with significant morbidity. Adrenomedullin (Adm) is an angiogenic peptide that signals through calcitonin receptor-like receptor (Calcrl) and receptor activity modifying protein 2 (RAMP2). Adm deficiency potentiates hyperoxia-induced experimental BPD-PH in mice; however, whether Adm overexpression can mitigate this lung disease is unclear. Thus, we tested the hypothesis that Adm overexpression attenuates hyperoxia (HO)-induced murine experimental BPD-PH by using a novel transgenic mouse that overexpresses Adm globally (Admhi/hi mice). One-day-old Admhi/hi mice or their wild-type littermates (Adm+/+ mice) were exposed to …
Transcriptional Coregulator Zmiz1 Modulates Estrogen Responses That Are Essential For Healthy Endometrial Function, Sylvia C Hewitt, Frank Orellana, Ryan M Marquardt, Myeongjin Yi, Cynthia J Willson, Mark Y Chiang, Yong Song, Goutham Venkata Naga Davuluri, Christopher Day, Ramakrishna Kommagani, Joseph Rodriguez, Asgerally T Fazleabas, John P Lydon, Francesco J Demayo
Transcriptional Coregulator Zmiz1 Modulates Estrogen Responses That Are Essential For Healthy Endometrial Function, Sylvia C Hewitt, Frank Orellana, Ryan M Marquardt, Myeongjin Yi, Cynthia J Willson, Mark Y Chiang, Yong Song, Goutham Venkata Naga Davuluri, Christopher Day, Ramakrishna Kommagani, Joseph Rodriguez, Asgerally T Fazleabas, John P Lydon, Francesco J Demayo
Faculty, Staff and Students Publications
Estrogen is a critical regulator of endometrial health. Aberrant estrogen stimulation can result in infertility, endometrial cancer, and endometriosis. Here, we identified Zinc Finger MIZ-Type Containing 1 (Zmiz1) as a coregulator of uterine estrogen signaling. ZMIZ1 is colocalized with an estrogen receptor α–binding (ESR1-binding) super enhancer. ZMIZ1 mutations are found in endometrial cancer and its RNA levels trend toward reduction in endometrium of patients with endometriosis. ZMIZ1 is dynamically expressed in human endometrial tissues during the menstrual cycle. Disrupting ZMIZ1 in cultured human endometrial stromal cells resulted in impaired cell proliferation and decidual differentiation. Ablation of Zmiz1 using …
Cerebellar Purkinje Cell Stripe Patterns Reveal A Differential Vulnerability And Resistance To Cell Loss During Normal Aging In Mice, Sarah G Donofrio, Cheryl Brandenburg, Amanda M Brown, Tao Lin, Hsiang-Chih Lu, Roy V Sillitoe
Cerebellar Purkinje Cell Stripe Patterns Reveal A Differential Vulnerability And Resistance To Cell Loss During Normal Aging In Mice, Sarah G Donofrio, Cheryl Brandenburg, Amanda M Brown, Tao Lin, Hsiang-Chih Lu, Roy V Sillitoe
Faculty, Staff and Students Publications
Age-related neurodegenerative diseases involve reduced cell numbers and impaired behavioral capacity. Neurodegeneration and behavioral deficits also occur during aging, and notably in the absence of disease. The cerebellum, which modulates movement and cognition, is susceptible to cell loss in both aging and disease. Here, we demonstrate that cerebellar Purkinje cell loss in aged mice is not spatially random but rather occurs in a pattern of parasagittal stripes. We also find that aged mice exhibit impaired motor coordination and more severe tremor compared to younger mice. However, the relationship between patterned Purkinje cell loss and motor dysfunction is not straightforward. Examination …
Lilrb4 Regulates Circadian Disruption-Induced Mammary Tumorigenesis Via Non-Canonical Wnt Signaling Pathway, Olajumoke Ogunlusi, Mrinmoy Sarkar, Kayla Carter, Arhit Chakrabarti, Devon J Boland, Tristan Nguyen, James Sampson, Christian Nguyen, Danielle Fails, Yava Jones-Hall, Loning Fu, Gus Wright, Da Mi Kim, James J Cai, Bani Mallick, Alex C Keene, Jeff R Jones, Tapasree Roy Sarkar
Lilrb4 Regulates Circadian Disruption-Induced Mammary Tumorigenesis Via Non-Canonical Wnt Signaling Pathway, Olajumoke Ogunlusi, Mrinmoy Sarkar, Kayla Carter, Arhit Chakrabarti, Devon J Boland, Tristan Nguyen, James Sampson, Christian Nguyen, Danielle Fails, Yava Jones-Hall, Loning Fu, Gus Wright, Da Mi Kim, James J Cai, Bani Mallick, Alex C Keene, Jeff R Jones, Tapasree Roy Sarkar
Faculty, Staff and Students Publications
Epidemiological studies have shown that circadian rhythm disruption (CRD) is associated with the risk of breast cancer. However, the role of CRD in mammary gland morphology and aggressive basal mammary tumorigenesis and the molecular mechanism underlying CRD-induced carcinogenesis remain unknown. To investigate the effect of CRD on aggressive tumorigenesis, a genetically engineered mouse model of aggressive breast cancer was used. The impact of CRD on the tumor microenvironment was investigated using the tumors from LD12:12 and CRD mice via scRNA-seq, flow cytometry, multiplexing immunostaining, and realtime PCR. The effect of LILRB4-immunotherapy on CRD-induced tumorigenesis was also investigated. Here we investigated …
Early Determination Of The Dorsal-Ventral Axis In Endochondral Ossification In Mice, Sixun Wu, Hirotaka Matsumoto, Jumpei Morita, Mina Yamabe, Azumi Noguchi, Shinsuke Ohba, Noriaki Ono, Yuki Matsushita
Early Determination Of The Dorsal-Ventral Axis In Endochondral Ossification In Mice, Sixun Wu, Hirotaka Matsumoto, Jumpei Morita, Mina Yamabe, Azumi Noguchi, Shinsuke Ohba, Noriaki Ono, Yuki Matsushita
Faculty, Staff and Student Publications
Endochondral ossification is a highly coordinated process involving distinct progenitor cell populations within the mesenchymal condensation and subsequent cartilage anlage and perichondrium, all of which drive skeletal formation. Cell-type specific lineage tracing conducted to understand fetal bone development has revealed various fates of early skeletal cells. However, the underlying continuous and precise cellular dynamics of fetal skeletal cells, particularly along the dorsoventral axis, remain unclear. Here, we show that spatiotemporally specific skeletal progenitor cells in the early developmental stage contribute to the dorsal-ventral axis in a manner that is strictly determined during initial developmental stages. Lineage-tracing experiments using Fgfr3-creER and …
Development Of Intestinal Tissue-Resident T Cells In Early-Life Mice Before And After Weaning, Catherine Montenegro, Siyuan Ding, Federico Perdomo-Celis, Manuel A Franco
Development Of Intestinal Tissue-Resident T Cells In Early-Life Mice Before And After Weaning, Catherine Montenegro, Siyuan Ding, Federico Perdomo-Celis, Manuel A Franco
2020-Current year OA Pubs
Intestinal tissue-resident T cells have been poorly characterized during early-life. Here, we phenotypically characterized tissue-resident (intravascular staining negative) CD4
Mecp2 Interacts With The Super Elongation Complex To Regulate Transcription, Jun Young Sonn, Wonho Kim, Marta Iwanaszko, Yuki Aoi, Yan Li, Guantong Qi, Luke Parkitny, Janice L Brissette, Lorin Weiner, Juan Botas, Ismael Al-Ramahi, Ali Shilatifard, Huda Y Zoghbi
Mecp2 Interacts With The Super Elongation Complex To Regulate Transcription, Jun Young Sonn, Wonho Kim, Marta Iwanaszko, Yuki Aoi, Yan Li, Guantong Qi, Luke Parkitny, Janice L Brissette, Lorin Weiner, Juan Botas, Ismael Al-Ramahi, Ali Shilatifard, Huda Y Zoghbi
Faculty, Staff and Students Publications
Loss-of-function mutations in methyl-CpG binding protein 2 (MECP2) cause Rett syndrome. While we know that MeCP2 binds to methylated cytosines on DNA, the full breadth of the molecular mechanisms by which MeCP2 regulates gene expression remains incompletely understood. Here, using a genetic modifier screen, we identify the super elongation complex, a P-TEFb–containing elongation factor that releases promoter-proximally paused RNA polymerase II, as a genetic interactor of MECP2. MeCP2 physically interacts with SEC subunits and directly binds AFF4, the scaffold of the SEC, via the transcriptional repression domain. Furthermore, MeCP2 facilitates the binding of AFF4 on a subset …
Human Plasma Proteomic Profile Of Clonal Hematopoiesis, Zhi Yu, Amélie Vromman, Ngoc Quynh H Nguyen, Art Schuermans, Linke Li, Thiago Rentz, Tetsushi Nakao, Shamsudheen K Vellarikkal, Md Mesbah Uddin, Abhishek Niroula, Gabriel Griffin, Michael C Honigberg, Amy E Lin, Christopher J Gibson, Daniel H Katz, Usman A Tahir, Shi Fang, Jacqueline S Dron, Michael Pan, Sara Haidermota, Shriienidhie Ganesh, Tajmara Antoine, Joshua Weinstock, Thomas R Austin, Ramachandran S Vasan, Gina M Peloso, Whitney Hornsby, Peter Ganz, Joann E Manson, Bernhard Haring, Charles Kooperberg, Alexander P Reiner, Joshua C Bis, Bruce M Psaty, Yuan-I Min, Adolfo Correa, Leslie A Lange, Wendy S Post, Jerome I Rotter, Stephen S Rich, James G Wilson, Benjamin L Ebert, Bing Yu, Christie M Ballantyne, Josef Coresh, Vijay G Sankaran, Alexander G Bick, Siddhartha Jaiswal, Robert E Gerszten, Nhlbi Trans-Omics For Precision Medicine, Peter Libby, Rajat M Gupta, Pradeep Natarajan
Human Plasma Proteomic Profile Of Clonal Hematopoiesis, Zhi Yu, Amélie Vromman, Ngoc Quynh H Nguyen, Art Schuermans, Linke Li, Thiago Rentz, Tetsushi Nakao, Shamsudheen K Vellarikkal, Md Mesbah Uddin, Abhishek Niroula, Gabriel Griffin, Michael C Honigberg, Amy E Lin, Christopher J Gibson, Daniel H Katz, Usman A Tahir, Shi Fang, Jacqueline S Dron, Michael Pan, Sara Haidermota, Shriienidhie Ganesh, Tajmara Antoine, Joshua Weinstock, Thomas R Austin, Ramachandran S Vasan, Gina M Peloso, Whitney Hornsby, Peter Ganz, Joann E Manson, Bernhard Haring, Charles Kooperberg, Alexander P Reiner, Joshua C Bis, Bruce M Psaty, Yuan-I Min, Adolfo Correa, Leslie A Lange, Wendy S Post, Jerome I Rotter, Stephen S Rich, James G Wilson, Benjamin L Ebert, Bing Yu, Christie M Ballantyne, Josef Coresh, Vijay G Sankaran, Alexander G Bick, Siddhartha Jaiswal, Robert E Gerszten, Nhlbi Trans-Omics For Precision Medicine, Peter Libby, Rajat M Gupta, Pradeep Natarajan
Faculty, Staff and Student Publications
Plasma proteomic profiles associated with subclinical somatic mutations in blood cells may offer insights into downstream clinical consequences. Here we explore these patterns in clonal hematopoiesis of indeterminate potential (CHIP), which is linked to several cancer and non-cancer outcomes, including coronary artery disease (CAD). Among 61,833 participants (3881 with CHIP) from TOPMed and UK Biobank (UKB) with blood-based DNA sequencing and proteomic measurements (1,148 proteins by SomaScan in TOPMed and 2917 proteins by Olink in UKB), we identify 32 and 345 proteins from TOPMed and UKB, respectively, associated with CHIP and most prevalent driver genes (DNMT3A, TET2, and ASXL1). These …
Maternal Obesogenic Diet Exposure Regulates The Offspring Gut Liver Axis And Fibroinflammatory Liver Disease, Naresh Naik Ramavath, Oğuz Özler, Holly Hinrichs, Francisco R Victorino, Vung Lian, Monica Young, Tarin M Bigley, Michael D Thompson
Maternal Obesogenic Diet Exposure Regulates The Offspring Gut Liver Axis And Fibroinflammatory Liver Disease, Naresh Naik Ramavath, Oğuz Özler, Holly Hinrichs, Francisco R Victorino, Vung Lian, Monica Young, Tarin M Bigley, Michael D Thompson
2020-Current year OA Pubs
Maternal obesogenic diet exposure (MODE) promotes fibroinflammatory liver disease in offspring via vertical transfer of an altered microbiome. The mechanism for how an altered offspring microbiome increases susceptibility to liver disease is not clear. A critical early life event termed the 'weaning reaction' is dependent on the early microbiome and when altered, results in worse pathologic inflammation. MODE attenuates the weaning reaction promoting worse liver disease in mice in an early microbiome-dependent manner. Using our MODE model and cross-fostering approaches we assessed the effect of MODE on neonatal gut-liver axis development. MODE shifts the bile acid (BA) profile, expression of …
Targeting The Hepatic Circadian Clock Concomitant With Tyrosine Kinase Inhibition Reverses Late-Stage Hepatocellular Carcinoma, Baharan Fekry, Savera Aggarwal, Rachel Van Drunen, Rafael Bravo, Andy Escalante, Constance Atkins, Sheng Pan, Zheng Chen, Kai Sun, David R Hall, Mamoun Younes, Kristin Eckel-Mahan
Targeting The Hepatic Circadian Clock Concomitant With Tyrosine Kinase Inhibition Reverses Late-Stage Hepatocellular Carcinoma, Baharan Fekry, Savera Aggarwal, Rachel Van Drunen, Rafael Bravo, Andy Escalante, Constance Atkins, Sheng Pan, Zheng Chen, Kai Sun, David R Hall, Mamoun Younes, Kristin Eckel-Mahan
Faculty, Staff and Student Publications
Hepatocellular carcinoma (HCC) is a leading cause of cancer-related deaths. Most patients present at advanced stages, and the effectiveness of tyrosine kinase inhibitors (TKIs) and immune checkpoint inhibitors is constrained by limited patient response. A subset of HCC shows elevated expression of the promoter 2 ("P2")-driven hepatocyte nuclear factor 4 alpha (HNF4α) isoform, which directly transcriptionally represses the circadian brain and muscle ARNT-like protein 1 (BMAL1) transcription factor. This subtype of HCC is robustly inhibited by the plant-based flavonoid nobiletin (NOB), a circadian-fortifying compound. Using patient-matched human HCC and serum, we show that BMAL1-deficient HCC shows exaggerated carnitine palmitoyl transferase …
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
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
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 …
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
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 …
Stra8 Links Neuronal Activity To Inhibitory Circuit Protection In The Adult Mouse Brain., Ming Huang, Shuwen Yue, Xiaoyu Zhang, Lan Wu, Jay L. Vivian, Zi-Jun Wang, Ning Wang
Stra8 Links Neuronal Activity To Inhibitory Circuit Protection In The Adult Mouse Brain., Ming Huang, Shuwen Yue, Xiaoyu Zhang, Lan Wu, Jay L. Vivian, Zi-Jun Wang, Ning Wang
Manuscripts, Articles, Book Chapters and Other Papers
While neuronal activity is essential for brain function, it also poses threats to neuronal integrity. Here, we show that activity-induced expression of stimulated by retinoic acid gene 8 (Stra8) protects neurons from degeneration. Previously considered germline specific, Stra8 is expressed in the adult mouse brain and is induced by neuronal activity via calcium influx and N-methyl-D-aspartate (NMDA) receptor signaling. Neuron-specific Stra8 knockout mice display hallmark features of neurodegeneration, including DNA damage, impaired proteostasis, inflammation, nuclear envelope erosion, reduced dendritic plasticity, memory deficits, and heightened excitotoxic vulnerability. Electrophysiological studies reveal disrupted inhibitory circuit function. Mechanistically, Stra8 binds regulatory regions of neuromodulator …
Naphthalimide-Based Type-I Nano-Photosensitizers For Enhanced Antitumor Photodynamic Therapy: H2s Synergistically Regulates Pet And Self-Assembly, Huiyu Niu, Songnan Wang, Yang Liu, Nana Ma, Shuaiwei Cheng, Beidou Feng, Hyunsun Jeong, Yonggang Yang, Ge Wang, Tony D James, Juyoung Yoon, Jonathan L Sessler, Hua Zhang
Naphthalimide-Based Type-I Nano-Photosensitizers For Enhanced Antitumor Photodynamic Therapy: H2s Synergistically Regulates Pet And Self-Assembly, Huiyu Niu, Songnan Wang, Yang Liu, Nana Ma, Shuaiwei Cheng, Beidou Feng, Hyunsun Jeong, Yonggang Yang, Ge Wang, Tony D James, Juyoung Yoon, Jonathan L Sessler, Hua Zhang
Faculty, Staff and Student Publications
Photodynamic therapy (PDT) relies on a combination of light and photosensitizers (PSs) to achieve local control over cancerous lesions. However, it is subject to limitations, including tumor hypoxia, low tumor targeting, off‐target phototoxicity, and always‐on fluorescence. Here, we propose a design strategy for activated nano‐PSs (N‐PSs) to simultaneously overcome the limitations of PDT, wherein photoinduced electron transfer (PeT) is coupled with an endogenous H2S‐regulated self‐association process to promote Type‐I photochemical reactions. Using theoretical calculations, spectral analysis, and microscopic imaging, we verified the generation of self‐assembly and occurrence of PeT. And it was also shown that H2S could synergistically inhibit the …
Modulation Of Dorsal Hippocampal Sk2 Channels Regulates Morphine-Enhanced Neuronal Oscillations And Morphine-Induced Contextual Memory Encoding And Retrieval, Khairunisa Mohamad Ibrahim, Dominika J Burek, Azra Zec, Olayinka Idowu, Will W Post, Alice Zheng, Basma Daham, Justin D Meyer, Sidney Williams, Nicolas Massaly, Jose A Morón
Modulation Of Dorsal Hippocampal Sk2 Channels Regulates Morphine-Enhanced Neuronal Oscillations And Morphine-Induced Contextual Memory Encoding And Retrieval, Khairunisa Mohamad Ibrahim, Dominika J Burek, Azra Zec, Olayinka Idowu, Will W Post, Alice Zheng, Basma Daham, Justin D Meyer, Sidney Williams, Nicolas Massaly, Jose A Morón
2020-Current year OA Pubs
Persistent maladaptive drug-context associations are a key component of relapse vulnerability and pose a major obstacle in treating opioid use disorder. Although the dorsal hippocampus (dHPC) is critical for contextual memory formation, the synaptic mechanisms by which opioids alter hippocampal circuits to sustain these associations remain unclear. We previously found that repeated context-paired morphine exposure impairs dHPC long-term potentiation (LTP) through enhanced activity of small-conductance calcium-activated potassium (SK2) channels. Here, we investigated the role of SK2 channels in morphine-context associative learning and memory by combining in vivo electrophysiology, molecular analyses, and behavioral pharmacology with the morphine-conditioned place preference (MorCPP) paradigm …
Tca Cycle Mode Switch Determines The Fate Of Pirtobrutinib-Tolerant Persister Cells In Mantle Cell Lymphoma, Wei Wang, Qingsong Cai, Yang Liu, Lei Nie, Heng-Huan Lee, Fangfang Yan, Yue Fei, Yixin Yao, Yijing Li, Lin Tan, Philip L Lorenzi, Ying-Nai Wang, Jun Yao, Zhihong Chen, Joseph Mitchell Mcintosh, Cheng-Tai Yu, Preetesh Jain, Vivian C Jiang, Jovanny Vargas, Xiaolin Li, Tianci Zhang, Shaoying Li, David Santos, Selvi Thirumurthi, Erin Heather Seeley, Lukas Mikolaj Simon, Christopher Flowers, Chi Young Ok, Michael Wang
Tca Cycle Mode Switch Determines The Fate Of Pirtobrutinib-Tolerant Persister Cells In Mantle Cell Lymphoma, Wei Wang, Qingsong Cai, Yang Liu, Lei Nie, Heng-Huan Lee, Fangfang Yan, Yue Fei, Yixin Yao, Yijing Li, Lin Tan, Philip L Lorenzi, Ying-Nai Wang, Jun Yao, Zhihong Chen, Joseph Mitchell Mcintosh, Cheng-Tai Yu, Preetesh Jain, Vivian C Jiang, Jovanny Vargas, Xiaolin Li, Tianci Zhang, Shaoying Li, David Santos, Selvi Thirumurthi, Erin Heather Seeley, Lukas Mikolaj Simon, Christopher Flowers, Chi Young Ok, Michael Wang
Faculty, Staff and Student Publications
Bruton tyrosine kinase inhibitors (BTKis) and cell therapy have successfully been used to treat mantle cell lymphoma (MCL). However, therapy resistance inevitably emerges. Cancer cells can progressively develop stable resistance by traversing through a transient drug-tolerant persister (DTP) state. The mechanisms enabling DTP cells to reversibly adapt to therapies and evolve to acquire heterogeneity remain poorly understood, and characterizing DTP cells in MCL continues to pose a challenge for clinic translation. Here, using pirtobrutinib, a recently US Food and Drug Administration-approved noncovalent BTKi, we identified pirtobrutinib-tolerant persister cells exhibiting morphological variability by presenting a unique population of enlarged cells (giant …
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
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
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
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
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 …
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
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 …
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
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 …