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Chek2 Signaling Is The Key Regulator Of Oocyte Survival After Chemotherapy., Chihiro Emori, Zachary Boucher, Ewelina Bolcun-Filas Oct 2023

Chek2 Signaling Is The Key Regulator Of Oocyte Survival After Chemotherapy., Chihiro Emori, Zachary Boucher, Ewelina Bolcun-Filas

Faculty Research 2023

Cancer treatments can damage the ovarian follicle reserve, leading to primary ovarian insufficiency and infertility among survivors. Checkpoint kinase 2 (CHEK2) deficiency prevents elimination of oocytes in primordial follicles in female mice exposed to radiation and preserves their ovarian function and fertility. Here, we demonstrate that CHEK2 also coordinates the elimination of oocytes after exposure to standard-of-care chemotherapy drugs. CHEK2 activates two downstream targets-TAp63 and p53-which direct oocyte elimination. CHEK2 knockout or pharmacological inhibition preserved ovarian follicle reserve after radiation and chemotherapy. However, the lack of specificity for CHEK2 among available inhibitors limits their potential for clinical development. These findings …


Early Resveratrol Treatment Mitigates Joint Degeneration And Dampens Pain In A Mouse Model Of Pseudoachondroplasia (Psach), Jacqueline T Hecht, Alka C Veerisetty, Debabrata Patra, Mohammad G Hossain, Frankie Chiu, Claire Mobed, Francis H Gannon, Karen L Posey Oct 2023

Early Resveratrol Treatment Mitigates Joint Degeneration And Dampens Pain In A Mouse Model Of Pseudoachondroplasia (Psach), Jacqueline T Hecht, Alka C Veerisetty, Debabrata Patra, Mohammad G Hossain, Frankie Chiu, Claire Mobed, Francis H Gannon, Karen L Posey

Faculty, Staff and Student Publications

Pseudoachondroplasia (PSACH), a severe dwarfing condition associated with early-onset joint degeneration and lifelong joint pain, is caused by mutations in cartilage oligomeric matrix protein (COMP). The mechanisms underlying the mutant-COMP pathology have been defined using the MT-COMP mouse model of PSACH that has the common D469del mutation. Mutant-COMP protein does not fold properly, and it is retained in the rough endoplasmic reticulum (rER) of chondrocytes rather than being exported to the extracellular matrix (ECM), driving ER stress that stimulates oxidative stress and inflammation, driving a self-perpetuating cycle. CHOP (ER stress signaling protein) and TNFα inflammation drive high levels of mTORC1 …


Early Resveratrol Treatment Mitigates Joint Degeneration And Dampens Pain In A Mouse Model Of Pseudoachondroplasia (Psach), Jacqueline T Hecht, Alka C Veerisetty, Debabrata Patra, Mohammad G Hossain, Frankie Chiu, Claire Mobed, Francis H Gannon, Karen L Posey Oct 2023

Early Resveratrol Treatment Mitigates Joint Degeneration And Dampens Pain In A Mouse Model Of Pseudoachondroplasia (Psach), Jacqueline T Hecht, Alka C Veerisetty, Debabrata Patra, Mohammad G Hossain, Frankie Chiu, Claire Mobed, Francis H Gannon, Karen L Posey

2020-Current year OA Pubs

Pseudoachondroplasia (PSACH), a severe dwarfing condition associated with early-onset joint degeneration and lifelong joint pain, is caused by mutations in cartilage oligomeric matrix protein (COMP). The mechanisms underlying the mutant-COMP pathology have been defined using the MT-COMP mouse model of PSACH that has the common D469del mutation. Mutant-COMP protein does not fold properly, and it is retained in the rough endoplasmic reticulum (rER) of chondrocytes rather than being exported to the extracellular matrix (ECM), driving ER stress that stimulates oxidative stress and inflammation, driving a self-perpetuating cycle. CHOP (ER stress signaling protein) and TNFα inflammation drive high levels of mTORC1 …


Braf D594a Mutation Defines A Unique Biological And Immuno-Modulatory Subgroup Associated With Functional Cd8+ T Cell Infiltration In Colorectal Cancer, Wenjing Li, Chenyi Zhao, Wenhui Li, Yang Gong, Kaili Ma, Yujie Lu, Xiaowei Liu, Lianjun Zhang, Feng Guo Oct 2023

Braf D594a Mutation Defines A Unique Biological And Immuno-Modulatory Subgroup Associated With Functional Cd8+ T Cell Infiltration In Colorectal Cancer, Wenjing Li, Chenyi Zhao, Wenhui Li, Yang Gong, Kaili Ma, Yujie Lu, Xiaowei Liu, Lianjun Zhang, Feng Guo

Faculty, Staff and Student Publications

BACKGROUND: BRAF non-V600 mutation occupies a relatively small but critical subset in colorectal cancer (CRC). However, little is known about the biological functions and impacts of BRAF class III mutation in CRC. Here, we aim to explore how D594A mutation impacts on biological behaviors and immune related signatures in murine CRC cells.

METHODS: BRAF V600E (class I), G469V (class II) and D594A (class III) mutant cell lines were established based on MC38 cells. The biological behaviors of cells were evaluated in respect of cell growth, cell proliferation, cell apoptosis, cell migration and invasion by the methods of colony-forming assay, CCK-8 …


Reprogramming Of Cis-Regulatory Networks During Skeletal Muscle Atrophy In Male Mice, Hongchun Lin, Hui Peng, Yuxiang Sun, Meijun Si, Jiao Wu, Yanlin Wang, Sandhya S Thomas, Zheng Sun, Zhaoyong Hu Oct 2023

Reprogramming Of Cis-Regulatory Networks During Skeletal Muscle Atrophy In Male Mice, Hongchun Lin, Hui Peng, Yuxiang Sun, Meijun Si, Jiao Wu, Yanlin Wang, Sandhya S Thomas, Zheng Sun, Zhaoyong Hu

Faculty, Staff and Students Publications

A comprehensive atlas of cis-regulatory elements and their dynamic activity is necessary to understand the transcriptional basis of cellular structure maintenance, metabolism, and responses to the environment. Here we show, using matched single-nucleus chromatin accessibility and RNA-sequencing from juvenile male C57BL6 mice, an atlas of accessible chromatin regions in both normal and denervated skeletal muscles. We identified cell-type-specific cis-regulatory networks, highlighting the dynamic regulatory circuits mediating transitions between myonuclear types. Through comparison of normal and perturbed muscle, we delineated the reprogramming of cis-regulatory networks in response to denervation, described the interplay of promoters/enhancers and target genes. We further unveil a …


Endogenous Renal Adiponectin Drives Gluconeogenesis Through Enhancing Pyruvate And Fatty Acid Utilization, Toshiharu Onodera, May-Yun Wang, Joseph M Rutkowski, Stanislaw Deja, Shiuhwei Chen, Michael S Balzer, Dae-Seok Kim, Xuenan Sun, Yu A An, Bianca C Field, Charlotte Lee, Ei-Ichi Matsuo, Monika Mizerska, Ina Sanjana, Naoto Fujiwara, Christine M Kusminski, Ruth Gordillo, Laurent Gautron, Denise K Marciano, Ming Chang Hu, Shawn C Burgess, Katalin Susztak, Orson W Moe, Philipp E Scherer Oct 2023

Endogenous Renal Adiponectin Drives Gluconeogenesis Through Enhancing Pyruvate And Fatty Acid Utilization, Toshiharu Onodera, May-Yun Wang, Joseph M Rutkowski, Stanislaw Deja, Shiuhwei Chen, Michael S Balzer, Dae-Seok Kim, Xuenan Sun, Yu A An, Bianca C Field, Charlotte Lee, Ei-Ichi Matsuo, Monika Mizerska, Ina Sanjana, Naoto Fujiwara, Christine M Kusminski, Ruth Gordillo, Laurent Gautron, Denise K Marciano, Ming Chang Hu, Shawn C Burgess, Katalin Susztak, Orson W Moe, Philipp E Scherer

Faculty, Staff and Student Publications

Adiponectin is a secretory protein, primarily produced in adipocytes. However, low but detectable expression of adiponectin can be observed in cell types beyond adipocytes, particularly in kidney tubular cells, but its local renal role is unknown. We assessed the impact of renal adiponectin by utilizing male inducible kidney tubular cell-specific adiponectin overexpression or knockout mice. Kidney-specific adiponectin overexpression induces a doubling of phosphoenolpyruvate carboxylase expression and enhanced pyruvate-mediated glucose production, tricarboxylic acid cycle intermediates and an upregulation of fatty acid oxidation (FAO). Inhibition of FAO reduces the adiponectin-induced enhancement of glucose production, highlighting the role of FAO in the induction …


Impairment Of Serine Transport Across The Blood-Brain Barrier By Deletion Of Slc38a5 Causes Developmental Delay And Motor Dysfunction, Inna Radzishevsky, Maali Odeh, Oded Bodner, Salman Zubedat, Lihi Shaulov, Maxim Litvak, Kayoko Esaki, Takeo Yoshikawa, Bella Agranovich, Wen-Hong Li, Alex Radzishevsky, Eyal Gottlieb, Avi Avital, Herman Wolosker Oct 2023

Impairment Of Serine Transport Across The Blood-Brain Barrier By Deletion Of Slc38a5 Causes Developmental Delay And Motor Dysfunction, Inna Radzishevsky, Maali Odeh, Oded Bodner, Salman Zubedat, Lihi Shaulov, Maxim Litvak, Kayoko Esaki, Takeo Yoshikawa, Bella Agranovich, Wen-Hong Li, Alex Radzishevsky, Eyal Gottlieb, Avi Avital, Herman Wolosker

Faculty, Staff and Student Publications

Brain L-serine is critical for neurodevelopment and is thought to be synthesized solely from glucose. In contrast, we found that the influx of L-serine across the blood-brain barrier (BBB) is essential for brain development. We identified the endothelial Slc38a5, previously thought to be a glutamine transporter, as an L-serine transporter expressed at the BBB in early postnatal life. Young Slc38a5 knockout (KO) mice exhibit developmental alterations and a decrease in brain L-serine and D-serine, without changes in serum or liver amino acids. Slc38a5-KO brains exhibit accumulation of neurotoxic deoxysphingolipids, synaptic and mitochondrial abnormalities, and decreased neurogenesis at the dentate gyrus. …


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 Oct 2023

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 …


Excretory/Secretory Products From Trichinella Spiralis Adult Worms Ameliorate Myocardial Infarction By Inducing M2 Macrophage Polarization In A Mouse Model, Lingqin Wu, Wenhui Yin, Jutai Wen, Shuying Wang, Huihui Li, Xiaoli Wang, Weixiao Zhang, Shuyao Duan, Qiuyu Zhu, Erhe Gao, Shili Wu, Bin Zhan, Rui Zhou, Xiaodi Yang Oct 2023

Excretory/Secretory Products From Trichinella Spiralis Adult Worms Ameliorate Myocardial Infarction By Inducing M2 Macrophage Polarization In A Mouse Model, Lingqin Wu, Wenhui Yin, Jutai Wen, Shuying Wang, Huihui Li, Xiaoli Wang, Weixiao Zhang, Shuyao Duan, Qiuyu Zhu, Erhe Gao, Shili Wu, Bin Zhan, Rui Zhou, Xiaodi Yang

Faculty, Staff and Students Publications

BACKGROUND: Ischemia-induced inflammatory response is the main pathological mechanism of myocardial infarction (MI)-caused heart tissue injury. It has been known that helminths and worm-derived proteins are capable of modulating host immune response to suppress excessive inflammation as a survival strategy. Excretory/secretory products from Trichinella spiralis adult worms (Ts-AES) have been shown to ameliorate inflammation-related diseases. In this study, Ts-AES were used to treat mice with MI to determine its therapeutic effect on reducing MI-induced heart inflammation and the immunological mechanism involved in the treatment.

METHODS: The MI model was established by the ligation of the left anterior descending coronary artery, …


Manf Stimulates Autophagy And Restores Mitochondrial Homeostasis To Treat Autosomal Dominant Tubulointerstitial Kidney Disease In Mice, Yeawon Kim, Chuang Li, Chenjian Gu, Yili Fang, Eric Tycksen, Terri A Pietka, Jothilingam Sivapackiam, Sun-Ji Park, Fumihiko Urano, Vijay Sharma, Ying Maggie Chen, Et Al. Oct 2023

Manf Stimulates Autophagy And Restores Mitochondrial Homeostasis To Treat Autosomal Dominant Tubulointerstitial Kidney Disease In Mice, Yeawon Kim, Chuang Li, Chenjian Gu, Yili Fang, Eric Tycksen, Terri A Pietka, Jothilingam Sivapackiam, Sun-Ji Park, Fumihiko Urano, Vijay Sharma, Ying Maggie Chen, Et Al.

2020-Current year OA Pubs

Misfolded protein aggregates may cause toxic proteinopathy, including autosomal dominant tubulointerstitial kidney disease due to uromodulin mutations (ADTKD-UMOD), a leading hereditary kidney disease. There are no targeted therapies. In our generated mouse model recapitulating human ADTKD-UMOD carrying a leading UMOD mutation, we show that autophagy/mitophagy and mitochondrial biogenesis are impaired, leading to cGAS-STING activation and tubular injury. Moreover, we demonstrate that inducible tubular overexpression of mesencephalic astrocyte-derived neurotrophic factor (MANF), a secreted endoplasmic reticulum protein, after the onset of disease stimulates autophagy/mitophagy, clears mutant UMOD, and promotes mitochondrial biogenesis through p-AMPK enhancement, thus protecting kidney function in our ADTKD mouse …


Ppp1r12c Promotes Atrial Hypocontractility In Atrial Fibrillation, Srikanth Perike, Francisco J Gonzalez-Gonzalez, Issam Abu-Taha, Frederick W Damen, Laurin M Hanft, Ken S Lizama, Anahita Aboonabi, Andrielle E Capote, Yuriana Aguilar-Sanchez, Benjamin Levin, Zhenbo Han, Arvind Sridhar, Jacob Grand, Jody Martin, Joseph G Akar, Chad M Warren, R John Solaro, Sang-Ging Ong, Dawood Darbar, Kerry S Mcdonald, Craig J Goergen, Beata M Wolska, Dobromir Dobrev, Xander H T Wehrens, Mark D Mccauley Oct 2023

Ppp1r12c Promotes Atrial Hypocontractility In Atrial Fibrillation, Srikanth Perike, Francisco J Gonzalez-Gonzalez, Issam Abu-Taha, Frederick W Damen, Laurin M Hanft, Ken S Lizama, Anahita Aboonabi, Andrielle E Capote, Yuriana Aguilar-Sanchez, Benjamin Levin, Zhenbo Han, Arvind Sridhar, Jacob Grand, Jody Martin, Joseph G Akar, Chad M Warren, R John Solaro, Sang-Ging Ong, Dawood Darbar, Kerry S Mcdonald, Craig J Goergen, Beata M Wolska, Dobromir Dobrev, Xander H T Wehrens, Mark D Mccauley

Faculty, Staff and Students Publications

Background: Atrial fibrillation (AF)-the most common sustained cardiac arrhythmia-increases thromboembolic stroke risk 5-fold. Although atrial hypocontractility contributes to stroke risk in AF, the molecular mechanisms reducing myofilament contractile function remain unknown. We tested the hypothesis that increased expression of PPP1R12C (protein phosphatase 1 regulatory subunit 12C)-the PP1 (protein phosphatase 1) regulatory subunit targeting MLC2a (atrial myosin light chain 2)-causes hypophosphorylation of MLC2a and results in atrial hypocontractility.

Methods: Right atrial appendage tissues were isolated from human patients with AF versus sinus rhythm controls. Western blots, coimmunoprecipitation, and phosphorylation studies were performed to examine how the PP1c (PP1 catalytic subunit)-PPP1R12C interaction …


Pptc7 Maintains Mitochondrial Protein Content By Suppressing Receptor-Mediated Mitophagy, Natalie M Niemi, Lianjie Wei, Andrew J Smith, Merima Forny, David J Pagliarini, Et Al. Oct 2023

Pptc7 Maintains Mitochondrial Protein Content By Suppressing Receptor-Mediated Mitophagy, Natalie M Niemi, Lianjie Wei, Andrew J Smith, Merima Forny, David J Pagliarini, Et Al.

2020-Current year OA Pubs

PPTC7 is a resident mitochondrial phosphatase essential for maintaining proper mitochondrial content and function. Newborn mice lacking Pptc7 exhibit aberrant mitochondrial protein phosphorylation, suffer from a range of metabolic defects, and fail to survive beyond one day after birth. Using an inducible knockout model, we reveal that loss of Pptc7 in adult mice causes marked reduction in mitochondrial mass and metabolic capacity with elevated hepatic triglyceride accumulation. Pptc7 knockout animals exhibit increased expression of the mitophagy receptors BNIP3 and NIX, and Pptc7


Widefield Imaging Of Rapid Pan-Cortical Voltage Dynamics With An Indicator Evolved For One-Photon Microscopy, Xiaoyu Lu, Yunmiao Wang, Zhuohe Liu, Yueyang Gou, Dieter Jaeger, François St-Pierre Oct 2023

Widefield Imaging Of Rapid Pan-Cortical Voltage Dynamics With An Indicator Evolved For One-Photon Microscopy, Xiaoyu Lu, Yunmiao Wang, Zhuohe Liu, Yueyang Gou, Dieter Jaeger, François St-Pierre

Faculty, Staff and Students Publications

Widefield imaging with genetically encoded voltage indicators (GEVIs) is a promising approach for understanding the role of large cortical networks in the neural coding of behavior. However, the limited performance of current GEVIs restricts their deployment for single-trial imaging of rapid neuronal voltage dynamics. Here, we developed a high-throughput platform to screen for GEVIs that combine fast kinetics with high brightness, sensitivity, and photostability under widefield one-photon illumination. Rounds of directed evolution produced JEDI-1P, a green-emitting fluorescent indicator with enhanced performance across all metrics. Next, we optimized a neonatal intracerebroventricular delivery method to achieve cost-effective and wide-spread JEDI-1P expression in …


Trio-Based Gwas Identifies Novel Associations And Subtype-Specific Risk Factors For Cleft Palate, Kelsey Robinson, Trenell J Mosley, Kenneth S Rivera-González, Christopher R Jabbarpour, Sarah W Curtis, Wasiu Lanre Adeyemo, Terri H Beaty, Azeez Butali, Carmen J Buxó, David J Cutler, Michael P Epstein, Lord J J Gowans, Jacqueline T Hecht, Jeffrey C Murray, Gary M Shaw, Lina Moreno Uribe, Seth M Weinberg, Harrison Brand, Mary L Marazita, Robert J Lipinski, Elizabeth J Leslie Oct 2023

Trio-Based Gwas Identifies Novel Associations And Subtype-Specific Risk Factors For Cleft Palate, Kelsey Robinson, Trenell J Mosley, Kenneth S Rivera-González, Christopher R Jabbarpour, Sarah W Curtis, Wasiu Lanre Adeyemo, Terri H Beaty, Azeez Butali, Carmen J Buxó, David J Cutler, Michael P Epstein, Lord J J Gowans, Jacqueline T Hecht, Jeffrey C Murray, Gary M Shaw, Lina Moreno Uribe, Seth M Weinberg, Harrison Brand, Mary L Marazita, Robert J Lipinski, Elizabeth J Leslie

Faculty, Staff and Student Publications

Cleft palate (CP) is one of the most common craniofacial birth defects; however, there are relatively few established genetic risk factors associated with its occurrence despite high heritability. Historically, CP has been studied as a single phenotype, although it manifests across a spectrum of defects involving the hard and/or soft palate. We performed a genome-wide association study using transmission disequilibrium tests of 435 case-parent trios to evaluate broad risks for any cleft palate (ACP) (n = 435), and subtype-specific risks for any cleft soft palate (CSP), (n = 259) and any cleft hard palate (CHP) (n = 125). We identified …


Perinatal Murine Cytomegalovirus Infection Reshapes The Transcriptional Profile And Functionality Of Nk Cells, Carmen Rožmanić, Eugene Park, Wayne M Yokoyama, Et Al. Oct 2023

Perinatal Murine Cytomegalovirus Infection Reshapes The Transcriptional Profile And Functionality Of Nk Cells, Carmen Rožmanić, Eugene Park, Wayne M Yokoyama, Et Al.

2020-Current year OA Pubs

Infections in early life can elicit substantially different immune responses and pathogenesis than infections in adulthood. Here, we investigate the consequences of murine cytomegalovirus infection in newborn mice on NK cells. We show that infection severely compromised NK cell maturation and functionality in newborns. This effect was not due to compromised virus control. Inflammatory responses to infection dysregulated the expression of major transcription factors governing NK cell fate, such as Eomes, resulting in impaired NK cell function. Most prominently, NK cells from perinatally infected mice have a diminished ability to produce IFN-γ due to the downregulation of long non-coding RNA …


Anti-Myeloma Efficacy Of Car-Inkt Is Enhanced With A Long-Acting Il-7, Rhil-7-Hyfc, Julie O'Neal, Matthew L Cooper, Julie K Ritchey, Susan Gladney, Jessica Niswonger, L Sofía González, Emily Street, Gabriel J Haas, Alun Carter, Parmeshwar N Amayta, Feng Gao, Melissa Berrien-Elliott, Alice Zhou, Todd A Fehniger, Mike P Rettig, John F Dipersio, Et Al. Oct 2023

Anti-Myeloma Efficacy Of Car-Inkt Is Enhanced With A Long-Acting Il-7, Rhil-7-Hyfc, Julie O'Neal, Matthew L Cooper, Julie K Ritchey, Susan Gladney, Jessica Niswonger, L Sofía González, Emily Street, Gabriel J Haas, Alun Carter, Parmeshwar N Amayta, Feng Gao, Melissa Berrien-Elliott, Alice Zhou, Todd A Fehniger, Mike P Rettig, John F Dipersio, Et Al.

2020-Current year OA Pubs

Multiple myeloma (MM), a malignancy of mature plasma cells, remains incurable. B-cell maturation antigen (BCMA) is the lead protein target for chimeric antigen receptor (CAR) therapy because of its high expression in most MM, with limited expression in other cell types, resulting in favorable on-target, off tumor toxicity. The response rate to autologous BCMA CAR-T therapy is high; however, it is not curative and is associated with risks of cytokine release syndrome (CRS) and immune effector cell-associated neurotoxicity syndrome. Outcomes in patients treated with BCMA CAR-T cells (CAR-Ts) may improve with allogeneic CAR T-cell therapy, which offer higher cell fitness …


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 Oct 2023

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 …


Novel Treatments For Pxe: Targeting The Systemic And Local Drivers Of Ectopic Calcification, Ida Joely Jacobs, Qiaoli Li Oct 2023

Novel Treatments For Pxe: Targeting The Systemic And Local Drivers Of Ectopic Calcification, Ida Joely Jacobs, Qiaoli Li

Department of Biochemistry and Molecular Biology Faculty Papers

Pseudoxanthoma elasticum (PXE) is a heritable multisystem ectopic calcification disorder. The gene responsible for PXE, ABCC6, encodes ABCC6, a hepatic efflux transporter regulating extracellular inorganic pyrophosphate (PPi), a potent endogenous calcification inhibitor. Recent studies demonstrated that in addition to the deficiency of plasma PPi, the activated DDR/PARP signaling in calcified tissues provides an additional possible mechanism of ectopic calcification in PXE. This study examined the effects of etidronate (ETD), a stable PPi analog, and its combination with minocycline (Mino), a potent inhibitor of DDR/PARP, on ectopic calcification in an Abcc6-/- mouse model of PXE. Abcc6-/- mice, at 4 weeks of …


Subventricular Zone Cytogenesis Provides Trophic Support For Neural Repair In A Mouse Model Of Stroke, Michael R Williamson, Stephanie P Le, Ronald L Franzen, Nicole A Donlan, Jill L Rosow, Mathilda S Nicot-Cartsonis, Alexis Cervantes, Benjamin Deneen, Andrew K Dunn, Theresa A Jones, Michael R Drew Oct 2023

Subventricular Zone Cytogenesis Provides Trophic Support For Neural Repair In A Mouse Model Of Stroke, Michael R Williamson, Stephanie P Le, Ronald L Franzen, Nicole A Donlan, Jill L Rosow, Mathilda S Nicot-Cartsonis, Alexis Cervantes, Benjamin Deneen, Andrew K Dunn, Theresa A Jones, Michael R Drew

Faculty, Staff and Students Publications

Stroke enhances proliferation of neural precursor cells within the subventricular zone (SVZ) and induces ectopic migration of newborn cells towards the site of injury. Here, we characterize the identity of cells arising from the SVZ after stroke and uncover a mechanism through which they facilitate neural repair and functional recovery. With genetic lineage tracing, we show that SVZ-derived cells that migrate towards cortical photothrombotic stroke in mice are predominantly undifferentiated precursors. We find that ablation of neural precursor cells or conditional knockout of VEGF impairs neuronal and vascular reparative responses and worsens recovery. Replacement of VEGF is sufficient to induce …


Opposing Roles For The Α Isoform Of The Catalytic Subunit Of Protein Phosphatase 1 In Inside-Out And Outside-In Integrin Signaling In Murine Platelets, Tanvir Khatlani, Subhashree Pradhan, Kimberly Langlois, Deepika Subramanyam, Rolando E Rumbaut, K Vinod Vijayan Oct 2023

Opposing Roles For The Α Isoform Of The Catalytic Subunit Of Protein Phosphatase 1 In Inside-Out And Outside-In Integrin Signaling In Murine Platelets, Tanvir Khatlani, Subhashree Pradhan, Kimberly Langlois, Deepika Subramanyam, Rolando E Rumbaut, K Vinod Vijayan

Faculty, Staff and Students Publications

Platelet activation during hemostasis and thrombosis is facilitated by agonist-induced inside–out and integrin αIIbβ3-initiated outside–in signaling via protein kinases and phosphatases. Pharmacological inhibitor studies suggest that the serine/threonine protein phosphatase 1 (PP1) promotes platelet activation. However, since phosphatase inhibitors block all the isoforms of the catalytic subunit of PP1 (PP1c), the role of specific PP1c isoform in platelet signaling remains unclear. Here, we employed a platelet-specific PP1cα−/− mice to explore the contribution of a major PP1 isoform in platelet functions. Loss of PP1cα moderately decreased activation of integrin αIIbβ3, binding of soluble fibrinogen, and aggregation to low-dose thrombin, ADP, and …


Cd13 Facilitates Immune Cell Migration And Aggravates Acute Injury But Promotes Chronic Post-Stroke Recovery, Justin N Nguyen, Eric C Mohan, Gargee Pandya, Uzma Ali, Chunfeng Tan, Julia K Kofler, Linda Shapiro, Sean P Marrelli, Anjali Chauhan Oct 2023

Cd13 Facilitates Immune Cell Migration And Aggravates Acute Injury But Promotes Chronic Post-Stroke Recovery, Justin N Nguyen, Eric C Mohan, Gargee Pandya, Uzma Ali, Chunfeng Tan, Julia K Kofler, Linda Shapiro, Sean P Marrelli, Anjali Chauhan

Faculty, Staff and Student Publications

Introduction

Acute stroke leads to the activation of myeloid cells. These cells express adhesion molecules and transmigrate to the brain, thereby aggravating injury. Chronically after stroke, repair processes, including angiogenesis, are activated and enhance post-stroke recovery. Activated myeloid cells express CD13, which facilitates their migration into the site of injury. However, angiogenic blood vessels which play a role in recovery also express CD13. Overall, the specific contribution of CD13 to acute and chronic stroke outcomes is unknown.

Methods

CD13 expression was estimated in both mice and humans after the ischemic stroke. Young (8–12 weeks) male wild-type and global CD13 knockout …


Mathematical Modeling Of Radiotherapy: Impact Of Model Selection On Estimating Minimum Radiation Dose For Tumor Control, Achyudhan R Kutuva, Jimmy J Caudell, Kosj Yamoah, Heiko Enderling, Mohammad U Zahid Oct 2023

Mathematical Modeling Of Radiotherapy: Impact Of Model Selection On Estimating Minimum Radiation Dose For Tumor Control, Achyudhan R Kutuva, Jimmy J Caudell, Kosj Yamoah, Heiko Enderling, Mohammad U Zahid

Faculty, Staff and Student Publications

INTRODUCTION: Radiation therapy (RT) is one of the most common anticancer therapies. Yet, current radiation oncology practice does not adapt RT dose for individual patients, despite wide interpatient variability in radiosensitivity and accompanying treatment response. We have previously shown that mechanistic mathematical modeling of tumor volume dynamics can simulate volumetric response to RT for individual patients and estimation personalized RT dose for optimal tumor volume reduction. However, understanding the implications of the choice of the underlying RT response model is critical when calculating personalized RT dose.

METHODS: In this study, we evaluate the mathematical implications and biological effects of 2 …


Ccdc50 Promotes Tumor Growth Through Regulation Of Lysosome Homeostasis, Penghui Jia, Tian Tian, Zibo Li, Yicheng Wang, Yuxin Lin, Weijie Zeng, Yu Ye, Miao He, Xiangrong Ni, Ji'an Pan, Xiaonan Dong, Jian Huang, Chun-Mei Li, Deyin Guo, Panpan Hou Oct 2023

Ccdc50 Promotes Tumor Growth Through Regulation Of Lysosome Homeostasis, Penghui Jia, Tian Tian, Zibo Li, Yicheng Wang, Yuxin Lin, Weijie Zeng, Yu Ye, Miao He, Xiangrong Ni, Ji'an Pan, Xiaonan Dong, Jian Huang, Chun-Mei Li, Deyin Guo, Panpan Hou

Faculty, Staff and Student Publications

The maintenance of lysosome homeostasis is crucial for cell growth. Lysosome-dependent degradation and metabolism sustain tumor cell survival. Here, we demonstrate that CCDC50 serves as a lysophagy receptor, promoting tumor progression and invasion by controlling lysosomal integrity and renewal. CCDC50 monitors lysosomal damage, recognizes galectin-3 and K63-linked polyubiquitination on damaged lysosomes, and specifically targets them for autophagy-dependent degradation. CCDC50 deficiency causes the accumulation of ruptured lysosomes, impaired autophagic flux, and superfluous reactive oxygen species, consequently leading to cell death and tumor suppression. CCDC50 expression is associated with malignancy, progression to metastasis, and poor overall survival in human melanoma. Targeting CCDC50 …


Sox7-Positive Endothelial Progenitors Establish Coronary Arteries And Govern Ventricular Compaction, Ivy Kn Chiang, David Humphrey, Richard J Mills, Peter Kaltzis, Shikha Pachauri, Matthew Graus, Diptarka Saha, Zhijian Wu, Paul Young, Choon Boon Sim, Tara Davidson, Andres Hernandez-Garcia, Chad A Shaw, Alexander Renwick, Daryl A Scott, Enzo R Porrello, Emily S Wong, James E Hudson, Kristy Red-Horse, Gonzalo Del Monte-Nieto, Mathias Francois Oct 2023

Sox7-Positive Endothelial Progenitors Establish Coronary Arteries And Govern Ventricular Compaction, Ivy Kn Chiang, David Humphrey, Richard J Mills, Peter Kaltzis, Shikha Pachauri, Matthew Graus, Diptarka Saha, Zhijian Wu, Paul Young, Choon Boon Sim, Tara Davidson, Andres Hernandez-Garcia, Chad A Shaw, Alexander Renwick, Daryl A Scott, Enzo R Porrello, Emily S Wong, James E Hudson, Kristy Red-Horse, Gonzalo Del Monte-Nieto, Mathias Francois

Faculty, Staff and Students Publications

The cardiac endothelium influences ventricular chamber development by coordinating trabeculation and compaction. However, the endothelial-specific molecular mechanisms mediating this coordination are not fully understood. Here, we identify the Sox7 transcription factor as a critical cue instructing cardiac endothelium identity during ventricular chamber development. Endothelial-specific loss of Sox7 function in mice results in cardiac ventricular defects similar to non-compaction cardiomyopathy, with a change in the proportions of trabecular and compact cardiomyocytes in the mutant hearts. This phenotype is paralleled by abnormal coronary artery formation. Loss of Sox7 function disrupts the transcriptional regulation of the Notch pathway and connexins 37 and 40, …


Stabilizing Peri-Stent Restenosis Using A Novel Therapeutic Carrier, Maria P Blasco Conesa, Frank W Blixt, Pedram Peesh, Romeesa Khan, Janelle Korf, Juneyoung Lee, Gayathri Jagadeesan, Alexander Andersohn, Tushar K Das, Chunfeng Tan, Claudia Di Gesu, Gabriela Delevati Colpo, Jose Félix Moruno-Manchón, Louise D Mccullough, Robert Bryan, Bhanu P Ganesh Oct 2023

Stabilizing Peri-Stent Restenosis Using A Novel Therapeutic Carrier, Maria P Blasco Conesa, Frank W Blixt, Pedram Peesh, Romeesa Khan, Janelle Korf, Juneyoung Lee, Gayathri Jagadeesan, Alexander Andersohn, Tushar K Das, Chunfeng Tan, Claudia Di Gesu, Gabriela Delevati Colpo, Jose Félix Moruno-Manchón, Louise D Mccullough, Robert Bryan, Bhanu P Ganesh

Faculty, Staff and Student Publications

Stroke is the most common cause of long-term disability and places a high economic burden on the global healthcare system. Functional outcomes from stroke are largely determined by the extent of ischemic injury, however, there is growing recognition that systemic inflammatory responses also contribute to outcomes. Mast cells (MCs) rapidly respond to injury and release histamine (HA), a pro-inflammatory neurotransmitter that enhances inflammation. The gut serves as a major reservoir of HA. We hypothesized that cromolyn, a mast cell stabilizer that prevents the release of inflammatory mediators, would decrease peripheral and central inflammation, reduce MC trafficking to the brain, and …


Multiphoton In Vivo Microscopy Of Embryonic Thrombopoiesis Reveals The Generation Of Platelets Through Budding, Huan Liu, Hellen Ishikawa-Ankerhold, Julia Winterhalter, Michael Lorenz, Mykhailo Vladymyrov, Steffen Massberg, Christian Schulz, Mathias Orban Oct 2023

Multiphoton In Vivo Microscopy Of Embryonic Thrombopoiesis Reveals The Generation Of Platelets Through Budding, Huan Liu, Hellen Ishikawa-Ankerhold, Julia Winterhalter, Michael Lorenz, Mykhailo Vladymyrov, Steffen Massberg, Christian Schulz, Mathias Orban

Faculty, Staff and Student Publications

Platelets are generated by specialized cells called megakaryocytes (MKs). However, MK's origin and platelet release mode have remained incompletely understood. Here, we established direct visualization of embryonic thrombopoiesis in vivo by combining multiphoton intravital microscopy (MP-IVM) with a fluorescence switch reporter mouse model under control of the platelet factor 4 promoter (Pf4CreRosa26mTmG). Using this microscopy tool, we discovered that fetal liver MKs provide higher thrombopoietic activity than yolk sac MKs. Mechanistically, fetal platelets were released from MKs either by membrane buds or the formation of proplatelets, with the former constituting the key process. In E14.5 c-Myb-deficient …


High-Fat Diet, But Not Duration Of Lactation, Increases Mammary Gland Lymphatic Vessel Function And Subsequent Growth Of Inflammatory Breast Cancer Cells, Wintana Balema, Janelle Morton, Richard A Larson, Li Li, Fred Christian Velasquez, Natalie W Fowlkes, Savitri Krishnamurthy, Bisrat G Debeb, Eva Sevick-Muraca, Wendy A Woodward Oct 2023

High-Fat Diet, But Not Duration Of Lactation, Increases Mammary Gland Lymphatic Vessel Function And Subsequent Growth Of Inflammatory Breast Cancer Cells, Wintana Balema, Janelle Morton, Richard A Larson, Li Li, Fred Christian Velasquez, Natalie W Fowlkes, Savitri Krishnamurthy, Bisrat G Debeb, Eva Sevick-Muraca, Wendy A Woodward

Faculty, Staff and Student Publications

Inflammatory breast cancer (IBC) presents as rapid-onset swelling and breast skin changes caused by tumor emboli in the breast and breast skin lymphatics. IBC has been linked with obesity and duration of breastfeeding, but how these factors affect IBC tumor progression is not clear. We modeled the simultaneous effects of diet and weaning in mice on in vivo lymphatic function; on IBC tumor growth; and on aspects of the mammary gland microenvironment before and after IBC (SUM149) xenograft inoculation. We hypothesized that weaning status and diet would have synergistic effects on lymphatic function and the breast microenvironment to enhance IBC …


Pls3 Missense Variants Affecting The Actin-Binding Domains Cause X-Linked Congenital Diaphragmatic Hernia And Body-Wall Defects, Florence Petit, Mauro Longoni, Julie Wells, Richard S Maser, Eric L Bogenschutz, Matthew J Dysart, Hannah T M Contreras, Frederic Frénois, Barbara R Pober, Robin D Clark, Philip F Giampietro, Hilger H Ropers, Hao Hu, Maria Loscertales, Richard Wagner, Xingbin Ai, Harrison Brand, Anne-Sophie Jourdain, Marie-Ange Delrue, Brigitte Gilbert-Dussardier, Louise Devisme, Boris Keren, David J Mcculley, Lu Qiao, Rebecca Hernan, Julia Wynn, Tiana M Scott, Daniel G Calame, Zeynep Coban-Akdemir, Patricia Hernandez, Andres Hernandez-Garcia, Hagith Yonath, James R Lupski, Yufeng Shen, Wendy K Chung, Daryl A Scott, Carol J Bult, Patricia K Donahoe, Frances A High Oct 2023

Pls3 Missense Variants Affecting The Actin-Binding Domains Cause X-Linked Congenital Diaphragmatic Hernia And Body-Wall Defects, Florence Petit, Mauro Longoni, Julie Wells, Richard S Maser, Eric L Bogenschutz, Matthew J Dysart, Hannah T M Contreras, Frederic Frénois, Barbara R Pober, Robin D Clark, Philip F Giampietro, Hilger H Ropers, Hao Hu, Maria Loscertales, Richard Wagner, Xingbin Ai, Harrison Brand, Anne-Sophie Jourdain, Marie-Ange Delrue, Brigitte Gilbert-Dussardier, Louise Devisme, Boris Keren, David J Mcculley, Lu Qiao, Rebecca Hernan, Julia Wynn, Tiana M Scott, Daniel G Calame, Zeynep Coban-Akdemir, Patricia Hernandez, Andres Hernandez-Garcia, Hagith Yonath, James R Lupski, Yufeng Shen, Wendy K Chung, Daryl A Scott, Carol J Bult, Patricia K Donahoe, Frances A High

Faculty, Staff and Student Publications

Congenital diaphragmatic hernia (CDH) is a relatively common and genetically heterogeneous structural birth defect associated with high mortality and morbidity. We describe eight unrelated families with an X-linked condition characterized by diaphragm defects, variable anterior body-wall anomalies, and/or facial dysmorphism. Using linkage analysis and exome or genome sequencing, we found that missense variants in plastin 3 (PLS3), a gene encoding an actin bundling protein, co-segregate with disease in all families. Loss-of-function variants in PLS3 have been previously associated with X-linked osteoporosis (MIM: 300910), so we used in silico protein modeling and a mouse model to address these seemingly disparate clinical …


An Intrinsically Disordered Region Controlling Condensation Of A Circadian Clock Component And Rhythmic Transcription In The Liver, Kun Zhu, Isaac J Celwyn, Dongyin Guan, Yang Xiao, Xiang Wang, Wenxiang Hu, Chunjie Jiang, Lan Cheng, Rafael Casellas, Mitchell A Lazar Oct 2023

An Intrinsically Disordered Region Controlling Condensation Of A Circadian Clock Component And Rhythmic Transcription In The Liver, Kun Zhu, Isaac J Celwyn, Dongyin Guan, Yang Xiao, Xiang Wang, Wenxiang Hu, Chunjie Jiang, Lan Cheng, Rafael Casellas, Mitchell A Lazar

Faculty, Staff and Students Publications

Circadian gene transcription is fundamental to metabolic physiology. Here we report that the nuclear receptor REV-ERBα, a repressive component of the molecular clock, forms circadian condensates in the nuclei of mouse liver. These condensates are dictated by an intrinsically disordered region (IDR) located in the protein's hinge region which specifically concentrates nuclear receptor corepressor 1 (NCOR1) at the genome. IDR deletion diminishes the recruitment of NCOR1 and disrupts rhythmic gene transcription in vivo. REV-ERBα condensates are located at high-order transcriptional repressive hubs in the liver genome that are highly correlated with circadian gene repression. Deletion of the IDR disrupts transcriptional …


Gut Microbiota Aggravates Neutrophil Extracellular Traps-Induced Pancreatic Injury In Hypertriglyceridemic Pancreatitis, Guanqun Li, Liwei Liu, Tianqi Lu, Yuhang Sui, Can Zhang, Yongwei Wang, Tao Zhang, Yu Xie, Peng Xiao, Zhongjie Zhao, Chundong Cheng, Jisheng Hu, Hongze Chen, Dongbo Xue, Hua Chen, Gang Wang, Rui Kong, Hongtao Tan, Xuewei Bai, Zhibo Li, Florencia Mcallister, Le Li, Bei Sun Oct 2023

Gut Microbiota Aggravates Neutrophil Extracellular Traps-Induced Pancreatic Injury In Hypertriglyceridemic Pancreatitis, Guanqun Li, Liwei Liu, Tianqi Lu, Yuhang Sui, Can Zhang, Yongwei Wang, Tao Zhang, Yu Xie, Peng Xiao, Zhongjie Zhao, Chundong Cheng, Jisheng Hu, Hongze Chen, Dongbo Xue, Hua Chen, Gang Wang, Rui Kong, Hongtao Tan, Xuewei Bai, Zhibo Li, Florencia Mcallister, Le Li, Bei Sun

Faculty, Staff and Student Publications

Hypertriglyceridemic pancreatitis (HTGP) is featured by higher incidence of complications and poor clinical outcomes. Gut microbiota dysbiosis is associated with pancreatic injury in HTGP and the mechanism remains unclear. Here, we observe lower diversity of gut microbiota and absence of beneficial bacteria in HTGP patients. In a fecal microbiota transplantation mouse model, the colonization of gut microbiota from HTGP patients recruits neutrophils and increases neutrophil extracellular traps (NETs) formation that exacerbates pancreatic injury and systemic inflammation. We find that decreased abundance of Bacteroides uniformis in gut microbiota impairs taurine production and increases IL-17 release in colon that triggers NETs formation. …