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Articles 721 - 750 of 9188
Full-Text Articles in Entire DC Network
Opposing Roles Of Microglial And Macrophagic C3ar1 Signaling In Stress-Induced Synaptic And Behavioral Changes, Ashutosh Tripathi, Alona Bartosh, Dania Jose, Jocelyn Mata, Usama Hussein, Fernanda Laezza, Zhongming Zhao, Anilkumar Pillai
Opposing Roles Of Microglial And Macrophagic C3ar1 Signaling In Stress-Induced Synaptic And Behavioral Changes, Ashutosh Tripathi, Alona Bartosh, Dania Jose, Jocelyn Mata, Usama Hussein, Fernanda Laezza, Zhongming Zhao, Anilkumar Pillai
Faculty, Staff and Student Publications
The social deficits following chronic stress conditions are linked to synaptic dysfunction in the brain. Complement system plays a critical role in synapse regulation. Although complement has been implicated in chronic stress-induced behavior deficits the cellular substrates and mechanisms underlying complement-mediated behavior changes under chronic stress conditions are not known. In the present study, we investigated the role of complement component 3a receptor (C3ar1) in microglia and monocytes/macrophages (Mo/MΦ) in chronic unpredictable stress (CUS)-induced synapse loss and behavior deficits in mice. We found that deletion of microglial C3ar1 attenuated stress-induced social behavior deficits and changes in neuroinflammatory as well as …
Sarm1 Inhibition Maintains Axonal Integrity After Rat Sciatic Nerve Transection And Repair, Ryan Sachar, Tony Y Lee, Aaron Diantonio, Christopher J Dy, Jason Wever, Jeff Milbrandt, David M Brogan
Sarm1 Inhibition Maintains Axonal Integrity After Rat Sciatic Nerve Transection And Repair, Ryan Sachar, Tony Y Lee, Aaron Diantonio, Christopher J Dy, Jason Wever, Jeff Milbrandt, David M Brogan
2020-Current year OA Pubs
PURPOSE: Sterile alpha and TlR motif containing-1 (SARM1) protein has been demonstrated to play a critical role in the initiation of Wallerian degeneration after nerve injury. The goal of this study was to assess whether blockade of SARM1 activity inhibits Wallerian degeneration following nerve transection, potentially promoting more rapid recovery of axonal function.
METHODS: An adeno-associated virus plasmid encoded with a dominant-negative SARM1 protein fused with green fluorescent protein to impair SARM1 function, was injected into 24 juvenile rats to create a SARM1 dominant-negative (SARM1-DN) phenotype. Twenty-four control rats were injected with a control plasmid expressing only green fluorescent protein. …
Perfluoroalkyl Substance Pollutants Disrupt Microglia Function And Trigger Transcriptional And Epigenomic Changes, Yating Cheng, Jian-Rong Li, Hangjin Yu, Shuang Li, Boranai Tychhon, Chao Cheng, Yi-Lan Weng
Perfluoroalkyl Substance Pollutants Disrupt Microglia Function And Trigger Transcriptional And Epigenomic Changes, Yating Cheng, Jian-Rong Li, Hangjin Yu, Shuang Li, Boranai Tychhon, Chao Cheng, Yi-Lan Weng
Faculty, Staff and Students Publications
Per- and polyfluoroalkyl substances (PFAS), commonly referred to as "forever chemicals", are widely utilized in various industries and consumer products worldwide. Their exposure has been associated with numerous diseases and malignancies, including neurodevelopmental and neurodegenerative disorders. However, the molecular mechanisms underlying PFAS-induced adverse effects on the central nervous system (CNS) remain poorly understood. In this study, we investigated the transcriptomic and epigenetic changes in microglia exposed to perfluorooctane sulfonate (PFOS), a prevalent PFAS compound. Our findings demonstrate that 24-hour PFOS exposure (25 and 50 µM) disrupts the microglial transcriptome and compromises their homeostatic state, marked by increased inflammation and impaired …
Pkr-Driven Isr Signaling Controls Synaptic Translation And Structural Plasticity In An Age-Dependent Manner, Nicolás W Martínez, Felipe Gómez, Ariel Tapia-Godoy, Juan Francisco Roa, Fernanda Moreso-Contreras, Yuwei Liu, Claudia Jara, Cheril Tapia-Rojas, Iván Alfaro, Mauro Costa-Mattioli, Soledad Matus
Pkr-Driven Isr Signaling Controls Synaptic Translation And Structural Plasticity In An Age-Dependent Manner, Nicolás W Martínez, Felipe Gómez, Ariel Tapia-Godoy, Juan Francisco Roa, Fernanda Moreso-Contreras, Yuwei Liu, Claudia Jara, Cheril Tapia-Rojas, Iván Alfaro, Mauro Costa-Mattioli, Soledad Matus
Faculty, Staff and Students Publications
The integrated stress response (ISR) modulates protein homeostasis in response to both intracellular and extracellular signals. The four kinases involved in the ISR all phosphorylate the same target, the alpha subunit of eukaryotic initiation factor 2 (eIF2α), to integrate various stress signals, thereby regulating cell fate. The activation of the ISR reprograms the proteome by inhibiting general protein synthesis while increasing the translation of specific mRNAs. In the brain, the ISR regulates the type of synaptic plasticity necessary for forming long-term memory. More importantly, the activation of the ISR has emerged as a causal mechanism underlying cognitive decline associated with …
Stress-Relaxation And Failure Properties Of Spinal Ligaments In Pigs With And Without Scoliosis-Like Deformity, Christian D'Andrea, Mattan Orbach, Dogerno Norceide, Madeline Boyes, Axel Moore, Jacob Jordan, Thomas Schaer, Anita Singh, Patrick Cahill, Edward Vresilovic, Brian Snyder, Sriram Balasubramanian
Stress-Relaxation And Failure Properties Of Spinal Ligaments In Pigs With And Without Scoliosis-Like Deformity, Christian D'Andrea, Mattan Orbach, Dogerno Norceide, Madeline Boyes, Axel Moore, Jacob Jordan, Thomas Schaer, Anita Singh, Patrick Cahill, Edward Vresilovic, Brian Snyder, Sriram Balasubramanian
Student Papers, Posters & Projects
This study addresses the need for accurate tissue material properties in computational models of the spine. Fundamental to functional spinal unit (FSU) biomechanics are the stress-relaxation and failure properties of the interspinous and intertransverse ligaments (ISL and ITL, respectively). These were measured and compared in normative and scoliotic spines using a Yorkshire pig model. Skeletally immature female pig spines were posterolaterally tethered to induce scoliosis. 23 ISLs and 17 ITLs excised from normative and scoliotic spine segments underwent stress-relaxation and failure tests. Group comparisons tested the effects of scoliosis (magnitude, convexity versus concavity), spinal level (thoracic, lumbar), and pig age. …
Apol2 Stabilizes Ku80 To Confer Nhej-Mediated Radioresistance In Gastric Cancer, Dan Zu, Qimei Bao, Hanyi He, Yuke Zhong, Mingcong Deng, Yangchan Hu, Chunkai Zhang, Chen Liang, Yixing Huang, Haidong Liu, Xiao Li, Yanhua He, Guoyan Luo, Weixin Wu, Fenghui Guan, Shengfeng Xu, Min Liu, Albino Bacolla, Ji Jing, Yian Du, John A Tainer, Yin Shi, Zu Ye, Xiangdong Cheng
Apol2 Stabilizes Ku80 To Confer Nhej-Mediated Radioresistance In Gastric Cancer, Dan Zu, Qimei Bao, Hanyi He, Yuke Zhong, Mingcong Deng, Yangchan Hu, Chunkai Zhang, Chen Liang, Yixing Huang, Haidong Liu, Xiao Li, Yanhua He, Guoyan Luo, Weixin Wu, Fenghui Guan, Shengfeng Xu, Min Liu, Albino Bacolla, Ji Jing, Yian Du, John A Tainer, Yin Shi, Zu Ye, Xiangdong Cheng
Faculty, Staff and Student Publications
Radiotherapy is one of the most important adjuvant treatment methods for gastric cancer (GC). However, radioresistance remains a major clinical obstacle. In this study, APOL2 is identified as a key player in promoting non-homologous end joining (NHEJ)-mediated double-strand break (DSB) repair and enhancing radioresistance in GC. Bioinformatics and clinical data revealed that high APOL2 expression is correlated with poor prognosis in GC patients. Functional experiments showed that APOL2 overexpression enhances genomic stability by accelerating DSB repair via the NHEJ pathway, while APOL2 knockout impairs repair capacity. Mechanistically, APOL2 binds to and stabilizes Ku80 by enhancing USP7-mediated deubiquitylation, thereby increasing Ku80 …
Sensory-Selective Peripheral And Neuraxial Nerve Blockade With 2',6'-Pipecoloxylidide, Claire A Ostertag-Hill, Shuanglong Chen, Tianrui Xue, Rachelle Shao, Matthew Torre, Bin Feng, Zahra Vahedi, Longtu Chen, Steven J Staffa, Yueqin Zheng, Daniel S Kohane
Sensory-Selective Peripheral And Neuraxial Nerve Blockade With 2',6'-Pipecoloxylidide, Claire A Ostertag-Hill, Shuanglong Chen, Tianrui Xue, Rachelle Shao, Matthew Torre, Bin Feng, Zahra Vahedi, Longtu Chen, Steven J Staffa, Yueqin Zheng, Daniel S Kohane
Duncan NRI Faculty and Staff Publications
Background: Safe sensory-selective local anesthetics would be a major advance in the management of acute and chronic pain. This articles describes the sensory-selective local anesthetic properties and the toxicity profile of a known metabolite of amino-amide local anesthetics, 2',6'-pipecoloxylidide (PPX).
Methods: PPX was synthesized and made into its hydrochloride salt. PPX or ropivacaine (ROP) were injected at the sciatic nerve or intrathecally in rats, who then underwent modified hotplate (sensory) testing and weight-bearing (motor) testing. Rats injected with PPX or ROP were assessed for clinical toxicity endpoints. Conduction blockade was studied with single-unit recordings in mice. Biocompatibility was assessed histologically. …
Pathogenic Xpo1 Variants Cause A Dominant Neurodevelopmental Disorder, Amber S E Van Oirsouw, Pavla Nedbalova, Miroslava Hancarova, Jan Prchal, Darina Prchalova, Marketa Vlckova, Sarka Bendova, Kristin G Monaghan, Lisa M Dyer, Yanmin Chen, Deanna Alexis Carere, Emma A M Te Bogt, Heather Fisher, Angela E Scheuerle, Stephanie Riley, Mahim Jain, Weiyi Mu, Joann N Bodurtha, Albertien M Van Eerde, Marijn F Stokman, Nicola Longo, Meena Balasubramanian, Michael Spiller, Gregory Costain, Charlotte Von Der Lippe, Kristian Tveten, Marianne Jortveit, Øystein L Holla, Bertrand Isidor, Benjamin Cogné, Kevin E Glinton, Blake Vuocolo, Roberta Ann Sierra, Brad Angle, Kelly Bontempo, Klaas Koop, Rachel Rabin, John Pappas, David A Staffenberg, Pascal Joset, Peter Miny, Isabel Filges, Abdulrazak Alali, Kara Vitalone, Jill A Rosenfeld, Weimin Bi, Samuel Bradbrook, Renee Perrier, Subhadra Ramanathan, June-Anne Gold, María Palomares Bralo, María Ángeles Gómez-Cano, Ann Haskins Olney, Shelly Nielsen, Alban Ziegler, Dominique Bonneau, Clément Prouteau, Ange-Line Bruel, Charlotte Caille-Benigni, Laëtitia Lambert, Andrea C Yu, Nathaniel H Robin, Dana Goodloe, Jan Fischer, Joseph Porrmann, Yvonne D Hennig, Rami Abou Jamra, Isabella Herman, Ivy R Johnson, Lucas Hérissant, Guillaume Jouret, Koen L I Van Gassen, Ellen Van Binsbergen, Bert Van Der Zwaag, Alwin Kamermans, Renske Oegema, Zdenek Sedlacek, Michaela Fenckova, Richard H Van Jaarsveld
Pathogenic Xpo1 Variants Cause A Dominant Neurodevelopmental Disorder, Amber S E Van Oirsouw, Pavla Nedbalova, Miroslava Hancarova, Jan Prchal, Darina Prchalova, Marketa Vlckova, Sarka Bendova, Kristin G Monaghan, Lisa M Dyer, Yanmin Chen, Deanna Alexis Carere, Emma A M Te Bogt, Heather Fisher, Angela E Scheuerle, Stephanie Riley, Mahim Jain, Weiyi Mu, Joann N Bodurtha, Albertien M Van Eerde, Marijn F Stokman, Nicola Longo, Meena Balasubramanian, Michael Spiller, Gregory Costain, Charlotte Von Der Lippe, Kristian Tveten, Marianne Jortveit, Øystein L Holla, Bertrand Isidor, Benjamin Cogné, Kevin E Glinton, Blake Vuocolo, Roberta Ann Sierra, Brad Angle, Kelly Bontempo, Klaas Koop, Rachel Rabin, John Pappas, David A Staffenberg, Pascal Joset, Peter Miny, Isabel Filges, Abdulrazak Alali, Kara Vitalone, Jill A Rosenfeld, Weimin Bi, Samuel Bradbrook, Renee Perrier, Subhadra Ramanathan, June-Anne Gold, María Palomares Bralo, María Ángeles Gómez-Cano, Ann Haskins Olney, Shelly Nielsen, Alban Ziegler, Dominique Bonneau, Clément Prouteau, Ange-Line Bruel, Charlotte Caille-Benigni, Laëtitia Lambert, Andrea C Yu, Nathaniel H Robin, Dana Goodloe, Jan Fischer, Joseph Porrmann, Yvonne D Hennig, Rami Abou Jamra, Isabella Herman, Ivy R Johnson, Lucas Hérissant, Guillaume Jouret, Koen L I Van Gassen, Ellen Van Binsbergen, Bert Van Der Zwaag, Alwin Kamermans, Renske Oegema, Zdenek Sedlacek, Michaela Fenckova, Richard H Van Jaarsveld
Faculty, Staff and Students Publications
Purpose: XPO1 functions in key cellular processes, including nucleo-cytoplasmic export and mitosis. The gene is deleted in a subset of patients with the 2p15p16.1 microdeletion syndrome; however, no monogenic XPO1-related disorder has been described to date.
Methods: We collected clinical data of individuals with de novo XPO1 variants through online matchmaking. We used Drosophila to study XPO1 function in development and habituation learning.
Results: A total of 22 individuals met the criteria to be included in the main study cohort. Of these, half have putative loss-of-function variants, and half have coding variants (10 missense and 1 in-frame deletion variant). We …
Glycerol-3-Phosphate Activates Chrebp, Fgf21 Transcription And Lipogenesis In Citrin Deficiency, Vinod Tiwari, Byungchang Jin, Olivia Sun, Edwin D J Lopez Gonzalez, Min-Hsuan Chen, Xiwei Wu, Hardik Shah, Andrew Zhang, Mark A Herman, Cassandra N Spracklen, Russell P Goodman, Charles Brenner
Glycerol-3-Phosphate Activates Chrebp, Fgf21 Transcription And Lipogenesis In Citrin Deficiency, Vinod Tiwari, Byungchang Jin, Olivia Sun, Edwin D J Lopez Gonzalez, Min-Hsuan Chen, Xiwei Wu, Hardik Shah, Andrew Zhang, Mark A Herman, Cassandra N Spracklen, Russell P Goodman, Charles Brenner
Faculty, Staff and Students Publications
Citrin deficiency (CD) is caused by the inactivation of SLC25A13, a mitochondrial membrane protein required to move electrons from cytosolic NADH to the mitochondrial matrix in hepatocytes. People with CD do not like sweets. Here we show that SLC25A13 loss causes the accumulation of glycerol-3-phosphate (G3P), which activates the carbohydrate response element-binding protein (ChREBP) to transcribe FGF21, which acts in the brain to restrain intake of sweets and alcohol and to transcribe key genes driving lipogenesis. Mouse and human data suggest that G3P-ChREBP is a mechanistic component of the Randle Cycle that contributes to metabolic-dysfunction-associated steatotic liver disease and forms …
Mutations In The Key Autophagy Tethering Factor Epg5 Link Neurodevelopmental And Neurodegenerative Disorders Including Early-Onset Parkinsonism, Hormos Salimi Dafsari, Celine Deneubourg, Kritarth Singh, Reza Maroofian, Zita Suprenant, Ay Lin Kho, Neil J Ingham, Karen P Steel, Preethi Sheshadri, Franciska Baur, Lea Hentrich, Birgit Gerisch, Mina Zamani, Cesar Alves, Ata Siddiqui, Haidar S Dafsari, Mehri Salari, Anthony E Lang, Michael Harris, Alice Abdelaleem, Saeid Sadeghian, Reza Azizimalamiri, Hamid Galehdari, Gholamreza Shariati, Alireza Sedaghat, Jawaher Zeighami, Daniel Calame, Dana Marafi, Ruizhi Duan, Adrian Boehnke, Gary D Clark, Jill A Rosenfeld, Carrie A Mohila, Dora Steel, Saurabh Chopra, Suvasini Sharma, Nicolai Kohlschmidt, Steffi Patzer, Afshin Saffari, Darius Ebrahimi-Fakhari, Büşra Eser Çavdartepe, Irene J Chang, Erika Beckman, Renate Peters, Andrew Paul Fennell, Bernice Lo, Luisa Averdunk, Felix Distelmaier, Martina Baethmann, Frances Elmslie, Kairit Joost, Sheela Nampoothiri, Dhanya Yesodharan, Hanna Mandel, Amy Kimball, Antonie D Kline, Cyril Mignot, Boris Keren, Vincent Laugel, Katrin Õunap, Kalpana Devadathan, Frederique M C Van Berkestijn, Arpana Silwal, Saskia Koene, Sumit Verma, Mohammed Yousuf Karim, Chahynez Boubidi, Majid Aziz, Gehad Elghazali, Lauren Mattas, Mohammad Miryounesi, Farzad Hashemi-Gorji, Shahryar Alavi, Nayereh Nouri, Mehrdad Noruzinia, Saeideh Kavousi, Arveen Kamath, Sandeep Jayawant, Russell Saneto, Nourelhoda A Haridy, Pinar Ozkan Kart, Ali Cansu, Madeleine Joubert, Claire Beneteau, Kyra E Stuurman, Martina Wilke, Tahsin Stefan Barakat, Homa Tajsharghi, Annarita Scardamaglia, Sadeq Vallian, Semra Hız, Ali Shoeibi, Reza Boostani, Narges Hashemi, Meisam Babaei, Norah Saleh Alsaleh, Julie Porter, Tania Attié-Bitach, Pauline Marzin, Dorota Wicher, Jessica I Gold, Elisabeth Schuler, Amna Kashgari, Rakan F Alanazi, Wafaa Eyaid, Marc Engelen, Mirjam Langeveld, Burkhard Stüve, Yun Li, Gökhan Yigit, Bernd Wollnik, Mariana H G Monje, Dimitri Krainc, Niccolò E Mencacci, Somayeh Bakhtiari, Michael Kruer, Emanuela Argilli, Elliott Sherr, Yalda Jamshidi, Ehsan Ghayoor Karimiani, Yiu Wing Sunny Cheung, Ivan Karin, Giovanni Zifarelli, Peter Bauer, Wendy K Chung, James R Lupski, Manju A Kurian, Jörg Dötsch, Jürgen-Christoph Von Kleist-Retzow, Thomas Klopstock, Matias Wagner, Calvin Yip, Andreas Roos, Rita Carsetti, Carlo Dionisi-Vici, Mathias Gautel, Michael R Duchen, Adam Antebi, Henry Houlden, Manolis Fanto, Heinz Jungbluth
Mutations In The Key Autophagy Tethering Factor Epg5 Link Neurodevelopmental And Neurodegenerative Disorders Including Early-Onset Parkinsonism, Hormos Salimi Dafsari, Celine Deneubourg, Kritarth Singh, Reza Maroofian, Zita Suprenant, Ay Lin Kho, Neil J Ingham, Karen P Steel, Preethi Sheshadri, Franciska Baur, Lea Hentrich, Birgit Gerisch, Mina Zamani, Cesar Alves, Ata Siddiqui, Haidar S Dafsari, Mehri Salari, Anthony E Lang, Michael Harris, Alice Abdelaleem, Saeid Sadeghian, Reza Azizimalamiri, Hamid Galehdari, Gholamreza Shariati, Alireza Sedaghat, Jawaher Zeighami, Daniel Calame, Dana Marafi, Ruizhi Duan, Adrian Boehnke, Gary D Clark, Jill A Rosenfeld, Carrie A Mohila, Dora Steel, Saurabh Chopra, Suvasini Sharma, Nicolai Kohlschmidt, Steffi Patzer, Afshin Saffari, Darius Ebrahimi-Fakhari, Büşra Eser Çavdartepe, Irene J Chang, Erika Beckman, Renate Peters, Andrew Paul Fennell, Bernice Lo, Luisa Averdunk, Felix Distelmaier, Martina Baethmann, Frances Elmslie, Kairit Joost, Sheela Nampoothiri, Dhanya Yesodharan, Hanna Mandel, Amy Kimball, Antonie D Kline, Cyril Mignot, Boris Keren, Vincent Laugel, Katrin Õunap, Kalpana Devadathan, Frederique M C Van Berkestijn, Arpana Silwal, Saskia Koene, Sumit Verma, Mohammed Yousuf Karim, Chahynez Boubidi, Majid Aziz, Gehad Elghazali, Lauren Mattas, Mohammad Miryounesi, Farzad Hashemi-Gorji, Shahryar Alavi, Nayereh Nouri, Mehrdad Noruzinia, Saeideh Kavousi, Arveen Kamath, Sandeep Jayawant, Russell Saneto, Nourelhoda A Haridy, Pinar Ozkan Kart, Ali Cansu, Madeleine Joubert, Claire Beneteau, Kyra E Stuurman, Martina Wilke, Tahsin Stefan Barakat, Homa Tajsharghi, Annarita Scardamaglia, Sadeq Vallian, Semra Hız, Ali Shoeibi, Reza Boostani, Narges Hashemi, Meisam Babaei, Norah Saleh Alsaleh, Julie Porter, Tania Attié-Bitach, Pauline Marzin, Dorota Wicher, Jessica I Gold, Elisabeth Schuler, Amna Kashgari, Rakan F Alanazi, Wafaa Eyaid, Marc Engelen, Mirjam Langeveld, Burkhard Stüve, Yun Li, Gökhan Yigit, Bernd Wollnik, Mariana H G Monje, Dimitri Krainc, Niccolò E Mencacci, Somayeh Bakhtiari, Michael Kruer, Emanuela Argilli, Elliott Sherr, Yalda Jamshidi, Ehsan Ghayoor Karimiani, Yiu Wing Sunny Cheung, Ivan Karin, Giovanni Zifarelli, Peter Bauer, Wendy K Chung, James R Lupski, Manju A Kurian, Jörg Dötsch, Jürgen-Christoph Von Kleist-Retzow, Thomas Klopstock, Matias Wagner, Calvin Yip, Andreas Roos, Rita Carsetti, Carlo Dionisi-Vici, Mathias Gautel, Michael R Duchen, Adam Antebi, Henry Houlden, Manolis Fanto, Heinz Jungbluth
Faculty, Staff and Students Publications
Objective: Autophagy is a fundamental biological pathway with vital roles in intracellular homeostasis. During autophagy, defective cargoes including mitochondria are targeted to lysosomes for clearance and recycling. Recessive truncating variants in the autophagy gene EPG5 have been associated with Vici syndrome, a severe early-onset neurodevelopmental disorder with extensive multisystem involvement. Here, we aimed to delineate the extended, age-dependent EPG5-related disease spectrum.
Methods: We investigated clinical, radiological, and molecular features from the largest cohort of EPG5-related patients identified to date, complemented by experimental investigation of cellular and animal models of EPG5 defects.
Results: Through worldwide collaboration, we identified 211 patients, 97 …
Reprogrammed Glucose Metabolism In Vascular Smooth Muscle Cells And Its Implications For Vascular Diseases, Qian Ma, Yongfeng Cai, Qiuhua Yang, Wendy Zhang, Suowen Xu, Yuqing Huo
Reprogrammed Glucose Metabolism In Vascular Smooth Muscle Cells And Its Implications For Vascular Diseases, Qian Ma, Yongfeng Cai, Qiuhua Yang, Wendy Zhang, Suowen Xu, Yuqing Huo
Faculty, Staff and Students Publications
Vascular smooth muscle cells (VSMCs) play a pivotal role in maintaining vascular homeostasis and are critical contributors to the pathogenesis of various vascular diseases, including atherosclerosis, calcification, aneurysms, and pulmonary hypertension. Emerging evidence highlights the significance of glucose metabolism in regulating VSMC phenotypic transitions during these pathologies. This review provides a comprehensive overview of the major glucose metabolic pathways in VSMCs, glycolysis, the pentose phosphate pathway (PPP), and the hexosamine biosynthetic pathway (HBP), and their roles in disease development. We summarize the molecular mechanisms linking glucose metabolic reprogramming to VSMC dysfunction, focusing on key regulatory enzymes and signaling pathways. Additionally, …
Endothelial Adenosine Receptor 2a Loss Alleviates Diabetic Vascular Calcification By Blocking Creb1-Snai1-Driven Endmt, Yaqi Zhou, Dingwei Zhao, Qian Ma, Jiean Xu, Yongfeng Cai, Qiuhua Yang, Qingen Da, Kian Sheridan, Chunxiang Zhang, Clint L Miller, Rajeev Malhotra, Suowen Xu, Mei Hong, Yuqing Huo
Endothelial Adenosine Receptor 2a Loss Alleviates Diabetic Vascular Calcification By Blocking Creb1-Snai1-Driven Endmt, Yaqi Zhou, Dingwei Zhao, Qian Ma, Jiean Xu, Yongfeng Cai, Qiuhua Yang, Qingen Da, Kian Sheridan, Chunxiang Zhang, Clint L Miller, Rajeev Malhotra, Suowen Xu, Mei Hong, Yuqing Huo
Faculty, Staff and Students Publications
Vascular calcification (VC), a common complication associated with diabetes mellitus (DM), substantially increases the risk of cardiovascular diseases and is associated with elevated mortality in individuals with DM. Endothelial-to-mesenchymal transition (EndMT) imparts phenotypic plasticity to vascular endothelial cells (VECs), granting them the potential for osteogenic differentiation, which is a crucial mechanism in regulating VC. Notably, adenosine-ADORA2A-mediated endothelial dysfunction plays a pivotal regulatory role in cardiovascular diseases. However, the specific role of endothelial ADORA2A in diabetic VC remains to be elucidated. In this study, we found that ADORA2A was upregulated in the endothelium of diabetic mice and cultured human aortic endothelial …
Inhibition Of Bmper Mitigates Pulmonary Hypertension By Modulating Lrp1-Yap Interaction In Smooth Muscle Cells, Hua Mao, Claire M Li, Bing Sun, Christopher S Ward, Alan R Waich-Cohen, Ivan O Rosas, Howard J Huang, Harry Karmouty-Quintana, Liang Xie, Lavannya M Pandit, Xinchun Pi
Inhibition Of Bmper Mitigates Pulmonary Hypertension By Modulating Lrp1-Yap Interaction In Smooth Muscle Cells, Hua Mao, Claire M Li, Bing Sun, Christopher S Ward, Alan R Waich-Cohen, Ivan O Rosas, Howard J Huang, Harry Karmouty-Quintana, Liang Xie, Lavannya M Pandit, Xinchun Pi
Faculty, Staff and Students Publications
Background: BMPER (bone morphogenetic protein-binding endothelial regulator) is a secreted protein that is highly expressed in endothelial cells. It regulates the BMP (bone morphogenetic protein) pathway during vascular development and adulthood. Mutations in the BMP pathway are recognized as risk factors for pulmonary arterial hypertension group 1 pulmonary hypertension (PH). However, the roles of BMPER in pulmonary arterial hypertension remain unknown.
Methods: We assessed BMPER expression in Group 1 pulmonary arterial hypertension patient samples and examined its role in vascular remodeling using in vivo and in vitro approaches.
Results: BMPER level was elevated in pulmonary arterial hypertension lungs and significantly …
Targeting Adenosine 2a Receptor Signaling Suppresses Vascular Calcification By Restraining Smooth Muscle Osteogenic Differentiation, Yaqi Zhou, Dingwei Zhao, Qian Ma, Sujin Lee, Kangsan Roh, Yongfeng Cai, Jiean Xu, Qiuhua Yang, Qingen Da, Zhiping Liu, Kunfu Ouyang, Eric J Belin De Chantemele, Mei Hong, Clint L Miller, Rajeev Malhotra, Chunxiang Zhang, Suowen Xu, Yuqing Huo
Targeting Adenosine 2a Receptor Signaling Suppresses Vascular Calcification By Restraining Smooth Muscle Osteogenic Differentiation, Yaqi Zhou, Dingwei Zhao, Qian Ma, Sujin Lee, Kangsan Roh, Yongfeng Cai, Jiean Xu, Qiuhua Yang, Qingen Da, Zhiping Liu, Kunfu Ouyang, Eric J Belin De Chantemele, Mei Hong, Clint L Miller, Rajeev Malhotra, Chunxiang Zhang, Suowen Xu, Yuqing Huo
Faculty, Staff and Students Publications
Vascular calcification (VC) is a major contributor to cardiovascular morbidity and mortality, particularly in patients with chronic kidney disease (CKD). Adenosine 2 A receptor (ADORA2A) is highly expressed in vascular cells and implicated in cardiovascular disease; however, its specific role in VC pathogenesis remains unclear. Here, we investigated the role of ADORA2A using in vitro (vascular smooth muscle cells; VSMCs), ex vivo (mouse aortic rings), and in vivo (5/6th nephrectomy with high phosphate and cholecalciferol) models of VC. The ADORA2A expression was significantly upregulated in calcified human and murine aortic tissues, as well as in VSMCs, under osteogenic conditions. Genetic …
Targeting The Hippo Pathway For Cardiac Regeneration, Rich Gang Li, Fansen Meng, James F Martin
Targeting The Hippo Pathway For Cardiac Regeneration, Rich Gang Li, Fansen Meng, James F Martin
Faculty, Staff and Students Publications
Ischemic heart disease, which affects more than 200 million people worldwide, is caused by reduced blood flow to the heart and leads to widespread cardiomyocyte death. Due to the limited regenerative potential of cardiomyocytes, the lost tissue is replaced by a fibrotic scar, resulting in reduced cardiac function and progression to heart failure. Current therapeutic interventions aim to improve blood flow but cannot address the inability of cardiomyocytes to renew after injury. However, multiple studies have shown that modulating the Hippo signaling pathway to activate Yes-associated protein (YAP), a transcription coactivator, in adult murine and porcine cardiomyocytes induces robust cardiomyocyte …
Selective Agonism Of Liver And Gut Fxr Prevents Cholestasis And Intestinal Atrophy In Parenterally Fed Neonatal Pigs, Yanjun Jiang, Zhengfeng Fang, Gregory Guthrie, Barbara Stoll, Shaji Chacko, Sen Lin, Bolette Hartmann, Jens J Holst, Harry Dawson, Jose J Pastor, Ignacio R Ipharraguerre, Douglas G Burrin
Selective Agonism Of Liver And Gut Fxr Prevents Cholestasis And Intestinal Atrophy In Parenterally Fed Neonatal Pigs, Yanjun Jiang, Zhengfeng Fang, Gregory Guthrie, Barbara Stoll, Shaji Chacko, Sen Lin, Bolette Hartmann, Jens J Holst, Harry Dawson, Jose J Pastor, Ignacio R Ipharraguerre, Douglas G Burrin
Faculty, Staff and Students Publications
We aimed to investigate the relative efficacy of feeding different bile acids in preventing PNALD in neonatal pigs. Newborn pigs given total parenteral nutrition (TPN) combined with minimal enteral feeding of chenodeoxycholic acid (CDCA) or increasing doses of obeticholic acid (OCA) for 19 days. Enteral OCA (5 and 15 mg/kg), but not CDCA (30 mg/kg) reduced blood cholestasis markers compared to TPN controls and increased bile acids in the gallbladder and intestine. Major bile acids in the liver and distal intestine were CDCA, HCA, HDCA, and OCA, and their relative proportions were increased by the type of bile acid (CDCA …
Multiomic And Electrophysiologic Analyses Reveal That An Inherited Mrc2 Variant Causes Fibroblast Dysfunction And Increased Atrial Fibrillation Susceptibility, Kevin S Ho, Joshua A Keefe, Shuai Zhao, Mohit M Hulsurkar, Sung Yun Jung, Md Abul Hassan Samee, Xander H T Wehrens
Multiomic And Electrophysiologic Analyses Reveal That An Inherited Mrc2 Variant Causes Fibroblast Dysfunction And Increased Atrial Fibrillation Susceptibility, Kevin S Ho, Joshua A Keefe, Shuai Zhao, Mohit M Hulsurkar, Sung Yun Jung, Md Abul Hassan Samee, Xander H T Wehrens
Faculty, Staff and Students Publications
A recent study identified a rare variant in the mannose receptor C type 2 (MRC2) gene in individuals with familial reentrant supraventricular tachycardia, a Wolff-Parkinson-White (WPW) electrocardiogram pattern, and structurally normal hearts. WPW syndrome is associated with atrial fibrillation (AF), and MRC2 was recently proposed as a protective gene for AF. We determined whether the E990G-heterozygous (het) loss-of-function variant in Mrc2 increases AF susceptibility and identified aberrant cellular mechanisms resulting from Mrc2 deficiency in atrial cardiofibroblasts (ACFs) and atrial tissue in mice that may promote AF. Programmed electrical stimulation was performed to determine AF susceptibility in Mrc2 E990G-het …
Single-Nucleus Mrna-Sequencing Reveals Dynamics Of Lipogenic And Thermogenic Adipocyte Populations In Murine Brown Adipose Tissue In Response To Cold Exposure, Janina Behrens, Tongtong Wang, Christoph Kilian, Anna Worthmann, Mark A Herman, Joerg Heeren, Lorenz Adlung, Ludger Scheja
Single-Nucleus Mrna-Sequencing Reveals Dynamics Of Lipogenic And Thermogenic Adipocyte Populations In Murine Brown Adipose Tissue In Response To Cold Exposure, Janina Behrens, Tongtong Wang, Christoph Kilian, Anna Worthmann, Mark A Herman, Joerg Heeren, Lorenz Adlung, Ludger Scheja
Faculty, Staff and Students Publications
Objective and methods: Brown adipose tissue (BAT) comprises a heterogeneous population of adipocytes and non-adipocyte cell types. To characterize these cellular subpopulations and their adaptation to cold, we performed single-nucleus mRNA-sequencing (snRNA-seq) on interscapular BAT from mice maintained at room temperature or exposed to acute (24h) or chronic (10 days) cold (6 °C). To investigate the role of the de novo lipogenesis (DNL)-regulating transcription factor carbohydrate response element-binding protein (ChREBP), we analyzed control and brown adipocyte-specific ChREBP knockout mice.
Results: We identified different cell populations, including seven brown adipocyte subtypes with distinct metabolic profiles. One of them highly expressed ChREBP …
Myeloid-Specific Camkk2 Deficiency Protects Against Diet-Induced Obesity And Insulin Resistance By Rewiring Metabolic Gene Expression And Enhancing Energy Expenditure, Andrea R Ortiz, Kevin Nay, Brittany A Stork, Adam M Dean, Sean M Hartig, Cristian Coarfa, Surafel Tegegne, Christopher Rm Asquith, Daniel E Frigo, Brian York, Anthony R Means, Mark A Febbraio, John W Scott
Myeloid-Specific Camkk2 Deficiency Protects Against Diet-Induced Obesity And Insulin Resistance By Rewiring Metabolic Gene Expression And Enhancing Energy Expenditure, Andrea R Ortiz, Kevin Nay, Brittany A Stork, Adam M Dean, Sean M Hartig, Cristian Coarfa, Surafel Tegegne, Christopher Rm Asquith, Daniel E Frigo, Brian York, Anthony R Means, Mark A Febbraio, John W Scott
Faculty, Staff and Students Publications
Objective: Obesity is associated with chronic, low-grade inflammation in metabolic tissues such as liver, adipose tissue and skeletal muscle implicating insulin resistance and type 2 diabetes as inflammatory diseases. This inflammatory response involves the accumulation of pro-inflammatory macrophages in these metabolically relevant organs. The Ca2+-calmodulin-dependent protein kinase kinase-2 (CAMKK2) is a key regulator of cellular and systemic energy metabolism, and a coordinator of macrophage-mediated inflammatory responses. However, its role in obesity-associated metabolic dysfunction is not fully defined. The aim of this study was to determine the contribution of CAMKK2 to the regulation of inflammation and systemic metabolism during diet-induced obesity. …
Chemical Modulation Of Gut Bacterial Metabolism Induces Colanic Acid And Extends The Lifespan Of Nematode And Mammalian Hosts, Guo Hu, Marzia Savini, Matthew Brandon Cooke, Xin Wei, Dinghuan Deng, Shihong M Gao, Ruyue Alps Xia, Youchen Guan, Alice X Wen, Xin Yu, Jin Wang, Chao Jiang, Christophe Herman, Jiefu Li, Meng C Wang
Chemical Modulation Of Gut Bacterial Metabolism Induces Colanic Acid And Extends The Lifespan Of Nematode And Mammalian Hosts, Guo Hu, Marzia Savini, Matthew Brandon Cooke, Xin Wei, Dinghuan Deng, Shihong M Gao, Ruyue Alps Xia, Youchen Guan, Alice X Wen, Xin Yu, Jin Wang, Chao Jiang, Christophe Herman, Jiefu Li, Meng C Wang
Faculty, Staff and Students Publications
Microbiota-derived metabolites have emerged as key regulators of longevity. The metabolic activity of the gut microbiota, influenced by dietary components and ingested chemical compounds, profoundly impacts host fitness. While the benefits of dietary prebiotics are well-known, chemically targeting the gut microbiota to enhance host fitness remains largely unexplored. Here, we report a novel chemical approach to induce a pro-longevity bacterial metabolite in the host gut. We discovered that wild-type Escherichia coli strains overproduce colanic acids (CAs) when exposed to a low dose of cephaloridine, leading to an increased life span in the host organism Caenorhabditis elegans. In the mouse gut, …
Coco-St Detects Global And Local Biological Structures In Spatial Transcriptomics Datasets, Muhammad Aminu, Bo Zhu, Natalie Vokes, Hong Chen, Lingzhi Hong, Jianrong Li, Junya Fujimoto, Mehdi Chaib, Yuqiu Yang, Bo Wang, Alissa Poteete, Monique B Nilsson, Xiuning Le, Tina Cascone, David Jaffray, Nicholas Navin, Tao Wang, Lauren A Byers, Don L Gibbons, John Heymach, Ken Chen, Chao Cheng, Jianjun Zhang, Jia Wu
Coco-St Detects Global And Local Biological Structures In Spatial Transcriptomics Datasets, Muhammad Aminu, Bo Zhu, Natalie Vokes, Hong Chen, Lingzhi Hong, Jianrong Li, Junya Fujimoto, Mehdi Chaib, Yuqiu Yang, Bo Wang, Alissa Poteete, Monique B Nilsson, Xiuning Le, Tina Cascone, David Jaffray, Nicholas Navin, Tao Wang, Lauren A Byers, Don L Gibbons, John Heymach, Ken Chen, Chao Cheng, Jianjun Zhang, Jia Wu
Faculty, Staff and Students Publications
Spatial domain detection methods often focus on high-variance structures, such as tumour-adjacent regions with sharp gene expression changes, while missing low-variance structures with subtle gene expression shifts, like those between adjacent normal and early adenoma regions. Here, to address this, we introduce ‘compare and contrast spatial transcriptomics’ (CoCo-ST), a graph contrastive feature representation framework. By comparing a target sample with a background sample, CoCo-ST detects both high-variance, broadly shared structures and low-variance, tissue-specific features. It offers technical advantages, including multisample integration, batch-effect correction and scalability across technologies from spot-level Visium data to single-cell Xenium Prime 5K and subcellular Visium HD …
The Efficacy Of Longevity Interventions In Caenorhabditis Elegans Is Determined By The Early Life Activity Of Rna Splicing Factors, Sneha Dutta, Maria Camila Perez Matos, Caroline Heintz, Ayse Sena Mutlu, Mary Piper, Meeta Mistry, Arpit Sharma, Christopher S Morrow, Hannah Smith, Porsha Howell, Rohan Sehgal, Anne Lanjuin, Meng C Wang, William B Mair
The Efficacy Of Longevity Interventions In Caenorhabditis Elegans Is Determined By The Early Life Activity Of Rna Splicing Factors, Sneha Dutta, Maria Camila Perez Matos, Caroline Heintz, Ayse Sena Mutlu, Mary Piper, Meeta Mistry, Arpit Sharma, Christopher S Morrow, Hannah Smith, Porsha Howell, Rohan Sehgal, Anne Lanjuin, Meng C Wang, William B Mair
Faculty, Staff and Students Publications
Geroscience aims to target the aging process to extend healthspan. However, even isogenic individuals show heterogeneity in natural aging rate and responsiveness to pro-longevity interventions, limiting translational potential. Using RNAseq analysis of young, isogenic, subpopulations of Caenorhabditis elegans selected solely on the basis of the splicing pattern of an in vivo minigene reporter that is predictive of future life expectancy, we find a strong correlation in young animals between predicted life span and alternative splicing of mRNAs related to lipid metabolism. The activity of two RNA splicing factors, Reversed Polarity-1 (REPO-1) and Splicing Factor 1 (SFA-1), early in life is …
Optic Nerve Injury Impairs Intrinsic Mechanisms Underlying Electrical Activity In A Resilient Retinal Ganglion Cell, Thomas E Zapadka, Nicholas M Tran, Jonathan B Demb
Optic Nerve Injury Impairs Intrinsic Mechanisms Underlying Electrical Activity In A Resilient Retinal Ganglion Cell, Thomas E Zapadka, Nicholas M Tran, Jonathan B Demb
Faculty, Staff and Students Publications
Retinal ganglion cells (RGCs) are the sole output neurons of the retina and convey visual information to the brain via their axons in the optic nerve. Following injury to the optic nerve, RGCs axons degenerate and many cells die. For example, a model of axon injury, the optic nerve crush (ONC), kills ~80% of RGCs after two weeks. Surviving cells are biased towards ‘resilient’ types, including several with sustained firing to light stimulation. RGC survival may depend on activity, and there is limited understanding of how or why activity changes following optic nerve injury. Here we quantified the electrophysiological properties …
Neurodevelopmental Abnormalities Underlying Behavioral Deficits In A Model Of Pediatric Obstructive Sleep Apnea, Arvind Chandrakantan, Michael R Williamson, Vaishnav Krishnan, Mahyar J Hedayatpour, Adam C Adler, Nandani Adyapak, Chris S Ward, Russell Ray, David Durgan, Farrah Kheradmand, Benjamin Deneen
Neurodevelopmental Abnormalities Underlying Behavioral Deficits In A Model Of Pediatric Obstructive Sleep Apnea, Arvind Chandrakantan, Michael R Williamson, Vaishnav Krishnan, Mahyar J Hedayatpour, Adam C Adler, Nandani Adyapak, Chris S Ward, Russell Ray, David Durgan, Farrah Kheradmand, Benjamin Deneen
Faculty, Staff and Students Publications
Rationale: Pediatric Obstructive Sleep Apnea (POSA) is a relatively common childhood sleep disorder whose neurodevelopmental phenotype includes deficits in learning and memory, olfaction, and fine motor abilities.
Objectives: To date, there has not been a validated preclinical model of POSA, hampering efforts in understanding how nocturnal episodes of intermittent hypoxia disrupt neurodevelopmental trajectories. The objective of this study was to create a faithful sculpting of the human condition in a preclinical murine model.
Methods: We used clinical data from children with POSA to develop and validate a mouse model of POSA that faithfully recapitulates several behavioral deficits seen in the …
Basal Cell Of Origin Resolves Neuroendocrine-Tuft Lineage Plasticity In Cancer, Abbie S Ireland, Ramaswamy Govindan, Et Al.
Basal Cell Of Origin Resolves Neuroendocrine-Tuft Lineage Plasticity In Cancer, Abbie S Ireland, Ramaswamy Govindan, Et Al.
2020-Current year OA Pubs
Neuroendocrine and tuft cells are rare chemosensory epithelial lineages defined by the expression of ASCL1 and POU2F3 transcription factors, respectively. Neuroendocrine cancers, including small cell lung cancer (SCLC), frequently display tuft-like subsets, a feature linked to poor patient outcomes
Iron Supplementation Switches Mode Of Cell Death To Ferroptosis During Acetaminophen-Induced Liver Injury In Mice Rendering It Resistant To N-Acetylcysteine., Olamide B. Adelusi, Aparna Venkatraman, Jephte Y. Akakpo, Anup Ramachandran, Hartmut Jaeschke
Iron Supplementation Switches Mode Of Cell Death To Ferroptosis During Acetaminophen-Induced Liver Injury In Mice Rendering It Resistant To N-Acetylcysteine., Olamide B. Adelusi, Aparna Venkatraman, Jephte Y. Akakpo, Anup Ramachandran, Hartmut Jaeschke
Manuscripts, Articles, Book Chapters and Other Papers
Acetaminophen (APAP) overdose can cause liver injury and is the leading cause of acute liver failure in Western countries. Hepatocellular necrosis induced by APAP involves the formation of a reactive metabolite, triggering mitochondrial oxidant stress and peroxynitrite formation. Iron-catalyzed protein nitration is critical for mitochondrial dysfunction and cell death in the absence of lipid peroxidation (LPO). However, co-treatment of APAP and ferrous sulfate aggravated protein nitration and liver injury but also triggered extensive LPO (measured as malondialdehyde and hydroxy eicosatetraenoic acid (HETE) species). The objective of this study was to evaluate whether the aggravated injury under these conditions is caused …
How Augmin Establishes The Angle Of The Microtubule Branch Site, Sophie M Travis, Jodi Kraus, Collin T Mcmanus, Kiana Golden, Rui Zhang, Sabine Petry
How Augmin Establishes The Angle Of The Microtubule Branch Site, Sophie M Travis, Jodi Kraus, Collin T Mcmanus, Kiana Golden, Rui Zhang, Sabine Petry
2020-Current year OA Pubs
How microtubules (MTs) are generated in the proper orientation is essential to understanding how the cytoskeleton organizes a cell and MT-dependent events such as cell division. In the spindle, most MTs are generated through the branching MT nucleation pathway. In this pathway, new MTs are nucleated from the side of existing MTs and oriented at a shallow angle by the branching factor augmin, ensuring that both MTs have the same polarity. Yet, how augmin binds MTs and sets the branch angle has remained unclear. Here, we report the cryo-electron microscopy structure of an augmin subcomplex on the MT. This structure …
Runx2 Cooperates With Srebp1 To Rewire Cancer Metabolism And Promote Aggressiveness, Emanuele Vitale, Mila Gugnoni, Veronica Manicardi, Silvia Muccioli, Federica Torricelli, Benedetta Donati, Simonetta Piana, Gloria Manzotti, Elisa Salviato, Francesca Reggiani, Cristian Ascione, Rebecca Vezzani, Moira Ragazzi, Mattia Forcato, Oriana Romano, Silvio Bicciato, Aaron Goldman, Marco Tigano, Alessia Ciarrocchi
Runx2 Cooperates With Srebp1 To Rewire Cancer Metabolism And Promote Aggressiveness, Emanuele Vitale, Mila Gugnoni, Veronica Manicardi, Silvia Muccioli, Federica Torricelli, Benedetta Donati, Simonetta Piana, Gloria Manzotti, Elisa Salviato, Francesca Reggiani, Cristian Ascione, Rebecca Vezzani, Moira Ragazzi, Mattia Forcato, Oriana Romano, Silvio Bicciato, Aaron Goldman, Marco Tigano, Alessia Ciarrocchi
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Embryonic Transcription Factors (TFs) are often reactivated in cancer, driving developmental gene programs that support phenotypic plasticity. Metabolic adaptation fuels this plasticity by supplying energy and molecular building blocks for growth. RUNX2, the master regulator of bone morphogenesis, is ectopically expressed in epithelial cancer, promoting metastasis through trans-differentiation processes like Epithelial-to-Mesenchymal Transition (EMT) and osteomimicry. By combining omics data with functional validation, we demonstrated that RUNX2 drives cancer cell metabolic rewiring by repressing mitochondrial respiration while promoting anabolic processes. We showed that RUNX2 upregulates key genes of lipid biosynthesis by regulating and cooperating with SREBP1. In vivo expression analysis in …
Young Krab-Zinc Finger Gene Clusters Are Highly Dynamic Incubators Of Erv-Driven Genetic Heterogeneity In Mice., Melania Bruno, Sharaf M Farhana, Apratim Mitra, Kevin Costello, Dawn E Watkins-Chow, Glennis A Logsdon, Craig W Gambogi, Beth L Dumont, Ben E Black, Thomas M Keane, Anne C Ferguson-Smith, Ryan K Dale, Todd S Macfarlan
Young Krab-Zinc Finger Gene Clusters Are Highly Dynamic Incubators Of Erv-Driven Genetic Heterogeneity In Mice., Melania Bruno, Sharaf M Farhana, Apratim Mitra, Kevin Costello, Dawn E Watkins-Chow, Glennis A Logsdon, Craig W Gambogi, Beth L Dumont, Ben E Black, Thomas M Keane, Anne C Ferguson-Smith, Ryan K Dale, Todd S Macfarlan
Faculty Research 2025
KRAB-zinc finger proteins (KZFPs) comprise the largest family of mammalian transcription factors, rapidly evolving within and between species. Most KZFPs in human and mice have been found to repress endogenous retroviruses (ERVs) and other retrotransposons, with KZFP gene numbers correlating with the ERV load across species, suggesting coevolution. Whether new KZFPs emerge in response to ERV invasions is currently unknown. Using a combination of long-read sequencing technologies and genome assembly, we present a detailed comparative analysis of young KZFP gene clusters in the mouse lineage, which has undergone recent KZFP gene expansion and ERV infiltration. Detailed annotation of KZFP genes …
The Regulation Of The Hippo Signalling Pathway Effector Yap Through A Novel Lipid-Dependent Extracellular Matrix Complex, Simge Karagil, Natalia Haddad, Michael Stolinski, Natasha Hill, Darren Johnson, Nadine Wehida, Ahmed Elbediwy
The Regulation Of The Hippo Signalling Pathway Effector Yap Through A Novel Lipid-Dependent Extracellular Matrix Complex, Simge Karagil, Natalia Haddad, Michael Stolinski, Natasha Hill, Darren Johnson, Nadine Wehida, Ahmed Elbediwy
School of Biomedical Sciences
Lipid metabolism plays a significant role in the regulation of various critical pathways within cells, where enhanced lipid metabolism is a hallmark of cancer cell metabolism. The Hippo signalling pathway poses as an important signalling pathway that governs tissue growth control and tumorigenesis. The effector of the Hippo signalling pathway, Yes-associated protein (YAP), serves as a central regulator for this growth control. Once a tissue develops to its correct size, YAP is phosphorylated and inactivated within the cytoplasm by the activation of the Hippo pathway, where its inactivation results in YAP nucleus translocation. This allows its dephosphorylation, modulating various cellular …