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Articles 2521 - 2550 of 5131
Full-Text Articles in Medicine and Health Sciences
Ifn-Λ Derived From Nonsusceptible Enterocytes Acts On Tuft Cells To Limit Persistent Norovirus, Harshad Ingle, Heyde Makimaa, Somya Aggarwal, Hongju Deng, Lynne Foster, Yuhao Li, Elizabeth A Kennedy, Stefan T Peterson, Craig B Wilen, Sanghyun Lee, Mehul S Suthar, Megan T Baldridge
Ifn-Λ Derived From Nonsusceptible Enterocytes Acts On Tuft Cells To Limit Persistent Norovirus, Harshad Ingle, Heyde Makimaa, Somya Aggarwal, Hongju Deng, Lynne Foster, Yuhao Li, Elizabeth A Kennedy, Stefan T Peterson, Craig B Wilen, Sanghyun Lee, Mehul S Suthar, Megan T Baldridge
2020-Current year OA Pubs
Norovirus is a leading cause of epidemic viral gastroenteritis, with no currently approved vaccines or antivirals. Murine norovirus (MNoV) is a well-characterized model of norovirus pathogenesis in vivo, and persistent strains exhibit lifelong intestinal infection. Interferon-λ (IFN-λ) is a potent antiviral that rapidly cures MNoV. We previously demonstrated that IFN-λ signaling in intestinal epithelial cells (IECs) controls persistent MNoV, and here demonstrate that IFN-λ acts on tuft cells, the exclusive site of MNoV persistence, to limit infection. While interrogating the source of IFN-λ to regulate MNoV, we confirmed that MDA5-MAVS signaling, required for IFN-λ induction to MNoV in vitro, controls …
Mettl14 Is A Chromatin Regulator Independent Of Its Rna N6-Methyladenosine Methyltransferase Activity, Xiaoyang Dou, Lulu Huang, Yu Xiao, Chang Liu, Yini Li, Xinning Zhang, Lishan Yu, Ran Zhao, Lei Yang, Chuan Chen, Xianbin Yu, Boyang Gao, Meijie Qi, Yawei Gao, Bin Shen, Shuying Sun, Chuan He, Jun Liu
Mettl14 Is A Chromatin Regulator Independent Of Its Rna N6-Methyladenosine Methyltransferase Activity, Xiaoyang Dou, Lulu Huang, Yu Xiao, Chang Liu, Yini Li, Xinning Zhang, Lishan Yu, Ran Zhao, Lei Yang, Chuan Chen, Xianbin Yu, Boyang Gao, Meijie Qi, Yawei Gao, Bin Shen, Shuying Sun, Chuan He, Jun Liu
Faculty, Staff and Student Publications
METTL3 and METTL14 are two components that form the core heterodimer of the main RNA m6A methyltransferase complex (MTC) that installs m6A. Surprisingly, depletion of METTL3 or METTL14 displayed distinct effects on stemness maintenance of mouse embryonic stem cell (mESC). While comparable global hypo-methylation in RNA m6A was observed in Mettl3 or Mettl14 knockout mESCs, respectively. Mettl14 knockout led to a globally decreased nascent RNA synthesis, whereas Mettl3 depletion resulted in transcription upregulation, suggesting that METTL14 might possess an m6A-independent role in gene regulation. We found that METTL14 colocalizes with the repressive H3K27me3 modification. Mechanistically, METTL14, but not METTL3, binds …
N-Terminal Α-Amino Sumoylation Of Cofilin-1 Is Critical For Its Regulation Of Actin Depolymerization, Weiji Weng, Xiaokun Gu, Yang Yang, Qiao Zhang, Qi Deng, Jie Zhou, Jinke Cheng, Michael X Zhu, Junfeng Feng, Ou Huang, Yong Li
N-Terminal Α-Amino Sumoylation Of Cofilin-1 Is Critical For Its Regulation Of Actin Depolymerization, Weiji Weng, Xiaokun Gu, Yang Yang, Qiao Zhang, Qi Deng, Jie Zhou, Jinke Cheng, Michael X Zhu, Junfeng Feng, Ou Huang, Yong Li
Faculty, Staff and Student Publications
Small ubiquitin-like modifier (SUMO) typically conjugates to target proteins through isopeptide linkage to the ε-amino group of lysine residues. This posttranslational modification (PTM) plays pivotal roles in modulating protein function. Cofilins are key regulators of actin cytoskeleton dynamics and are well-known to undergo several different PTMs. Here, we show that cofilin-1 is conjugated by SUMO1 both in vitro and in vivo. Using mass spectrometry and biochemical and genetic approaches, we identify the N-terminal α-amino group as the SUMO-conjugation site of cofilin-1. Common to conventional SUMOylation is that the N-α-SUMOylation of cofilin-1 is also mediated by SUMO activating (E1), conjugating (E2), …
Speg Interactions That Regulate The Stability Of Excitation-Contraction Coupling Protein Complexes In Triads And Dyads, Chang Seok Lee, Sung Yun Jung, Rachel Sue Zhen Yee, Nadia H Agha, Jin Hong, Ting Chang, Lyle W Babcock, Jorie D Fleischman, Benjamin Clayton, Amy D Hanna, Christopher S Ward, Denise Lanza, Ayrea E Hurley, Pumin Zhang, Xander H T Wehrens, William R Lagor, George G Rodney, Susan L Hamilton
Speg Interactions That Regulate The Stability Of Excitation-Contraction Coupling Protein Complexes In Triads And Dyads, Chang Seok Lee, Sung Yun Jung, Rachel Sue Zhen Yee, Nadia H Agha, Jin Hong, Ting Chang, Lyle W Babcock, Jorie D Fleischman, Benjamin Clayton, Amy D Hanna, Christopher S Ward, Denise Lanza, Ayrea E Hurley, Pumin Zhang, Xander H T Wehrens, William R Lagor, George G Rodney, Susan L Hamilton
Faculty, Staff and Students Publications
Here we show that striated muscle preferentially expressed protein kinase α (Spegα) maintains cardiac function in hearts with Spegβ deficiency. Speg is required for stability of excitation-contraction coupling (ECC) complexes and interacts with esterase D (Esd), Cardiomyopathy-Associated Protein 5 (Cmya5), and Fibronectin Type III and SPRY Domain Containing 2 (Fsd2) in cardiac and skeletal muscle. Mice with a sequence encoding a V5/HA tag inserted into the first exon of the Speg gene (HA-Speg mice) display a >90% decrease in Spegβ but Spegα is expressed at ~50% of normal levels. Mice deficient in both Spegα and Speg β (Speg KO mice) …
Shp2 Promotes Sarcoidosis Severity By Inhibiting Skp2-Targeted Ubiquitination Of Tbet In Cd8+ T Cells, Sherly I Celada, Clarice X Lim, Alexandre F Carisey, Scott A Ochsner, Carlos F Arce Deza, Praveen Rexie, Fernando Poli De Frias, Rafael Cardenas-Castillo, Francesca Polverino, Markus Hengstschläger, Konstantin Tsoyi, Neil J Mckenna, Farrah Kheradmand, Thomas Weichhart, Ivan O Rosas, Luc Van Kaer, Lindsay J Celada
Shp2 Promotes Sarcoidosis Severity By Inhibiting Skp2-Targeted Ubiquitination Of Tbet In Cd8+ T Cells, Sherly I Celada, Clarice X Lim, Alexandre F Carisey, Scott A Ochsner, Carlos F Arce Deza, Praveen Rexie, Fernando Poli De Frias, Rafael Cardenas-Castillo, Francesca Polverino, Markus Hengstschläger, Konstantin Tsoyi, Neil J Mckenna, Farrah Kheradmand, Thomas Weichhart, Ivan O Rosas, Luc Van Kaer, Lindsay J Celada
Faculty, Staff and Students Publications
Sarcoidosis is an interstitial lung disease (ILD) characterized by IFNγ and TBET dysregulation. Although one-third of patients progress from granulomatous inflammation to severe lung damage, the molecular mechanisms underlying this process remain unclear. Here, we report that pharmacological inhibition of phosphorylated SH2 containing protein tyrosine phosphatase-2 (pSHP2), a facilitator of aberrant IFNγ levels, decreases large granuloma formation and macrophage infiltration in the lungs of mice with sarcoidosis-like disease. Positive treatment outcomes were dependent on the effective enhancement of TBET ubiquitination within CD8+ T cells. Mechanistically, our findings identified a previously unknown post-translational modification (PTM) pathway in which the E3 F-box …
Global Proteomic Identifies Multiple Cancer-Related Signaling Pathways Altered By A Gut Pathobiont Associated With Colorectal Cancer, Ewa Pasquereau-Kotula, Giulia Nigro, Florent Dingli, Damarys Loew, Patrick Poullet, Yi Xu, Scott Kopetz, Jennifer Davis, Lucie Peduto, Catherine Robbe-Masselot, Philippe Sansonetti, Patrick Trieu-Cuot, Shaynoor Dramsi
Global Proteomic Identifies Multiple Cancer-Related Signaling Pathways Altered By A Gut Pathobiont Associated With Colorectal Cancer, Ewa Pasquereau-Kotula, Giulia Nigro, Florent Dingli, Damarys Loew, Patrick Poullet, Yi Xu, Scott Kopetz, Jennifer Davis, Lucie Peduto, Catherine Robbe-Masselot, Philippe Sansonetti, Patrick Trieu-Cuot, Shaynoor Dramsi
Faculty, Staff and Student Publications
In this work, we investigated the oncogenic role of Streptococcus gallolyticus subsp. gallolyticus (SGG), a gut bacterium associated with colorectal cancer (CRC). We showed that SGG UCN34 accelerates colon tumor development in a chemically induced CRC murine model. Full proteome and phosphoproteome analysis of murine colons chronically colonized by SGG UCN34 revealed that 164 proteins and 725 phosphorylation sites were differentially regulated. Ingenuity Pathway Analysis (IPA) indicates a pro-tumoral shift specifically induced by SGG UCN34, as ~ 90% of proteins and phosphoproteins identified were associated with digestive cancer. Comprehensive analysis of the altered phosphoproteins using ROMA software revealed up-regulation of …
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Faculty, Staff and Student Publications
Oncogenic KRASG12D (KRAS∗) is critical for the initiation and maintenance of pancreatic ductal adenocarcinoma (PDAC) and is a known repressor of tumor immunity. Conditional elimination of KRAS∗ in genetic mouse models of PDAC leads to the reactivation of FAS, CD8+ T cell-mediated apoptosis, and complete eradication of tumors. KRAS∗ elimination recruits activated CD4+ and CD8+ T cells and promotes the activation of antigen-presenting cells. Mechanistically, KRAS∗-mediated immune evasion involves the epigenetic regulation of Fas death receptor in cancer cells, via methylation of its promoter region. Furthermore, analysis of human RNA sequencing identifies that high KRAS expression in PDAC tumors shows …
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Faculty, Staff and Student Publications
Oncogenic KrasG12D (Kras*) is critical for the initiation and maintenance of pancreatic ductal adenocarcinoma (PDAC), and a known repressor of tumor immunity. Conditional elimination of Kras* in genetic mouse models of PDAC leads to reactivation of Fas, CD8+ T cell mediated apoptosis, and complete eradication of tumors. Kras* elimination recruits activated CD4+ and CD8+ T cells and promotes the activation of antigen presenting cells. Mechanistically, Kras* mediated immune evasion involves epigenetic regulation of the Fas death receptor in cancer cells, via methylation of its promoter region. Further, analysis of human RNA sequencing identifies that high KRAS expressing PDAC tumors show …
A Split And Inducible Adenine Base Editor For Precise In Vivo Base Editing, Hongzhi Zeng, Qichen Yuan, Fei Peng, Dacheng Ma, Ananya Lingineni, Kelly Chee, Peretz Gilberd, Emmanuel C Osikpa, Zheng Sun, Xue Gao
A Split And Inducible Adenine Base Editor For Precise In Vivo Base Editing, Hongzhi Zeng, Qichen Yuan, Fei Peng, Dacheng Ma, Ananya Lingineni, Kelly Chee, Peretz Gilberd, Emmanuel C Osikpa, Zheng Sun, Xue Gao
Faculty, Staff and Students Publications
DNA base editors use deaminases fused to a programmable DNA-binding protein for targeted nucleotide conversion. However, the most widely used TadA deaminases lack post-translational control in living cells. Here, we present a split adenine base editor (sABE) that utilizes chemically induced dimerization (CID) to control the catalytic activity of the deoxyadenosine deaminase TadA-8e. sABE shows high on-target editing activity comparable to the original ABE with TadA-8e (ABE8e) upon rapamycin induction while maintaining low background activity without induction. Importantly, sABE exhibits a narrower activity window on DNA and higher precision than ABE8e, with an improved single-to-double ratio of adenine editing and …
The Classification Of Obesity Based On Metabolic Status Redefines The Readmission Of Non-Hodgkin’S Lymphoma—An Observational Study, Eunju Kim, Kazuaki Mawatari, Seung-Hee Yoo, Zheng Chen
The Classification Of Obesity Based On Metabolic Status Redefines The Readmission Of Non-Hodgkin’S Lymphoma—An Observational Study, Eunju Kim, Kazuaki Mawatari, Seung-Hee Yoo, Zheng Chen
Faculty, Staff and Student Publications
Obesity is a known risk factor for metabolic diseases and is often associated with chronic inflammation in adipose tissue. We previously identified the polyethoxylated flavonoid Nobiletin (NOB) as a circadian clock modulator that directly binds to and activates the ROR receptors in the core oscillator, markedly improving metabolic fitness in obese mice. Here, we show that NOB enhanced the oscillation of core clock genes in differentiated 3T3-L1 adipocytes, including ROR target genes such as Bmal1, Cry1, Dec1, and Dec2. NOB inhibited lipid accumulation in 3T3-L1 and SVF cells, concomitant with the dysregulated circadian expression of adipogenic …
Erg K+ Channels Mediate A Major Component Of Action Potential Repolarization In Lymphatic Muscle, Hae Jin Kim, Min Li, Emma C Erlich, Gwendalyn J Randolph, Michael J Davis
Erg K+ Channels Mediate A Major Component Of Action Potential Repolarization In Lymphatic Muscle, Hae Jin Kim, Min Li, Emma C Erlich, Gwendalyn J Randolph, Michael J Davis
2020-Current year OA Pubs
Smooth muscle cells in the walls of collecting lymphatic vessels fire spontaneous action potentials (APs), which conduct rapidly over the muscle layer to initiate contractions that propel lymph. Several ion channels have been implicated in the currents underlying the AP spike and the preceding diastolic depolarization, but the molecular identities of K
Argininosuccinate Lyase Deficiency Causes Blood-Brain Barrier Disruption Via Nitric Oxide-Mediated Dysregulation Of Claudin Expression, Jordan Kho, Urszula Polak, Ming-Ming Jiang, John D Odom, Jill V Hunter, Saima M Ali, Lindsay C Burrage, Sandesh Cs Nagamani, Robia G Pautler, Hannah P Thompson, Akihiko Urayama, Zixue Jin, Brendan Lee
Argininosuccinate Lyase Deficiency Causes Blood-Brain Barrier Disruption Via Nitric Oxide-Mediated Dysregulation Of Claudin Expression, Jordan Kho, Urszula Polak, Ming-Ming Jiang, John D Odom, Jill V Hunter, Saima M Ali, Lindsay C Burrage, Sandesh Cs Nagamani, Robia G Pautler, Hannah P Thompson, Akihiko Urayama, Zixue Jin, Brendan Lee
Faculty, Staff and Student Publications
Nitric oxide (NO) is a critical signaling molecule that has been implicated in the pathogenesis of neurocognitive diseases. Both excessive and insufficient NO production have been linked to pathology. Previously, we have shown that argininosuccinate lyase deficiency (ASLD) is a novel model system to investigate cell-autonomous, nitric oxide synthase-dependent NO deficiency. Humans with ASLD are at increased risk for developing hyperammonemia due to a block in ureagenesis. However, natural history studies have shown that individuals with ASLD have multisystem disease including neurocognitive deficits that can be independent of ammonia. Here, using ASLD as a model of NO deficiency, we investigated …
A Critical Role For Camkii In Behavioral Timescale Synaptic Plasticity In Hippocampal Ca1 Pyramidal Neurons, Kuo Xiao, Yiding Li, Raymond A Chitwood, Jeffrey C Magee
A Critical Role For Camkii In Behavioral Timescale Synaptic Plasticity In Hippocampal Ca1 Pyramidal Neurons, Kuo Xiao, Yiding Li, Raymond A Chitwood, Jeffrey C Magee
Faculty, Staff and Students Publications
Behavioral timescale synaptic plasticity (BTSP) is a type of non-Hebbian synaptic plasticity reported to underlie place field formation. Despite this important function, the molecular mechanisms underlying BTSP are poorly understood. The α-calcium-calmodulin-dependent protein kinase II (αCaMKII) is activated by synaptic transmission-mediated calcium influx, and its subsequent phosphorylation is central to synaptic plasticity. Because the activity of αCaMKII is known to outlast the event triggering phosphorylation, we hypothesized that it could mediate the extended timescale of BTSP. To examine the role of αCaMKII in BTSP, we performed whole-cell in vivo and in vitro recordings in CA1 pyramidal neurons from mice engineered …
Single Genomic Enhancers Drive Experience-Dependent Gabaergic Plasticity To Maintain Sensory Processing In The Adult Cortex, Ori Roethler, Eran Zohar, Katayun Cohen-Kashi Malina, Lidor Bitan, Harrison Wren Gabel, Ivo Spiegel
Single Genomic Enhancers Drive Experience-Dependent Gabaergic Plasticity To Maintain Sensory Processing In The Adult Cortex, Ori Roethler, Eran Zohar, Katayun Cohen-Kashi Malina, Lidor Bitan, Harrison Wren Gabel, Ivo Spiegel
2020-Current year OA Pubs
Experience-dependent plasticity of synapses modulates information processing in neural circuits and is essential for cognitive functions. The genome, via non-coding enhancers, was proposed to control information processing and circuit plasticity by regulating experience-induced transcription of genes that modulate specific sets of synapses. To test this idea, we analyze here the cellular and circuit functions of the genomic mechanisms that control the experience-induced transcription of Igf1 (insulin-like growth factor 1) in vasoactive intestinal peptide (VIP) interneurons (INs) in the visual cortex of adult mice. We find that two sensory-induced enhancers selectively and cooperatively drive the activity-induced transcription of Igf1 to thereby …
Evolutionary Action-Machine Learning Model Identifies Candidate Genes Associated With Early-Onset Coronary Artery Disease, Dillon Shapiro, Kwanghyuk Lee, Jennifer Asmussen, Thomas Bourquard, Olivier Lichtarge
Evolutionary Action-Machine Learning Model Identifies Candidate Genes Associated With Early-Onset Coronary Artery Disease, Dillon Shapiro, Kwanghyuk Lee, Jennifer Asmussen, Thomas Bourquard, Olivier Lichtarge
Faculty, Staff and Students Publications
Background Coronary artery disease is a primary cause of death around the world, with both genetic and environmental risk factors. Although genome-wide association studies have linked >100 unique loci to its genetic basis, these only explain a fraction of disease heritability. Methods and Results To find additional gene drivers of coronary artery disease, we applied machine learning to quantitative evolutionary information on the impact of coding variants in whole exomes from the Myocardial Infarction Genetics Consortium. Using ensemble-based supervised learning, the Evolutionary Action-Machine Learning framework ranked each gene's ability to classify case and control samples and identified 79 significant associations. …
Acute Kidney Injury-Induced Circulating Tnfr1/2 Elevations Correlate With Persistent Kidney Injury And Progression To Fibrosis, Akshayakeerthi Arthanarisami, Yohei Komaru, Charikleia Katsouridi, Julian Schumacher, Deborah K Verges, Liang Ning, Mai M Abdelmageed, Andreas Herrlich, Eirini Kefaloyianni
Acute Kidney Injury-Induced Circulating Tnfr1/2 Elevations Correlate With Persistent Kidney Injury And Progression To Fibrosis, Akshayakeerthi Arthanarisami, Yohei Komaru, Charikleia Katsouridi, Julian Schumacher, Deborah K Verges, Liang Ning, Mai M Abdelmageed, Andreas Herrlich, Eirini Kefaloyianni
2020-Current year OA Pubs
Elevated levels of circulating tumor necrosis factor receptors 1 and 2 (cTNFR1/2) predict chronic kidney disease (CKD) progression; however, the mechanisms of their release remain unknown. Whether acute kidney injury (AKI) drives cTNFR1/2 elevations and whether they predict disease outcomes after AKI remain unknown. In this study, we used AKI patient serum and urine samples, mouse models of kidney injury (ischemic, obstructive, and toxic), and progression to fibrosis, nephrectomy, and related single-cell RNA-sequencing datasets to experimentally test the role of kidney injury on cTNFR1/2 levels. We show that TNFR1/2 serum and urine levels are highly elevated in all of the …
Lem2 Is Essential For Cardiac Development By Maintaining Nuclear Integrity, Jacob A Ross, Didier Hodzic, Et Al.
Lem2 Is Essential For Cardiac Development By Maintaining Nuclear Integrity, Jacob A Ross, Didier Hodzic, Et Al.
2020-Current year OA Pubs
AIMS: Nuclear envelope integrity is essential for the compartmentalization of the nucleus and cytoplasm. Importantly, mutations in genes encoding nuclear envelope (NE) and associated proteins are the second highest cause of familial dilated cardiomyopathy. One such NE protein that causes cardiomyopathy in humans and affects mouse heart development is Lem2. However, its role in the heart remains poorly understood.
METHODS AND RESULTS: We generated mice in which Lem2 was specifically ablated either in embryonic cardiomyocytes (Lem2 cKO) or in adult cardiomyocytes (Lem2 iCKO) and carried out detailed physiological, tissue, and cellular analyses. High-resolution episcopic microscopy was used for three-dimensional reconstructions …
Mitochondrial Pyruvate Metabolism And Glutaminolysis Toggle Steady-State And Emergency Myelopoiesis, Hannah A Pizzato, Yahui Wang, Michael J Wolfgang, Brian N Finck, Gary J Patti, Deepta Bhattacharya
Mitochondrial Pyruvate Metabolism And Glutaminolysis Toggle Steady-State And Emergency Myelopoiesis, Hannah A Pizzato, Yahui Wang, Michael J Wolfgang, Brian N Finck, Gary J Patti, Deepta Bhattacharya
2020-Current year OA Pubs
To define the metabolic requirements of hematopoiesis, we examined blood lineages in mice conditionally deficient in genes required for long-chain fatty acid oxidation (Cpt2), glutaminolysis (Gls), or mitochondrial pyruvate import (Mpc2). Genetic ablation of Cpt2 or Gls minimally impacted most blood lineages. In contrast, deletion of Mpc2 led to a sharp decline in mature myeloid cells and a slower reduction in T cells, whereas other hematopoietic lineages were unaffected. Yet MPC2-deficient monocytes and neutrophils rapidly recovered due to a transient and specific increase in myeloid progenitor proliferation. Competitive bone marrow chimera and stable isotope tracing experiments demonstrated that this proliferative …
Kv12-Encoded K+ Channels Drive The Day-Night Switch In The Repetitive Firing Rates Of Scn Neurons, Tracey O Hermanstyne, Nien-Du Yang, Daniel Granados-Fuentes, Xiaofan Li, Rebecca L Mellor, Timothy Jegla, Erik D Herzog, Jeanne M Nerbonne
Kv12-Encoded K+ Channels Drive The Day-Night Switch In The Repetitive Firing Rates Of Scn Neurons, Tracey O Hermanstyne, Nien-Du Yang, Daniel Granados-Fuentes, Xiaofan Li, Rebecca L Mellor, Timothy Jegla, Erik D Herzog, Jeanne M Nerbonne
2020-Current year OA Pubs
Considerable evidence suggests that day-night rhythms in the functional expression of subthreshold potassium (K+) channels regulate daily oscillations in the spontaneous firing rates of neurons in the suprachiasmatic nucleus (SCN), the master circadian pacemaker in mammals. The K+ conductance(s) driving these daily rhythms in the repetitive firing rates of SCN neurons, however, have not been identified. To test the hypothesis that subthreshold Kv12.1/Kv12.2-encoded K+ channels play a role, we obtained current-clamp recordings from SCN neurons in slices prepared from adult mice harboring targeted disruptions in the Kcnh8 (Kv12.1-/-) or Kcnh3 (Kv12.2-/-) locus. We found that mean nighttime repetitive firing rates …
Determinants Of Ifgf13-Mediated Regulation Of Myocardial Voltage-Gated Sodium (Nav) Channels In Mouse, Adrien Lesage, Maxime Lorenzini, Sophie Burel, Marine Sarlandie, Floriane Bibault, Cecilia Lindskog, Daniel Maloney, Jonathan R Silva, R Reid Townsend, Jeanne M Nerbonne, Céline Marionneau
Determinants Of Ifgf13-Mediated Regulation Of Myocardial Voltage-Gated Sodium (Nav) Channels In Mouse, Adrien Lesage, Maxime Lorenzini, Sophie Burel, Marine Sarlandie, Floriane Bibault, Cecilia Lindskog, Daniel Maloney, Jonathan R Silva, R Reid Townsend, Jeanne M Nerbonne, Céline Marionneau
2020-Current year OA Pubs
Posttranslational regulation of cardiac NaV1.5 channels is critical in modulating channel expression and function, yet their regulation by phosphorylation of accessory proteins has gone largely unexplored. Using phosphoproteomic analysis of NaV channel complexes from adult mouse left ventricles, we identified nine phosphorylation sites on intracellular fibroblast growth factor 13 (iFGF13). To explore the potential roles of these phosphosites in regulating cardiac NaV currents, we abolished expression of iFGF13 in neonatal and adult mouse ventricular myocytes and rescued it with wild-type (WT), phosphosilent, or phosphomimetic iFGF13-VY. While the increased rate of closed-state inactivation of NaV channels induced by Fgf13 knockout in …
Carm1 Arginine Methyltransferase As A Therapeutic Target For Cancer, Margarida Santos, Jee Won Hwang, Mark T Bedford
Carm1 Arginine Methyltransferase As A Therapeutic Target For Cancer, Margarida Santos, Jee Won Hwang, Mark T Bedford
Faculty, Staff and Student Publications
Coactivator-associated arginine methyltransferase 1 (CARM1) is an arginine methyltransferase that posttranslationally modifies proteins that regulate multiple levels of RNA production and processing. Its substrates include histones, transcription factors, coregulators of transcription, and splicing factors. CARM1 is overexpressed in many different cancer types, and often promotes transcription factor programs that are co-opted as drivers of the transformed cell state, a process known as transcription factor addiction. Targeting these oncogenic transcription factor pathways is difficult but could be addressed by removing the activity of the key coactivators on which they rely. CARM1 is ubiquitously expressed, and its KO is less detrimental in …
Aerobic Exercise Alters The Melanoma Microenvironment And Modulates Erk5 S496 Phosphorylation, Hannah Savage, Sumedha Pareek, Jonghae Lee, Riccardo Ballarò, Darlan Conterno Minussi, Karma Hayek, Mumina Sadullozoda, Brooke S Lochmann, Jennifer L Mcquade, Emily C Lavoy, Enrica Marmonti, Hetal Patel, Guangyu Wang, Masaki Imanishi, Sivareddy Kotla, Jun-Ichi Abe, Keri Schadler
Aerobic Exercise Alters The Melanoma Microenvironment And Modulates Erk5 S496 Phosphorylation, Hannah Savage, Sumedha Pareek, Jonghae Lee, Riccardo Ballarò, Darlan Conterno Minussi, Karma Hayek, Mumina Sadullozoda, Brooke S Lochmann, Jennifer L Mcquade, Emily C Lavoy, Enrica Marmonti, Hetal Patel, Guangyu Wang, Masaki Imanishi, Sivareddy Kotla, Jun-Ichi Abe, Keri Schadler
Faculty, Staff and Student Publications
Exercise changes the tumor microenvironment by remodeling blood vessels and increasing infiltration by cytotoxic immune cells. The mechanisms driving these changes remain unclear. Herein, we demonstrate that exercise normalizes tumor vasculature and upregulates endothelial expression of VCAM1 in YUMMER 1.7 and B16F10 murine models of melanoma but differentially regulates tumor growth, hypoxia, and the immune response. We found that exercise suppressed tumor growth and increased CD8+ T-cell infiltration in YUMMER but not in B16F10 tumors. Single-cell RNA sequencing and flow cytometry revealed exercise modulated the number and phenotype of tumor-infiltrating CD8+ T cells and myeloid cells. Specifically, exercise caused a …
Cellular And Metabolic Characteristics Of Pre-Leukemic Hematopoietic Progenitors With Gata2 Haploinsufficiency, Avigail Rein, Ifat Geron, Eitan Kugler, Hila Fishman, Eyal Gottlieb, Ifat Abramovich, Amir Giladi, Ido Amit, Roger Mulet-Lazaro, Ruud Delwel, Stefan Gröschel, Smadar Levin-Zaidman, Nili Dezorella, Vered Holdengreber, Tata Nageswara Rao, Joanne Yacobovich, Orna Steinberg-Shemer, Qiu-Hua Huang, Yun Tan, Sai-Juan Chen, Shai Izraeli, Yehudit Birger
Cellular And Metabolic Characteristics Of Pre-Leukemic Hematopoietic Progenitors With Gata2 Haploinsufficiency, Avigail Rein, Ifat Geron, Eitan Kugler, Hila Fishman, Eyal Gottlieb, Ifat Abramovich, Amir Giladi, Ido Amit, Roger Mulet-Lazaro, Ruud Delwel, Stefan Gröschel, Smadar Levin-Zaidman, Nili Dezorella, Vered Holdengreber, Tata Nageswara Rao, Joanne Yacobovich, Orna Steinberg-Shemer, Qiu-Hua Huang, Yun Tan, Sai-Juan Chen, Shai Izraeli, Yehudit Birger
Faculty, Staff and Student Publications
Mono-allelic germline disruptions of the transcription factor GATA2 result in a propensity for developing myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML), affecting more than 85% of carriers. How a partial loss of GATA2 functionality enables leukemic transformation years later is unclear. This question has remained unsolved mainly due to the lack of informative models, as Gata2 heterozygote mice do not develop hematologic malignancies. Here we show that two different germline Gata2 mutations (TgErg/Gata2het and TgErg/Gata2L359V) accelerate AML in mice expressing the human hematopoietic stem cell regulator ERG. Analysis of Erg/Gata2het fetal liver and bone marrow-derived hematopoietic cells revealed a …
Antimicrobial Mitochondrial Reactive Oxygen Species Induction By Lung Epithelial Immunometabolic Modulation, Yongxing Wang, Vikram V Kulkarni, Jezreel Pantaleón García, Miguel M Leiva-Juárez, David L Goldblatt, Fahad Gulraiz, Lisandra Vila Ellis, Jichao Chen, Michael K Longmire, Sri Ramya Donepudi, Philip L Lorenzi, Hao Wang, Lee-Jun Wong, Michael J Tuvim, Scott E Evans
Antimicrobial Mitochondrial Reactive Oxygen Species Induction By Lung Epithelial Immunometabolic Modulation, Yongxing Wang, Vikram V Kulkarni, Jezreel Pantaleón García, Miguel M Leiva-Juárez, David L Goldblatt, Fahad Gulraiz, Lisandra Vila Ellis, Jichao Chen, Michael K Longmire, Sri Ramya Donepudi, Philip L Lorenzi, Hao Wang, Lee-Jun Wong, Michael J Tuvim, Scott E Evans
Faculty, Staff and Student Publications
Pneumonia is a worldwide threat, making discovery of novel means to combat lower respiratory tract infection an urgent need. Manipulating the lungs' intrinsic host defenses by therapeutic delivery of certain pathogen-associated molecular patterns protects mice against pneumonia in a reactive oxygen species (ROS)-dependent manner. Here we show that antimicrobial ROS are induced from lung epithelial cells by interactions of CpG oligodeoxynucleotides (ODN) with mitochondrial voltage-dependent anion channel 1 (VDAC1). The ODN-VDAC1 interaction alters cellular ATP/ADP/AMP localization, increases delivery of electrons to the electron transport chain (ETC), increases mitochondrial membrane potential (ΔΨm), differentially modulates ETC complex activities and consequently results in …
Host-Derived Reactive Oxygen Species Trigger Activation Of The Candida Albicans Transcription Regulator Rtg1/3, Mazen Oneissi, Melissa R Cruz, Bernardo Ramírez-Zavala, Elena Lindemann-Perez, Joachim Morschhäuser, Danielle A Garsin, J Christian Perez
Host-Derived Reactive Oxygen Species Trigger Activation Of The Candida Albicans Transcription Regulator Rtg1/3, Mazen Oneissi, Melissa R Cruz, Bernardo Ramírez-Zavala, Elena Lindemann-Perez, Joachim Morschhäuser, Danielle A Garsin, J Christian Perez
Faculty, Staff and Student Publications
The signals that denote mammalian host environments and dictate the activation of signaling pathways in human-associated microorganisms are often unknown. The transcription regulator Rtg1/3 in the human fungal pathogen Candida albicans is a crucial determinant of host colonization and pathogenicity. Rtg1/3's activity is controlled, in part, by shuttling the regulator between the cytoplasm and nucleus of the fungus. The host signal(s) that Rtg1/3 respond(s) to, however, have remained unclear. Here we report that neutrophil-derived reactive oxygen species (ROS) direct the subcellular localization of this C. albicans transcription regulator. Upon engulfment of Candida cells by human or mouse neutrophils, the regulator …
Inhibition Of Menin, Bcl-2, And Flt3 Combined With A Hypomethylating Agent Cures Npm1/Flt3-Itd/-Tkd Mutant Acute Myeloid Leukemia In A Patient-Derived Xenograft Model, Bing Z Carter, Po Yee Mak, Wenjing Tao, Lauren B Ostermann, Duncan H Mak, Baozhen Ke, Peter Ordentlich, Gerard M Mcgeehan, Michael Andreeff
Inhibition Of Menin, Bcl-2, And Flt3 Combined With A Hypomethylating Agent Cures Npm1/Flt3-Itd/-Tkd Mutant Acute Myeloid Leukemia In A Patient-Derived Xenograft Model, Bing Z Carter, Po Yee Mak, Wenjing Tao, Lauren B Ostermann, Duncan H Mak, Baozhen Ke, Peter Ordentlich, Gerard M Mcgeehan, Michael Andreeff
Faculty, Staff and Student Publications
No abstract provided.
Low Pitch Significantly Reduces Helical Artifacts In Abdominal Ct, Moiz Ahmad, Peng Sun, Christine B Peterson, Marcus R Anderson, Xinming Liu, Ajaykumar C Morani, Corey T Jensen
Low Pitch Significantly Reduces Helical Artifacts In Abdominal Ct, Moiz Ahmad, Peng Sun, Christine B Peterson, Marcus R Anderson, Xinming Liu, Ajaykumar C Morani, Corey T Jensen
Faculty, Staff and Student Publications
Purpose: High helical pitch scanning minimizes scan times in CT imaging, and thus also minimizes motion artifact and mis-synchronization with contrast bolus. However, high pitch produces helical artifacts that may adversely affect diagnostic image quality. This study aims to determine the severity and incidence of helical artifacts in abdominal CT imaging and their relation to the helical pitch scan parameter.
Methods: To obtain a dataset with varying pitch values, we used CT exam data both internal and external to our center. A cohort of 59 consecutive adult patients receiving an abdomen CT examination at our center with an accompanying prior …
Stromal-Derived Nrg1 Enables Oncogenic Kras Bypass In Pancreas Cancer, Jincheng Han, Jiaqian Xu, Yonghong Liu, Shaoheng Liang, Kyle A Labella, Deepavali Chakravarti, Denise J Spring, Yan Xia, Ronald A Depinho
Stromal-Derived Nrg1 Enables Oncogenic Kras Bypass In Pancreas Cancer, Jincheng Han, Jiaqian Xu, Yonghong Liu, Shaoheng Liang, Kyle A Labella, Deepavali Chakravarti, Denise J Spring, Yan Xia, Ronald A Depinho
Faculty, Staff and Student Publications
Activating KRAS mutations (KRAS*) in pancreatic ductal adenocarcinoma (PDAC) drive anabolic metabolism and support tumor maintenance. KRAS* inhibitors show initial antitumor activity followed by recurrence due to cancer cell-intrinsic and immune-mediated paracrine mechanisms. Here, we explored the potential role of cancer-associated fibroblasts (CAFs) in enabling KRAS* bypass and identified CAF-derived NRG1 activation of cancer cell ERBB2 and ERBB3 receptor tyrosine kinases as a mechanism by which KRAS*-independent growth is supported. Genetic extinction or pharmacological inhibition of KRAS* resulted in up-regulation of ERBB2 and ERBB3 expression in human and murine models, which prompted cancer cell utilization of CAF-derived NRG1 as a …
Activation Of Cell-Free Mtdna-Tlr9 Signaling Mediates Chronic Stress-Induced Social Behavior Deficits, Ashutosh Tripathi, Alona Bartosh, Carl Whitehead, Anilkumar Pillai
Activation Of Cell-Free Mtdna-Tlr9 Signaling Mediates Chronic Stress-Induced Social Behavior Deficits, Ashutosh Tripathi, Alona Bartosh, Carl Whitehead, Anilkumar Pillai
Faculty, Staff and Student Publications
Inflammation and social behavior deficits are associated with a number of neuropsychiatric disorders. Chronic stress, a major risk factor for depression and other mental health conditions is known to increase inflammatory responses and social behavior impairments. Disturbances in mitochondria function have been found in chronic stress conditions, however the mechanisms that link mitochondrial dysfunction to stress-induced social behavior deficits are not well understood. In this study, we found that chronic restraint stress (RS) induces significant increases in serum cell-free mitochondrial DNA (cf-mtDNA) levels in mice, and systemic Deoxyribonuclease I (DNase I) treatment attenuated RS-induced social behavioral deficits. Our findings revealed …
Key Genetic Determinants Driving Esophageal Squamous Cell Carcinoma Initiation And Immune Evasion, Kyung-Pil Ko, Yuanjian Huang, Shengzhe Zhang, Gengyi Zou, Bongjun Kim, Jie Zhang, Sohee Jun, Cecilia Martin, Karen J Dunbar, Gizem Efe, Anil K Rustgi, Hiroshi Nakagawa, Jae-Il Park
Key Genetic Determinants Driving Esophageal Squamous Cell Carcinoma Initiation And Immune Evasion, Kyung-Pil Ko, Yuanjian Huang, Shengzhe Zhang, Gengyi Zou, Bongjun Kim, Jie Zhang, Sohee Jun, Cecilia Martin, Karen J Dunbar, Gizem Efe, Anil K Rustgi, Hiroshi Nakagawa, Jae-Il Park
Faculty, Staff and Student Publications
BACKGROUND & AIMS: Despite recent progress in identifying aberrant genetic and epigenetic alterations in esophageal squamous cell carcinoma (ESCC), the mechanism of ESCC initiation remains unknown.
METHODS: Using CRISPR/Cas 9-based genetic ablation, we targeted 9 genes (TP53, CDKN2A, NOTCH1, NOTCH3, KMT2D, KMT2C, FAT1, FAT4, and AJUBA) in murine esophageal organoids. Transcriptomic phenotypes of organoids and chemokine released by organoids were analyzed by single-cell RNA sequencing. Tumorigenicity and immune evasion of organoids were monitored by allograft transplantation. Human ESCC single-cell RNA sequencing data sets were analyzed to classify patients and find subsets relevant to organoid models and immune evasion.
RESULTS: We …