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Tmem135 Links Peroxisomes To The Regulation Of Brown Fat Mitochondrial Fission And Energy Homeostasis, Donghua Hu, Min Tan, Dongliang Lu, Brian Kleiboeker, Xuejing Liu, Hongsuk Park, Alexxai V Kravitz, Kooresh I Shoghi, Yu-Hua Tseng, Babak Razani, Akihiro Ikeda, Irfan J Lodhi Sep 2023

Tmem135 Links Peroxisomes To The Regulation Of Brown Fat Mitochondrial Fission And Energy Homeostasis, Donghua Hu, Min Tan, Dongliang Lu, Brian Kleiboeker, Xuejing Liu, Hongsuk Park, Alexxai V Kravitz, Kooresh I Shoghi, Yu-Hua Tseng, Babak Razani, Akihiro Ikeda, Irfan J Lodhi

2020-Current year OA Pubs

Mitochondrial morphology, which is controlled by mitochondrial fission and fusion, is an important regulator of the thermogenic capacity of brown adipocytes. Adipose-specific peroxisome deficiency impairs thermogenesis by inhibiting cold-induced mitochondrial fission due to decreased mitochondrial membrane content of the peroxisome-derived lipids called plasmalogens. Here, we identify TMEM135 as a critical mediator of the peroxisomal regulation of mitochondrial fission and thermogenesis. Adipose-specific TMEM135 knockout in mice blocks mitochondrial fission, impairs thermogenesis, and increases diet-induced obesity and insulin resistance. Conversely, TMEM135 overexpression promotes mitochondrial division, counteracts obesity and insulin resistance, and rescues thermogenesis in peroxisome-deficient mice. Mechanistically, thermogenic stimuli promote association between …


Tmem27 Suppresses Tumor Development By Promoting Ret Ubiquitination, Positioning, And Degradation, Qianjin Guo, Zi-Ming Cheng, Hector Gonzalez-Cantú, Matthew Rotondi, Gabriela Huelgas-Morales, Purushoth Ethiraj, Zhijun Qiu, Jonathan Lefkowitz, Wan Song, Bethany N Landry, Hector Lopez, Cynthia M Estrada-Zuniga, Shivi Goyal, Mohammad Aasif Khan, Timothy J Walker, Exing Wang, Faqian Li, Yanli Ding, Lois M Mulligan, Ricardo C T Aguiar, Patricia L M Dahia Sep 2023

Tmem27 Suppresses Tumor Development By Promoting Ret Ubiquitination, Positioning, And Degradation, Qianjin Guo, Zi-Ming Cheng, Hector Gonzalez-Cantú, Matthew Rotondi, Gabriela Huelgas-Morales, Purushoth Ethiraj, Zhijun Qiu, Jonathan Lefkowitz, Wan Song, Bethany N Landry, Hector Lopez, Cynthia M Estrada-Zuniga, Shivi Goyal, Mohammad Aasif Khan, Timothy J Walker, Exing Wang, Faqian Li, Yanli Ding, Lois M Mulligan, Ricardo C T Aguiar, Patricia L M Dahia

Faculty, Staff and Student Publications

The TMEM127 gene encodes a transmembrane protein of poorly known function that is mutated in pheochromocytomas, neural crest-derived tumors of adrenomedullary cells. Here, we report that, at single-nucleus resolution, TMEM127-mutant tumors share precursor cells and transcription regulatory elements with pheochromocytomas carrying mutations of the tyrosine kinase receptor RET. Additionally, TMEM127-mutant pheochromocytomas, human cells, and mouse knockout models of TMEM127 accumulate RET and increase its signaling. TMEM127 contributes to RET cellular positioning, trafficking, and lysosome-mediated degradation. Mechanistically, TMEM127 binds to RET and recruits the NEDD4 E3 ubiquitin ligase for RET ubiquitination and degradation via TMEM127 C-terminal PxxY motifs. Lastly, increased cell …


Axl-Initiated Paracrine Activation Of Pstat3 Enhances Mesenchymal And Vasculogenic Supportive Features Of Tumor-Associated Macrophages, Chia-Nung Hung, Meizhen Chen, Daniel T Dearmond, Cheryl H-L Chiu, Catherine A Limboy, Xi Tan, Meena Kusi, Chih-Wei Chou, Li-Ling Lin, Zhao Zhang, Chiou-Miin Wang, Chun-Liang Chen, Kohzoh Mitsuya, Pawel A Osmulski, Maria E Gaczynska, Nameer B Kirma, Ratna K Vadlamudi, Don L Gibbons, Steve Warner, Andrew J Brenner, Daruka Mahadevan, Joel E Michalek, Tim H-M Huang, Josephine A Taverna Sep 2023

Axl-Initiated Paracrine Activation Of Pstat3 Enhances Mesenchymal And Vasculogenic Supportive Features Of Tumor-Associated Macrophages, Chia-Nung Hung, Meizhen Chen, Daniel T Dearmond, Cheryl H-L Chiu, Catherine A Limboy, Xi Tan, Meena Kusi, Chih-Wei Chou, Li-Ling Lin, Zhao Zhang, Chiou-Miin Wang, Chun-Liang Chen, Kohzoh Mitsuya, Pawel A Osmulski, Maria E Gaczynska, Nameer B Kirma, Ratna K Vadlamudi, Don L Gibbons, Steve Warner, Andrew J Brenner, Daruka Mahadevan, Joel E Michalek, Tim H-M Huang, Josephine A Taverna

Faculty, Staff and Student Publications

Tumor-associated macrophages (TAMs) are integral to the development of complex tumor microenvironments (TMEs) and can execute disparate cellular programs in response to extracellular cues. However, upstream signaling processes underpinning this phenotypic plasticity remain to be elucidated. Here, we report that concordant AXL-STAT3 signaling in TAMs is triggered by lung cancer cells or cancer-associated fibroblasts in the cytokine milieu. This paracrine action drives TAM differentiation toward a tumor-promoting "M2-like" phenotype with upregulation of CD163 and putative mesenchymal markers, contributing to TAM heterogeneity and diverse cellular functions. One of the upregulated markers, CD44, mediated by AXL-IL-11-pSTAT3 signaling cascade, enhances macrophage ability to …


A Peptide-Binding Domain Shared With An Antarctic Bacterium Facilitates, Cameron J Lloyd, Shuaiqi Guo, Brett Kinrade, Hossein Zahiri, Robert Eves, Syed Khalid Ali, Fitnat Yildiz, Ilja K Voets, Peter L Davies, Karl E Klose Sep 2023

A Peptide-Binding Domain Shared With An Antarctic Bacterium Facilitates, Cameron J Lloyd, Shuaiqi Guo, Brett Kinrade, Hossein Zahiri, Robert Eves, Syed Khalid Ali, Fitnat Yildiz, Ilja K Voets, Peter L Davies, Karl E Klose

Faculty, Staff and Student Publications

No abstract provided.


Intrinsic Tumor Resistance To Car T Cells Is A Dynamic Transcriptional State That Is Exploitable With Low-Dose Radiation, Alexander B Kim, Ssu-Yu Chou, Solomon Kang, Eric Kwon, Matthew Inkman, Jeff Szymanski, Neal Andruska, Cian Colgan, Jin Zhang, Joanna C Yang, Nathan Singh, Carl J Deselm Sep 2023

Intrinsic Tumor Resistance To Car T Cells Is A Dynamic Transcriptional State That Is Exploitable With Low-Dose Radiation, Alexander B Kim, Ssu-Yu Chou, Solomon Kang, Eric Kwon, Matthew Inkman, Jeff Szymanski, Neal Andruska, Cian Colgan, Jin Zhang, Joanna C Yang, Nathan Singh, Carl J Deselm

2020-Current year OA Pubs

Chimeric antigen receptor (CAR) T-cell therapy represents a major advancement for hematologic malignancies, with some patients achieving long-term remission. However, the majority of treated patients still die of their disease. A consistent predictor of response is tumor quantity, wherein a higher disease burden before CAR T-cell therapy portends a worse prognosis. Focal radiation to bulky sites of the disease can decrease tumor quantity before CAR T-cell therapy, but whether this strategy improves survival is unknown. We find that substantially reducing systemic tumor quantity using high-dose radiation to areas of bulky disease, which is commonly done clinically, is less impactful on …


Inducible Crispr-Targeted "Knockdown" Of Human Gut Bacteroides In Gnotobiotic Mice Discloses Glycan Utilization Strategies, Zachary W Beller, Darryl A Wesener, Timothy R Seebeck, Janaki L Guruge, Alexandra E Byrne, Suzanne Henrissat, Jeffrey I Gordon, Et Al. Sep 2023

Inducible Crispr-Targeted "Knockdown" Of Human Gut Bacteroides In Gnotobiotic Mice Discloses Glycan Utilization Strategies, Zachary W Beller, Darryl A Wesener, Timothy R Seebeck, Janaki L Guruge, Alexandra E Byrne, Suzanne Henrissat, Jeffrey I Gordon, Et Al.

2020-Current year OA Pubs

Understanding how members of the human gut microbiota prioritize nutrient resources is one component of a larger effort to decipher the mechanisms defining microbial community robustness and resiliency in health and disease. This knowledge is foundational for development of microbiota-directed therapeutics. To model how bacteria prioritize glycans in the gut, germfree mice were colonized with 13 human gut bacterial strains, including seven saccharolytic


In Vivo Crispr/Cas9 Screening Identifies Pbrm1 As A Regulator Of Myeloid Leukemia Development In Mice, Bin E Li, Grace Y Li, Wenqing Cai, Qian Zhu, Davide Seruggia, Yuko Fujiwara, Christopher R Vakoc, Stuart H Orkin Sep 2023

In Vivo Crispr/Cas9 Screening Identifies Pbrm1 As A Regulator Of Myeloid Leukemia Development In Mice, Bin E Li, Grace Y Li, Wenqing Cai, Qian Zhu, Davide Seruggia, Yuko Fujiwara, Christopher R Vakoc, Stuart H Orkin

Faculty, Staff and Students Publications

CRISPR/Cas9 screening approaches are powerful tool for identifying in vivo cancer dependencies. Hematopoietic malignancies are genetically complex disorders in which the sequential acquisition of somatic mutations generates clonal diversity. Over time, additional cooperating mutations may drive disease progression. Using an in vivo pooled gene editing screen of epigenetic factors in primary murine hematopoietic stem and progenitor cells (HSPCs), we sought to uncover unrecognized genes that contribute to leukemia progression. We, first, modeled myeloid leukemia in mice by functionally abrogating both Tet2 and Tet3 in HSPCs, followed by transplantation. We, then, performed pooled CRISPR/Cas9 editing of genes encoding epigenetic factors and …


The Fda-Approved Compound, Pramipexole And The Clinical-Stage Investigational Drug, Dexpramipexole, Reverse Chronic Allodynia From Sciatic Nerve Damage In Mice, And Alter Il-1Β And Il-10 Expression From Immune Cell Culture, J E Sanchez, S Noor, M S Sun, J Zimmerly, A Pasmay, J J Sanchez, A G Vanderwall, M K Haynes, L A Sklar, P R Escalona, E D Milligan Sep 2023

The Fda-Approved Compound, Pramipexole And The Clinical-Stage Investigational Drug, Dexpramipexole, Reverse Chronic Allodynia From Sciatic Nerve Damage In Mice, And Alter Il-1Β And Il-10 Expression From Immune Cell Culture, J E Sanchez, S Noor, M S Sun, J Zimmerly, A Pasmay, J J Sanchez, A G Vanderwall, M K Haynes, L A Sklar, P R Escalona, E D Milligan

Pathology Research and Scholarship

During the onset of neuropathic pain from a variety of etiologies, nociceptors become hypersensitized, releasing neurotransmitters and other factors from centrally-projecting nerve terminals within the dorsal spinal cord. Consequently, glial cells (astrocytes and microglia) in the spinal cord are activated and mediate the release of proinflammatory cytokines that act to enhance pain transmission and sensitize mechanical non-nociceptive fibers which ultimately results in light touch hypersensitivity, clinically observed as allodynia. Pramipexole, a D2/D3 preferring agonist, is FDA-approved for the treatment of Parkinson's disease and demonstrates efficacy in animal models of inflammatory pain. The clinical-stage investigational drug, R(+) enantiomer of pramipexole, dexpramipexole, …


Blockade Of Interferon Signaling Decreases Gut Barrier Integrity And Promotes Severe West Nile Virus Disease, Shih-Ching Lin, Fang R Zhao, Hana Janova, Adrian Gervais, Summer Rucknagel, Kristy O Murray, Jean-Laurent Casanova, Michael S Diamond Sep 2023

Blockade Of Interferon Signaling Decreases Gut Barrier Integrity And Promotes Severe West Nile Virus Disease, Shih-Ching Lin, Fang R Zhao, Hana Janova, Adrian Gervais, Summer Rucknagel, Kristy O Murray, Jean-Laurent Casanova, Michael S Diamond

2020-Current year OA Pubs

The determinants of severe disease caused by West Nile virus (WNV) and why only ~1% of individuals progress to encephalitis remain poorly understood. Here, we use human and mouse enteroids, and a mouse model of pathogenesis, to explore the capacity of WNV to directly infect gastrointestinal (GI) tract cells and contribute to disease severity. At baseline, WNV poorly infects human and mouse enteroid cultures and enterocytes in mice. However, when STAT1 or type I interferon (IFN) responses are absent, GI tract cells become infected, and this is associated with augmented GI tract and blood-brain barrier (BBB) permeability, accumulation of gut-derived …


Blockade Of Interferon Signaling Decreases Gut Barrier Integrity And Promotes Severe West Nile Virus Disease, Shih-Ching Lin, Fang R Zhao, Hana Janova, Adrian Gervais, Summer Rucknagel, Kristy O Murray, Jean-Laurent Casanova, Michael S Diamond Sep 2023

Blockade Of Interferon Signaling Decreases Gut Barrier Integrity And Promotes Severe West Nile Virus Disease, Shih-Ching Lin, Fang R Zhao, Hana Janova, Adrian Gervais, Summer Rucknagel, Kristy O Murray, Jean-Laurent Casanova, Michael S Diamond

Faculty, Staff and Students Publications

The determinants of severe disease caused by West Nile virus (WNV) and why only ~1% of individuals progress to encephalitis remain poorly understood. Here, we use human and mouse enteroids, and a mouse model of pathogenesis, to explore the capacity of WNV to directly infect gastrointestinal (GI) tract cells and contribute to disease severity. At baseline, WNV poorly infects human and mouse enteroid cultures and enterocytes in mice. However, when STAT1 or type I interferon (IFN) responses are absent, GI tract cells become infected, and this is associated with augmented GI tract and blood-brain barrier (BBB) permeability, accumulation of gut-derived …


Non-Uniform Temporal Scaling Of Developmental Processes In The Mammalian Cortex, Annalisa Paolino, Elizabeth H Haines, Evan J Bailey, Dylan A Black, Ching Moey, Fernando García-Moreno, Linda J Richards, Rodrigo Suárez, Laura R Fenlon Sep 2023

Non-Uniform Temporal Scaling Of Developmental Processes In The Mammalian Cortex, Annalisa Paolino, Elizabeth H Haines, Evan J Bailey, Dylan A Black, Ching Moey, Fernando García-Moreno, Linda J Richards, Rodrigo Suárez, Laura R Fenlon

2020-Current year OA Pubs

The time that it takes the brain to develop is highly variable across animals. Although staging systems equate major developmental milestones between mammalian species, it remains unclear how distinct processes of cortical development scale within these timeframes. Here, we compare the timing of cortical development in two mammals of similar size but different developmental pace: eutherian mice and marsupial fat-tailed dunnarts. Our results reveal that the temporal relationship between cell birth and laminar specification aligns to equivalent stages between these species, but that migration and axon extension do not scale uniformly according to the developmental stages, and are relatively more …


Heterochronic Serum Proteins, Jeffrey Mason Sep 2023

Heterochronic Serum Proteins, Jeffrey Mason

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Mechanism of ovarian-dependent enhancement of health and longevity in postreproductive female mice


Bap1 Promotes Osteoclast Function By Metabolic Reprogramming, Nidhi Rohatgi, Wei Zou, Yongjia Li, Kevin Cho, Patrick L Collins, Eric Tycksen, Gaurav Pandey, Carl J Deselm, Gary J Patti, Anwesha Dey, Steven L Teitelbaum Sep 2023

Bap1 Promotes Osteoclast Function By Metabolic Reprogramming, Nidhi Rohatgi, Wei Zou, Yongjia Li, Kevin Cho, Patrick L Collins, Eric Tycksen, Gaurav Pandey, Carl J Deselm, Gary J Patti, Anwesha Dey, Steven L Teitelbaum

2020-Current year OA Pubs

Treatment of osteoporosis commonly diminishes osteoclast number which suppresses bone formation thus compromising fracture prevention. Bone formation is not suppressed, however, when bone degradation is reduced by retarding osteoclast functional resorptive capacity, rather than differentiation. We find deletion of deubiquitinase, BRCA1-associated protein 1 (Bap1), in myeloid cells (Bap1


A Uplc-Ms/Ms Based Rapid, Sensitive, And Non-Enzymatic Methodology For Quantitation Of Dietary Isoflavones In Biological Fluids, Faraz Rashid, Sudeep Ghimire, Ashutosh K. Mangalam, Shailendra Giri Sep 2023

A Uplc-Ms/Ms Based Rapid, Sensitive, And Non-Enzymatic Methodology For Quantitation Of Dietary Isoflavones In Biological Fluids, Faraz Rashid, Sudeep Ghimire, Ashutosh K. Mangalam, Shailendra Giri

Neurology Articles

Dietary isoflavones, a type of phytoestrogens, have gained importance owing to their health-promoting benefits. However, the beneficial effects of isoflavones are mediated by smaller metabolites produced with the help of gut bacteria that are known to metabolize these phytoestrogenic compounds into Daidzein and Genistein and biologically active molecules such as S-Equol. Identifying and measuring these phytoestrogens and their metabolites is an important step towards understanding the significance of diet and gut microbiota in human health and diseases. We have overcome the reported difficulties in quantitation of these isoflavones and developed a simplified, sensitive, non-enzymatic, and sulfatases-free extraction methodology. We have …


Epichaperome Inhibition Targets Tp53-Mutant Aml And Aml Stem/Progenitor Cells, Bing Z Carter, Po Yee Mak, Muharrem Muftuoglu, Wenjing Tao, Baozhen Ke, Jingqi Pei, Andrea D Bedoy, Lauren B Ostermann, Yuki Nishida, Sevinj Isgandarova, Mary Sobieski, Nghi Nguyen, Reid T Powell, Margarita Martinez-Moczygemba, Clifford Stephan, Mahesh Basyal, Naveen Pemmaraju, Steffen Boettcher, Benjamin L Ebert, Elizabeth J Shpall, Barbara Wallner, Robert A Morgan, Georgios I Karras, Ute M Moll, Michael Andreeff Sep 2023

Epichaperome Inhibition Targets Tp53-Mutant Aml And Aml Stem/Progenitor Cells, Bing Z Carter, Po Yee Mak, Muharrem Muftuoglu, Wenjing Tao, Baozhen Ke, Jingqi Pei, Andrea D Bedoy, Lauren B Ostermann, Yuki Nishida, Sevinj Isgandarova, Mary Sobieski, Nghi Nguyen, Reid T Powell, Margarita Martinez-Moczygemba, Clifford Stephan, Mahesh Basyal, Naveen Pemmaraju, Steffen Boettcher, Benjamin L Ebert, Elizabeth J Shpall, Barbara Wallner, Robert A Morgan, Georgios I Karras, Ute M Moll, Michael Andreeff

Faculty, Staff and Student Publications

TP 53-mutant acute myeloid leukemia (AML) remains the ultimate therapeutic challenge. Epichaperomes, formed in malignant cells, consist of heat shock protein 90 (HSP90) and associated proteins that support the maturation, activity, and stability of oncogenic kinases and transcription factors including mutant p53. High-throughput drug screening identified HSP90 inhibitors as top hits in isogenic TP53-wild-type (WT) and -mutant AML cells. We detected epichaperomes in AML cells and stem/progenitor cells with TP53 mutations but not in healthy bone marrow (BM) cells. Hence, we investigated the therapeutic potential of specifically targeting epichaperomes with PU-H71 in TP53-mutant AML based on its preferred binding to …


Boosting Glycolysis To Combat Fragile Bone In Type 1 Diabetes, Zixue Jin, Brendan Lee Sep 2023

Boosting Glycolysis To Combat Fragile Bone In Type 1 Diabetes, Zixue Jin, Brendan Lee

Faculty, Staff and Students Publications

Individuals with type 1 diabetes (T1D) have an increased risk of osteoporosis and fracture. In this issue of Cell Chemical Biology, Ji et al.1 show that impaired glucose metabolism in the bone-forming osteoblast drives diabetic osteoporosis in Akita mice, a mouse model of T1D.


Epicutaneous Sensitization To The Phytocannabinoid Β-Caryophyllene Induces Pruritic Inflammation, Saadet Inan, Sara J Ward, Citlalli T Baltazar, Gabrielle A. Peruggia, Elham Javed, Ajay P. Nayak Sep 2023

Epicutaneous Sensitization To The Phytocannabinoid Β-Caryophyllene Induces Pruritic Inflammation, Saadet Inan, Sara J Ward, Citlalli T Baltazar, Gabrielle A. Peruggia, Elham Javed, Ajay P. Nayak

Center for Translational Medicine Faculty Papers

In recent years, there has been increased accessibility to cannabis for recreational and medicinal use. Incidentally, there has been an increase in reports describing allergic reactions to cannabis including exacerbation of underlying asthma. Recently, multiple protein allergens were discovered in cannabis, yet these fail to explain allergic sensitization in many patients, particularly urticaria and angioedema. Cannabis has a rich chemical profile including cannabinoids and terpenes that possess immunomodulatory potential. We examined whether major cannabinoids of cannabis such as cannabidiol (CBD) and the bicyclic sesquiterpene beta-caryophyllene (β-CP) act as contact sensitizers. The repeated topical application of mice skin with β-CP at …


Nlrp3 Selectively Drives Il-1Β Secretion By Pseudomonas Aeruginosa Infected Neutrophils And Regulates Corneal Disease Severity, Martin S Minns, Karl Liboro, Tatiane S Lima, Serena Abbondante, Brandon A Miller, Michaela E Marshall, Jolynn Tran Chau, Alicia Roistacher, Arne Rietsch, George R Dubyak, Eric Pearlman Sep 2023

Nlrp3 Selectively Drives Il-1Β Secretion By Pseudomonas Aeruginosa Infected Neutrophils And Regulates Corneal Disease Severity, Martin S Minns, Karl Liboro, Tatiane S Lima, Serena Abbondante, Brandon A Miller, Michaela E Marshall, Jolynn Tran Chau, Alicia Roistacher, Arne Rietsch, George R Dubyak, Eric Pearlman

Faculty, Staff and Student Publications

Macrophages infected with Gram-negative bacteria expressing Type III secretion system (T3SS) activate the NLRC4 inflammasome, resulting in Gasdermin D (GSDMD)-dependent, but GSDME independent IL-1β secretion and pyroptosis. Here we examine inflammasome signaling in neutrophils infected with Pseudomonas aeruginosa strain PAO1 that expresses the T3SS effectors ExoS and ExoT. IL-1β secretion by neutrophils requires the T3SS needle and translocon proteins and GSDMD. In macrophages, PAO1 and mutants lacking ExoS and ExoT (ΔexoST) require NLRC4 for IL-1β secretion. While IL-1β release from ΔexoST infected neutrophils is also NLRC4-dependent, infection with PAO1 is instead NLRP3-dependent and driven by the ADP ribosyl transferase activity …


Chronic Cough Relief By Allosteric Modulation Of P2x3 Without Taste Disturbance, Chang-Run Guo, Zhong-Zhe Zhang, Xing Zhou, Meng-Yang Sun, Tian-Tian Li, Yun-Tao Lei, Yu-Hao Gao, Qing-Quan Li, Chen-Xi Yue, Yu Gao, Yi-Yu Lin, Cui-Yun Hao, Chang-Zhu Li, Peng Cao, Michael X Zhu, Ming-Qiang Rong, Wen-Hui Wang, Ye Yu Sep 2023

Chronic Cough Relief By Allosteric Modulation Of P2x3 Without Taste Disturbance, Chang-Run Guo, Zhong-Zhe Zhang, Xing Zhou, Meng-Yang Sun, Tian-Tian Li, Yun-Tao Lei, Yu-Hao Gao, Qing-Quan Li, Chen-Xi Yue, Yu Gao, Yi-Yu Lin, Cui-Yun Hao, Chang-Zhu Li, Peng Cao, Michael X Zhu, Ming-Qiang Rong, Wen-Hui Wang, Ye Yu

Faculty, Staff and Student Publications

P2X receptors are cation channels that sense extracellular ATP. Many therapeutic candidates targeting P2X receptors have begun clinical trials or acquired approval for the treatment of refractory chronic cough (RCC) and other disorders. However, the present negative allosteric modulation of P2X receptors is primarily limited to the central pocket or the site below the left flipper domain. Here, we uncover a mechanism of allosteric regulation of P2X3 in the inner pocket of the head domain (IP-HD), and show that the antitussive effects of quercetin and PSFL2915 (our nM-affinity P2X3 inhibitor optimized based on quercetin) on male mice and guinea pigs …


Kcnq2/3 Gain-Of-Function Variants And Cell Excitability: Differential Effects In Ca1 Versus L2/3 Pyramidal Neurons, Nissi Varghese, Bruno Moscoso, Ana Chavez, Kristen Springer, Erika Ortiz, Heun Soh, Sabato Santaniello, Atul Maheshwari, Anastasios V Tzingounis Sep 2023

Kcnq2/3 Gain-Of-Function Variants And Cell Excitability: Differential Effects In Ca1 Versus L2/3 Pyramidal Neurons, Nissi Varghese, Bruno Moscoso, Ana Chavez, Kristen Springer, Erika Ortiz, Heun Soh, Sabato Santaniello, Atul Maheshwari, Anastasios V Tzingounis

Faculty, Staff and Students Publications

Gain-of-function (GOF) pathogenic variants in the potassium channels KCNQ2 and KCNQ3 lead to hyperexcitability disorders such as epilepsy and autism spectrum disorders. However, the underlying cellular mechanisms of how these variants impair forebrain function are unclear. Here, we show that the R201C variant in KCNQ2 has opposite effects on the excitability of two types of mouse pyramidal neurons of either sex, causing hyperexcitability in layer 2/3 (L2/3) pyramidal neurons and hypoexcitability in CA1 pyramidal neurons. Similarly, the homologous R231C variant in KCNQ3 leads to hyperexcitability in L2/3 pyramidal neurons and hypoexcitability in CA1 pyramidal neurons. However, the effects of KCNQ3 …


Crk And Crkl Are Required In The Endocardial Lineage For Heart Valve Development, Bingruo Wu, Brian Wu, Sonia Benkaci, Lijie Shi, Pengfei Lu, Taeju Park, Bernice E. Morrow, Yidong Wang, Bin Zhou Sep 2023

Crk And Crkl Are Required In The Endocardial Lineage For Heart Valve Development, Bingruo Wu, Brian Wu, Sonia Benkaci, Lijie Shi, Pengfei Lu, Taeju Park, Bernice E. Morrow, Yidong Wang, Bin Zhou

Manuscripts, Articles, Book Chapters and Other Papers

Background Endocardial cells are a major progenitor population that gives rise to heart valves through endocardial cushion formation by endocardial to mesenchymal transformation and the subsequent endocardial cushion remodeling. Genetic variants that affect these developmental processes can lead to congenital heart valve defects. Crk and Crkl are ubiquitously expressed genes encoding cytoplasmic adaptors essential for cell signaling. This study aims to explore the specific role of Crk and Crkl in the endocardial lineage during heart valve development. Methods and Results We deleted Crk and Crkl specifically in the endocardial lineage. The resultant heart valve morphology was evaluated by histological analysis, …


Epigenetic Induction Of Smooth Muscle Cell Phenotypic Alterations In Aortic Aneurysms And Dissections, Abhijit Chakraborty, Yanming Li, Chen Zhang, Yang Li, Kimberly R Rebello, Shengyu Li, Samantha Xu, Hernan G Vasquez, Lin Zhang, Wei Luo, Guangyu Wang, Kaifu Chen, Joseph S Coselli, Scott A Lemaire, Ying H Shen Sep 2023

Epigenetic Induction Of Smooth Muscle Cell Phenotypic Alterations In Aortic Aneurysms And Dissections, Abhijit Chakraborty, Yanming Li, Chen Zhang, Yang Li, Kimberly R Rebello, Shengyu Li, Samantha Xu, Hernan G Vasquez, Lin Zhang, Wei Luo, Guangyu Wang, Kaifu Chen, Joseph S Coselli, Scott A Lemaire, Ying H Shen

Faculty, Staff and Students Publications

BACKGROUND: Smooth muscle cell (SMC) phenotypic switching has been increasingly detected in aortic aneurysm and dissection (AAD) tissues. However, the diverse SMC phenotypes in AAD tissues and the mechanisms driving SMC phenotypic alterations remain to be identified.

METHODS: We examined the transcriptomic and epigenomic dynamics of aortic SMC phenotypic changes in mice with angiotensin II-induced AAD by using single-cell RNA sequencing and single-cell sequencing assay for transposase-accessible chromatin. SMC phenotypic alteration in aortas from patients with ascending thoracic AAD was examined by using single-cell RNA sequencing analysis.

RESULTS: Single-cell RNA sequencing analysis revealed that aortic stress induced the transition of …


A Universal Method For Generating Knockout Mice In Multiple Genetic Backgrounds Using Zygote Electroporation., Tomohiro Tamari, Yoshihisa Ikeda, Kento Morimoto, Keiko Kobayashi, Saori Mizuno-Iijima, Shinya Ayabe, Akihiro Kuno, Seiya Mizuno, Atsushi Yoshiki Sep 2023

A Universal Method For Generating Knockout Mice In Multiple Genetic Backgrounds Using Zygote Electroporation., Tomohiro Tamari, Yoshihisa Ikeda, Kento Morimoto, Keiko Kobayashi, Saori Mizuno-Iijima, Shinya Ayabe, Akihiro Kuno, Seiya Mizuno, Atsushi Yoshiki

Faculty Research 2023

Genetically engineered mouse models are essential tools for understanding mammalian gene functions and disease pathogenesis. Genome editing allows the generation of these models in multiple inbred strains of mice without backcrossing. Zygote electroporation dramatically removed the barrier for introducing the CRISPR-Cas9 complex in terms of cost and labour. Here, we demonstrate that the generalised zygote electroporation method is also effective for generating knockout mice in multiple inbred strains. By combining in vitro fertilisation and electroporation, we obtained founders for knockout alleles in eight common inbred strains. Long-read sequencing analysis detected not only intended mutant alleles but also differences in read …


Protocol For Expression Of Murine Milk Using Modified Human Breast Pump Parts, Cydney Meyer, Joseph L Alcorn Sep 2023

Protocol For Expression Of Murine Milk Using Modified Human Breast Pump Parts, Cydney Meyer, Joseph L Alcorn

Faculty, Staff and Student Publications

Understanding the nutritional and immunomodulatory components of breast milk is crucial to developing novel mechanisms to optimize neonatal health. Here, we present a protocol to express and isolate murine milk in sufficient quantities for further analysis of components and bioactivity. We describe steps for separating dams from pups, administering intraperitoneal anesthetic and oxytocin, and expressing milk using a minimally modified and readily available commercial breast pump parts. For complete details on the use and execution of this protocol, please refer to Meyer et al. (2022).


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 Sep 2023

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 Sep 2023

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 Sep 2023

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 Sep 2023

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 Sep 2023

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 Sep 2023

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 …