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Articles 91 - 120 of 10753
Full-Text Articles in Entire DC Network
Histone Deacetylase Enzyme Activity Is Not The Universal Anticancer Target Of Hdac Inhibitors, Chaitra Rai, Hang Ruan, Xue Li, Wenbo Li, Hyun-Hwan Jeong, Chengchuang Song, Panpan Liu, Yingjie Chang, Hao Fang, Udhaya Kumar S, Yuxiang Sun, M James You, Dongyin Guan, Zhandong Liu, Leng Han, Xuben Hou, Zheng Sun
Histone Deacetylase Enzyme Activity Is Not The Universal Anticancer Target Of Hdac Inhibitors, Chaitra Rai, Hang Ruan, Xue Li, Wenbo Li, Hyun-Hwan Jeong, Chengchuang Song, Panpan Liu, Yingjie Chang, Hao Fang, Udhaya Kumar S, Yuxiang Sun, M James You, Dongyin Guan, Zhandong Liu, Leng Han, Xuben Hou, Zheng Sun
Faculty, Staff and Students Publications
Histone deacetylase inhibitors (HDIs) are approved for treating hematologic cancers and are currently being evaluated in hundreds of clinical trials for various cancers and other diseases, although their mechanisms of action remain poorly understood. Here, our unbiased bioinformatics analyses found that, for most cancer types, expression levels or genetic variants of histone deacetylase (HDACs) do not consistently correlate with carcinogenesis, do not predict cancer patient survival, and do not associate with cellular responses to HDIs. Whole-genome CRISPR library screens did not identify HDACs as genes affecting cellular responses to HDIs. Overexpression of dominant-negative Class I HDACs causes similar protein hyperacetylation …
Loss Of Mct1 Mediated Lactate Uptake Causes Delayed Endplate Maturation And Intervertebral Disc Degeneration, Maria Tsingas, Konstantinos Tsingas, Mei Smyers, Wujuan Zhang, Aaron R. Goldman, Eulisa Lawrence, John A. Collins, Makarand V. Risbud
Loss Of Mct1 Mediated Lactate Uptake Causes Delayed Endplate Maturation And Intervertebral Disc Degeneration, Maria Tsingas, Konstantinos Tsingas, Mei Smyers, Wujuan Zhang, Aaron R. Goldman, Eulisa Lawrence, John A. Collins, Makarand V. Risbud
Department of Orthopaedic Surgery Faculty Papers
During skeletal growth, it is thought that the lactate secreted by the glycolytic nucleus pulposus (NP) cells exits the intervertebral disc into circulation via endplates. Our current studies challenge this long-held notion. Mice with early postnatal, endplate, and annulus fibrosus-specific deletion of lactate importer, MCT1, exhibited disc degeneration characterized by NP cell loss and pronounced endplate structural changes. Using metabolic and transcriptomic approaches, we demonstrate that MCT1 loss inhibits endplate chondrocyte differentiation and that lactate serves both as a crucial TCA metabolite and promotes protein and histone lactylation and gene expression. These findings suggest that during skeletal growth, NP-derived lactate …
Transgenic Hookworm Secretes Anti-Tetrodotoxin Human Single Chain Antibody, Kumar Sachin Singh, Suman Bharti, Bruce A Rosa, Mahdiyeh Bigham, Samuel C Uzoechi, Young-Jun Choi, John C Martin, Danielle Kemper, Slavica Pavlovic Djuranovic, Darren A Pickering, Rachael Ryan, Bethany K Bracken, Maria Elena Bottazzi, Eric C Carnes, Wannaporn Ittiprasert, Matthew Moyle, Paul J Brindley, Alex Loukas, Sergej Djuranovic, Makedonka Mitreva
Transgenic Hookworm Secretes Anti-Tetrodotoxin Human Single Chain Antibody, Kumar Sachin Singh, Suman Bharti, Bruce A Rosa, Mahdiyeh Bigham, Samuel C Uzoechi, Young-Jun Choi, John C Martin, Danielle Kemper, Slavica Pavlovic Djuranovic, Darren A Pickering, Rachael Ryan, Bethany K Bracken, Maria Elena Bottazzi, Eric C Carnes, Wannaporn Ittiprasert, Matthew Moyle, Paul J Brindley, Alex Loukas, Sergej Djuranovic, Makedonka Mitreva
Faculty, Staff and Students Publications
Biologics, protein- and peptide-based drugs derived from living organisms or cell lines have emerged as effective therapies across a broad range of indications. However, parenteral administration and the need for frequent dosing increase costs and limit compliance, creating an urgent need for innovative platforms capable of continuously, safely, and efficiently delivering sustained biologics in situ within the host. Here, we describe a bioengineered hookworm platform to manufacture and deliver biologic therapeutics in vivo. As proof of concept, we engineer the Ancylostoma ceylanicum secretome by inserting a human single-chain variable fragment antibody (s16-HuScFv) into its genome. Transgene expression does not perturb …
Cytosine Base Editing Of Lpa In Transgenic Mice Averts Large Deletions, Marcel A Chuecos, So Hyun Park, Madhvi M Bhakta, Usosa Too-Chiobi, Daniel Betancourth, Mingming Cao, Marco De Giorgi, Christopher J Walkey, Anjana Tiwari, Biana Godin, Julia M Assini, Donna J Palmer, Philip Ng, Michael B Boffa, Marlys L Koschinsky, Gang Bao, William R Lagor
Cytosine Base Editing Of Lpa In Transgenic Mice Averts Large Deletions, Marcel A Chuecos, So Hyun Park, Madhvi M Bhakta, Usosa Too-Chiobi, Daniel Betancourth, Mingming Cao, Marco De Giorgi, Christopher J Walkey, Anjana Tiwari, Biana Godin, Julia M Assini, Donna J Palmer, Philip Ng, Michael B Boffa, Marlys L Koschinsky, Gang Bao, William R Lagor
Faculty, Staff and Students Publications
Lipoprotein(a) (Lp(a)) is a genetically determined causal risk factor for cardiovascular disease, with approximately 20% of the population exhibiting elevated levels. While there are promising drugs in development, there are currently no approved therapies specifically designed to lower Lp(a) levels. For high-risk individuals with extreme levels of Lp(a), liver-directed genome editing could be an effective one-time solution. Genome editing approaches such as CRISPR and TALENs can reduce Lp(a) in LPA-transgenic mouse models, but they frequently induce large and potentially harmful genomic deletions. Here, we report the first application of TadA-derived cytosine base editing (CBE), delivered via helper-dependent adenovirus (HDAdV) and …
Garlic-Derived Metabolite Activates Lkb1, Promotes Adipose Enampt Secretion, And Improves Age-Related Muscle Function Via Hypothalamic Signaling, Jun-Ichiro Suzuki, Kiyoshi Yoshioka, Masahiro Kurita, Takumi Sugimoto, Takahiro Eguchi, Naoki Ito, Aoi Kodama, Yasutomi Kamei, Masahiro Ohtani, Toshiaki Matsutomo, Shin-Ichiro Imai
Garlic-Derived Metabolite Activates Lkb1, Promotes Adipose Enampt Secretion, And Improves Age-Related Muscle Function Via Hypothalamic Signaling, Jun-Ichiro Suzuki, Kiyoshi Yoshioka, Masahiro Kurita, Takumi Sugimoto, Takahiro Eguchi, Naoki Ito, Aoi Kodama, Yasutomi Kamei, Masahiro Ohtani, Toshiaki Matsutomo, Shin-Ichiro Imai
2020-Current year OA Pubs
Garlic (Allium sativum L.) and its aged extract contain many bioactive compounds that can bring health benefits to humans. Among them, S-1-propenyl-L-cysteine (S1PC) has recently drawn significant attention in the field of nutriceutical research. However, the mechanism of its molecular action has remained poorly understood. Here, we show that S1PC significantly activates liver kinase B1 (LKB1) through enhancing its tertiary complex formation with STRAD and MO25, leading to stimulating the phosphorylation of a mammalian NAD
Understanding The Contribution Of Toxicant Exposures To Alzheimer's Disease And Related Dementias., Gareth R Howell, Paul R Territo, David Aylor, Lee E Goldstein
Understanding The Contribution Of Toxicant Exposures To Alzheimer's Disease And Related Dementias., Gareth R Howell, Paul R Territo, David Aylor, Lee E Goldstein
Faculty Research 2026
Alzheimer's disease and related dementias (AD/ADRD) are modulated by gene-environment (GxE) interactions across the lifespan. Variants of specific genes increase AD risk and synergize with exposures to environmental toxicants ("exposome"), including neurotoxic metals and metalloids such as lead (Pb), cadmium (Cd), and arsenic (As). These neurotoxicants enter the body (via drinking water, contaminated food, and airborne particulates), transit in blood, cross the blood-brain barrier, and distribute in brain where the retained toxicant disrupts central nervous system development, structure, and function. Chronic exposure to these ubiquitous toxicants is common in disadvantaged communities, raising concerns about health risk disparities linked to geographic, …
Wayfindr: Investigating Feedback In Biological Pathways, Polina Bombina, Reginald L Mcgee Ii, Jake Reed, Zachary B Abrams, Lynne V Abruzzo, Kevin R Coombes
Wayfindr: Investigating Feedback In Biological Pathways, Polina Bombina, Reginald L Mcgee Ii, Jake Reed, Zachary B Abrams, Lynne V Abruzzo, Kevin R Coombes
2020-Current year OA Pubs
Understanding biological pathways requires more than static diagrams. We present WayFindR, an R package that converts pathway data from WikiPathways and KEGG into graph structures using igraph, enabling computational analysis of regulatory features such as negative feedback loops. Rooted in control theory, negative feedback is essential for system stability, yet it is often underrepresented in curated pathway data. In this study, we systematically analyzed pathway information from both databases across multiple species and found that feedback loops-particularly negative ones-are rarely captured. This gap likely reflects both biological and technical challenges. Biologically, feedback mechanisms are inherently complex and often remain uncharted …
Lingo4 Coordinates Ilc3-Intrinsic Il-22 Production And Microbiota-Mediated Ilc3 Homeostasis, José L Fachi, Tihana Trsan, Cristiane Sécca, Sarah De Oliveira, Vinícius R Rodovalho, Patrick Fernandes Rodrigues, Wandy L Beatty, Raki Sudan, Shitong Wu, Bishan Bhattarai, Santosh K Panda, Marina Cella, Susan Gilfillan, Marco Colonna
Lingo4 Coordinates Ilc3-Intrinsic Il-22 Production And Microbiota-Mediated Ilc3 Homeostasis, José L Fachi, Tihana Trsan, Cristiane Sécca, Sarah De Oliveira, Vinícius R Rodovalho, Patrick Fernandes Rodrigues, Wandy L Beatty, Raki Sudan, Shitong Wu, Bishan Bhattarai, Santosh K Panda, Marina Cella, Susan Gilfillan, Marco Colonna
2020-Current year OA Pubs
LINGO4 is a leucine-rich repeat and immunoglobulin-like domain-containing transmembrane protein encoded immediately adjacent to Rorc, the gene for RORγt, raising the possibility that it contributes to the biology of RORγt+ lymphocytes. However, its impact on these cells and resistance to enteric infections has remained unknown. Here, we identify LINGO4 as a critical regulator of group 3 innate lymphoid cells (ILC3s). Lingo4-/- ILC3s exhibit a profound, cell-intrinsic defect in IL-22 production linked to impaired STAT3 activation, mitochondrial dysfunction, elevated ROS, and increased apoptosis. In vivo, Lingo4 deficiency also drives a dysbiotic gut microbiota, resulting in an additional, microbiota-dependent loss of ILC3s. …
Activation Of The Human Β3 Gabaa Receptor By Combinations Of Receptor Protonation With Chemical Agonists And Gain-Of-Function Mutations, Allison L Germann, Spencer R Pierce, Joe Henry Steinbach, Gustav Akk
Activation Of The Human Β3 Gabaa Receptor By Combinations Of Receptor Protonation With Chemical Agonists And Gain-Of-Function Mutations, Allison L Germann, Spencer R Pierce, Joe Henry Steinbach, Gustav Akk
2020-Current year OA Pubs
Native GABA
Quantitative Assessment Of Cardiac Phosphocreatine Metabolism Under Physiological And Pharmacological Stress Using Chemical Exchange Saturation Transfer Magnetic Resonance Imaging, Qi Huang, Caleb Berberet, Ryan Wahidi, Todd Pavek, Cihat Eldeniz, Liya Dai, Rong Guo, Yang Yang, Scott Bugenhagen, Linda R Peterson, Thomas H Schindler, Pamela K Woodard, Jie Zheng
Quantitative Assessment Of Cardiac Phosphocreatine Metabolism Under Physiological And Pharmacological Stress Using Chemical Exchange Saturation Transfer Magnetic Resonance Imaging, Qi Huang, Caleb Berberet, Ryan Wahidi, Todd Pavek, Cihat Eldeniz, Liya Dai, Rong Guo, Yang Yang, Scott Bugenhagen, Linda R Peterson, Thomas H Schindler, Pamela K Woodard, Jie Zheng
2020-Current year OA Pubs
BACKGROUND: Phosphocreatine (PCr) exhibits a distinct chemical exchange saturation transfer (CEST) resonance at ∼2.5 ppm with slower exchange kinetics and lower pH sensitivity than creatine. This pilot study evaluated the feasibility of quantifying myocardial PCr-dominated concentration ([PCr]
METHODS: Phantoms with varied concentrations of PCr and Cr were scanned to characterize PCr CEST signals under physiological conditions. Experiments were conducted at both room temperature and 37 °C with full Z-spectra acquisition. For the study in vivo, CEST imaging was performed in normal canines (n = 13), at rest and after regadenoson vasodilation, and during dobutamine stress (n = 5). In addition, …
Neural Plasticity Across Hormonal States In Females: From Modulator To Dynamic Regulator, Takahiro Sasaki, Christine Nwaigwe, Sayaka Inoue
Neural Plasticity Across Hormonal States In Females: From Modulator To Dynamic Regulator, Takahiro Sasaki, Christine Nwaigwe, Sayaka Inoue
2020-Current year OA Pubs
Ovarian sex steroid hormones play a critical role in regulating fertility. In addition, these hormones influence behavior and mood across the lifespan in females. Converging evidence from rodent studies and human neuroimaging shows that ovarian hormones dynamically regulate neuronal excitability, synaptic efficacy, and structural remodeling across menstrual/estrous cycles, puberty, and reproductive aging. Estrogen and progesterone reorganize network dynamics and gate plasticity eligibility rather than uniformly scaling synaptic strength, with additional contributions from glia, the extracellular matrix, and neurosteroid signaling. Here we synthesize recent cross-scale advances that link structural and functional changes to cellular and circuit mechanisms, and relate these dynamics …
Role Of Households With Children In Community Spread Of Multidrug-Resistant Enterobacterales, St. Louis, Missouri, Usa, Barrett Breeze, Ahmed Babiker, Sreenivas Konda, Alaina L Robinson, Stefan J Green, Catherine C Babbs, Federico Cunha, Katherine Y Shen, India Shepherd Hammond, Stephanie A Fritz, Latania K Logan
Role Of Households With Children In Community Spread Of Multidrug-Resistant Enterobacterales, St. Louis, Missouri, Usa, Barrett Breeze, Ahmed Babiker, Sreenivas Konda, Alaina L Robinson, Stefan J Green, Catherine C Babbs, Federico Cunha, Katherine Y Shen, India Shepherd Hammond, Stephanie A Fritz, Latania K Logan
2020-Current year OA Pubs
Community-acquired multidrug-resistant (MDR) Enterobacterales bacteria are an increasing public health concern, yet whether households play a role in community spread remains unclear. We investigated 150 households with children in St. Louis, Missouri, USA, for MDR Enterobacterales. We cultured swab specimens from household members and environmental surfaces for identification and antimicrobial susceptibility testing. We also performed whole-genome sequencing in the 53 (35%) households where >1 MDR Enterobacterales species were recovered. Enterobacter hormaechei predominated, followed by Klebsiella pneumoniae and Pantoea species. Whole-genome sequencing revealed closely related strains shared between persons and environmental surfaces, suggesting potential intra-household transmission. We identified >1 horizontal gene …
Rapid Antidepressant Potential Of Nitrous Oxide: Current State And Major Questions, Charles F Zorumski, Joseph Cichon, Yukitoshi Izumi, Thomas Zeffiro, Steven Mennerick, Peter Nagele, Charles R Conway
Rapid Antidepressant Potential Of Nitrous Oxide: Current State And Major Questions, Charles F Zorumski, Joseph Cichon, Yukitoshi Izumi, Thomas Zeffiro, Steven Mennerick, Peter Nagele, Charles R Conway
2020-Current year OA Pubs
The success of ketamine, a dissociative anesthetic and non-competitive N-methyl-D-aspartate receptor (NMDAR) antagonist, as a rapidly acting antidepressant has ignited efforts to identify other novel depression treatments. In recent years, several clinical trials indicated that nitrous oxide (N
An Obligatory Role For Agrp Neurons In Maintaining Body Temperature During Time-Restricted Feeding, Cunjin Su, Jing Cai, Yuanzhong Xu, Benjamin R Arenkiel, Qingchun Tong
An Obligatory Role For Agrp Neurons In Maintaining Body Temperature During Time-Restricted Feeding, Cunjin Su, Jing Cai, Yuanzhong Xu, Benjamin R Arenkiel, Qingchun Tong
The Brown Foundation: Institute of Molecular Medicine
Homeotherms maintain a steady body temperature through thermoregulation, a process critical for survival during fasting, in which the brain has to defend energy-costly body temperature while reducing energy expenditure to conserve energy reserve; however, the neural basis for defending body temperature remains unclear. Here, we demonstrated that AgRP neuron lesion led to lethality during time-restricted feeding on chow but not on HFD, and caused no obvious impact on HFD-induced obesity or obesity-reducing responses to glucagon-like peptide-1 receptor agonism. The lesion disrupted adaptive feeding behaviors during time-restricted feeding and reduced motivational feeding on chow. Notably, the lethality was caused by hypothermia …
Cytosignal Detects Locations And Dynamics Of Ligand-Receptor Signaling At Cellular Resolution From Spatial Transcriptomic Data, Jialin Liu, Hiroaki Manabe, Weizhou Qian, Shion Orikasa, Javid Ghaemmaghami, Yichen Wang, Yichen Gu, Angel Ka Yan Chu, Gaurav Gadhvi, Yuxuan Song, Patrick Mcclinden, Vibha N Lama, Noriaki Ono, Joshua D Welch
Cytosignal Detects Locations And Dynamics Of Ligand-Receptor Signaling At Cellular Resolution From Spatial Transcriptomic Data, Jialin Liu, Hiroaki Manabe, Weizhou Qian, Shion Orikasa, Javid Ghaemmaghami, Yichen Wang, Yichen Gu, Angel Ka Yan Chu, Gaurav Gadhvi, Yuxuan Song, Patrick Mcclinden, Vibha N Lama, Noriaki Ono, Joshua D Welch
Faculty, Staff and Student Publications
Cells communicate through ligand-receptor (LR) signaling interactions, but identifying when and where these interactions are active remains challenging. We developed CytoSignal to infer the locations and dynamics of cell-cell communication at cellular resolution from spatial transcriptomic data. Here we show that our cellular resolution, spatially resolved signaling scores enable several important analyses-identifying spatial gradients in signaling strength, quantifying the locations of contact-dependent and diffusible interactions, detecting signaling-associated genes and identifying differential signaling across multisample data. Additionally, we can predict the temporal dynamics of a signaling interaction at each spatial location. We experimentally validate our results in situ by proximity ligation …
Corneal Innervation Research At A Crossroads: A Tool-Driven Roadmap For The Future, Anna Matynia, Ian D Meng, Brian M Davis, Stephen C Pflugfelder, Anat Galor, Victor L Perez, Elizabeth R Felix, Pedram Hamrah, Pantelimon Rompolas, Raul E Ruiz-Lozano, Shamsuddin A Bhuiyan, Kaveh Moghbeli, Evangelia Semizoglou, William Renthal, Harinder Singh, Jishnu Das, Marcin Golczak, Mary Ann Stepp, Catherine W Morgans, Cintia S De Paiva, Carl Y Saab, Igor Spigelman, Rony R Sayegh, Tally M Largent-Milnes, Hao Wu, Wenqin Luo, Sreya Mitra, Heesuk Yoo, Sina Farsiu, Sejiro Littleton, Eden Jacob, Matthew T Mcpheeters, Maryse Lapierre-Landry, Jordan J Smith, Xi Wang, Roxana Florea, Made Airanthi K Widjaja-Adhi, Scott Holmes, Zane Zemborain, Kate E T Laise, Nicholas J Pondelis, Ki-Soo Jeong, Rui Chen, Michael W Jenkins, Vivian Lee, Eric A Moulton, Deborah S Jacobs, Sue A Aicher, Anthony J St Leger, Daniel R Saban
Corneal Innervation Research At A Crossroads: A Tool-Driven Roadmap For The Future, Anna Matynia, Ian D Meng, Brian M Davis, Stephen C Pflugfelder, Anat Galor, Victor L Perez, Elizabeth R Felix, Pedram Hamrah, Pantelimon Rompolas, Raul E Ruiz-Lozano, Shamsuddin A Bhuiyan, Kaveh Moghbeli, Evangelia Semizoglou, William Renthal, Harinder Singh, Jishnu Das, Marcin Golczak, Mary Ann Stepp, Catherine W Morgans, Cintia S De Paiva, Carl Y Saab, Igor Spigelman, Rony R Sayegh, Tally M Largent-Milnes, Hao Wu, Wenqin Luo, Sreya Mitra, Heesuk Yoo, Sina Farsiu, Sejiro Littleton, Eden Jacob, Matthew T Mcpheeters, Maryse Lapierre-Landry, Jordan J Smith, Xi Wang, Roxana Florea, Made Airanthi K Widjaja-Adhi, Scott Holmes, Zane Zemborain, Kate E T Laise, Nicholas J Pondelis, Ki-Soo Jeong, Rui Chen, Michael W Jenkins, Vivian Lee, Eric A Moulton, Deborah S Jacobs, Sue A Aicher, Anthony J St Leger, Daniel R Saban
Faculty, Staff and Students Publications
Corneal innervation research has faced long-standing clinical challenges that only recent technological breakthroughs now make tractable. Advances in single-cell analysis, viral vectors, clinical imaging, and artificial intelligence provide integrated approaches for uncovering molecular mechanisms underlying functional outcomes and facilitating clinical applications. The National Eye Institute's U01-funded consortium on ocular surface innervation addresses major knowledge gaps in characterizing corneal-projecting neurons, understanding neuroimmune and epithelial interactions in the cornea, and translating animal model findings to human pathology. The unique properties of the cornea (transparent, avascular, and densely innervated) make it ideal for neurobiology research on peripheral and central sensory processing. Through a …
Identification Of A Persistent Ascaris-Derived Kalirin Epitope Associated With Chronic T Cell Activation In The Lung, Yifan Wu, Leroy Versteeg, Meng-Chih Wu, Jill E Weatherhead
Identification Of A Persistent Ascaris-Derived Kalirin Epitope Associated With Chronic T Cell Activation In The Lung, Yifan Wu, Leroy Versteeg, Meng-Chih Wu, Jill E Weatherhead
Faculty, Staff and Students Publications
Ascariasis remains a dominant global health burden due to its vast prevalence and associated morbidity. The obligatory migration of Ascaris larvae through pulmonary tissue triggers intense type-2 inflammation which typically presents as acute allergic airway disease. Even after the parasite is eliminated, a single episode of larval migration can result in chronic lung damage and dysfunction, which may be driven by the long-term retention of helminth antigens in macrophages. However, the molecular identity of these retained antigens, and the mechanisms by which they sustain chronic T cell responses, remain unknown. In this study, we utilized immunopeptidomics to identify a retained …
Steroid Receptor Coactivators In Immunity – From Function To Emerging Translational Opportunities, Yosef Gilad, David M Lonard
Steroid Receptor Coactivators In Immunity – From Function To Emerging Translational Opportunities, Yosef Gilad, David M Lonard
Faculty, Staff and Students Publications
Steroid Receptor Coactivators (SRCs) comprise a family of three paralogous proteins. As transcriptional coactivators SRCs are essential for enabling the full transcriptional output of nuclear receptors (NRs). They regulate the transcriptional activity of nearly all NRs as well as a wide range of non-NR transcription factors. The central role of SRCs in gene regulation is reflected in their broad impact on major physiological and pathological processes, such as development, reproduction, metabolism, immunity and cancer. Although the major impact of SRCs on human health and disease established them as attractive therapeutic targets, their effective pharmacological targeting remained a challenge for nearly …
Generation And Characterization Of Twist1 Acetyl-Mimic And Acetyl-Deficient Mouse Models, Mary Elmeniawi, Xiaobin Yu, Samuel Wen, Gunjan A Bhatia, Lan Liao, Jianming Xu, Walid D Fakhouri
Generation And Characterization Of Twist1 Acetyl-Mimic And Acetyl-Deficient Mouse Models, Mary Elmeniawi, Xiaobin Yu, Samuel Wen, Gunjan A Bhatia, Lan Liao, Jianming Xu, Walid D Fakhouri
Faculty, Staff and Students Publications
TWIST1 encodes a highly conserved basic helix–loop–helix transcription factor essential for embryonic development from Drosophila to humans. TWIST1 activity is regulated by post‐translational modifications, including phosphorylation during development and cancer metastasis. Recent cancer studies identified acetylation of lysines K73 and K76 as a novel regulatory modification that shifts TWIST1 from a repressive to an activating state during epithelial‐to‐mesenchymal transition (EMT). However, the developmental and in vivo functions of TWIST1 acetylation remain unknown. To investigate the physiological role, we generated the first acetyl‐deficient Twist1 K73,76R K73,76R and acetyl‐mimic Twist1 K73,76Q K73,76Q mouse models using CRISPR/Cas9‐mediated genome editing. Targeted sequencing confirmed substitutions, …
Systems Genetic Dissection Of Brain Gene Expression Reveals Excitotoxic Mechanisms Of Alzheimer’S Disease, Pinghan Zhao, Omar El Fadel, Anh Le, Carl Grant Mangleburg, Justin Dhindsa, Timothy Wu, Jinghan Zhao, Meichen Huang, Bismark Amoh, Aditi Sai Marella, Yarong Li, Nicholas T Seyfried, Allan I Levey, Zhandong Liu, Ismael Al-Ramahi, Juan Botas, Joshua M Shulman
Systems Genetic Dissection Of Brain Gene Expression Reveals Excitotoxic Mechanisms Of Alzheimer’S Disease, Pinghan Zhao, Omar El Fadel, Anh Le, Carl Grant Mangleburg, Justin Dhindsa, Timothy Wu, Jinghan Zhao, Meichen Huang, Bismark Amoh, Aditi Sai Marella, Yarong Li, Nicholas T Seyfried, Allan I Levey, Zhandong Liu, Ismael Al-Ramahi, Juan Botas, Joshua M Shulman
Faculty, Staff and Students Publications
Gene expression changes likely mediate the impact of Alzheimer's disease (AD) neuropathology on cognition, but there are challenges to resolve the proximal causal pathways from postmortem brain transcriptome profiles which lack temporal resolution and are further confounded by mixed pathologies. Here, we functionally dissect 30 AD-associated human brain gene co-expression modules using fruit fly (Drosophila melanogaster) models. Integrating longitudinal RNA-sequencing and behavioral phenotyping, we interrogated the consequences of amyloid beta (Aβ) plaques, tau neurofibrillary tangles, and aging, highlighting hundreds of conserved, differentially expressed genes. To pinpoint causal modules and drivers, we manipulated 344 prioritized targets in vivo, identifying 141 modifiers …
Comprehensive Proteogenomic Characterization Reveals Clinically Relevant Molecular Subtypes Associated With Medulloblastoma Progression, Seong-Min Park, Kyung-Hee Kim, Jong Hyuk Yoon, Fulvio D'Angelo, Seung Ah Choi, Chan Il Kim, Harim Koo, Seungmin Park, Hyondeog Kim, Sreeja Sundara Raj, Sung Soo Kim, Ae Kyung Park, Eun Jung Koh, Seong-Ik Kim, Yu-Mi Shim, Lee Kwang-Hoon, Eric Eunshik Kim, Ji Hoon Phi, Yeon Suk Jo, Do Hyun Nam, Daehee Hwang, Do Young Hyeon, Sunghyun Huh, Hyung Joon Kwon, Seokjun Ha, Sanha Park, Hyeji Shin, Jeong Taik Kwon, Heon Yoo, Ho-Shin Gwak, Michael D Taylor, Bong Jin Park, Jason K Sa, Youngwook Kim, Antonio Iavarone, Sung-Hye Park, Seung-Ki Kim, Jong Bae Park
Comprehensive Proteogenomic Characterization Reveals Clinically Relevant Molecular Subtypes Associated With Medulloblastoma Progression, Seong-Min Park, Kyung-Hee Kim, Jong Hyuk Yoon, Fulvio D'Angelo, Seung Ah Choi, Chan Il Kim, Harim Koo, Seungmin Park, Hyondeog Kim, Sreeja Sundara Raj, Sung Soo Kim, Ae Kyung Park, Eun Jung Koh, Seong-Ik Kim, Yu-Mi Shim, Lee Kwang-Hoon, Eric Eunshik Kim, Ji Hoon Phi, Yeon Suk Jo, Do Hyun Nam, Daehee Hwang, Do Young Hyeon, Sunghyun Huh, Hyung Joon Kwon, Seokjun Ha, Sanha Park, Hyeji Shin, Jeong Taik Kwon, Heon Yoo, Ho-Shin Gwak, Michael D Taylor, Bong Jin Park, Jason K Sa, Youngwook Kim, Antonio Iavarone, Sung-Hye Park, Seung-Ki Kim, Jong Bae Park
Faculty, Staff and Students Publications
Current treatment strategies for medulloblastoma remain ineffective owing to extensive tumor heterogeneity. We generated five platforms of omics data including liquid chromatography and mass spectrometry-based proteome and performed integrated multi-omic characterization to improve the conventional molecular classification of medulloblastoma. We identified seven refined distinct subtypes. The sonic hedgehog (SHH) group was reclassified into two subgroups, SHHα and SHHβ, whereas group 4 was divided into three subgroups, G4α, G4β, and G4γ. SHH and group 4 subtypes exhibit two distinct neuronal differentiation trajectories: granular neuron and unipolar brush cell differentiation (SHHβ and G4γ, respectively), both of which associated with more favorable clinical …
Non-Isolated Dandy-Walker Malformation: Exome Sequencing Efficacy And Phenotypic Expansions, Sarah Araji, Xiaonan Zhao, Jill A Rosenfeld, Seema R Lalani, Daryl A Scott
Non-Isolated Dandy-Walker Malformation: Exome Sequencing Efficacy And Phenotypic Expansions, Sarah Araji, Xiaonan Zhao, Jill A Rosenfeld, Seema R Lalani, Daryl A Scott
Faculty, Staff and Students Publications
Dandy-Walker malformation (DWM) is a rare congenital abnormality of the posterior fossa and the cerebellum and has an incidence of 1 in 10 000 to 30 000 births. Although DWM can present in isolation, it is often associated with other central nervous system (CNS) abnormalities or extra-CNS anomalies (DWM+). A molecular cause is not identified in the majority of individuals with DWM+. This is due, in part, to uncertainty regarding optimal testing strategies and an incomplete understanding of the genetic causes of DWM+. In this study, we analyzed clinical exome sequencing (cES) data from 91 individuals with DWM+ to determine …
Structural Determinants Of Ligand Response Specificity In The Mast Cell Activating Gpcr, Mrgprx2, Abiodun Adefola R Adeosun, Melina A Agosto, Olivier Lichtarge, Theodore G Wensel
Structural Determinants Of Ligand Response Specificity In The Mast Cell Activating Gpcr, Mrgprx2, Abiodun Adefola R Adeosun, Melina A Agosto, Olivier Lichtarge, Theodore G Wensel
Faculty, Staff and Students Publications
The mast cell-specific G-protein-coupled receptor (GPCR) MRGPRX2 (Mas-Related G Protein-coupled Receptor X2) has roles in itch and pain, and it mediates clinically relevant allergy-like responses to a diverse assortment of drugs. The varied responses of individuals to MRGPRX2 agonists, leading to drug hypersensitivity reactions in some cases, suggests the presence of consequential variants in the population. However, genetic associations with drug responses are poorly understood. We used heterologously-expressed MRGPRX2 to investigate the effect of 18 naturally occurring non-synonymous single nucleotide polymorphisms on activation by representative compounds from several classes, including neuropeptides, opioid agonists, antibiotics, neuromuscular blocking agents, and polycationic aromatic …
Unbiased Niche Labeling Maps Immune-Excluded Niche In Bone Metastasis, Zhan Xu, Fengshuo Liu, Yunfeng Ding, Tianhong Pan, Yi-Hsuan Wu, Yujiao Han, Jun Liu, Igor L Bado, Weijie Zhang, Ling Wu, Yang Gao, Xiaoxin Hao, Liqun Yu, Xuan Li, David G Edwards, Hilda L Chan, Sergio Aguirre, Michael Warren Dieffenbach, Elina Chen, Siyue Wang, Yichao Shen, Dane Hoffman, Luis Becerra Dominguez, Charlotte Helena Rivas, Xiang Chen, Hai Wang, Yibin Kang, Zbigniew Gugala, Robert L Satcher, Xiang H-F Zhang
Unbiased Niche Labeling Maps Immune-Excluded Niche In Bone Metastasis, Zhan Xu, Fengshuo Liu, Yunfeng Ding, Tianhong Pan, Yi-Hsuan Wu, Yujiao Han, Jun Liu, Igor L Bado, Weijie Zhang, Ling Wu, Yang Gao, Xiaoxin Hao, Liqun Yu, Xuan Li, David G Edwards, Hilda L Chan, Sergio Aguirre, Michael Warren Dieffenbach, Elina Chen, Siyue Wang, Yichao Shen, Dane Hoffman, Luis Becerra Dominguez, Charlotte Helena Rivas, Xiang Chen, Hai Wang, Yibin Kang, Zbigniew Gugala, Robert L Satcher, Xiang H-F Zhang
Faculty, Staff and Students Publications
Metastatic cancer cell fate is shaped by the local microenvironment niches. To unbiasedly define the cellular and molecular features of metastatic niches, we developed sortase A-based microenvironment niche tagging (SAMENT), which selectively labels cells encountered by cancer cells during metastasis. Applying SAMENT across multiple cancer models and target organs revealed shared niche features, including macrophage enrichment and T cell depletion, alongside marked organ-specific phenotype heterogeneity in niche macrophages. In bone, metastatic niches are enriched for macrophages expressing estrogen receptor alpha (ERα) with active ERα signaling. Conditional deletion of Esr1 in macrophages significantly impaired bone colonization by enabling T cell infiltration. …
Development Of A Second-Generation Rarα Selective Antagonist As An Orally Bioavailable, Effective, Safe, And Reversible Male Contraceptive, Rui Shi, Kristen John, Xuan Qin, Ehfazul Haque, Taimeng Liang, Narsihmulu Cheryala, Feng Li, Henry L Wong, Gunda I Georg
Development Of A Second-Generation Rarα Selective Antagonist As An Orally Bioavailable, Effective, Safe, And Reversible Male Contraceptive, Rui Shi, Kristen John, Xuan Qin, Ehfazul Haque, Taimeng Liang, Narsihmulu Cheryala, Feng Li, Henry L Wong, Gunda I Georg
Faculty, Staff and Students Publications
We report the design and SAR studies of benzopyran-, benzofuran-, and benzothiophene-derived inhibitors of the retinoic acid receptor alpha (RARα) for male contraception. SAR studies identified critical features influencing activity, such as the optimal positioning of antagonism moieties and substituents, leading to the discovery of (S)-4-(5-(2,8-dimethyl-5-(p-tolyl)-2H-chromen-3-yl)-1H-pyrrol-2-yl)benzoic acid (compound 23). Compound 23 is a highly potent RARα inhibitor (IC50 = 0.051 nM) with excellent selectivity (>1650-fold over RARβ and >1960-fold over RARγ) and ADMET properties. Compound 23 is orally bioavailable and reduces sperm counts in mice for a full male contraceptive effect …
Mitochondria-Er Contact Sites (Mercs) In The Cell Cycle: Molecular Architecture And Functional Remodeling Across Cellular States, Eduardo Silva-Pavez, Bruno Torres-Gonzalez, Michelle Sotomayor, Benjamín Cartes-Saavedra, Dorian V. Ziegler, Yessia Hidalgo-Fadic, Ulises Ahumada-Castro
Mitochondria-Er Contact Sites (Mercs) In The Cell Cycle: Molecular Architecture And Functional Remodeling Across Cellular States, Eduardo Silva-Pavez, Bruno Torres-Gonzalez, Michelle Sotomayor, Benjamín Cartes-Saavedra, Dorian V. Ziegler, Yessia Hidalgo-Fadic, Ulises Ahumada-Castro
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Mitochondria–endoplasmic reticulum (ER) contact sites (MERCS) are nanoscopic, dynamic platforms integrating metabolism, signaling, and stress responses to regulate cell fate. These nanoscopic interfaces remodel continuously to meet the demands of proliferating, quiescent, and senescent cells. We synthesize evidence that MERCS actively coordinate local Ca2+ signaling, non-vesicular lipid transfer, and proteostasis to shape mitochondrial function and cellular homeostasis. We discuss how MERCS architecture changes across the cell cycle and during arrest, distinguishing adaptive from maladaptive remodeling, and consider therapeutic potential in aging and age-related disease.
Inflammaging In Aged Tissues Drives Remodeling Of The Cd8+ T Cell Compartment, Irina Shchukina, Carlos J Rodriguez-Hernandez, Heather S Ruiz, Maksim Kleverov, Rachel L Mintz, Katsutaka Mineura, Subhadra C Gunawardana, Sunnie Hsiung, Bishan Bhattarai, Veronika Vachova, Jan Kossl, Denis A Mogilenko, Rachael L Field, Tran H Nguyen, Quazim A Alayo, Christopher G Huckstep, Barbora Vander Wielen, Jonathan R Brestoff, Sheila A Stewart, David W Piston, Takeshi Egawa, Daniel Kreisel, Gwendalyn J Randolph, Maxim N Artyomov
Inflammaging In Aged Tissues Drives Remodeling Of The Cd8+ T Cell Compartment, Irina Shchukina, Carlos J Rodriguez-Hernandez, Heather S Ruiz, Maksim Kleverov, Rachel L Mintz, Katsutaka Mineura, Subhadra C Gunawardana, Sunnie Hsiung, Bishan Bhattarai, Veronika Vachova, Jan Kossl, Denis A Mogilenko, Rachael L Field, Tran H Nguyen, Quazim A Alayo, Christopher G Huckstep, Barbora Vander Wielen, Jonathan R Brestoff, Sheila A Stewart, David W Piston, Takeshi Egawa, Daniel Kreisel, Gwendalyn J Randolph, Maxim N Artyomov
2020-Current year OA Pubs
Aging strongly impacts CD8
Isg15 Negatively Regulates Ripk3-Mediated Cell Death And Viral Pathogenesis, Yi-Chieh Perng, Jessica M C Warsaw, Sachendra S Bais, Bradley E Hiller, Marissa C Locke, David J Morales-Heil, Chaoqun Li, Alissa R Young, Kristen J Monte, Robert E Schmidt, Douglas R Green, Yi-Nan Gong, Deborah J Lenschow
Isg15 Negatively Regulates Ripk3-Mediated Cell Death And Viral Pathogenesis, Yi-Chieh Perng, Jessica M C Warsaw, Sachendra S Bais, Bradley E Hiller, Marissa C Locke, David J Morales-Heil, Chaoqun Li, Alissa R Young, Kristen J Monte, Robert E Schmidt, Douglas R Green, Yi-Nan Gong, Deborah J Lenschow
2020-Current year OA Pubs
Necroptosis, a form of programmed, inflammatory necrosis, plays an important role in viral-host defense and inflammation. The receptor-interacting protein kinase 3 (RIPK3)/mixed lineage kinase domain-like pseudokinase (MLKL) pathway mediates necroptosis. Yet, the mechanisms that control necroptosis to limit immunopathology are poorly understood. Here, we report that interferon-stimulated gene 15 (ISG15) negatively regulates RIPK3-mediated cell death, including necroptosis, and limits immunopathology during chikungunya virus (CHIKV) infection. ISG15-deficient mice infected with CHIKV display increased levels of necroptosis, resulting in elevated proinflammatory cytokine and chemokine production, leading to increased lethality. This dysregulated host response is fully prevented when MLKL or RIPK3 is ablated …
Acidic Extracellular Ph-Induced Pth Secretion In Male Mouse Parathyroids Is Ogr1-Dependent, Yanmei Yang, Mengcun Chen, Mingshu Cui, Elisabeth Lashbrooks, Bin Wang
Acidic Extracellular Ph-Induced Pth Secretion In Male Mouse Parathyroids Is Ogr1-Dependent, Yanmei Yang, Mengcun Chen, Mingshu Cui, Elisabeth Lashbrooks, Bin Wang
Center for Translational Medicine Faculty Papers
The role of extracellular acidity in regulating PTH secretion in cultured mouse parathyroid glands (PTGs) has not been studied to date, largely because of the technical difficulty of isolating mouse PTGs. We hypothesized that acidic extracellular pH directly stimulates PTH secretion through activation of a proton-sensing receptor, specifically ovarian cancer G protein-coupled receptor 1 (OGR1, also known as GPR68). To test this, we developed a method to reliably identify and isolate PTGs from male mice by administering 5-aminolevulinic acid, which induced selective fluorescence in these glands. Using this model, we demonstrate that acidic extracellular pH significantly stimulates PTH secretion in …
Acidic Extracellular Ph-Induced Pth Secretion In Male Mouse Parathyroids Is Ogr1-Dependent, Yanmei Yang, Mengcun Chen, Mingshu Cui, Elisabeth Lashbrooks, Bin Wang
Acidic Extracellular Ph-Induced Pth Secretion In Male Mouse Parathyroids Is Ogr1-Dependent, Yanmei Yang, Mengcun Chen, Mingshu Cui, Elisabeth Lashbrooks, Bin Wang
Center for Translational Medicine Faculty Papers
The role of extracellular acidity in regulating PTH secretion in cultured mouse parathyroid glands (PTGs) has not been studied to date, largely because of the technical difficulty of isolating mouse PTGs. We hypothesized that acidic extracellular pH directly stimulates PTH secretion through activation of a proton-sensing receptor, specifically ovarian cancer G protein-coupled receptor 1 (OGR1, also known as GPR68). To test this, we developed a method to reliably identify and isolate PTGs from male mice by administering 5-aminolevulinic acid, which induced selective fluorescence in these glands. Using this model, we demonstrate that acidic extracellular pH significantly stimulates PTH secretion in …