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Articles 1561 - 1590 of 7166
Full-Text Articles in Entire DC Network
Therapeutic Targeting Of Differentiation-State Dependent Metabolic Vulnerabilities In Diffuse Midline Glioma., Nneka E. Mbah, Amy L. Myers, Peter Sajjakulnukit, Chan Chung, Joyce K. Thompson, Hanna S. Hong, Heather Giza, Derek Dang, Zeribe C. Nwosu, Mengrou Shan, Stefan R. Sweha, Daniella D. Maydan, Brandon Chen, Li Zhang, Brian Magnuson, Zirui Zhu, Megan Radyk, Brooke Lavoie, Viveka Nand Yadav, Imhoi Koo, Andrew D. Patterson, Daniel R. Wahl, Luigi Franchi, Sameer Agnihotri, Carl J. Koschmann, Sriram Venneti, Costas A. Lyssiotis
Therapeutic Targeting Of Differentiation-State Dependent Metabolic Vulnerabilities In Diffuse Midline Glioma., Nneka E. Mbah, Amy L. Myers, Peter Sajjakulnukit, Chan Chung, Joyce K. Thompson, Hanna S. Hong, Heather Giza, Derek Dang, Zeribe C. Nwosu, Mengrou Shan, Stefan R. Sweha, Daniella D. Maydan, Brandon Chen, Li Zhang, Brian Magnuson, Zirui Zhu, Megan Radyk, Brooke Lavoie, Viveka Nand Yadav, Imhoi Koo, Andrew D. Patterson, Daniel R. Wahl, Luigi Franchi, Sameer Agnihotri, Carl J. Koschmann, Sriram Venneti, Costas A. Lyssiotis
Manuscripts, Articles, Book Chapters and Other Papers
H3K27M diffuse midline gliomas (DMG), including diffuse intrinsic pontine gliomas (DIPG), exhibit cellular heterogeneity comprising less-differentiated oligodendrocyte precursors (OPC)-like stem cells and more differentiated astrocyte (AC)-like cells. Here, we establish in vitro models that recapitulate DMG-OPC-like and AC-like phenotypes and perform transcriptomics, metabolomics, and bioenergetic profiling to identify metabolic programs in the different cellular states. We then define strategies to target metabolic vulnerabilities within specific tumor populations. We show that AC-like cells exhibit a mesenchymal phenotype and are sensitized to ferroptotic cell death. In contrast, OPC-like cells upregulate cholesterol biosynthesis, have diminished mitochondrial oxidative phosphorylation (OXPHOS), and are accordingly more …
Phosphorylation-Driven Epichaperome Assembly Is A Regulator Of Cellular Adaptability And Proliferation., Tanaya Roychowdhury, Seth W Mcnutt, Chiranjeevi Pasala, Hieu Nguyen, Daniel T Thornton, Sahil Sharma, Luke Botticelli, Chander S Digwal, Suhasini Joshi, Nan Yang, Palak Panchal, Souparna Chakrabarty, Sadik Bay, Vladimir Markov, Charlene Kwong, Jeanine Lisanti, Sun Young Chung, Stephen D Ginsberg, Pengrong Yan, Elisa De Stanchina, Adriana Corben, Shanu Modi, Mary Alpaugh, Giorgio Colombo, Hediye Erdjument-Bromage, Thomas A Neubert, Robert J Chalkley, Peter R Baker, Alma L Burlingame, Anna Rodina, Gabriela Chiosis, Feixia Chu
Phosphorylation-Driven Epichaperome Assembly Is A Regulator Of Cellular Adaptability And Proliferation., Tanaya Roychowdhury, Seth W Mcnutt, Chiranjeevi Pasala, Hieu Nguyen, Daniel T Thornton, Sahil Sharma, Luke Botticelli, Chander S Digwal, Suhasini Joshi, Nan Yang, Palak Panchal, Souparna Chakrabarty, Sadik Bay, Vladimir Markov, Charlene Kwong, Jeanine Lisanti, Sun Young Chung, Stephen D Ginsberg, Pengrong Yan, Elisa De Stanchina, Adriana Corben, Shanu Modi, Mary Alpaugh, Giorgio Colombo, Hediye Erdjument-Bromage, Thomas A Neubert, Robert J Chalkley, Peter R Baker, Alma L Burlingame, Anna Rodina, Gabriela Chiosis, Feixia Chu
College of Science & Mathematics Departmental Research
The intricate network of protein-chaperone interactions is crucial for maintaining cellular function. Recent discoveries have unveiled the existence of specialized chaperone assemblies, known as epichaperomes, which serve as scaffolding platforms that orchestrate the reconfiguration of protein-protein interaction networks, thereby enhancing cellular adaptability and proliferation. This study explores the structural and regulatory aspects of epichaperomes, with a particular focus on the role of post-translational modifications (PTMs) in their formation and function. A key finding is the identification of specific PTMs on HSP90, particularly at residues Ser226 and Ser255 within an intrinsically disordered region, as critical determinants of epichaperome assembly. Our data …
An Emerging Multi-Omic Understanding Of The Genetics Of Opioid Addiction., Eric O Johnson, Heidi S Fisher, Kyle A Sullivan, Olivia Corradin, Sandra Sanchez-Roige, Nathan C Gaddis, Yasmine N Sami, Alice Townsend, Erica Teixeira Prates, Mirko Pavicic, Peter Kruse, Elissa J Chesler, Abraham A Palmer, Vanessa Troiani, Jason A. Bubier, Daniel A Jacobson, Brion S Maher
An Emerging Multi-Omic Understanding Of The Genetics Of Opioid Addiction., Eric O Johnson, Heidi S Fisher, Kyle A Sullivan, Olivia Corradin, Sandra Sanchez-Roige, Nathan C Gaddis, Yasmine N Sami, Alice Townsend, Erica Teixeira Prates, Mirko Pavicic, Peter Kruse, Elissa J Chesler, Abraham A Palmer, Vanessa Troiani, Jason A. Bubier, Daniel A Jacobson, Brion S Maher
Faculty Research 2024
Opioid misuse, addiction, and associated overdose deaths remain global public health crises. Despite the tremendous need for pharmacological treatments, current options are limited in number, use, and effectiveness. Fundamental leaps forward in our understanding of the biology driving opioid addiction are needed to guide development of more effective medication-assisted therapies. This Review focuses on the omics-identified biological features associated with opioid addiction. Recent GWAS have begun to identify robust genetic associations, including variants in OPRM1, FURIN, and the gene cluster SCAI/PPP6C/RABEPK. An increasing number of omics studies of postmortem human brain tissue examining biological features (e.g., histone modification and gene …
Advancing Stem Cell Technologies For Conservation Of Wildlife Biodiversity., Ashlee M Hutchinson, Ruth Appeltant, Tom Burdon, Qiuye Bao, Rhishikesh Bargaje, Andrea Bodnar, Stuart Chambers, Pierre Comizzoli, Laura Cook, Yoshinori Endo, Bob Harman, Katsuhiko Hayashi, Thomas Hildebrandt, Marisa L Korody, Uma Lakshmipathy, Jeanne F Loring, Clara Munger, Alex H M Ng, Ben Novak, Manabu Onuma, Sara Ord, Monique Paris, Andrew J Pask, Francisco Pelegri, Martin Pera, Ryan Phelan, Benyamin Rosental, Oliver A Ryder, Woranop Sukparangsi, Gareth Sullivan, Nicole Liling Tay, Nikki Traylor-Knowles, Shawn Walker, Antonia Weberling, Deanne J Whitworth, Suzannah A Williams, Jessye Wojtusik, Jun Wu, Qi-Long Ying, Thomas P Zwaka, Timo N Kohler
Advancing Stem Cell Technologies For Conservation Of Wildlife Biodiversity., Ashlee M Hutchinson, Ruth Appeltant, Tom Burdon, Qiuye Bao, Rhishikesh Bargaje, Andrea Bodnar, Stuart Chambers, Pierre Comizzoli, Laura Cook, Yoshinori Endo, Bob Harman, Katsuhiko Hayashi, Thomas Hildebrandt, Marisa L Korody, Uma Lakshmipathy, Jeanne F Loring, Clara Munger, Alex H M Ng, Ben Novak, Manabu Onuma, Sara Ord, Monique Paris, Andrew J Pask, Francisco Pelegri, Martin Pera, Ryan Phelan, Benyamin Rosental, Oliver A Ryder, Woranop Sukparangsi, Gareth Sullivan, Nicole Liling Tay, Nikki Traylor-Knowles, Shawn Walker, Antonia Weberling, Deanne J Whitworth, Suzannah A Williams, Jessye Wojtusik, Jun Wu, Qi-Long Ying, Thomas P Zwaka, Timo N Kohler
Faculty Research 2024
Wildlife biodiversity is essential for healthy, resilient and sustainable ecosystems. For biologists, this diversity also represents a treasure trove of genetic, molecular and developmental mechanisms that deepen our understanding of the origins and rules of life. However, the rapid decline in biodiversity reported recently foreshadows a potentially catastrophic collapse of many important ecosystems and the associated irreversible loss of many forms of life on our planet. Immediate action by conservationists of all stripes is required to avert this disaster. In this Spotlight, we draw together insights and proposals discussed at a recent workshop hosted by Revive & Restore, which gathered …
Reproduction Has Immediate Effects On Female Mortality, But No Discernible Lasting Physiological Impacts: A Test Of The Disposable Soma Theory, Sharon E Mitchell, Megan Simpson, Lena Coulet, Solenn Gouedard, Catherine Hambly, Juliano Morimoto, David B Allison, John R Speakman
Reproduction Has Immediate Effects On Female Mortality, But No Discernible Lasting Physiological Impacts: A Test Of The Disposable Soma Theory, Sharon E Mitchell, Megan Simpson, Lena Coulet, Solenn Gouedard, Catherine Hambly, Juliano Morimoto, David B Allison, John R Speakman
Children’s Nutrition Research Center Staff Publications
The disposable soma theory (DST) posits that organisms age and die because of a direct trade-off in resource allocation between reproduction and somatic maintenance. DST predicts that investments in reproduction accentuate somatic damage which increase senescence and shortens lifespan. Here, we directly tested DST predictions in breeding and nonbreeding female C57BL/6J mice. We measured reproductive outputs, body composition, daily energy expenditure, and oxidative stress at peak lactation and over lifetime. We found that reproduction had an immediate and negative effect on survival due to problems encountered during parturition for some females. However, there was no statistically significant residual effect on …
Yap1 Status Defines Two Intrinsic Subtypes Of Lcnec With Distinct Molecular Features And Therapeutic Vulnerabilities, C Allison Stewart, Lixia Diao, Yuanxin Xi, Runsheng Wang, Kavya Ramkumar, Alejandra G Serrano, Azusa Tanimoto, B Leticia Rodriguez, Benjamin B Morris, Li Shen, Bingnan Zhang, Yan Yang, Samera H Hamad, Robert J Cardnell, Alberto Duarte, Moushumi Sahu, Veronica Y Novegil, Bernard E Weissman, Michael Frumovitz, Neda Kalhor, Luisa Solis Soto, Pedro Da Rocha, Natalie Vokes, Don L Gibbons, Jing Wang, John V Heymach, Bonnie Glisson, Lauren Averett Byers, Carl M Gay
Yap1 Status Defines Two Intrinsic Subtypes Of Lcnec With Distinct Molecular Features And Therapeutic Vulnerabilities, C Allison Stewart, Lixia Diao, Yuanxin Xi, Runsheng Wang, Kavya Ramkumar, Alejandra G Serrano, Azusa Tanimoto, B Leticia Rodriguez, Benjamin B Morris, Li Shen, Bingnan Zhang, Yan Yang, Samera H Hamad, Robert J Cardnell, Alberto Duarte, Moushumi Sahu, Veronica Y Novegil, Bernard E Weissman, Michael Frumovitz, Neda Kalhor, Luisa Solis Soto, Pedro Da Rocha, Natalie Vokes, Don L Gibbons, Jing Wang, John V Heymach, Bonnie Glisson, Lauren Averett Byers, Carl M Gay
Faculty, Staff and Student Publications
Purpose: Large cell neuroendocrine carcinoma (LCNEC) is a high-grade neuroendocrine malignancy that, like small cell lung cancer (SCLC), is associated with the absence of druggable oncogenic drivers and dismal prognosis. In contrast to SCLC, however, there is little evidence to guide optimal treatment strategies, which are often adapted from SCLC and non-small cell lung cancer approaches.
Experimental design: To better define the biology of LCNEC, we analyzed cell line and patient genomic data and performed IHC and single-cell RNA sequencing of core needle biopsies from patients with LCNEC and preclinical models.
Results: In this study, we demonstrate that the presence …
Biochemical And Structural Insights Into A 5′ To 3′ Rna Ligase Reveal A Potential Role In Trna Ligation, Yingjie Hu, Victor A Lopez, Hengyi Xu, James P Pfister, Bing Song, Kelly A Servage, Masahiro Sakurai, Benjamin T Jones, Joshua T Mendell, Tao Wang, Jun Wu, Alan M Lambowitz, Diana R Tomchick, Krzysztof Pawłowski, Vincent S Tagliabracci
Biochemical And Structural Insights Into A 5′ To 3′ Rna Ligase Reveal A Potential Role In Trna Ligation, Yingjie Hu, Victor A Lopez, Hengyi Xu, James P Pfister, Bing Song, Kelly A Servage, Masahiro Sakurai, Benjamin T Jones, Joshua T Mendell, Tao Wang, Jun Wu, Alan M Lambowitz, Diana R Tomchick, Krzysztof Pawłowski, Vincent S Tagliabracci
Faculty, Staff and Student Publications
ATP-grasp superfamily enzymes contain a hand-like ATP-binding fold and catalyze a variety of reactions using a similar catalytic mechanism. More than 30 protein families are categorized in this superfamily, and they are involved in a plethora of cellular processes and human diseases. Here, we identify C12orf29 (RLIG1) as an atypical ATP-grasp enzyme that ligates RNA. Human RLIG1 and its homologs autoadenylate on an active site Lys residue as part of a reaction intermediate that specifically ligates RNA halves containing a 5’-phosphate and a 3’-hydroxyl. RLIG1 binds tRNA in cells and can ligate tRNA within the anticodon loop in vitro. Transcriptomic …
Cdk12 Loss Drives Prostate Cancer Progression, Transcription-Replication Conflicts, And Synthetic Lethality With Paralog Cdk13, Jean Ching-Yi Tien, Jie Luo, Yu Chang, Yuping Zhang, Yunhui Cheng, Xiaoju Wang, Jianzhang Yang, Rahul Mannan, Somnath Mahapatra, Palak Shah, Xiao-Ming Wang, Abigail J Todd, Sanjana Eyunni, Caleb Cheng, Ryan J Rebernick, Lanbo Xiao, Yi Bao, James Neiswender, Rachel Brough, Stephen J Pettitt, Xuhong Cao, Stephanie J Miner, Licheng Zhou, Yi-Mi Wu, Estefania Labanca, Yuzhuo Wang, Abhijit Parolia, Marcin Cieslik, Dan R Robinson, Zhen Wang, Felix Y Feng, Jonathan Chou, Christopher J Lord, Ke Ding, Arul M Chinnaiyan
Cdk12 Loss Drives Prostate Cancer Progression, Transcription-Replication Conflicts, And Synthetic Lethality With Paralog Cdk13, Jean Ching-Yi Tien, Jie Luo, Yu Chang, Yuping Zhang, Yunhui Cheng, Xiaoju Wang, Jianzhang Yang, Rahul Mannan, Somnath Mahapatra, Palak Shah, Xiao-Ming Wang, Abigail J Todd, Sanjana Eyunni, Caleb Cheng, Ryan J Rebernick, Lanbo Xiao, Yi Bao, James Neiswender, Rachel Brough, Stephen J Pettitt, Xuhong Cao, Stephanie J Miner, Licheng Zhou, Yi-Mi Wu, Estefania Labanca, Yuzhuo Wang, Abhijit Parolia, Marcin Cieslik, Dan R Robinson, Zhen Wang, Felix Y Feng, Jonathan Chou, Christopher J Lord, Ke Ding, Arul M Chinnaiyan
Faculty, Staff and Student Publications
Biallelic loss of cyclin-dependent kinase 12 (CDK12) defines a metastatic castration-resistant prostate cancer (mCRPC) subtype. It remains unclear, however, whether CDK12 loss drives prostate cancer (PCa) development or uncovers pharmacologic vulnerabilities. Here, we show Cdk12 ablation in murine prostate epithelium is sufficient to induce preneoplastic lesions with lymphocytic infiltration. In allograft-based CRISPR screening, Cdk12 loss associates positively with Trp53 inactivation but negatively with Pten inactivation. Moreover, concurrent Cdk12/Trp53 ablation promotes proliferation of prostate-derived organoids, while Cdk12 knockout in Pten-null mice abrogates prostate tumor growth. In syngeneic systems, Cdk12/Trp53-null allografts exhibit luminal morphology and immune checkpoint blockade sensitivity. Mechanistically, Cdk12 inactivation …
Immuno-Scanning Electron Microscopy Of Islet Primary Cilia, Sanja Sviben, Alexander J Polino, Isabella L Melena, Jing W Hughes
Immuno-Scanning Electron Microscopy Of Islet Primary Cilia, Sanja Sviben, Alexander J Polino, Isabella L Melena, Jing W Hughes
2020-Current year OA Pubs
The definitive demonstration of protein localization on primary cilia has been a challenge for cilia biologists. Primary cilia are solitary thread-like projections that have a specialized protein composition, but as the ciliary structure overlays the cell membrane and other cell parts, the identity of ciliary proteins are difficult to ascertain by conventional imaging approaches like immunofluorescence microscopy. Surface scanning electron microscopy combined with immunolabeling (immuno-SEM) bypasses some of these indeterminacies by unambiguously showing protein expression in the context of the three-dimensional ultrastructure of the cilium. Here, we apply immuno-SEM to specifically identify proteins on the primary cilia of mouse and …
Magnetoelectrics For Implantable Bioelectronics: Progress To Date, Fatima Alrashdan, Kaiyuan Yang, Jacob T Robinson
Magnetoelectrics For Implantable Bioelectronics: Progress To Date, Fatima Alrashdan, Kaiyuan Yang, Jacob T Robinson
Faculty, Staff and Students Publications
The coupling of magnetic and electric properties manifested in magnetoelectric (ME) materials has unlocked numerous possibilities for advancing technologies like energy harvesting, memory devices, and medical technologies. Due to this unique coupling, the magnetic properties of these materials can be tuned by an electric field; conversely, their electric polarization can be manipulated through a magnetic field. Over the past seven years, our lab work has focused on leveraging these materials to engineer implantable bioelectronics for various neuromodulation applications. One of the main challenges for bioelectronics is to design miniaturized solutions that can be delivered with minimally invasive procedures and yet …
Sall4 And Gata4 Induce Cardiac Fibroblast Transition Towards A Partially Multipotent State With Cardiogenic Potential, Hong Gao, Saliha Pathan, Beverly R E A Dixon, Aarthi Pugazenthi, Megumi Mathison, Tamer M A Mohamed, Todd K Rosengart, Jianchang Yang
Sall4 And Gata4 Induce Cardiac Fibroblast Transition Towards A Partially Multipotent State With Cardiogenic Potential, Hong Gao, Saliha Pathan, Beverly R E A Dixon, Aarthi Pugazenthi, Megumi Mathison, Tamer M A Mohamed, Todd K Rosengart, Jianchang Yang
Faculty, Staff and Students Publications
Cardiac cellular fate transition holds remarkable promise for the treatment of ischemic heart disease. We report that overexpressing two transcription factors, Sall4 and Gata4, which play distinct and overlapping roles in both pluripotent stem cell reprogramming and embryonic heart development, induces a fraction of stem-like cells in rodent cardiac fibroblasts that exhibit unlimited ex vivo expandability with clonogenicity. Transcriptomic and phenotypic analyses reveal that around 32 ± 6.4% of the expanding cells express Nkx2.5, while 13 ± 3.6% express Oct4. Activated signaling pathways like PI3K/Akt, Hippo, Wnt, and multiple epigenetic modification enzymes are also detected. Under suitable conditions, these cells …
Adipocyte Lipin 1 Expression Associates With Human Metabolic Health And Regulates Systemic Metabolism In Mice, Andrew Lapoint, Jason M. Singer, Daniel Ferguson, Trevor M. Shew, M. Katie Renkemeyer, Hector H. Palacios, Rachael L. Field, Gordon I. Smith, Mai He, Gary J Patti, Samuel Klein, Jonathan R. Brestoff, Brian N. Finck, Et Al.
Adipocyte Lipin 1 Expression Associates With Human Metabolic Health And Regulates Systemic Metabolism In Mice, Andrew Lapoint, Jason M. Singer, Daniel Ferguson, Trevor M. Shew, M. Katie Renkemeyer, Hector H. Palacios, Rachael L. Field, Gordon I. Smith, Mai He, Gary J Patti, Samuel Klein, Jonathan R. Brestoff, Brian N. Finck, Et Al.
2020-Current year OA Pubs
Dysfunctional adipose tissue is believed to promote the development of hepatic steatosis and systemic insulin resistance, but many of the mechanisms involved are still unclear. Lipin 1 catalyzes the conversion of phosphatidic acid to diacylglycerol, the penultimate step of triglyceride synthesis, which is essential for lipid storage. Herein we found that adipose tissue LPIN1 expression is decreased in people with obesity compared with lean subjects, and low LPIN1 expression correlated with multi-tissue insulin resistance and increased rates of hepatic de novo lipogenesis. Comprehensive metabolic and multiomic phenotyping demonstrated that adipocyte-specific Lpin1-/- mice had a metabolically unhealthy phenotype, including liver and …
Sdeper: A Hybrid Machine Learning And Regression Method For Cell-Type Deconvolution Of Spatial Barcoding-Based Transcriptomic Data, Yunqing Liu, Ningshan Li, Ji Qi, Gang Xu, Jiayi Zhao, Nating Wang, Xiayuan Huang, Wenhao Jiang, Huanhuan Wei, Aurélien Justet, Taylor S Adams, Robert Homer, Amei Amei, Ivan O Rosas, Naftali Kaminski, Zuoheng Wang, Xiting Yan
Sdeper: A Hybrid Machine Learning And Regression Method For Cell-Type Deconvolution Of Spatial Barcoding-Based Transcriptomic Data, Yunqing Liu, Ningshan Li, Ji Qi, Gang Xu, Jiayi Zhao, Nating Wang, Xiayuan Huang, Wenhao Jiang, Huanhuan Wei, Aurélien Justet, Taylor S Adams, Robert Homer, Amei Amei, Ivan O Rosas, Naftali Kaminski, Zuoheng Wang, Xiting Yan
Faculty, Staff and Students Publications
Spatial barcoding-based transcriptomic (ST) data require deconvolution for cellular-level downstream analysis. Here we present SDePER, a hybrid machine learning and regression method to deconvolve ST data using reference single-cell RNA sequencing (scRNA-seq) data. SDePER tackles platform effects between ST and scRNA-seq data, ensuring a linear relationship between them while addressing sparsity and spatial correlations in cell types across capture spots. SDePER estimates cell-type proportions, enabling enhanced resolution tissue mapping by imputing cell-type compositions and gene expressions at unmeasured locations. Applications to simulated data and four real datasets showed SDePER's superior accuracy and robustness over existing methods.
Effects Of Cadherin Mediated Contact Normalization On Oncogenic Src Kinase Mediated Gene Expression And Protein Phosphorylation, Rachel E Nicoletto, Cayla J Holdcraft, Ariel C Yin, Edward P Retzbach, Stephanie A Sheehan, Amanda A Greenspan, Christopher M Laugier, Jason Trama, Caifeng Zhao, Haiyan Zheng, Gary S Goldberg
Effects Of Cadherin Mediated Contact Normalization On Oncogenic Src Kinase Mediated Gene Expression And Protein Phosphorylation, Rachel E Nicoletto, Cayla J Holdcraft, Ariel C Yin, Edward P Retzbach, Stephanie A Sheehan, Amanda A Greenspan, Christopher M Laugier, Jason Trama, Caifeng Zhao, Haiyan Zheng, Gary S Goldberg
Rowan-Virtua School of Osteopathic Medicine Departmental Research
Nontransformed cells form heterotypic cadherin junctions with adjacent transformed cells to inhibit tumor cell growth and motility. Transformed cells must override this form of growth control, called "contact normalization", to invade and metastasize during cancer progression. Heterocellular cadherin junctions between transformed and nontransformed cells are needed for this process. However, specific mechanisms downstream of cadherin signaling have not been clearly elucidated. Here, we utilized a β-catenin reporter construct to determine if contact normalization affects Wnt signaling in transformed cells. β-catenin driven GFP expression in Src transformed mouse embryonic cells was decreased when cultured with cadherin competent nontransformed cells compared to …
Bi-Directional Allosteric Pathway In Nmda Receptor Activation And Modulation, Paula A Bender, Subhajit Chakraborty, Ryan J Durham, Vladimir Berka, Elisa Carrillo, Vasanthi Jayaraman
Bi-Directional Allosteric Pathway In Nmda Receptor Activation And Modulation, Paula A Bender, Subhajit Chakraborty, Ryan J Durham, Vladimir Berka, Elisa Carrillo, Vasanthi Jayaraman
Faculty, Staff and Student Publications
N-methyl-D-aspartate (NMDA) receptors are ionotropic glutamate receptors involved in learning and memory. NMDA receptors primarily comprise two GluN1 and two GluN2 subunits. The GluN2 subunit dictates biophysical receptor properties, including the extent of receptor activation and desensitization. GluN2A- and GluN2D-containing receptors represent two functional extremes. To uncover the conformational basis of their functional divergence, we utilize single-molecule fluorescence resonance energy transfer to probe the extracellular domains of these receptor subtypes under resting and ligand-bound conditions. We find that the conformational profile of the GluN2 amino-terminal domain correlates with the disparate functions of GluN2A- and GluN2D-containing receptors. Changes at the pre-transmembrane …
Long-Term Human Immune Reconstitution, T-Cell Development, And Immune Reactivity In Mice Lacking The Murine Major Histocompatibility Complex: Validation With Cellular And Gene Expression Profiles., Milita Darguzyte, Philipp Antczak, Daniel Bachurski, Patrick Hoelker, Nima Abedpour, Rahil Gholamipoorfard, Hans A Schlößer, Kerstin Wennhold, Martin Thelen, Maria A Garcia-Marquez, Johannes Koenig, Andreas Schneider, Tobias Braun, Frank Klawonn, Michael Damrat, Masudur Rahman, Jan-Malte Kleid, Sebastian J Theobald, Eugen Bauer, Constantin Von Kaisenberg, Steven R Talbot, Leonard D. Shultz, Brian Soper, Renata Stripecke
Long-Term Human Immune Reconstitution, T-Cell Development, And Immune Reactivity In Mice Lacking The Murine Major Histocompatibility Complex: Validation With Cellular And Gene Expression Profiles., Milita Darguzyte, Philipp Antczak, Daniel Bachurski, Patrick Hoelker, Nima Abedpour, Rahil Gholamipoorfard, Hans A Schlößer, Kerstin Wennhold, Martin Thelen, Maria A Garcia-Marquez, Johannes Koenig, Andreas Schneider, Tobias Braun, Frank Klawonn, Michael Damrat, Masudur Rahman, Jan-Malte Kleid, Sebastian J Theobald, Eugen Bauer, Constantin Von Kaisenberg, Steven R Talbot, Leonard D. Shultz, Brian Soper, Renata Stripecke
Faculty Research 2024
Background: Humanized mice transplanted with CD34+ hematopoietic cells (HPCs) are broadly used to study human immune responses and infections in vivo and for testing therapies pre-clinically. However, until now, it was not clear whether interactions between the mouse major histocompatibility complexes (MHCs) and/or the human leukocyte antigens (HLAs) were necessary for human T-cell development and immune reactivity. Methods: We evaluated the long-term (20- week) human hematopoiesis and human T-cell development in NOD Scid Gamma (NSG) mice lacking the expression of MHC class I and II (NSG-DKO). Triplicate experiments were performed with HPCs obtained from three donors, and humanization was confirmed …
Interleukin-1 Receptor-Associated Kinase 1 In Cancer Metastasis And Therapeutic Resistance: Mechanistic Insights And Translational Advances., Mariana K Najjar, Munazza S Khan, Chuling Zhuang, Ankush Chandra, Hui-Wen Lo
Interleukin-1 Receptor-Associated Kinase 1 In Cancer Metastasis And Therapeutic Resistance: Mechanistic Insights And Translational Advances., Mariana K Najjar, Munazza S Khan, Chuling Zhuang, Ankush Chandra, Hui-Wen Lo
Faculty, Staff and Student Publications
Interleukin-1 Receptor Associated Kinase 1 (IRAK1) is a serine/threonine kinase that plays a critical role as a signaling transducer of the activated Toll-like receptor (TLR)/Interleukin-1 receptor (IL-1R) signaling pathway in both immune cells and cancer cells. Upon hyperphosphorylation by IRAK4, IRAK1 forms a complex with TRAF6, which results in the eventual activation of the NF-κB and MAPK pathways. IRAK1 can translocate to the nucleus where it phosphorylates STAT3 transcription factor, leading to enhanced IL-10 gene expression. In immune cells, activated IRAK1 coordinates innate immunity against pathogens and mediates inflammatory responses. In cancer cells, IRAK1 is frequently activated, and the activation …
A Proteomics Approach To Study Mouse Long Bones: Examining Baseline Differences And Mechanical Loading-Induced Bone Formation In Young-Adult And Old Mice, Christopher J Chermside-Scabbo, John T Shuster, Petra Erdmann-Gilmore, Eric Tycksen, Qiang Zhang, R Reid Townsend, Matthew J Silva
A Proteomics Approach To Study Mouse Long Bones: Examining Baseline Differences And Mechanical Loading-Induced Bone Formation In Young-Adult And Old Mice, Christopher J Chermside-Scabbo, John T Shuster, Petra Erdmann-Gilmore, Eric Tycksen, Qiang Zhang, R Reid Townsend, Matthew J Silva
2020-Current year OA Pubs
With aging, bone mass declines and the anabolic effects of skeletal loading diminish. While much research has focused on gene transcription, how bone ages and loses its mechanoresponsiveness at the protein level remains unclear. We developed a novel proteomics approach and performed a paired mass spectrometry and RNA-seq analysis on tibias from young-adult (5-month) and old (22-month) mice. We report the first correlation estimate between the bone proteome and transcriptome (Spearman
Genetic Knock-In Of Eif2ak3 Variants Reveals Differences In Perk Activity In Mouse Liver And Pancreas Under Endoplasmic Reticulum Stress, Shivesh Ghura, Noah R. Beratan, Xinglong Shi, Elena Alvarez-Periel, Sarah E. Bond Newton, Cagla Akay-Espinoza, Kelly L. Jordan-Sciutto
Genetic Knock-In Of Eif2ak3 Variants Reveals Differences In Perk Activity In Mouse Liver And Pancreas Under Endoplasmic Reticulum Stress, Shivesh Ghura, Noah R. Beratan, Xinglong Shi, Elena Alvarez-Periel, Sarah E. Bond Newton, Cagla Akay-Espinoza, Kelly L. Jordan-Sciutto
Farber Institute for Neuroscience Staff Papers and Presentations
Common single-nucleotide variants (SNVs) of eukaryotic translation initiation factor 2 alpha kinase 3 (EIF2AK3) slightly increase the risk of disorders in the periphery and the central nervous system. EIF2AK3 encodes protein kinase RNA-like endoplasmic reticulum kinase (PERK), a key regulator of ER stress. Three exonic EIF2AK3 SNVs form the PERK-B haplotype, which is present in 28% of the global population. Importantly, the precise impact of these SNVs on PERK activity remains elusive. In this study, we demonstrate that PERK-B SNVs do not alter PERK expression or basal activity in vitro and in the novel triple knock-in mice expressing the exonic …
Mates: A Deep Learning-Based Model For Locus-Specific Quantification Of Transposable Elements In Single Cell, Ruohan Wang, Yumin Zheng, Zijian Zhang, Kailu Song, Erxi Wu, Xiaopeng Zhu, Tao P Wu, Jun Ding
Mates: A Deep Learning-Based Model For Locus-Specific Quantification Of Transposable Elements In Single Cell, Ruohan Wang, Yumin Zheng, Zijian Zhang, Kailu Song, Erxi Wu, Xiaopeng Zhu, Tao P Wu, Jun Ding
Faculty, Staff and Students Publications
Transposable elements (TEs) are crucial for genetic diversity and gene regulation. Current single-cell quantification methods often align multi-mapping reads to either 'best-mapped' or 'random-mapped' locations and categorize them at the subfamily levels, overlooking the biological necessity for accurate, locus-specific TE quantification. Moreover, these existing methods are primarily designed for and focused on transcriptomics data, which restricts their adaptability to single-cell data of other modalities. To address these challenges, here we introduce MATES, a deep-learning approach that accurately allocates multi-mapping reads to specific loci of TEs, utilizing context from adjacent read alignments flanking the TE locus. When applied to diverse single-cell …
Rapid Evolution Of Mitochondrion-Related Genes In Haplodiploid Arthropods, Yiyuan Li, Gregg W C Thomas, Stephen Richards, Robert M Waterhouse, Xin Zhou, Michael E Pfrender
Rapid Evolution Of Mitochondrion-Related Genes In Haplodiploid Arthropods, Yiyuan Li, Gregg W C Thomas, Stephen Richards, Robert M Waterhouse, Xin Zhou, Michael E Pfrender
Faculty, Staff and Students Publications
Background: Mitochondrial genes and nuclear genes cooperate closely to maintain the functions of mitochondria, especially in the oxidative phosphorylation (OXPHOS) pathway. However, mitochondrial genes among arthropod lineages have dramatic evolutionary rate differences. Haplodiploid arthropods often show fast-evolving mitochondrial genes. One hypothesis predicts that the small effective population size of haplodiploid species could enhance the effect of genetic drift leading to higher substitution rates in mitochondrial and nuclear genes. Alternatively, positive selection or compensatory changes in nuclear OXPHOS genes could lead to the fast-evolving mitochondrial genes. However, due to the limited number of arthropod genomes, the rates of evolution for nuclear …
Systematic Perturbations Of Setd2, Nsd1, Nsd2, Nsd3, And Ash1l Reveal Their Distinct Contributions To H3k36 Methylation, Gerry A Shipman, Reinnier Padilla, Cynthia Horth, Bo Hu, Eric Bareke, Francisca N Vitorino, Joanna M Gongora, Benjamin A Garcia, Chao Lu, Jacek Majewski
Systematic Perturbations Of Setd2, Nsd1, Nsd2, Nsd3, And Ash1l Reveal Their Distinct Contributions To H3k36 Methylation, Gerry A Shipman, Reinnier Padilla, Cynthia Horth, Bo Hu, Eric Bareke, Francisca N Vitorino, Joanna M Gongora, Benjamin A Garcia, Chao Lu, Jacek Majewski
2020-Current year OA Pubs
BACKGROUND: Methylation of histone 3 lysine 36 (H3K36me) has emerged as an essential epigenetic component for the faithful regulation of gene expression. Despite its importance in development and disease, how the molecular agents collectively shape the H3K36me landscape is unclear.
RESULTS: We use mouse mesenchymal stem cells to perturb the H3K36me methyltransferases (K36MTs) and infer the activities of the five most prominent enzymes: SETD2, NSD1, NSD2, NSD3, and ASH1L. We find that H3K36me2 is the most abundant of the three methylation states and is predominantly deposited at intergenic regions by NSD1, and partly by NSD2. In contrast, H3K36me1/3 are most …
Recent Progress In Modeling And Treating Diabetes Using Stem Cell-Derived Islets, Marlie M Maestas, Maggie H Bui, Jeffrey R Millman
Recent Progress In Modeling And Treating Diabetes Using Stem Cell-Derived Islets, Marlie M Maestas, Maggie H Bui, Jeffrey R Millman
2020-Current year OA Pubs
Stem cell-derived islets (SC-islets) offer the potential to be an unlimited source of cells for disease modeling and the treatment of diabetes. SC-islets can be genetically modified, treated with chemical compounds, or differentiated from patient derived stem cells to model diabetes. These models provide insights into disease pathogenesis and vulnerabilities that may be targeted to provide treatment. SC-islets themselves are also being investigated as a cell therapy for diabetes. However, the transplantation process is imperfect; side effects from immunosuppressant use have reduced SC-islet therapeutic potential. Alternative methods to this include encapsulation, use of immunomodulating molecules, and genetic modification of SC-islets. …
Molecular Characterization Of Sterol C4-Methyl Oxidase In Leishmania Major, Yu Ning, Somrita Basu, Fong-Fu Hsu, Mei Feng, Michael Zhuo Wang, Kai Zhang
Molecular Characterization Of Sterol C4-Methyl Oxidase In Leishmania Major, Yu Ning, Somrita Basu, Fong-Fu Hsu, Mei Feng, Michael Zhuo Wang, Kai Zhang
2020-Current year OA Pubs
Sterol biosynthesis requires the oxidative removal of two methyl groups from the C-4 position by sterol C-4-demethylase and one methyl group from the C-14 position by sterol C-14-demethylase. In
Employing Multi-Omics Analyses To Understand Changes During Kidney Development In Perinatal Interleukin-6 Animal Model., Ganesh Panzade, Tarak Srivastava, Daniel P. Heruth, Mohammad Rezaiekhaligh, Jianping Zhou, Zhen Lyu, Mukut Sharma, Trupti Joshi
Employing Multi-Omics Analyses To Understand Changes During Kidney Development In Perinatal Interleukin-6 Animal Model., Ganesh Panzade, Tarak Srivastava, Daniel P. Heruth, Mohammad Rezaiekhaligh, Jianping Zhou, Zhen Lyu, Mukut Sharma, Trupti Joshi
Manuscripts, Articles, Book Chapters and Other Papers
Chronic kidney disease (CKD) is a leading cause of morbidity and mortality globally. Maternal obesity during pregnancy is linked to systemic inflammation and elevated levels of the pro-inflammatory cytokine interleukin-6 (IL-6). In our previous work, we demonstrated that increased maternal IL-6 during gestation impacts intrauterine development in mice. We hypothesized that IL-6-induced inflammation alters gene expression in the developing fetus. To test this, pregnant mice were administered IL-6 or saline during mid-gestation. Newborn mouse kidneys were analyzed using mRNA-seq, miRNA-seq and whole-genome bisulfite-seq (WGBS). A multi-omics approach was employed to quantify mRNA gene expression, miRNA expression and DNA methylation, using …
Symposium: What Does The Microbiome Tell Us About Prevention And Treatment Of Ad/Adrd?, Joia K Capocchi, Claudia Figueroa-Romero, Sage J B Dunham, Gina Faraci, Jason A Rothman, Katrine L Whiteson, Dong-Oh Seo, David M Holtzman, Stefanie Grabrucker, Yvonne M Nolan, Rima Kaddurah-Daouk, David A Jett
Symposium: What Does The Microbiome Tell Us About Prevention And Treatment Of Ad/Adrd?, Joia K Capocchi, Claudia Figueroa-Romero, Sage J B Dunham, Gina Faraci, Jason A Rothman, Katrine L Whiteson, Dong-Oh Seo, David M Holtzman, Stefanie Grabrucker, Yvonne M Nolan, Rima Kaddurah-Daouk, David A Jett
2020-Current year OA Pubs
Alzheimer's disease (AD) and Alzheimer's disease-related dementias (ADRDs) are broad-impact multifactorial neurodegenerative diseases. Their complexity presents unique challenges for developing effective therapies. This review highlights research presented at the 2024 Society for Neuroscience meeting which emphasized the gut microbiome's role in AD pathogenesis by influencing brain function and neurodegeneration through the microbiota-gut-brain axis. This emerging evidence underscores the potential for targeting the gut microbiota to treat AD/ADRD.
Atr Inhibition Radiosensitizes Cells Through Augmented Dna Damage And G2 Cell Cycle Arrest Abrogation, Scott J Bright, Mandira Manandhar, David B Flint, Rishab Kolachina, Mariam Ben Kacem, David Kj Martinus, Broderick X Turner, Ilsa Qureshi, Conor H Mcfadden, Poliana C Marinello, Simona F Shaitelman, Gabriel O Sawakuchi
Atr Inhibition Radiosensitizes Cells Through Augmented Dna Damage And G2 Cell Cycle Arrest Abrogation, Scott J Bright, Mandira Manandhar, David B Flint, Rishab Kolachina, Mariam Ben Kacem, David Kj Martinus, Broderick X Turner, Ilsa Qureshi, Conor H Mcfadden, Poliana C Marinello, Simona F Shaitelman, Gabriel O Sawakuchi
Faculty, Staff and Student Publications
Ataxia telangiectasia and Rad3-related protein (ATR) is a key DNA damage response protein that facilitates DNA damage repair and regulates cell cycle progression. As such, ATR is an important component of the cellular response to radiation, particularly in cancer cells, which show altered DNA damage response and aberrant cell cycle checkpoints. Therefore, ATR's pharmacological inhibition could be an effective radiosensitization strategy to improve radiotherapy. We assessed the ability of an ATR inhibitor, AZD6738, to sensitize cancer cell lines of various histologic types to photon and proton radiotherapy. We found that radiosensitization took place through persistent DNA damage and abrogated G2 …
Whole Genomes Of Amazonian Uakari Monkeys Reveal Complex Connectivity And Fast Differentiation Driven By High Environmental Dynamism, Núria Hermosilla-Albala, Felipe Ennes Silva, Sebastián Cuadros-Espinoza, Claudia Fontsere, Alejandro Valenzuela-Seba, Harvinder Pawar, Marta Gut, Joanna L Kelley, Sandra Ruibal-Puertas, Pol Alentorn-Moron, Armida Faella, Esther Lizano, Izeni Farias, Tomas Hrbek, Joao Valsecchi, Ivo G Gut, Jeffrey Rogers, Kyle Kai-How Farh, Lukas F K Kuderna, Tomas Marques-Bonet, Jean P Boubli
Whole Genomes Of Amazonian Uakari Monkeys Reveal Complex Connectivity And Fast Differentiation Driven By High Environmental Dynamism, Núria Hermosilla-Albala, Felipe Ennes Silva, Sebastián Cuadros-Espinoza, Claudia Fontsere, Alejandro Valenzuela-Seba, Harvinder Pawar, Marta Gut, Joanna L Kelley, Sandra Ruibal-Puertas, Pol Alentorn-Moron, Armida Faella, Esther Lizano, Izeni Farias, Tomas Hrbek, Joao Valsecchi, Ivo G Gut, Jeffrey Rogers, Kyle Kai-How Farh, Lukas F K Kuderna, Tomas Marques-Bonet, Jean P Boubli
Faculty, Staff and Students Publications
Despite showing the greatest primate diversity on the planet, genomic studies on Amazonian primates show very little representation in the literature. With 48 geolocalized high coverage whole genomes from wild uakari monkeys, we present the first population-level study on platyrrhines using whole genome data. In a very restricted range of the Amazon rainforest, eight uakari species (Cacajao genus) have been described and categorized into the bald and black uakari groups, based on phenotypic and ecological differences. Despite a slight habitat overlap, we show that posterior to their split 0.92 Mya, bald and black uakaris have remained independent, without gene flow. …
Tca Metabolism Regulates Dna Hypermethylation In Lps And Mycobacterium Tuberculosis–Induced Immune Tolerance, Abhimanyu, Santiago Carrero Longlax, Tomoki Nishiguchi, Malik Ladki, Daanish Sheikh, Amera L Martinez, Emily M Mace, Sandra L Grimm, Thaleia Caldwell, Alexandra Portillo Varela, Rajagopal V Sekhar, Anna M Mandalakas, Mandla Mlotshwa, Sibuse Ginidza, Jeffrey D Cirillo, Robert S Wallis, Mihai G Netea, Reinout Van Crevel, Cristian Coarfa, Andrew R Dinardo
Tca Metabolism Regulates Dna Hypermethylation In Lps And Mycobacterium Tuberculosis–Induced Immune Tolerance, Abhimanyu, Santiago Carrero Longlax, Tomoki Nishiguchi, Malik Ladki, Daanish Sheikh, Amera L Martinez, Emily M Mace, Sandra L Grimm, Thaleia Caldwell, Alexandra Portillo Varela, Rajagopal V Sekhar, Anna M Mandalakas, Mandla Mlotshwa, Sibuse Ginidza, Jeffrey D Cirillo, Robert S Wallis, Mihai G Netea, Reinout Van Crevel, Cristian Coarfa, Andrew R Dinardo
Faculty, Staff and Students Publications
Severe and chronic infections, including pneumonia, sepsis, and tuberculosis (TB), induce long-lasting epigenetic changes that are associated with an increase in all-cause postinfectious morbidity and mortality. Oncology studies identified metabolic drivers of the epigenetic landscape, with the tricarboxylic acid (TCA) cycle acting as a central hub. It is unknown if the TCA cycle also regulates epigenetics, specifically DNA methylation, after infection-induced immune tolerance. The following studies demonstrate that lipopolysaccharide and Mycobacterium tuberculosis induce changes in DNA methylation that are mediated by the TCA cycle. Infection-induced DNA hypermethylation is mitigated by inhibitors of cellular metabolism (rapamycin, everolimus, metformin) and the TCA …
Il-7rα On Cd4+ T Cells Is Required For Their Survival And The Pathogenesis Of Experimental Autoimmune Encephalomyelitis, Gholamreza Azizi, Bram Van Den Broek, Larissa Ishikawa, Hamed Naziri, Reza Yazdani, Guang-Xian Zhang, Bogoljub Ciric, Mohamad Rostami
Il-7rα On Cd4+ T Cells Is Required For Their Survival And The Pathogenesis Of Experimental Autoimmune Encephalomyelitis, Gholamreza Azizi, Bram Van Den Broek, Larissa Ishikawa, Hamed Naziri, Reza Yazdani, Guang-Xian Zhang, Bogoljub Ciric, Mohamad Rostami
Department of Neurology Faculty Papers
BACKGROUND: The IL-7 receptor alpha (IL-7Rα) binds both IL-7 and thymic stromal lymphopoietin (TSLP). IL-7Rα is essential for the development and survival of naive CD4+ T cells and their differentiation to effector/memory CD4+ T cells. Mice lacking IL-7Rα have severe lymphopenia and are resistant to experimental autoimmune encephalomyelitis (EAE), a model for multiple sclerosis. However, it has been reported that IL-7Rα on peripheral CD4+ T cells is disposable for their maintenance and EAE pathogenesis, which does not align with the body of knowledge on the role of IL-7Rα in the biology of CD4+ T cells. Given that a definitive study …