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Articles 2311 - 2340 of 5131
Full-Text Articles in Medicine and Health Sciences
Enhanced Bmp Signaling In Cathepsin K-Positive Tendon Progenitors Induces Heterotopic Ossification, Hiroyuki Yamaguchi, Margaret Li, Megumi Kitami, Sowmya Swaminathan, Yuji Mishina, Yoshihiro Komatsu
Enhanced Bmp Signaling In Cathepsin K-Positive Tendon Progenitors Induces Heterotopic Ossification, Hiroyuki Yamaguchi, Margaret Li, Megumi Kitami, Sowmya Swaminathan, Yuji Mishina, Yoshihiro Komatsu
Faculty, Staff and Student Publications
Heterotopic ossification (HO) is abnormal bone growth in soft tissues that results from injury, trauma, and rare genetic disorders. Bone morphogenetic proteins (BMPs) are critical osteogenic regulators which are involved in HO. However, it remains unclear how BMP signaling interacts with other extracellular stimuli to form HO. To address this question, using the Cre-loxP recombination system in mice, we conditionally expressed the constitutively activated BMP type I receptor ALK2 with a Q207D mutation (Ca-ALK2) in Cathepsin K-Cre labeled tendon progenitors (hereafter “Ca-Alk2:Ctsk-Cre”). Ca-Alk2:Ctsk-Cre mice were viable but they formed spontaneous HO in the Achilles tendon. Histological and molecular …
The Function Of Ask1 In Sepsis And Stress-Induced Disorders, John Kostyak, Steven Mckenzie, Ulhas Naik
The Function Of Ask1 In Sepsis And Stress-Induced Disorders, John Kostyak, Steven Mckenzie, Ulhas Naik
Cardeza Foundation for Hematologic Research
Apoptosis signal-regulating kinase 1 (ASK1) is a serine-threonine kinase that is ubiquitously expressed in nucleated cells and is responsible for the activation of multiple mitogen-activated protein kinases (MAPK) to regulate cell stress. Activation of ASK1 via cellular stress leads to activation of downstream signaling components, activation of transcription factors, and proinflammatory cytokine production. ASK1 is also expressed in anucleate platelets and is a key player in platelet activation as it is important for signaling. Interestingly, the mechanism of ASK1 activation is cell type-dependent. In this review we will explore how ASK1 regulates a variety of cellular processes from innate immune …
Parallel Neural Pathways Control Sodium Consumption And Taste Valence, Yameng Zhang, Allan-Hermann Pool, Tongtong Wang, Lu Liu, Elin Kang, Bei Zhang, Liang Ding, Kirsten Frieda, Richard Palmiter, Yuki Oka
Parallel Neural Pathways Control Sodium Consumption And Taste Valence, Yameng Zhang, Allan-Hermann Pool, Tongtong Wang, Lu Liu, Elin Kang, Bei Zhang, Liang Ding, Kirsten Frieda, Richard Palmiter, Yuki Oka
Faculty, Staff and Student Publications
The hedonic value of salt fundamentally changes depending on the internal state. High concentrations of salt induce innate aversion under sated states, whereas such aversive stimuli transform into appetitive ones under sodium depletion. Neural mechanisms underlying this state-dependent salt valence switch are poorly understood. Using transcriptomics state-to-cell-type mapping and neural manipulations, we show that positive and negative valences of salt are controlled by anatomically distinct neural circuits in the mammalian brain. The hindbrain interoceptive circuit regulates sodium-specific appetitive drive , whereas behavioral tolerance of aversive salts is encoded by a dedicated class of neurons in the forebrain lamina terminalis (LT) …
Abnormal Patterns Of Sleep And Waking Behaviors Are Accompanied By Neocortical Oscillation Disturbances In An Ank3 Mouse Model Of Epilepsy-Bipolar Disorder Comorbidity, Juan E Villacres, Nicholas Riveira, Sohmee Kim, Laura L Colgin, Jeffrey L Noebels, Angel Y Lopez
Abnormal Patterns Of Sleep And Waking Behaviors Are Accompanied By Neocortical Oscillation Disturbances In An Ank3 Mouse Model Of Epilepsy-Bipolar Disorder Comorbidity, Juan E Villacres, Nicholas Riveira, Sohmee Kim, Laura L Colgin, Jeffrey L Noebels, Angel Y Lopez
Faculty, Staff and Students Publications
ANK3 is a leading bipolar disorder (BD) candidate gene in humans and provides a unique opportunity for studying epilepsy-BD comorbidity. Previous studies showed that deletion of Ank3-1b, a BD-associated variant of Ank3 in mice leads to increased firing threshold and diminished action potential dynamic range of parvalbumin (PV) interneurons and absence epilepsy, thus providing a biological mechanism linking epilepsy and BD. To explore the behavioral overlap of these disorders, we characterized behavioral patterns of Ank3-1b KO mice during overnight home-cage activity and examined network activity during these behaviors using paired video and EEG recordings. Since PV interneurons contribute to the …
Needle Biopsy Accelerates Pro-Metastatic Changes And Systemic Dissemination In Breast Cancer: Implications For Mortality By Surgery Delay, Hiroyasu Kameyama, Priya Dondapati, Reese Simmons, Macall Leslie, John Langenheim, Yunguang Sun, Misung Yi, Aubrey Rottschaefer, Rashmi Pathak, Shreya Nuguri, Kar-Ming Fung, Shirng-Wern Tsaih, Inna Chervoneva, Hallgeir Rui, Takemi Tanaka
Needle Biopsy Accelerates Pro-Metastatic Changes And Systemic Dissemination In Breast Cancer: Implications For Mortality By Surgery Delay, Hiroyasu Kameyama, Priya Dondapati, Reese Simmons, Macall Leslie, John Langenheim, Yunguang Sun, Misung Yi, Aubrey Rottschaefer, Rashmi Pathak, Shreya Nuguri, Kar-Ming Fung, Shirng-Wern Tsaih, Inna Chervoneva, Hallgeir Rui, Takemi Tanaka
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
ncreased breast cancer (BC) mortality risk posed by delayed surgical resection of tumor after diagnosis is a growing concern, yet the underlying mechanisms remain unknown. Our cohort analyses of early-stage BC patients reveal the emergence of a significantly rising mortality risk when the biopsy-to-surgery interval was extended beyond 53 days. Additionally, histology of post-biopsy tumors shows prolonged retention of a metastasis-permissive wound stroma dominated by M2-like macrophages capable of promoting cancer cell epithelial-to-mesenchymal transition and angiogenesis. We show that needle biopsy promotes systemic dissemination of cancer cells through a mechanism of sustained activation of the COX-2/PGE2/EP2 feedforward loop, …
Pain Management By Chemogenetic Control Of Sensory Neurons, Yize Li, Xin Ge, Ru-Rong Ji
Pain Management By Chemogenetic Control Of Sensory Neurons, Yize Li, Xin Ge, Ru-Rong Ji
Faculty, Staff and Student Publications
In this study, Perez-Sanchez et al.1 developed a chemogenetic method aimed at alleviating pain in mouse models while dampening excitability in human sensory neurons. This analgesic effect was attained through the introduction of human α7 nicotinic acetylcholine receptor and glycine receptor pore domain via virus-mediated expression in sensory neurons, forming a chloride channel. The activation of this channel was made possible by specific agonists. This study highlights the potential for treating clinical pain by gene therapy.
Interleukin-17-Mediated Protective Cytokine Signaling Against Degeneration Of The Retinal Pigment Epithelium, Yan Chen, Sarah E Bounds, Xiang Ma, James Regun Karmoker, Yin Liu, Jian-Xing Ma, Jiyang Cai
Interleukin-17-Mediated Protective Cytokine Signaling Against Degeneration Of The Retinal Pigment Epithelium, Yan Chen, Sarah E Bounds, Xiang Ma, James Regun Karmoker, Yin Liu, Jian-Xing Ma, Jiyang Cai
Faculty, Staff and Student Publications
Injuries to the retinal pigment epithelium (RPE) and outer retina often result in the accumulation of retinal microglia within the subretinal space. These subretinal microglia play crucial roles in inflammation and resolution, but the mechanisms governing their functions are still largely unknown. Our previous research highlighted the protective functions of choroidal γδ T cells in response to RPE injury. In the current study, we employed single-cell RNA sequencing approach to characterize the profiles of immune cells in mouse choroid. We found that γδ T cells were the primary producer of interleukin-17 (IL-17) in the choroid. IL-17 signaled through its receptor …
Mirna-211 Maintains Metabolic Homeostasis In Medulloblastoma Through Its Target Gene Long-Chain Acyl-Coa Synthetase 4, Menglang Yuan, Iqbal Mahmud, Keisuke Katsushima, Kandarp Joshi, Olivier Saulnier, Rudramani Pokhrel, Bongyong Lee, Wathsala Liyanage, Haritha Kunhiraman, Stacie Stapleton, Ignacio Gonzalez-Gomez, Rangaramanujam M Kannan, Tanja Eisemann, Elayaraja Kolanthai, Sudipta Seal, Timothy J Garrett, Saed Abbasi, Kimberly Bockley, Justin Hanes, Prem Chapagain, George Jallo, Robert J Wechsler-Reya, Michael D Taylor, Charles G Eberhart, Animesh Ray, Ranjan J Perera
Mirna-211 Maintains Metabolic Homeostasis In Medulloblastoma Through Its Target Gene Long-Chain Acyl-Coa Synthetase 4, Menglang Yuan, Iqbal Mahmud, Keisuke Katsushima, Kandarp Joshi, Olivier Saulnier, Rudramani Pokhrel, Bongyong Lee, Wathsala Liyanage, Haritha Kunhiraman, Stacie Stapleton, Ignacio Gonzalez-Gomez, Rangaramanujam M Kannan, Tanja Eisemann, Elayaraja Kolanthai, Sudipta Seal, Timothy J Garrett, Saed Abbasi, Kimberly Bockley, Justin Hanes, Prem Chapagain, George Jallo, Robert J Wechsler-Reya, Michael D Taylor, Charles G Eberhart, Animesh Ray, Ranjan J Perera
Faculty, Staff and Students Publications
The prognosis of childhood medulloblastoma (MB) is often poor, and it usually requires aggressive therapy that adversely affects quality of life. microRNA-211 (miR-211) was previously identified as an important regulator of cells that descend from neural cells. Since medulloblastomas primarily affect cells with similar ontogeny, we investigated the role and mechanism of miR-211 in MB. Here we showed that miR-211 expression was highly downregulated in cell lines, PDXs, and clinical samples of different MB subgroups (SHH, Group 3, and Group 4) compared to normal cerebellum. miR-211 gene was ectopically expressed in transgenic cells from MB subgroups, and they were subjected …
A Broadly Reactive Antibody Targeting The N-Terminal Domain Of Sars-Cov-2 Spike Confers Fc-Mediated Protection, Lucas J Adams, Laura A Vanblargan, Zhuoming Liu, Pavlo Gilchuk, Haiyan Zhao, Rita E Chen, Saravanan Raju, Zhenlu Chong, Bradley M Whitener, Swathi Shrihari, Prashant N Jethva, Michael L Gross, James E Crowe Jr., Sean P J Whelan, Michael S Diamond, Daved H Fremont
A Broadly Reactive Antibody Targeting The N-Terminal Domain Of Sars-Cov-2 Spike Confers Fc-Mediated Protection, Lucas J Adams, Laura A Vanblargan, Zhuoming Liu, Pavlo Gilchuk, Haiyan Zhao, Rita E Chen, Saravanan Raju, Zhenlu Chong, Bradley M Whitener, Swathi Shrihari, Prashant N Jethva, Michael L Gross, James E Crowe Jr., Sean P J Whelan, Michael S Diamond, Daved H Fremont
2020-Current year OA Pubs
Most neutralizing anti-SARS-CoV-2 monoclonal antibodies (mAbs) target the receptor binding domain (RBD) of the spike (S) protein. Here, we characterize a panel of mAbs targeting the N-terminal domain (NTD) or other non-RBD epitopes of S. A subset of NTD mAbs inhibits SARS-CoV-2 entry at a post-attachment step and avidly binds the surface of infected cells. One neutralizing NTD mAb, SARS2-57, protects K18-hACE2 mice against SARS-CoV-2 infection in an Fc-dependent manner. Structural analysis demonstrates that SARS2-57 engages an antigenic supersite that is remodeled by deletions common to emerging variants. In neutralization escape studies with SARS2-57, this NTD site accumulates mutations, including …
Autophagy Gene-Dependent Intracellular Immunity Triggered By Interferon-Γ, Michael R Mcallaster, Jaya Bhushan, Dale R Balce, Anthony Orvedahl, Arnold Park, Seungmin Hwang, Meagan E Sullender, L David Sibley, Herbert W Virgin
Autophagy Gene-Dependent Intracellular Immunity Triggered By Interferon-Γ, Michael R Mcallaster, Jaya Bhushan, Dale R Balce, Anthony Orvedahl, Arnold Park, Seungmin Hwang, Meagan E Sullender, L David Sibley, Herbert W Virgin
2020-Current year OA Pubs
Interferon-γ (IFNγ) is a critical mediator of cell-intrinsic immunity to intracellular pathogens. Understanding the complex cellular mechanisms supporting robust interferon-γ-induced host defenses could aid in developing new therapeutics to treat infections. Here, we examined the impact of autophagy genes in the interferon-γ-induced host response. We demonstrate that genes within the autophagy pathway including
Pathway Centric Analysis For Single-Cell Rna-Seq And Spatial Transcriptomics Data With Gsdensity, Qingnan Liang, Yuefan Huang, Shan He, Ken Chen
Pathway Centric Analysis For Single-Cell Rna-Seq And Spatial Transcriptomics Data With Gsdensity, Qingnan Liang, Yuefan Huang, Shan He, Ken Chen
Faculty, Staff and Student Publications
Advances in single-cell technology have enabled molecular dissection of heterogeneous biospecimens at unprecedented scales and resolutions. Cluster-centric approaches are widely applied in analyzing single-cell data, however they have limited power in dissecting and interpreting highly heterogenous, dynamically evolving data. Here, we present GSDensity, a graph-modeling approach that allows users to obtain pathway-centric interpretation and dissection of single-cell and spatial transcriptomics (ST) data without performing clustering. Using pathway gene sets, we show that GSDensity can accurately detect biologically distinct cells and reveal novel cell-pathway associations ignored by existing methods. Moreover, GSDensity, combined with trajectory analysis can identify curated pathways that are …
Engineering E. Coli Strains Using Antibiotic-Resistance-Gene-Free Plasmids, Matthew B Amrofell, Sunaina Rengarajan, Steven T Vo, Erick S Ramirez Tovar, Larissa Lobello, Gautam Dantas, Tae Seok Moon
Engineering E. Coli Strains Using Antibiotic-Resistance-Gene-Free Plasmids, Matthew B Amrofell, Sunaina Rengarajan, Steven T Vo, Erick S Ramirez Tovar, Larissa Lobello, Gautam Dantas, Tae Seok Moon
2020-Current year OA Pubs
We created a generalizable pipeline for antibiotic-resistance-gene-free plasmid (ARGFP)-based cloning using a dual auxotrophic- and essential-gene-based selection strategy. We use auxotrophic selection to construct plasmids in engineered E. coli DH10B cloning strains and both auxotrophic- and essential-gene-based selection to (1) select for recombinant strains and (2) maintain a plasmid in E. coli Nissle 1917, a common chassis for engineered probiotic applications, and E. coli MG1655, the laboratory "wild-type" E. coli strain. We show that our approach has comparable efficiency to that of antibiotic-resistance-gene-based cloning. We also show that the double-knockout Nissle and MG1655 strains are simple to transform with plasmids …
Tuftelin1 Drives Experimental Pulmonary Fibrosis Progression By Facilitating Stress Fiber Assembly, Caoyuan Niu, Kai Xu, Yanan Hu, Yanling Jia, Yuexia Yang, Xiaoyue Pan, Ruyan Wan, Hui Lian, Qiwen Wang, Juntang Yang, Yajun Li, Ivan Rosas, Lan Wang, Guoying Yu
Tuftelin1 Drives Experimental Pulmonary Fibrosis Progression By Facilitating Stress Fiber Assembly, Caoyuan Niu, Kai Xu, Yanan Hu, Yanling Jia, Yuexia Yang, Xiaoyue Pan, Ruyan Wan, Hui Lian, Qiwen Wang, Juntang Yang, Yajun Li, Ivan Rosas, Lan Wang, Guoying Yu
Children’s Nutrition Research Center Staff Publications
Background: Idiopathic pulmonary fibrosis (IPF) is a progressive interstitial lung disease (ILD) with unknown etiology, characterized by sustained damage repair of epithelial cells and abnormal activation of fibroblasts, the underlying mechanism of the disease remains elusive.
Methods: To evaluate the role of Tuftelin1 (TUFT1) in IPF and elucidate its molecular mechanism. We investigated the level of TUFT1 in the IPF and bleomycin-induced mouse models and explored the influence of TUFT1 deficiency on pulmonary fibrosis. Additionally, we explored the effect of TUFT1 on the cytoskeleton and illustrated the relationship between stress fiber and pulmonary fibrosis.
Results: Our results demonstrated a significant …
Gpr84-Mediated Signal Transduction Affects Metabolic Function By Promoting Brown Adipocyte Activity, Xue-Nan Sun, Yu A An, Vivian A Paschoal, Camila O De Souza, May-Yun Wang, Lavanya Vishvanath, Lorena Ma Bueno, Ayanna S Cobb, Joseph A Nieto Carrion, Madison E Ibe, Chao Li, Harrison A Kidd, Shiuhwei Chen, Wenhong Li, Rana K Gupta, Da Young Oh
Gpr84-Mediated Signal Transduction Affects Metabolic Function By Promoting Brown Adipocyte Activity, Xue-Nan Sun, Yu A An, Vivian A Paschoal, Camila O De Souza, May-Yun Wang, Lavanya Vishvanath, Lorena Ma Bueno, Ayanna S Cobb, Joseph A Nieto Carrion, Madison E Ibe, Chao Li, Harrison A Kidd, Shiuhwei Chen, Wenhong Li, Rana K Gupta, Da Young Oh
Faculty, Staff and Student Publications
The G protein-coupled receptor 84 (GPR84), a medium-chain fatty acid receptor, has garnered attention because of its potential involvement in a range of metabolic conditions. However, the precise mechanisms underlying this effect remain elusive. Our study has shed light on the pivotal role of GPR84, revealing its robust expression and functional significance within brown adipose tissue (BAT). Mice lacking GPR84 exhibited increased lipid accumulation in BAT, rendering them more susceptible to cold exposure and displaying reduced BAT activity compared with their WT counterparts. Our in vitro experiments with primary brown adipocytes from GPR84-KO mice revealed diminished expression of thermogenic genes …
Acidosis-Mediated Increase In Ifn-Γ-Induced Pd-L1 Expression On Cancer Cells As An Immune Escape Mechanism In Solid Tumors, Philipp Knopf, Dimitri Stowbur, Sabrina H L Hoffmann, Natalie Hermann, Andreas Maurer, Valentina Bucher, Marilena Poxleitner, Bredi Tako, Dominik Sonanini, Balaji Krishnamachary, Sanhita Sinharay, Birgit Fehrenbacher, Irene Gonzalez-Menendez, Felix Reckmann, David Bomze, Lukas Flatz, Daniela Kramer, Martin Schaller, Stephan Forchhammer, Zaver M Bhujwalla, Leticia Quintanilla-Martinez, Klaus Schulze-Osthoff, Mark D Pagel, Marieke F Fransen, Martin Röcken, André F Martins, Bernd J Pichler, Kamran Ghoreschi, Manfred Kneilling
Acidosis-Mediated Increase In Ifn-Γ-Induced Pd-L1 Expression On Cancer Cells As An Immune Escape Mechanism In Solid Tumors, Philipp Knopf, Dimitri Stowbur, Sabrina H L Hoffmann, Natalie Hermann, Andreas Maurer, Valentina Bucher, Marilena Poxleitner, Bredi Tako, Dominik Sonanini, Balaji Krishnamachary, Sanhita Sinharay, Birgit Fehrenbacher, Irene Gonzalez-Menendez, Felix Reckmann, David Bomze, Lukas Flatz, Daniela Kramer, Martin Schaller, Stephan Forchhammer, Zaver M Bhujwalla, Leticia Quintanilla-Martinez, Klaus Schulze-Osthoff, Mark D Pagel, Marieke F Fransen, Martin Röcken, André F Martins, Bernd J Pichler, Kamran Ghoreschi, Manfred Kneilling
Faculty, Staff and Student Publications
Immune checkpoint inhibitors have revolutionized cancer therapy, yet the efficacy of these treatments is often limited by the heterogeneous and hypoxic tumor microenvironment (TME) of solid tumors. In the TME, programmed death-ligand 1 (PD-L1) expression on cancer cells is mainly regulated by Interferon-gamma (IFN-γ), which induces T cell exhaustion and enables tumor immune evasion. In this study, we demonstrate that acidosis, a common characteristic of solid tumors, significantly increases IFN-γ-induced PD-L1 expression on aggressive cancer cells, thus promoting immune escape. Using preclinical models, we found that acidosis enhances the genomic expression and phosphorylation of signal transducer and activator of transcription …
Targeting Eif4a Triggers An Interferon Response To Synergize With Chemotherapy And Suppress Triple-Negative Breast Cancer, Na Zhao, Elena B Kabotyanski, Alexander B Saltzman, Anna Malovannaya, Xueying Yuan, Lucas C Reineke, Nadia Lieu, Yang Gao, Diego A Pedroza, Sebastian J Calderon, Alex J Smith, Clark Hamor, Kazem Safari, Sara Savage, Bing Zhang, Jianling Zhou, Luisa M Solis, Susan G Hilsenbeck, Cheng Fan, Charles M Perou, Jeffrey M Rosen
Targeting Eif4a Triggers An Interferon Response To Synergize With Chemotherapy And Suppress Triple-Negative Breast Cancer, Na Zhao, Elena B Kabotyanski, Alexander B Saltzman, Anna Malovannaya, Xueying Yuan, Lucas C Reineke, Nadia Lieu, Yang Gao, Diego A Pedroza, Sebastian J Calderon, Alex J Smith, Clark Hamor, Kazem Safari, Sara Savage, Bing Zhang, Jianling Zhou, Luisa M Solis, Susan G Hilsenbeck, Cheng Fan, Charles M Perou, Jeffrey M Rosen
Faculty, Staff and Students Publications
Protein synthesis is frequently dysregulated in cancer and selective inhibition of mRNA translation represents an attractive cancer therapy. Here, we show that therapeutically targeting the RNA helicase eIF4A with zotatifin, the first-in-class eIF4A inhibitor, exerts pleiotropic effects on both tumor cells and the tumor immune microenvironment in a diverse cohort of syngeneic triple-negative breast cancer (TNBC) mouse models. Zotatifin not only suppresses tumor cell proliferation but also directly repolarizes macrophages toward an M1-like phenotype and inhibits neutrophil infiltration, which sensitizes tumors to immune checkpoint blockade. Mechanistic studies revealed that zotatifin reprograms the tumor translational landscape, inhibits the translation of Sox4 …
Apobec-1 Deletion Enhances Cisplatin-Induced Acute Kidney Injury, Xiaojia Guo, Valerie Blanc, Nicholas O Davidson, Heino Velazquez, Tian-Min Chen, Dennis G Moledina, Gilbert W Moeckel, Robert L Safirstein, Gary V Desir
Apobec-1 Deletion Enhances Cisplatin-Induced Acute Kidney Injury, Xiaojia Guo, Valerie Blanc, Nicholas O Davidson, Heino Velazquez, Tian-Min Chen, Dennis G Moledina, Gilbert W Moeckel, Robert L Safirstein, Gary V Desir
2020-Current year OA Pubs
Cisplatin (CP) induces acute kidney injury (AKI) whereby proximal tubules undergo regulated necrosis. Repair is almost complete after a single dose. We now demonstrate a role for Apolipoprotein B mRNA editing enzyme, catalytic polypeptide 1 (Apobec-1) that is prominently expressed at the interface between acute and chronic kidney injury (CKD), in the recovery from AKI. Apobec-1 knockout (KO) mice exhibited greater mortality than in wild type (WT) and more severe AKI in both CP- and unilateral ischemia reperfusion (IR) with nephrectomy. Specifically, plasma creatinine (pCr) 2.6 ± 0.70 mg/dL for KO, n = 10 and 0.16 ± 0.02 for WT, …
Monitoring Glucocorticoid Receptor In Plasma-Derived Extracellular Vesicles As A Marker Of Resistance To Androgen Receptor Signaling Inhibition In Prostate Cancer, Emanuela Gentile, Andrew W Hahn, Jian H Song, Anh Hoang, Peter D A Shepherd, Sumankalai Ramachandran, Nora M Navone, Eleni Efstathiou, Mark Titus, Paul G Corn, Sue-Hwa Lin, Christopher J Logothetis, Theocharis Panaretakis
Monitoring Glucocorticoid Receptor In Plasma-Derived Extracellular Vesicles As A Marker Of Resistance To Androgen Receptor Signaling Inhibition In Prostate Cancer, Emanuela Gentile, Andrew W Hahn, Jian H Song, Anh Hoang, Peter D A Shepherd, Sumankalai Ramachandran, Nora M Navone, Eleni Efstathiou, Mark Titus, Paul G Corn, Sue-Hwa Lin, Christopher J Logothetis, Theocharis Panaretakis
Faculty, Staff and Student Publications
Disease progression following androgen ablation was shown to be associated with upregulation of the glucocorticoid receptor (GR). Longitudinal monitoring of GR expression in circulating extracellular vesicles (EV) may reflect changes in the tumor cell and facilitates detection of acquired resistance. We utilized LNCaP, LREX cells and a patient-derived xenograft, MDA PDX 322-2-6a, for in vitro and in vivo experiments. Plasma-derived EVs were isolated from patients with localized high-risk prostate cancer undergoing androgen ablation. The mRNA levels of GR in EVs and their responsive genes were detected by transcriptome analysis, qRT-PCR and the protein levels by Western blot analysis. We detected …
Xtx101, A Tumor-Activated, Fc-Enhanced Anti-Ctla-4 Monoclonal Antibody, Demonstrates Tumor-Growth Inhibition And Tumor-Selective Pharmacodynamics In Mouse Models Of Cancer, Kurt A. Jenkins, Miso Park, Magali Pederzoli-Ribeil, Ugur Eskiocak, Parker Johnson, Wilson Guzman, Megan Mclaughlin, Deborah Moore-Lai, Caitlin O'Toole, Zhen Liu, Benjamin Nicholson, Veronica Flesch, Huawei Qiu, Tim Clackson, Ronan C. O'Hagan, Ulrich Rodeck, Margaret Karow, Jennifer O'Neil, John C. Williams
Xtx101, A Tumor-Activated, Fc-Enhanced Anti-Ctla-4 Monoclonal Antibody, Demonstrates Tumor-Growth Inhibition And Tumor-Selective Pharmacodynamics In Mouse Models Of Cancer, Kurt A. Jenkins, Miso Park, Magali Pederzoli-Ribeil, Ugur Eskiocak, Parker Johnson, Wilson Guzman, Megan Mclaughlin, Deborah Moore-Lai, Caitlin O'Toole, Zhen Liu, Benjamin Nicholson, Veronica Flesch, Huawei Qiu, Tim Clackson, Ronan C. O'Hagan, Ulrich Rodeck, Margaret Karow, Jennifer O'Neil, John C. Williams
Department of Dermatology and Cutaneous Biology Faculty Papers
INTRODUCTION: The clinical benefit of the anti-CTLA-4 monoclonal antibody (mAb) ipilimumab has been well established but limited by immune-related adverse events, especially when ipilimumab is used in combination with anti-PD-(L)1 mAb therapy. To overcome these limitations, we have developed XTX101, a tumor-activated, Fc-enhanced anti-CTLA-4 mAb.
METHODS: XTX101 consists of an anti-human CTLA-4 mAb covalently linked to masking peptides that block the complementarity-determining regions, thereby minimizing the mAb binding to CTLA-4. The masking peptides are designed to be released by proteases that are typically dysregulated within the tumor microenvironment (TME), resulting in activation of XTX101 intratumorally. Mutations within the Fc region …
Nitric Oxide Is Required For Lung Alveolarization Revealed By Deficiency Of Argininosuccinate Lyase, Zixue Jin, Ming-Ming Jiang, Brendan Lee
Nitric Oxide Is Required For Lung Alveolarization Revealed By Deficiency Of Argininosuccinate Lyase, Zixue Jin, Ming-Ming Jiang, Brendan Lee
Faculty, Staff and Students Publications
Inhaled nitric oxide (NO) therapy has been reported to improve lung growth in premature newborns. However, the underlying mechanisms by which NO regulates lung development remain largely unclear. NO is enzymatically produced by three isoforms of nitric oxide synthase (NOS) enzymes. NOS knockout mice are useful tools to investigate NO function in the lung. Each single NOS knockout mouse does not show obvious lung alveolar phenotype, likely due to compensatory mechanisms. While mice lacking all three NOS isoforms display impaired lung alveolarization, implicating NO plays a pivotal role in lung alveolarization. Argininosuccinate lyase (ASL) is the only mammalian enzyme capable …
Oncogenic Kras Drives Lipofibrogenesis To Promote Angiogenesis And Colon Cancer Progression, Wen-Hao Hsu, Kyle A Labella, Yiyun Lin, Ping Xu, Rumi Lee, Cheng-En Hsieh, Lei Yang, Ashley Zhou, Jonathan M Blecher, Chang-Jiun Wu, Kangyu Lin, Xiaoying Shang, Shan Jiang, Denise J Spring, Yan Xia, Peiwen Chen, John Paul Shen, Scott Kopetz, Ronald A Depinho
Oncogenic Kras Drives Lipofibrogenesis To Promote Angiogenesis And Colon Cancer Progression, Wen-Hao Hsu, Kyle A Labella, Yiyun Lin, Ping Xu, Rumi Lee, Cheng-En Hsieh, Lei Yang, Ashley Zhou, Jonathan M Blecher, Chang-Jiun Wu, Kangyu Lin, Xiaoying Shang, Shan Jiang, Denise J Spring, Yan Xia, Peiwen Chen, John Paul Shen, Scott Kopetz, Ronald A Depinho
Faculty, Staff and Student Publications
Oncogenic KRAS (KRAS*) contributes to many cancer hallmarks. In colorectal cancer, KRAS* suppresses antitumor immunity to promote tumor invasion and metastasis. Here, we uncovered that KRAS* transforms the phenotype of carcinoma-associated fibroblasts (CAF) into lipid-laden CAFs, promoting angiogenesis and tumor progression. Mechanistically, KRAS* activates the transcription factor CP2 (TFCP2) that upregulates the expression of the proadipogenic factors BMP4 and WNT5B, triggering the transformation of CAFs into lipid-rich CAFs. These lipid-rich CAFs, in turn, produce VEGFA to spur angiogenesis. In KRAS*-driven colorectal cancer mouse models, genetic or pharmacologic neutralization of TFCP2 reduced lipid-rich CAFs, lessened tumor angiogenesis, and improved overall survival. …
Interleukin 31 Receptor Α Promotes Smooth Muscle Cell Contraction And Airway Hyperresponsiveness In Asthma, Santhoshi Akkenepally, Dan Yombo, Sanjana Yerubandi, Geereddy Bhanuprakash Reddy, Deepak Deshpande, Francis Mccormack, Satish Madala
Interleukin 31 Receptor Α Promotes Smooth Muscle Cell Contraction And Airway Hyperresponsiveness In Asthma, Santhoshi Akkenepally, Dan Yombo, Sanjana Yerubandi, Geereddy Bhanuprakash Reddy, Deepak Deshpande, Francis Mccormack, Satish Madala
Center for Translational Medicine Faculty Papers
Asthma is a chronic inflammatory airway disease characterized by airway hyperresponsiveness (AHR), inflammation, and goblet cell hyperplasia. Multiple cytokines, including IFNγ, IL-4, and IL-13 are associated with asthma; however, the mechanisms underlying the effects of these cytokines remain unclear. Here, we report a significant increase in the expression of IL-31RA, but not its cognate ligand IL-31, in mouse models of allergic asthma. In support of this, IFNγ, IL-4, and IL-13 upregulated IL-31RA but not IL-31 in both human and mice primary airway smooth muscle cells (ASMC) isolated from the airways of murine and human lungs. Importantly, the loss of IL-31RA …
Sirtuin 6 Activation Rescues The Age-Related Decline In Dna Damage Repair In Primary Human Chondrocytes, Michaela E. Copp, Jacqueline Shine, Hannon L. Brown, Kirti R. Nimmala, Oliver B. Hansen, Susan Chubinskaya, John A. Collins, Richard F. Loeser, Brian O. Diekman
Sirtuin 6 Activation Rescues The Age-Related Decline In Dna Damage Repair In Primary Human Chondrocytes, Michaela E. Copp, Jacqueline Shine, Hannon L. Brown, Kirti R. Nimmala, Oliver B. Hansen, Susan Chubinskaya, John A. Collins, Richard F. Loeser, Brian O. Diekman
Department of Orthopaedic Surgery Faculty Papers
While advanced age is widely recognized as the greatest risk factor for osteoarthritis (OA), the biological mechanisms behind this connection remain unclear. Previous work has demonstrated that chondrocytes from older cadaveric donors have elevated levels of DNA damage as compared to chondrocytes from younger donors. The purpose of this study was to determine whether a decline in DNA repair efficiency is one explanation for the accumulation of DNA damage with age, and to quantify the improvement in repair with activation of Sirtuin 6 (SIRT6). After acute damage with irradiation, DNA repair was shown to be more efficient in chondrocytes from …
Therapeutic Effect Of Echinococcus Granulosus Cyst Fluid On Bacterial Sepsis In Mice, Shuying Wang, Donghui Jiang, Feifei Huang, Yayun Qian, Meitao Qi, Huihui Li, Xiaoli Wang, Zhi Wang, Kaigui Wang, Yin Wang, Pengfei Du, Bin Zhan, Rui Zhou, Liang Chu, Xiaodi Yang
Therapeutic Effect Of Echinococcus Granulosus Cyst Fluid On Bacterial Sepsis In Mice, Shuying Wang, Donghui Jiang, Feifei Huang, Yayun Qian, Meitao Qi, Huihui Li, Xiaoli Wang, Zhi Wang, Kaigui Wang, Yin Wang, Pengfei Du, Bin Zhan, Rui Zhou, Liang Chu, Xiaodi Yang
Faculty, Staff and Students Publications
BACKGROUND: The primary pathophysiological process of sepsis is to stimulate a massive release of inflammatory mediators to trigger systemic inflammatory response syndrome (SIRS), the major cause of multi-organ dysfunction and death. Like other helminths, Echinococcus granulosus induces host immunomodulation. We sought to determine whether E. granulosus cyst fluid (EgCF) displays a therapeutic effect on sepsis-induced inflammation and tissue damage in a mouse model.
METHODS: The anti-inflammatory effects of EgCF were determined by in vitro culture with bone marrow-derived macrophages (BMDMs) and in vivo treatment of BALB/C mice with cecal ligation and puncture (CLP)-induced sepsis. The macrophage phenotypes were determined by …
Proteogenomic Analysis Reveals Cytoplasmic Sequestration Of Runx1 By The Acute Myeloid Leukemia-Initiating Cbfb::Myh11 Oncofusion Protein, Ryan B. Day, Julia A. Hickman, Ziheng Xu, Casey Ds Katerndahl, Francesca Ferraro, Sai Makund Ramakrishnan, Petra Erdmann-Gilmore, Robert W. Sprung, Yiling Mi, R. Reid Townsend, Christopher A. Miller, Timothy J. Ley
Proteogenomic Analysis Reveals Cytoplasmic Sequestration Of Runx1 By The Acute Myeloid Leukemia-Initiating Cbfb::Myh11 Oncofusion Protein, Ryan B. Day, Julia A. Hickman, Ziheng Xu, Casey Ds Katerndahl, Francesca Ferraro, Sai Makund Ramakrishnan, Petra Erdmann-Gilmore, Robert W. Sprung, Yiling Mi, R. Reid Townsend, Christopher A. Miller, Timothy J. Ley
2020-Current year OA Pubs
Several canonical translocations produce oncofusion genes that can initiate acute myeloid leukemia (AML). Although each translocation is associated with unique features, the mechanisms responsible remain unclear. While proteins interacting with each oncofusion are known to be relevant for how they act, these interactions have not yet been systematically defined. To address this issue in an unbiased fashion, we fused a promiscuous biotin ligase (TurboID) in-frame with 3 favorable-risk AML oncofusion cDNAs (PML::RARA, RUNX1::RUNX1T1, and CBFB::MYH11) and identified their interacting proteins in primary murine hematopoietic cells. The PML::RARA- and RUNX1::RUNX1T1-TurboID fusion proteins labeled common and unique nuclear repressor complexes, implying their …
Docking For Ep4r Antagonists Active Against Inflammatory Pain, Stefan Gahbauer, Tao Che, Et Al.
Docking For Ep4r Antagonists Active Against Inflammatory Pain, Stefan Gahbauer, Tao Che, Et Al.
2020-Current year OA Pubs
The lipid prostaglandin E
Design And Structural Validation Of Peptide-Drug Conjugate Ligands Of The Kappa-Opioid Receptor, Edin Muratspahić, Jianming Han, Balazs R Varga, Kevin Appourchaux, Susruta Majumdar, Tao Che, Et Al.
Design And Structural Validation Of Peptide-Drug Conjugate Ligands Of The Kappa-Opioid Receptor, Edin Muratspahić, Jianming Han, Balazs R Varga, Kevin Appourchaux, Susruta Majumdar, Tao Che, Et Al.
2020-Current year OA Pubs
Despite the increasing number of GPCR structures and recent advances in peptide design, the development of efficient technologies allowing rational design of high-affinity peptide ligands for single GPCRs remains an unmet challenge. Here, we develop a computational approach for designing conjugates of lariat-shaped macrocyclized peptides and a small molecule opioid ligand. We demonstrate its feasibility by discovering chemical scaffolds for the kappa-opioid receptor (KOR) with desired pharmacological activities. The designed De Novo Cyclic Peptide (DNCP)-β-naloxamine (NalA) exhibit in vitro potent mixed KOR agonism/mu-opioid receptor (MOR) antagonism, nanomolar binding affinity, selectivity, and efficacy bias at KOR. Proof-of-concept in vivo efficacy studies …
Acss2 Gene Variants Determine Kidney Disease Risk By Controlling De Novo Lipogenesis In Kidney Tubules, Dhanunjay Mukhi, Lingzhi Li, Hongbo Liu, Tomohito Doke, Lakshmi P Kolligundla, Eunji Ha, Konstantin Kloetzer, Amin Abedini, Sarmistha Mukherjee, Junnan Wu, Poonam Dhillon, Hailong Hu, Dongyin Guan, Katsuhiko Funai, Kahealani Uehara, Paul M Titchenell, Joseph A Baur, Kathryn E Wellen, Katalin Susztak
Acss2 Gene Variants Determine Kidney Disease Risk By Controlling De Novo Lipogenesis In Kidney Tubules, Dhanunjay Mukhi, Lingzhi Li, Hongbo Liu, Tomohito Doke, Lakshmi P Kolligundla, Eunji Ha, Konstantin Kloetzer, Amin Abedini, Sarmistha Mukherjee, Junnan Wu, Poonam Dhillon, Hailong Hu, Dongyin Guan, Katsuhiko Funai, Kahealani Uehara, Paul M Titchenell, Joseph A Baur, Kathryn E Wellen, Katalin Susztak
Faculty, Staff and Students Publications
Worldwide, over 800 million people are affected by kidney disease, yet its pathogenesis remains elusive, hindering the development of novel therapeutics. In this study, we used kidney-specific expression of quantitative traits and single-nucleus open chromatin analysis to show that genetic variants linked to kidney dysfunction on chromosome 20 target the acyl-CoA synthetase short-chain family 2 (ACSS2). By generating ACSS2-KO mice, we demonstrated their protection from kidney fibrosis in multiple disease models. Our analysis of primary tubular cells revealed that ACSS2 regulated de novo lipogenesis (DNL), causing NADPH depletion and increasing ROS levels, ultimately leading to NLRP3-dependent pyroptosis. Additionally, we discovered …
Antiseizure Effects Of Peganum Harmala L. And Lavandula Angustifolia, Zahra Rahimian, Seyedhassan Sadrian, Mina Shahisavandi, Hadi Aligholi, Mohammad M. Zarshenas, Alireza Abyar, Zahra Zeraatpisheh, Ali A. Asadi-Pooya
Antiseizure Effects Of Peganum Harmala L. And Lavandula Angustifolia, Zahra Rahimian, Seyedhassan Sadrian, Mina Shahisavandi, Hadi Aligholi, Mohammad M. Zarshenas, Alireza Abyar, Zahra Zeraatpisheh, Ali A. Asadi-Pooya
Department of Neurology Faculty Papers
Peganum harmala L. and Lavandula angustifolia are two traditional herbs with probable antiseizure effects. This study evaluated the effects of these two herbal extracts on pentylenetetrazol- (PTZ-) induced seizures in mice. We prepared hydroalcoholic extracts using P. harmala seeds and the aerial parts of L. angustifolia and then randomly divided 190 mice into 19 groups. Normal saline (10 mg/kg), diazepam (2 mg/kg), P. harmala (2.5, 5, 10, 15, 30, 45, and 60 mg/kg), and L. angustifolia (200, 400, 600, and 800 mg/kg) were intraperitoneally (IP) administrated 30 min before an IP administration of PTZ (90 mg/kg). Animals were observed for …
Dna Methylation-Mediated Rbpjk Suppression Protects Against Fracture Nonunion Caused By Systemic Inflammation, Ding Xiao, Liang Fang, Zhongting Liu, Yonghua He, Jun Ying, Haocheng Qin, Aiwu Lu, Meng Shi, Tiandao Li, Bo Zhang, Jianjun Guan, Cuicui Wang, Yousef Abu-Amer, Jie Shen
Dna Methylation-Mediated Rbpjk Suppression Protects Against Fracture Nonunion Caused By Systemic Inflammation, Ding Xiao, Liang Fang, Zhongting Liu, Yonghua He, Jun Ying, Haocheng Qin, Aiwu Lu, Meng Shi, Tiandao Li, Bo Zhang, Jianjun Guan, Cuicui Wang, Yousef Abu-Amer, Jie Shen
2020-Current year OA Pubs
Challenging skeletal repairs are frequently seen in patients experiencing systemic inflammation. To tackle the complexity and heterogeneity of the skeletal repair process, we performed single-cell RNA sequencing and revealed that progenitor cells were one of the major lineages responsive to elevated inflammation and this response adversely affected progenitor differentiation by upregulation of Rbpjk in fracture nonunion. We then validated the interplay between inflammation (via constitutive activation of Ikk2, Ikk2ca) and Rbpjk specifically in progenitors by using genetic animal models. Focusing on epigenetic regulation, we identified Rbpjk as a direct target of Dnmt3b. Mechanistically, inflammation decreased Dnmt3b expression in progenitor cells, …