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Department of Pathology, Anatomy, and Cell Biology Faculty Papers

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Clinical Performance Of The Point-Of-Care Cobas Liat For Detection Of Sars-Cov-2 In 20 Minutes: A Multicenter Study., Glen Hansen, Jamie Marino, Zi-Xuan Wang, Kathleen G Beavis, John Rodrigo, Kylie Labog, Lars F Westblade, Run Jin, Nedra Love, Karen Ding, Sachin Garg, Alan Huang, Joanna Sickler, Nam K Tran Jan 2021

Clinical Performance Of The Point-Of-Care Cobas Liat For Detection Of Sars-Cov-2 In 20 Minutes: A Multicenter Study., Glen Hansen, Jamie Marino, Zi-Xuan Wang, Kathleen G Beavis, John Rodrigo, Kylie Labog, Lars F Westblade, Run Jin, Nedra Love, Karen Ding, Sachin Garg, Alan Huang, Joanna Sickler, Nam K Tran

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Highly accurate testing for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) at the point of care (POC) is an unmet diagnostic need in emergency care and time-sensitive outpatient care settings. Reverse transcription-PCR (RT-PCR) technology is the gold standard for SARS-CoV-2 diagnostics. We performed a multisite U.S. study comparing the clinical performance of the first U.S. Food and Drug Administration (FDA)-authorized POC RT-PCR for detection of SARS-CoV-2 in 20 min, the cobas Liat SARS-CoV-2 and influenza A/B nucleic acid test, to the most widely used RT-PCR laboratory test, the cobas 68/8800 SARS-CoV-2 test. Clinical nasopharyngeal swab specimens from 444 patients with …


Computational Modeling Analysis Of Generation Of Reactive Oxygen Species By Mitochondrial Assembled And Disintegrated Complex Ii., Nikolay I. Markevich, Lubov N. Markevich, Jan B. Hoek Oct 2020

Computational Modeling Analysis Of Generation Of Reactive Oxygen Species By Mitochondrial Assembled And Disintegrated Complex Ii., Nikolay I. Markevich, Lubov N. Markevich, Jan B. Hoek

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Reactive oxygen species (ROS) function as critical mediators in a broad range of cellular signaling processes. The mitochondrial electron transport chain is one of the major contributors to ROS formation in most cells. Increasing evidence indicates that the respiratory Complex II (CII) can be the predominant ROS generator under certain conditions. A computational, mechanistic model of electron transfer and ROS formation in CII was developed in the present study to facilitate quantitative analysis of mitochondrial ROS production. The model was calibrated by fitting the computer simulated results to experimental data obtained on submitochondrial particles (SMP) prepared from bovine and rat …


Educational Case: A Case Of Transfusion-Transmitted Babesiosis: Diagnostic Perspectives Across The Clinical Laboratory., Kaitlyn Dykes, Alexis R. Peedin Sep 2020

Educational Case: A Case Of Transfusion-Transmitted Babesiosis: Diagnostic Perspectives Across The Clinical Laboratory., Kaitlyn Dykes, Alexis R. Peedin

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

The following fictional case is intended as a learning tool within the Pathology Competencies for Medical Education (PCME), a set of national standards for teaching pathology. These are divided into three basic competencies: Disease Mechanisms and Processes, Organ System Pathology, and Diagnostic Medicine and Therapeutic Pathology.


Diurnal Patterns Of Gene Expression In The Dorsal Vagal Complex And The Central Nucleus Of The Amygdala - Non-Rhythm-Generating Brain Regions, Mary M Staehle, Sean O'Sullivan, Rajanikanth Vadigepalli, Kate F Kernan, Gregory E Gonye, Babatunde A Ogunnaike, James S. Schwaber May 2020

Diurnal Patterns Of Gene Expression In The Dorsal Vagal Complex And The Central Nucleus Of The Amygdala - Non-Rhythm-Generating Brain Regions, Mary M Staehle, Sean O'Sullivan, Rajanikanth Vadigepalli, Kate F Kernan, Gregory E Gonye, Babatunde A Ogunnaike, James S. Schwaber

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Genes that establish the circadian clock have differential expression with respect to solar time in central and peripheral tissues. Here, we find circadian-time-induced differential expression in a large number of genes not associated with circadian rhythms in two brain regions lacking overt circadian function: the dorsal vagal complex (DVC) and the central nucleus of the amygdala (CeA). These regions primarily engage in autonomic, homeostatic, and emotional regulation. However, we find striking diurnal shifts in gene expression in these regions of male Sprague Dawley rats with no obvious patterns that could be attributed to function or region. These findings have implications …


Catabolic Degradation Of Endothelial Vegfa Via Autophagy, Thomas Neill, Carolyn Chen, Simone Buraschi, Renato V. Iozzo May 2020

Catabolic Degradation Of Endothelial Vegfa Via Autophagy, Thomas Neill, Carolyn Chen, Simone Buraschi, Renato V. Iozzo

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Extracellular matrix-evoked angiostasis and autophagy within the tumor microenvironment represent two critical, but unconnected, functions of the small leucine-rich proteoglycan, decorin. Acting as a partial agonist of vascular endothelial growth factor 2 (VEGFR2), soluble decorin signals via the energy sensing protein, AMP-activated protein kinase (AMPK), in the autophagic degradation of intracellular vascular endothelial growth factor A (VEGFA). Here, we discovered that soluble decorin evokes intracellular catabolism of endothelial VEGFA that is mechanistically independent of mTOR, but requires an autophagic regulator, paternally expressed gene 3 (PEG3). We found that administration of autophagic inhibitors such as chloroquine or bafilomycin A1, or depletion …


Discoidin Domain Receptor 1 Functionally Interacts With The Igf-I System In Bladder Cancer, Simone Buraschi, Alaide Morcavallo, Thomas Neill, Manuela Stefanello, Chiara Palladino, Shi-Qiong Xu, Antonino Belfiore, Renato V. Iozzo, Andrea Morrione May 2020

Discoidin Domain Receptor 1 Functionally Interacts With The Igf-I System In Bladder Cancer, Simone Buraschi, Alaide Morcavallo, Thomas Neill, Manuela Stefanello, Chiara Palladino, Shi-Qiong Xu, Antonino Belfiore, Renato V. Iozzo, Andrea Morrione

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

No abstract provided.


Multiple Mitochondrial Thioesterases Have Distinct Tissue And Substrate Specificity And Coa Regulation, Suggesting Unique Functional Roles., Carmen Bekeova, Lauren Anderson-Pullinger, Kevin Boye, Felix Boos, Yana Sharpadskaya, Johannes M Herrmann, Erin L. Seifert Dec 2019

Multiple Mitochondrial Thioesterases Have Distinct Tissue And Substrate Specificity And Coa Regulation, Suggesting Unique Functional Roles., Carmen Bekeova, Lauren Anderson-Pullinger, Kevin Boye, Felix Boos, Yana Sharpadskaya, Johannes M Herrmann, Erin L. Seifert

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Acyl-CoA thioesterases (Acots) hydrolyze fatty acyl-CoA esters. Acots in the mitochondrial matrix are poised to mitigate β-oxidation overload and maintain CoA availability. Several Acots associate with mitochondria, but whether they all localize to the matrix, are redundant, or have different roles is unresolved. Here, we compared the suborganellar localization, activity, expression, and regulation among mitochondrial Acots (Acot2, -7, -9, and -13) in mitochondria from multiple mouse tissues and from a model of Acot2 depletion. Acot7, -9, and -13 localized to the matrix, joining Acot2 that was previously shown to localize there. Mitochondria from heart, skeletal muscle, brown adipose tissue, and …


Single-Cell Glia And Neuron Gene Expression In The Central Amygdala In Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis, Sean J. O'Sullivan, Evangelia Malahias, James Park, Ankita Srivastava, Beverly A.S. Reyes, Jonathan Gorky, Rajanikanth Vadigepalli, Elisabeth J. Van Bockstaele, James S. Schwaber Jul 2019

Single-Cell Glia And Neuron Gene Expression In The Central Amygdala In Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis, Sean J. O'Sullivan, Evangelia Malahias, James Park, Ankita Srivastava, Beverly A.S. Reyes, Jonathan Gorky, Rajanikanth Vadigepalli, Elisabeth J. Van Bockstaele, James S. Schwaber

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Drug-seeking in opioid dependence is due in part to the severe negative emotion associated with the withdrawal syndrome. It is well-established that negative emotional states emerge from activity in the amygdala. More recently, gut microflora have been shown to contribute substantially to such emotions. We measured gene expression in single glia and neurons gathered from the amygdala using laser capture microdissection and simultaneously measured gut microflora in morphine-dependent and withdrawn rats to investigate drivers of negative emotion in opioid withdrawal. We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly …


Single-Cell Gene Expression Analysis Identifies Chronic Alcohol-Mediated Shift In Hepatocyte Molecular States After Partial Hepatectomy., Sirisha Achanta, Aalap Verma, Ankita Srivastava, Harshavardhan Nilakantan, Jan B. Hoek, Rajanikanth Vadigepalli Apr 2019

Single-Cell Gene Expression Analysis Identifies Chronic Alcohol-Mediated Shift In Hepatocyte Molecular States After Partial Hepatectomy., Sirisha Achanta, Aalap Verma, Ankita Srivastava, Harshavardhan Nilakantan, Jan B. Hoek, Rajanikanth Vadigepalli

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

The analysis of molecular states of individual cells, as defined by their mRNA expression profiles and protein composition, has gained widespread interest in studying biological phenomena ranging from embryonic development to homeostatic tissue function and genesis and evolution of cancers. Although the molecular content of individual cells in a tissue can vary widely, their molecular states tend to be constrained within a transcriptional landscape partly described by the canonical archetypes of a population of cells. In this study, we sought to characterize the effects of an acute (partial hepatectomy) and chronic (alcohol consumption) perturbation on the molecular states of individual …


Coming Together To Define Membrane Contact Sites., Luca Scorrano, Maria Antonietta De Matteis, Scott Emr, Francesca Giordano, György Hajnóczky, Benoît Kornmann, Laura L. Lackner, Tim P. Levine, Luca Pellegrini, Karin Reinisch, Rosario Rizzuto, Thomas Simmen, Harald Stenmark, Christian Ungermann, Maya Schuldiner Mar 2019

Coming Together To Define Membrane Contact Sites., Luca Scorrano, Maria Antonietta De Matteis, Scott Emr, Francesca Giordano, György Hajnóczky, Benoît Kornmann, Laura L. Lackner, Tim P. Levine, Luca Pellegrini, Karin Reinisch, Rosario Rizzuto, Thomas Simmen, Harald Stenmark, Christian Ungermann, Maya Schuldiner

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Close proximities between organelles have been described for decades. However, only recently a specific field dealing with organelle communication at membrane contact sites has gained wide acceptance, attracting scientists from multiple areas of cell biology. The diversity of approaches warrants a unified vocabulary for the field. Such definitions would facilitate laying the foundations of this field, streamlining communication and resolving semantic controversies. This opinion, written by a panel of experts in the field, aims to provide this burgeoning area with guidelines for the experimental definition and analysis of contact sites. It also includes suggestions on how to operationally and tractably …


Dynamic Molecular Changes During The First Week Of Human Life Follow A Robust Developmental Trajectory., Amy H. Lee, Casey P. Shannon, Nelly Amenyogbe, Tue B. Bennike, Joann Diray-Arce, Olubukola T. Idoko, Erin E. Gill, Rym Ben-Othman, William S. Pomat, Simon D. Van Haren, Kim-Anh Lê Cao, Momoudou Cox, Alansana Darboe, Reza Falsafi, Davide Ferrari, Daniel J. Harbeson, Daniel He, Cai Bing, Samuel J. Hinshaw, Jorjoh Ndure, Jainaba Njie-Jobe, Matthew A. Pettengill, Peter C. Richmond, Rebecca Ford, Gerard Saleu, Geraldine Masiria, John Paul Matlam, Wendy Kirarock, Elishia Roberts, Mehrnoush Malek, Guzmán Sanchez-Schmitz, Amrit Singh, Asimenia Angelidou, Kinga K. Smolen, Diana Vo, Ken Kraft, Kerry Mcenaney, Sofia Vignolo, Arnaud Marchant, Ryan R. Brinkman, Al Ozonoff, Robert E.W. Hancock, Anita H.J. Van Den Biggelaar, Hanno Steen, Scott J. Tebbutt, Beate Kampmann, Ofer Levy, Tobias R. Kollmann Mar 2019

Dynamic Molecular Changes During The First Week Of Human Life Follow A Robust Developmental Trajectory., Amy H. Lee, Casey P. Shannon, Nelly Amenyogbe, Tue B. Bennike, Joann Diray-Arce, Olubukola T. Idoko, Erin E. Gill, Rym Ben-Othman, William S. Pomat, Simon D. Van Haren, Kim-Anh Lê Cao, Momoudou Cox, Alansana Darboe, Reza Falsafi, Davide Ferrari, Daniel J. Harbeson, Daniel He, Cai Bing, Samuel J. Hinshaw, Jorjoh Ndure, Jainaba Njie-Jobe, Matthew A. Pettengill, Peter C. Richmond, Rebecca Ford, Gerard Saleu, Geraldine Masiria, John Paul Matlam, Wendy Kirarock, Elishia Roberts, Mehrnoush Malek, Guzmán Sanchez-Schmitz, Amrit Singh, Asimenia Angelidou, Kinga K. Smolen, Diana Vo, Ken Kraft, Kerry Mcenaney, Sofia Vignolo, Arnaud Marchant, Ryan R. Brinkman, Al Ozonoff, Robert E.W. Hancock, Anita H.J. Van Den Biggelaar, Hanno Steen, Scott J. Tebbutt, Beate Kampmann, Ofer Levy, Tobias R. Kollmann

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Systems biology can unravel complex biology but has not been extensively applied to human newborns, a group highly vulnerable to a wide range of diseases. We optimized methods to extract transcriptomic, proteomic, metabolomic, cytokine/chemokine, and single cell immune phenotyping data fromblood, a volume readily obtained from newborns. Indexing to baseline and applying innovative integrative computational methods reveals dramatic changes along a remarkably stable developmental trajectory over the first week of life. This is most evident in changes of interferon and complement pathways, as well as neutrophil-associated signaling. Validated across two independent cohorts of newborns from West Africa and Australasia, a …


Methods For Monitoring Matrix-Induced Autophagy., Carolyn Chen, Aastha Kapoor, Renato V. Iozzo Jan 2019

Methods For Monitoring Matrix-Induced Autophagy., Carolyn Chen, Aastha Kapoor, Renato V. Iozzo

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

A growing body of research demonstrates modulation of autophagy by a variety of matrix constituents, including decorin, endorepellin, and endostatin. These matrix proteins are both pro-autophagic and anti-angiogenic. Here, we detail a series of methods to monitor matrix-induced autophagy and its concurrent effects on angiogenesis. We first discuss cloning and purifying proteoglycan fragment and core proteins in the laboratory and review relevant techniques spanning from cell culture to treatment with these purified proteoglycans in vitro and ex vivo. Further, we cover protocols in monitoring autophagic progression via morphological and microscopic characterization, biochemical western blot analysis, and signaling pathway investigation. Downstream …


Micu1 Interacts With The D-Ring Of The Mcu Pore To Control Its Ca2+ Flux And Sensitivity To Ru360, Melanie Paillard, György Csordás, Kai-Ting Huang, Peter Várnai, Suresh K. Joseph, György Hajnóczky Nov 2018

Micu1 Interacts With The D-Ring Of The Mcu Pore To Control Its Ca2+ Flux And Sensitivity To Ru360, Melanie Paillard, György Csordás, Kai-Ting Huang, Peter Várnai, Suresh K. Joseph, György Hajnóczky

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Proper control of the mitochondrial Ca2+ uniporter’s pore (MCU) is required to allow Ca2+ dependent activation of oxidative metabolism and to avoid mitochondrial Ca2+ overload and cell death. The MCU’s gatekeeping and cooperative activation is mediated by the Ca2+ sensing MICU1 protein, which has been proposed to form dimeric complexes anchored to the EMRE scaffold of MCU. We unexpectedly find that MICU1 suppresses inhibition of MCU by ruthenium red/Ru360, which bind to MCU’s DIME motif, the selectivity filter. This led us to recognize in MICU1’s sequence, a putative DIME Interacting Domain (DID) which is required for …


Redox Regulation Of Type-I Inositol Trisphosphate Receptors In Intact Mammalian Cells., Suresh K. Joseph, Michael P. Young, Kamil Alzayady, David I. Yule, Mehboob Ali, David M. Booth, György Hajnóczky Nov 2018

Redox Regulation Of Type-I Inositol Trisphosphate Receptors In Intact Mammalian Cells., Suresh K. Joseph, Michael P. Young, Kamil Alzayady, David I. Yule, Mehboob Ali, David M. Booth, György Hajnóczky

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

A sensitization of inositol 1,4,5-trisphosphate receptor (IP3R)-mediated Ca2+ release is associated with oxidative stress in multiple cell types. These effects are thought to be mediated by alterations in the redox state of critical thiols in the IP3R, but this has not been directly demonstrated in intact cells. Here, we utilized a combination of gel-shift assays with MPEG-maleimides and LC-MS/MS to monitor the redox state of recombinant IP3R1 expressed in HEK293 cells. We found that under basal conditions, ∼5 of the 60 cysteines are oxidized in IP3R1. Cell treatment with 50 μm thimerosal altered gel shifts, indicating oxidation of ∼20 cysteines. …


Metabolic Reprogramming Of Murine Cardiomyocytes During Autophagy Requires The Extracellular Nutrient Sensor Decorin., Maria A. Gubbiotti, Erin L. Seifert, Ulrich Rodeck, Jan B. Hoek, Renato V. Iozzo Oct 2018

Metabolic Reprogramming Of Murine Cardiomyocytes During Autophagy Requires The Extracellular Nutrient Sensor Decorin., Maria A. Gubbiotti, Erin L. Seifert, Ulrich Rodeck, Jan B. Hoek, Renato V. Iozzo

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

The extracellular matrix is a master regulator of tissue homeostasis in health and disease. Here we examined how the small, leucine-rich, extracellular matrix proteoglycan decorin regulates cardiomyocyte metabolism during fasting in vivo. First, we validated in Dcn-/- mice that decorin plays an essential role in autophagy induced by fasting. High-Throughput metabolomics analyses of cardiac tissue in Dcn-/- mice subjected to fasting revealed striking differences in the hexosamine biosynthetic pathway resulting in aberrant cardiac O-β-N-Acetylglycosylation as compared with WT mice. Functionally, Dcn-/- mice maintained cardiac function at a level comparable with nonfasted animals whereas fasted WT mice showed …


Cellular Network Modeling And Single Cell Gene Expression Analysis Reveals Novel Hepatic Stellate Cell Phenotypes Controlling Liver Regeneration Dynamics, Daniel Cook, Sirisha Achanta, Jan B. Hoek, Babatunde A. Ogunnaike, Rajanikanth Vadigepalli Oct 2018

Cellular Network Modeling And Single Cell Gene Expression Analysis Reveals Novel Hepatic Stellate Cell Phenotypes Controlling Liver Regeneration Dynamics, Daniel Cook, Sirisha Achanta, Jan B. Hoek, Babatunde A. Ogunnaike, Rajanikanth Vadigepalli

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Background: Recent results from single cell gene and protein regulation studies are starting to uncover the previously underappreciated fact that individual cells within a population exhibit high variability in the expression of mRNA and proteins (i.e., molecular variability). By combining cellular network modeling, and high-throughput gene expression measurements in single cells, we seek to reconcile the high molecular variability in single cells with the relatively low variability in tissue-scale gene and protein expression and the highly coordinated functional responses of tissues to physiological challenges. In this study, we focus on relating the dynamic changes in distributions of hepatic stellate cell …


Spsnet: Subpopulation-Sensitive Network-Based Analysis Of Heterogeneous Gene Expression Data., Abha Belorkar, Rajanikanth Vadigepalli, Limsoon Wong Mar 2018

Spsnet: Subpopulation-Sensitive Network-Based Analysis Of Heterogeneous Gene Expression Data., Abha Belorkar, Rajanikanth Vadigepalli, Limsoon Wong

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

BACKGROUND: Transcriptomic datasets often contain undeclared heterogeneity arising from biological variation such as diversity of disease subtypes, treatment subgroups, time-series gene expression, nested experimental conditions, as well as technical variation due to batch effects, platform differences in integrated meta-analyses, etc. However, current analysis approaches are primarily designed to handle comparisons between experimental conditions represented by homogeneous samples, thus precluding the discovery of underlying subphenotypes. Unsupervised methods for subtype identification are typically based on individual gene level analysis, which often result in irreproducible gene signatures for potential subtypes. Emerging methods to study heterogeneity have been largely developed in the context of …


A Simple And Accurate Rule-Based Modeling Framework For Simulation Of Autocrine/Paracrine Stimulation Of Glioblastoma Cell Motility And Proliferation By L1cam In 2-D Culture., Justin Caccavale, David Fiumara, Michael Stapf, Liedeke Sweitzer, Hannah J. Anderson, Jonathan Gorky, Prasad Dhurjati, Deni S. Galileo Dec 2017

A Simple And Accurate Rule-Based Modeling Framework For Simulation Of Autocrine/Paracrine Stimulation Of Glioblastoma Cell Motility And Proliferation By L1cam In 2-D Culture., Justin Caccavale, David Fiumara, Michael Stapf, Liedeke Sweitzer, Hannah J. Anderson, Jonathan Gorky, Prasad Dhurjati, Deni S. Galileo

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

BACKGROUND: Glioblastoma multiforme (GBM) is a devastating brain cancer for which there is no known cure. Its malignancy is due to rapid cell division along with high motility and invasiveness of cells into the brain tissue. Simple 2-dimensional laboratory assays (e.g., a scratch assay) commonly are used to measure the effects of various experimental perturbations, such as treatment with chemical inhibitors. Several mathematical models have been developed to aid the understanding of the motile behavior and proliferation of GBM cells. However, many are mathematically complicated, look at multiple interdependent phenomena, and/or use modeling software not freely available to the research …


Induction Of Immune Surveillance Of The Dysmorphogenic Lens., Caitlin M. Logan, Caitlin J. Bowen, A. Sue Menko Nov 2017

Induction Of Immune Surveillance Of The Dysmorphogenic Lens., Caitlin M. Logan, Caitlin J. Bowen, A. Sue Menko

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

The lens has been considered to be an immune privileged site not susceptible to the immune processes normally associated with tissue injury and wound repair. However, as greater insight into the immune surveillance process is gained, we have reevaluated the concept of immune privilege. Our studies using an N-cadherin lens-specific conditional knockout mouse, N-cadΔlens, show that loss of this cell-cell junctional protein leads to lens degeneration, necrosis and fibrotic change, postnatally. The degeneration of this tissue induces an immune response resulting in immune cells populating the lens that contribute to the development of fibrosis. Additionally, we demonstrate that the lens …


Ros Control Mitochondrial Motility Through P38 And The Motor Adaptor Miro/Trak., Valentina Debattisti, Akos A. Gerencser, Masao Saotome, Sudipto Das, György Hajnóczky Nov 2017

Ros Control Mitochondrial Motility Through P38 And The Motor Adaptor Miro/Trak., Valentina Debattisti, Akos A. Gerencser, Masao Saotome, Sudipto Das, György Hajnóczky

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Mitochondrial distribution and motility are recognized as central to many cellular functions, but their regulation by signaling mechanisms remains to be elucidated. Here, we report that reactive oxygen species (ROS), either derived from an extracellular source or intracellularly generated, control mitochondrial distribution and function by dose-dependently, specifically, and reversibly decreasing mitochondrial motility in both rat hippocampal primary cultured neurons and cell lines. ROS decrease motility independently of cytoplasmic [Ca2+], mitochondrial membrane potential, or permeability transition pore opening, known effectors of oxidative stress. However, multiple lines of genetic and pharmacological evidence support that a ROS-activated mitogen-activated protein kinase (MAPK), p38α, is …


Decorin-Evoked Paternally Expressed Gene 3 (Peg3) Is An Upstream Regulator Of The Transcription Factor Eb (Tfeb) In Endothelial Cell Autophagy., Thomas Neill, Catherine Sharpe, Rick T. Owens, Renato V. Iozzo Sep 2017

Decorin-Evoked Paternally Expressed Gene 3 (Peg3) Is An Upstream Regulator Of The Transcription Factor Eb (Tfeb) In Endothelial Cell Autophagy., Thomas Neill, Catherine Sharpe, Rick T. Owens, Renato V. Iozzo

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Macroautophagy is a fundamental and evolutionarily conserved catabolic process that eradicates damaged and aging macromolecules and organelles in eukaryotic cells. Decorin, an archetypical small leucine-rich proteoglycan, initiates a protracted autophagic program downstream of VEGF receptor 2 (VEGFR2) signaling that requires paternally expressed gene 3 (PEG3). We have discovered that PEG3 is an upstream transcriptional regulator of transcription factor EB (TFEB), a master transcription factor of lysosomal biogenesis, for decorin-evoked endothelial cell autophagy. We found a functional requirement of PEG3 for TFEB transcriptional induction and nuclear translocation in human umbilical vein endothelial and PAER2 cells. Mechanistically, inhibiting VEGFR2 or AMP-activated protein …


Tissue-Specific Mitochondrial Decoding Of Cytoplasmic Ca(2+) Signals Is Controlled By The Stoichiometry Of Micu1/2 And Mcu., Melanie Paillard, György Csordás, Gergö Szanda, Tünde Golenár, Valentina Debattisti, Adam Bartok, Nadan Wang, Cynthia Moffat, Erin L. Seifert, András Spät, György Hajnóczky Mar 2017

Tissue-Specific Mitochondrial Decoding Of Cytoplasmic Ca(2+) Signals Is Controlled By The Stoichiometry Of Micu1/2 And Mcu., Melanie Paillard, György Csordás, Gergö Szanda, Tünde Golenár, Valentina Debattisti, Adam Bartok, Nadan Wang, Cynthia Moffat, Erin L. Seifert, András Spät, György Hajnóczky

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Mitochondrial Ca(2+) uptake through the Ca(2+) uniporter supports cell functions, including oxidative metabolism, while meeting tissue-specific calcium signaling patterns and energy needs. The molecular mechanisms underlying tissue-specific control of the uniporter are unknown. Here, we investigated a possible role for tissue-specific stoichiometry between the Ca(2+)-sensing regulators (MICUs) and pore unit (MCU) of the uniporter. Low MICU1:MCU protein ratio lowered the [Ca(2+)] threshold for Ca(2+) uptake and activation of oxidative metabolism but decreased the cooperativity of uniporter activation in heart and skeletal muscle compared to liver. In MICU1-overexpressing cells, MICU1 was pulled down by MCU proportionally to MICU1 overexpression, suggesting that …


Single-Cell Transcriptional Analysis Reveals Novel Neuronal Phenotypes And Interaction Networks Involved In The Central Circadian Clock., James Park, Haisun Zhu, Sean O'Sullivan, Babatunde A Ogunnaike, David R Weaver, James S. Schwaber, Rajanikanth Vadigepalli Oct 2016

Single-Cell Transcriptional Analysis Reveals Novel Neuronal Phenotypes And Interaction Networks Involved In The Central Circadian Clock., James Park, Haisun Zhu, Sean O'Sullivan, Babatunde A Ogunnaike, David R Weaver, James S. Schwaber, Rajanikanth Vadigepalli

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Single-cell heterogeneity confounds efforts to understand how a population of cells organizes into cellular networks that underlie tissue-level function. This complexity is prominent in the mammalian suprachiasmatic nucleus (SCN). Here, individual neurons exhibit a remarkable amount of asynchronous behavior and transcriptional heterogeneity. However, SCN neurons are able to generate precisely coordinated synaptic and molecular outputs that synchronize the body to a common circadian cycle by organizing into cellular networks. To understand this emergent cellular network property, it is important to reconcile single-neuron heterogeneity with network organization. In light of recent studies suggesting that transcriptionally heterogeneous cells organize into distinct cellular …


Mirna-145 Increases Therapeutic Sensibility To Gemcitabine Treatment Of Pancreatic Adenocarcinoma Cells., Yong Lin, Xin Ge, Yiyang Wen, Zhu-Mei Shi, Qiu-Dan Chen, Min Wang, Ling-Zhi Liu, Bing-Hua Jiang, Yuan Lu Sep 2016

Mirna-145 Increases Therapeutic Sensibility To Gemcitabine Treatment Of Pancreatic Adenocarcinoma Cells., Yong Lin, Xin Ge, Yiyang Wen, Zhu-Mei Shi, Qiu-Dan Chen, Min Wang, Ling-Zhi Liu, Bing-Hua Jiang, Yuan Lu

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Pancreatic adenocarcinoma is one of the most leading causes of cancer-related deaths worldwide. Although recent advances provide various treatment options, pancreatic adenocarcinoma has poor prognosis due to its late diagnosis and ineffective therapeutic multimodality. Gemcitabine is the effective first-line drug in pancreatic adenocarcinoma treatment. However, gemcitabine chemoresistance of pancreatic adenocarcinoma cells has been a major obstacle for limiting its treatment effect. Our study found that p70S6K1 plays an important role in gemcitabine chemoresistence. MiR-145 is a tumor suppressor which directly targets p70S6K1 for inhibiting its expression in pancreatic adenocarcinoma, providing new therapeutic scheme. Our findings revealed a new mechanism underlying …


Integrated Live Imaging And Molecular Profiling Of Embryoid Bodies Reveals A Synchronized Progression Of Early Differentiation., Jonathan Boxman, Naor Sagy, Sirisha Achanta, Rajanikanth Vadigepalli, Iftach Nachman Aug 2016

Integrated Live Imaging And Molecular Profiling Of Embryoid Bodies Reveals A Synchronized Progression Of Early Differentiation., Jonathan Boxman, Naor Sagy, Sirisha Achanta, Rajanikanth Vadigepalli, Iftach Nachman

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Embryonic stem cells can spontaneously differentiate into cell types of all germ layers within embryoid bodies (EBs) in a highly variable manner. Whether there exists an intrinsic differentiation program common to all EBs is unknown. Here, we present a novel combination of high-throughput live two-photon imaging and gene expression profiling to study early differentiation dynamics spontaneously occurring within developing EBs. Onset timing of Brachyury-GFP was highly variable across EBs, while the spatial patterns as well as the dynamics of mesendodermal progression following onset were remarkably similar. We therefore defined a 'developmental clock' using the Brachyury-GFP signal onset timing. Mapping snapshot …


The Structure And Regulation Of Cullin 2 Based E3 Ubiquitin Ligases And Their Biological Functions., Weijia Cai, Haifeng Yang May 2016

The Structure And Regulation Of Cullin 2 Based E3 Ubiquitin Ligases And Their Biological Functions., Weijia Cai, Haifeng Yang

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

BACKGROUND: Cullin-RING E3 ubiquitin ligase complexes play a central role in targeting cellular proteins for ubiquitination-dependent protein turnover through 26S proteasome. Cullin-2 is a member of the Cullin family, and it serves as a scaffold protein for Elongin B and C, Rbx1 and various substrate recognition receptors to form E3 ubiquitin ligases.

MAIN BODY OF THE ABSTRACT: First, the composition, structure and the regulation of Cullin-2 based E3 ubiquitin ligases were introduced. Then the targets, the biological functions of complexes that use VHL, Lrr-1, Fem1b, Prame, Zyg-11, BAF250, Rack1 as substrate targeting subunits were described, and their involvement in diseases …


Micu1 Regulation Of Mitochondrial Ca(2+) Uptake Dictates Survival And Tissue Regeneration., Anil Noronha Antony, Melanie Paillard, Cynthia Moffat, Egle Juskeviciute, Jason Correnti, Brad Bolon, Emanual Rubin, Md, György Csordás, Erin L Seifert, Jan B. Hoek, György Hajnóczky Mar 2016

Micu1 Regulation Of Mitochondrial Ca(2+) Uptake Dictates Survival And Tissue Regeneration., Anil Noronha Antony, Melanie Paillard, Cynthia Moffat, Egle Juskeviciute, Jason Correnti, Brad Bolon, Emanual Rubin, Md, György Csordás, Erin L Seifert, Jan B. Hoek, György Hajnóczky

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Mitochondrial Ca(2+) uptake through the recently discovered Mitochondrial Calcium Uniporter (MCU) is controlled by its gatekeeper Mitochondrial Calcium Uptake 1 (MICU1). However, the physiological and pathological role of MICU1 remains unclear. Here we show that MICU1 is vital for adaptation to postnatal life and for tissue repair after injury. MICU1 knockout is perinatally lethal in mice without causing gross anatomical defects. We used liver regeneration after partial hepatectomy as a physiological stress response model. Upon MICU1 loss, early priming is unaffected, but the pro-inflammatory phase does not resolve and liver regeneration fails, with impaired cell cycle entry and extensive necrosis. …


Microrna Dysregulation And Esophageal Cancer Development Depend On The Extent Of Zinc Dietary Deficiency., Louise Fong, Cristian Taccioli, Ruiyan Jing, Karl Smalley, Hansjuerg Alder, Yubao Jiang, Paolo Fadda, John Farber, Carlo M Croce Feb 2016

Microrna Dysregulation And Esophageal Cancer Development Depend On The Extent Of Zinc Dietary Deficiency., Louise Fong, Cristian Taccioli, Ruiyan Jing, Karl Smalley, Hansjuerg Alder, Yubao Jiang, Paolo Fadda, John Farber, Carlo M Croce

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Zinc deficiency (ZD) increases the risk of esophageal squamous cell carcinoma (ESCC), and marginal ZD is prevalent in humans. In rats, marked-ZD (3 mg Zn/kg diet) induces a proliferative esophagus with a 5-microRNA signature (miR-31, -223, -21, -146b, -146a) and promotes ESCC. Here we report that moderate and mild-ZD (6 and 12 mg Zn/kg diet) also induced esophageal hyperplasia, albeit less pronounced than induced by marked-ZD, with a 2-microRNA signature (miR-31, -146a). On exposure to an environmental carcinogen, ~16% of moderate/mild-ZD rats developed ESCC, a cancer incidence significantly greater than for Zn-sufficient rats (0%) (P ≤ 0.05), but lower than …


Cells Activated For Wound Repair Have The Potential To Direct Collective Invasion Of An Epithelium., Brigid M Bleaken, A Sue Menko, Janice Walker Feb 2016

Cells Activated For Wound Repair Have The Potential To Direct Collective Invasion Of An Epithelium., Brigid M Bleaken, A Sue Menko, Janice Walker

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Mechanisms regulating how groups of cells are signaled to move collectively from their original site and invade surrounding matrix are poorly understood. Here we develop a clinically relevant ex vivo injury invasion model to determine whether cells involved in directing wound healing have invasive function and whether they can act as leader cells to direct movement of a wounded epithelium through a three-dimensional (3D) extracellular matrix (ECM) environment. Similar to cancer invasion, we found that the injured cells invade into the ECM as cords, involving heterotypical cell-cell interactions. Mesenchymal cells with properties of activated repair cells that typically locate to …


T(3;8)(Q26;Q24) With Myc Rearrangement In Acute Myeloid Leukemia: A Case Report, Vandi Ly, Md, Renu Bajaj, Phd, Jerald Z. Gong, Md, Zi-Xuan Wang, Phd, Stephen C Peiper, Md, Guldeep Uppal, Md Oct 2015

T(3;8)(Q26;Q24) With Myc Rearrangement In Acute Myeloid Leukemia: A Case Report, Vandi Ly, Md, Renu Bajaj, Phd, Jerald Z. Gong, Md, Zi-Xuan Wang, Phd, Stephen C Peiper, Md, Guldeep Uppal, Md

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Rearrangements of 3q26 have been described in 5% of de novo or therapy related acute myeloid leukemia, myelodysplastic syndrome (MDS), and blast phase of chronic myeloid leukemia. The most common translocations involving 3q26 are t(3;12)(q26;p13), t(3;21)(q26;q22), t(3;3)(q21;q26), t(2;3)(p15∼23;q26∼27) and rarely t(3;7)(q26;q21). However, t(3;8)(q26;q24) with or without monosomy 7 is a rare phenomenon and has been reported in only 10 patients so far. Hereby, we describe a 58 year old patient who was diagnosed with refractory anemia with multilineage dysplasia. Cytogenetic studies revealed monosomy 7. He was then lost to follow-up. A year later he was found to have worsening cytopenias …