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The lysosome: A potential juncture between SARS-CoV-2 infectivity and Niemann-Pick disease type C, with therapeutic implications.
Ballout, Rami A; Sviridov, Dmitri; Bukrinsky, Michael I; Remaley, Alan T.
  • Ballout RA; Lipoprotein Metabolism Section, Translational Vascular Medicine Branch, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, MD, USA.
  • Sviridov D; Lipoproteins and Atherosclerosis Laboratory, Baker Heart and Diabetes Institute, Melbourne, VIC, Australia.
  • Bukrinsky MI; Department of Microbiology, Immunology and Tropical Medicine, School of Medicine and Health Sciences, The George Washington University, Washington, DC, USA.
  • Remaley AT; Lipoprotein Metabolism Section, Translational Vascular Medicine Branch, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, MD, USA.
FASEB J ; 34(6): 7253-7264, 2020 06.
Article in English | MEDLINE | ID: covidwho-175986
ABSTRACT
Drug repurposing is potentially the fastest available option in the race to identify safe and efficacious drugs that can be used to prevent and/or treat COVID-19. By describing the life cycle of the newly emergent coronavirus, SARS-CoV-2, in light of emerging data on the therapeutic efficacy of various repurposed antimicrobials undergoing testing against the virus, we highlight in this review a possible mechanistic convergence between some of these tested compounds. Specifically, we propose that the lysosomotropic effects of hydroxychloroquine and several other drugs undergoing testing may be responsible for their demonstrated in vitro antiviral activities against COVID-19. Moreover, we propose that Niemann-Pick disease type C (NPC), a lysosomal storage disorder, may provide new insights into potential future therapeutic targets for SARS-CoV-2, by highlighting key established features of the disorder that together result in an "unfavorable" host cellular environment that may interfere with viral propagation. Our reasoning evolves from previous biochemical and cell biology findings related to NPC, coupled with the rapidly evolving data on COVID-19. Our overall aim is to suggest that pharmacological interventions targeting lysosomal function in general, and those particularly capable of reversibly inducing transient NPC-like cellular and biochemical phenotypes, constitute plausible mechanisms that could be used to therapeutically target COVID-19.
Subject(s)
Antiviral Agents/pharmacokinetics; Betacoronavirus/physiology; Coronavirus Infections/drug therapy; Drug Repositioning; Endosomes/virology; Hydroxychloroquine/pharmacology; Lysosomes/virology; Niemann-Pick Disease, Type C/pathology; Pneumonia, Viral/drug therapy; ADAM17 Protein/physiology; Adenosine Monophosphate/analogs & derivatives; Adenosine Monophosphate/pharmacology; Adenosine Monophosphate/therapeutic use; Alanine/analogs & derivatives; Alanine/pharmacology; Alanine/therapeutic use; Angiotensin-Converting Enzyme 2; Antiviral Agents/pharmacology; Antiviral Agents/therapeutic use; Benzylisoquinolines/pharmacology; Benzylisoquinolines/therapeutic use; Biological Transport; COVID-19; Cathepsin L/physiology; Endocytosis; Endosomes/drug effects; Endosomes/physiology; Glycopeptides/pharmacology; Glycopeptides/therapeutic use; Humans; Hydroxychloroquine/pharmacokinetics; Hydroxychloroquine/therapeutic use; Intracellular Signaling Peptides and Proteins/antagonists & inhibitors; Intracellular Signaling Peptides and Proteins/deficiency; Intracellular Signaling Peptides and Proteins/physiology; Lysosomes/drug effects; Lysosomes/metabolism; Membrane Lipids/metabolism; Membrane Microdomains/physiology; Niemann-Pick C1 Protein; Niemann-Pick Disease, Type C/metabolism; Oxysterols/metabolism; Pandemics; Peptidyl-Dipeptidase A/metabolism; Receptors, Virus/metabolism; SARS-CoV-2; Serine Endopeptidases/physiology; Triazoles/pharmacology; Triazoles/therapeutic use; Virus Internalization/drug effects; COVID-19 Drug Treatment
Keywords

Full text: Available Collection: International databases Database: MEDLINE Main subject: Antiviral Agents / Pneumonia, Viral / Endosomes / Coronavirus Infections / Niemann-Pick Disease, Type C / Drug Repositioning / Betacoronavirus / Hydroxychloroquine / Lysosomes Language: English Journal: FASEB J Journal subject: Biology / Physiology Year: 2020 Document Type: Article Affiliation country: Fj.202000654R

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Antiviral Agents / Pneumonia, Viral / Endosomes / Coronavirus Infections / Niemann-Pick Disease, Type C / Drug Repositioning / Betacoronavirus / Hydroxychloroquine / Lysosomes Language: English Journal: FASEB J Journal subject: Biology / Physiology Year: 2020 Document Type: Article Affiliation country: Fj.202000654R