Human molecular chaperones share with SARS-CoV-2 antigenic epitopes potentially capable of eliciting autoimmunity against endothelial cells: possible role of molecular mimicry in COVID-19

被引:0
作者
Antonella Marino Gammazza
Sébastien Légaré
Giosuè Lo Bosco
Alberto Fucarino
Francesca Angileri
Everly Conway de Macario
Alberto JL Macario
Francesco Cappello
机构
[1] University of Palermo,Department of Biomedicine, Neuroscience and Advanced Diagnostics (BIND)
[2] Université PSL,Département d’Informatique de l’ÉNS, ÉNS, CNRS
[3] Centre de Recherche Inria de Paris,Department of Mathematics and Computer Science
[4] University of Palermo,Centre Léon Bérard, Cancer Research Center of Lyon
[5] Université de Lyon,Department of Microbiology and Immunology, School of Medicine
[6] Université Claude Bernard Lyon 1,undefined
[7] INSERM 1052,undefined
[8] CNRS 5286,undefined
[9] University of Maryland at Baltimore-Institute of Marine and Environmental Technology (IMET),undefined
[10] Euro-Mediterranean Institute of Science and Technology (IEMEST),undefined
来源
Cell Stress and Chaperones | 2020年 / 25卷
关键词
Severe acute respiratory syndrome coronavirus 2; COVID-19; Molecular chaperones; Molecular mimicry; Autoimmunity; Endothelialitis;
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摘要
Severe acute respiratory syndrome corona virus 2 (SARS-CoV-2), the cause of COVID-19 disease, has the potential to elicit autoimmunity because mimicry of human molecular chaperones by viral proteins. We compared viral proteins with human molecular chaperones, many of which are heat shock proteins, to determine if they share amino acid-sequence segments with immunogenic-antigenic potential, which can elicit cross-reactive antibodies and effector immune cells with the capacity to damage-destroy human cells by a mechanism of autoimmunity. We identified the chaperones that can putatively participate in molecular mimicry phenomena after SARS-CoV-2 infection, focusing on those for which endothelial cell plasma-cell membrane localization has already been demonstrated. We also postulate that post-translational modifications, induced by physical (shear) and chemical (metabolic) stress caused respectively by the risk factors hypertension and diabetes, might have a role in determining plasma-cell membrane localization and, in turn, autoimmune-induced endothelial damage.
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页码:737 / 741
页数:4
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