Prediction of molecular mimicry between proteins from Trypanosoma sp. and human antigens associated with systemic lupus erythematosus.

Y Emiliani, G Muzi, A Sánchez, J Sánchez, M Munera

Journal: Microbial pathogenesis 2022;172():105760

PMID: 36126789

Abstract

The immune response against pathogens induces protection from future infection, however, molecular mimicry between the pathogen and the human host can promote autoreactive responses. Using in silico approaches, we identified molecular mimicry between Trypanosoma sp. and human autoantigens involved in the development of systemic lupus erythematosus (SLE). We retrieved all reported autoantigen amino acid sequences for SLE from the AAgAtlas database to perform PSI-BLAST against the Trypanosoma sp proteome to determine amino acid sequence identity with each other. The antigens given in the Protein Data Bank without a 3D structure were modeled by homology with the "Swiss Modeller Server". Epitopes shared between Trypanosoma sp. and human antigens were identified using the Ellipro server and the Immune Epitope Database (IEDB), and cross-reactive epitopes were assigned to the 3D models. 36 autoantigens involved in SLE showed molecular mimicry with Trypanosoma sp. Antigens Epitope prediction revealed that some autoantigens shared several antigenic.

Copyright © 2022 Elsevier Ltd. All rights reserved.

Address: Faculty of Health, Medical Research Group (GINUMED) Rafael Núñez University Corporation, Colombia.; Faculty of Health, Medical Research Group (GINUMED) Rafael Núñez University Corporation, Colombia; Clinical and Experimental Allergy Group (GACE), IPS University, University of Antioquia, Medellín, Colombia.; Clinical and Experimental Allergy Group (GACE), IPS University, University of Antioquia, Medellín, Colombia.; Faculty of Health, Medical Research Group (GINUMED) Rafael Núñez University Corporation, Colombia. Electronic address: [email protected].

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