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1.
Cell Host Microbe ; 32(4): 606-622.e8, 2024 Apr 10.
Artículo en Inglés | MEDLINE | ID: mdl-38479396

RESUMEN

Chikungunya virus (CHIKV) is a mosquito-borne alphavirus that causes acute, subacute, and chronic human arthritogenic diseases and, in rare instances, can lead to neurological complications and death. Here, we combined epidemiological, virological, histopathological, cytokine, molecular dynamics, metabolomic, proteomic, and genomic analyses to investigate viral and host factors that contribute to chikungunya-associated (CHIK) death. Our results indicate that CHIK deaths are associated with multi-organ infection, central nervous system damage, and elevated serum levels of pro-inflammatory cytokines and chemokines compared with survivors. The histopathologic, metabolite, and proteomic signatures of CHIK deaths reveal hemodynamic disorders and dysregulated immune responses. The CHIKV East-Central-South-African lineage infecting our study population causes both fatal and survival cases. Additionally, CHIKV infection impairs the integrity of the blood-brain barrier, as evidenced by an increase in permeability and altered tight junction protein expression. Overall, our findings improve the understanding of CHIK pathophysiology and the causes of fatal infections.


Asunto(s)
Fiebre Chikungunya , Virus Chikungunya , Animales , Humanos , Fiebre Chikungunya/complicaciones , Proteómica , Virus Chikungunya/genética , Citocinas/metabolismo
2.
Front Immunol ; 11: 816, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32431712

RESUMEN

In reverse vaccinology approaches, complete proteomes of bacteria are submitted to multiple computational prediction steps in order to filter proteins that are possible vaccine candidates. Most available tools perform such analysis only in a single strain, or a very limited number of strains. But the vast amount of genomic data had shown that most bacteria contain pangenomes, i.e., their genomic information contains core, conserved genes, and random accessory genes specific to each strain. Therefore, in reverse vaccinology methods it is of the utmost importance to define core proteins and core epitopes. EpitoCore is a decision-tree pipeline developed to fulfill that need. It provides surfaceome prediction of proteins from related strains, defines core proteins within those, calculate their immunogenicity, predicts epitopes for a given set of MHC alleles defined by the user, and then reports if epitopes are located extracellularly and if they are conserved among the core homologs. Pipeline performance is illustrated by mining peptide vaccine candidates in Mycobacterium avium hominissuis strains. From a total proteome of ~4,800 proteins per strain, EpitoCore predicted 103 highly immunogenic core homologs located at cell surface, many of those related to virulence and drug resistance. Conserved epitopes identified among these homologs allows the users to define sets of peptides with potential to immunize the largest coverage of tested HLA alleles using peptide-based vaccines. Therefore, EpitoCore is able to provide automated identification of conserved epitopes in bacterial pangenomic datasets.


Asunto(s)
Vacunas Bacterianas/inmunología , Epítopos/inmunología , Infecciones por Mycobacterium/prevención & control , Mycobacterium/inmunología , Mycobacterium/patogenicidad , Proteoma/inmunología , Alelos , Antígenos Bacterianos/inmunología , Biología Computacional/métodos , Genoma Bacteriano , Genómica/métodos , Antígenos de Histocompatibilidad Clase I/genética , Humanos , Mycobacterium/genética , Mycobacterium/metabolismo , Vacunas de Subunidad/inmunología , Vacunología/métodos , Virulencia/inmunología
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