4.6 Article

Chikungunya Virus E2 Structural Protein B-Cell Epitopes Analysis

期刊

VIRUSES-BASEL
卷 14, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/v14081839

关键词

Chikungunya virus; immunoinformatics; B-cell epitopes; peptides; ELISA

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资金

  1. Brazilian National Council of Scientific and Technological Development (CNPq) [441105/2016-5]
  2. Sao Paulo Research Foundation (FAPESP) [2017/23281-6]
  3. FAPESP fellowship [2016/08204-2]

向作者/读者索取更多资源

This study identified unique peptide epitopes of the Chikungunya virus structural proteins E2 and E3 using immunoinformatic predictions and indirect peptide ELISA technique. Peptides P4 and P5 showed the highest reactivity and specificity among the analyzed epitopes, indicating their potential use in serological diagnostic trials and improving vaccine design for Chikungunya virus.
The Togaviridae family comprises a large and diverse group of viruses responsible for recurrent outbreaks in humans. Within this family, the Chikungunya virus (CHIKV) is an important Alphavirus in terms of morbidity, mortality, and economic impact on humans in different regions of the world. The objective of this study was to perform an IgG epitope recognition of the CHIKV's structural proteins E2 and E3 using linear synthetic peptides recognized by serum from patients in the convalescence phase of infection. The serum samples used were collected in the state of Sergipe, Brazil in 2016. Based on the results obtained using immunoinformatic predictions, synthetic B-cell peptides corresponding to the epitopes of structural proteins E2 and E3 of the CHIKV were analyzed by the indirect peptide ELISA technique. Protein E2 was the main target of the immune response, and three conserved peptides, corresponding to peptides P3 and P4 located at Domain A and P5 at the end of Domain B, were identified. The peptides P4 and P5 were the most reactive and specific among the 11 epitopes analyzed and showed potential for use in serological diagnostic trials and development and/or improvement of the Chikungunya virus diagnosis and vaccine design.

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