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Structural basis of development of multi-epitope vaccine against Middle East respiratory syndrome using in silico approach.

Infect Drug Resist. 2018; 
Srivastava S,, Kamthania M,, Singh S, Saxena AK, Sharma N.
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Codon Optimization … Further, the GenScript Rare Codon Analysis Tool (https://www.genscript.com/tools/rare-codon- analysis) was used to analyze the cDNAs of both MEVs. The tool provides GC content, codon adaptation index (CAI), and tandem rare codon frequency for cDNA.65–67 … Get A Quote

摘要

Middle East respiratory syndrome (MERS) is caused by MERS coronavirus (MERS-CoV). Thus far, MERS outbreaks have been reported from Saudi Arabia (2013 and 2014) and South Korea (2015). No specific vaccine has yet been reported against MERS.,To address the urgent need for an MERS vaccine, in the present study, we have designed two multi-epitope vaccines (MEVs) against MERS utilizing several in silico methods and tools.,The design of both the multi-epitope vaccines (MEVs) are composed of cytotoxic T lymphocyte (CTL) and helper T lymphocyte (HTL) epitopes, screened form thirteen different proteins of MERS-CoV. Both the MEVs also carry potential B-cell linear epitope regions, B-cell discontinuous epitopes as well as... More

关键词

MD simulation; MERS; MERS-CoV; Middle East respiratory syndrome; Middle East respiratory syndrome coronavirus; TAP; TLR-3; epitope; human transporter associated with antigen processing; immunoinformatics; molecular docking; molecular dynamics simulation; multi-epitope vaccine; toll-like receptor 3
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