Literature DB >> 30417438

Epitope-based immunoinformatics approach on RNA-dependent RNA polymerase (RdRp) protein complex of Nipah virus (NiV).

Lavanya Ravichandran1, Arthi Venkatesan1, J Febin Prabhu Dass1.   

Abstract

Persistent outbreaks of Nipah virus (NiV) with severe case fatality throw a major challenge on researchers to develop a drug or vaccine to combat the disease. With little knowledge of its molecular mechanisms, we utilized the proteome data of NiV to evaluate the potency of three major proteins (phosphoprotein, polymerase, and nucleocapsid protein) in the RNA-dependent RNA polymerase complex to count as a possible candidate for epitope-based vaccine design. Profound computational analysis was used on the above proteins individually to explore the T-cell immune properties like antigenicity, immunogenicity, binding to major histocompatibility complex class I and class II alleles, conservancy, toxicity, and population coverage. Based on these predictions the peptide 'ELRSELIGY' of phosphoprotein and 'YPLLWSFAM' of nulceocapsid protein were identified as the best-predicted T-cell epitopes and molecular docking with human leukocyte antigen-C (HLA-C*12:03) molecule was effectuated followed by validation with molecular dynamics simulation. The B-cell epitope predictions suggest that the sequence positions 421 to 471 in phosphoprotein, 606 to 640 in polymerase and 496 to 517 in nucleocapsid protein are the best-predicted regions for B-cell immune response. However, the further experimental circumstance is required to test and validate the efficacy of the subunit peptide for potential candidacy against NiV.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  Nipah virus; epitope-based vaccine design; molecular docking; molecular dynamics; nucleocapsid protein; phosphoprotein and polymerase

Year:  2018        PMID: 30417438     DOI: 10.1002/jcb.27979

Source DB:  PubMed          Journal:  J Cell Biochem        ISSN: 0730-2312            Impact factor:   4.429


  5 in total

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5.  NipahVR: a resource of multi-targeted putative therapeutics and epitopes for the Nipah virus.

Authors:  Amit Kumar Gupta; Archit Kumar; Akanksha Rajput; Karambir Kaur; Showkat Ahmed Dar; Anamika Thakur; Kirti Megha; Manoj Kumar
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  5 in total

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