In Silico Characterization of Hemagglutinin Protein of Influenza a Virus [A/Canine/Beijing/Cau9/2009(H1N1] of H1N1 Subtype
Author(s) -
Rajneesh Prajapat,
Avinash Marwal,
Mukesh Goyal
Publication year - 2014
Publication title -
journal of advances in biotechnology
Language(s) - English
Resource type - Journals
ISSN - 2348-6201
DOI - 10.24297/jbt.v1i1.1786
Subject(s) - in silico , homology modeling , hemagglutinin (influenza) , docking (animal) , virology , computational biology , influenza a virus , biology , virus , beijing , genetics , medicine , biochemistry , gene , veterinary medicine , enzyme , political science , china , law
Using 3D-Jigsawn protein comparative modeling server, Verify-3D structure evaluation server, CHIMERA the homology modeling study of the mentioned protein was carried out and it holds the aim of the study. In this work, we in silico characterized the hemagglutinin protein of influenza A virus [A/canine/Beijing/cau9/2009(H1N1] (AEM89472). The model was validated by using protein structure checking tools RAMPAGE server for reliability. In NJ tree AEM89472 is place in a separate monophyletic and show close evolutionary relationship with ADD97678. Hex 6.3 was used for protein (Hemagglutinin) - ligand (Tamiflu) docking to determine the potential ligand binding sites. These ligand (Tamiflu) binding sites identified can provide an insight to design potential inhibitors in future.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom