Identification of Adjacent NNRTI Binding Pocket in Multi-mutated HIV1- RT Enzyme Model: An in silico Study
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Published:2018-08-15
Issue:2
Volume:16
Page:121-129
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ISSN:1570-162X
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Container-title:Current HIV Research
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language:en
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Short-container-title:CHR
Author:
Kamil R.F.1, Debnath U.2, Verma S.3, Prabhakar Y.S.3
Affiliation:
1. R.C. Patel Institute of Pharmaceutical Education and Research, Shirpur 425405, India 2. Department of Pharmaceutical Chemistry, Guru Nanak Institute of Pharmaceutical Science and Technology, Kolkata 700114, India 3. Medicinal and Process Chemistry Division, CSIR- Central Drug Research Institute Lucknow 226031, India
Abstract
Introduction:
A possible strategy to combat mutant strains is to have a thorough structural
evaluation before and after mutations to identify the diversity in the non-nucleoside inhibitor binding
pocket and their effects on enzyme-ligand interactions to generate novel NNRTI’s accordingly.
Objective:
The primary objective of this study was to find effects of multiple point mutations on
NNRTI binding pocket. This study included the contribution of each individual mutation in NNIBP
that propose an adjacent binding pocket which can be used to discover novel NNRTI derivatives.
Methods:
An in Silico model of HIV-1 RT enzyme with multiple mutations K103N, Y181C and
Y188L was developed and evaluated. Two designed NNRTI pyridinone derivatives were selected as
ligands for docking studies with the homology model through alignment based docking and residue
based docking approaches. Binding pockets of wild type HIV-1 RT and multi-mutated homology
model were compared thoroughly.
Result and Discussion:
K103N mutation narrowed the entrance of NNRTI binding pocket and forbade
electrostatic interaction with α amino group of LYS103. Mutations Y181C and Y188L prevented
NNRTI binding by eliminating aromatic π interactions offered by tyrosine rings. Docking
study against new homology model suggested an adjacent binding pocket with combination of residues
in palm and connection domains. This pocket is approximately 14.46Å away from conventional
NNRTI binding site.
Conclusion:
Increased rigidity, steric hindrance and losses of important interactions cumulatively
prompt ligands to adapt adjacent NNRTI binding pocket. The proposed new and adjacent binding
pocket is identified by this study which can further be evaluated to generate novel derivatives.
Publisher
Bentham Science Publishers Ltd.
Subject
Virology,Infectious Diseases
Reference62 articles.
1. Kent A, Sepkowitz MD. N Engl J Med, AIDS-the first 20 years.,, 2001, 344,, 1764-1772, 2. Douek DC, Roederer M, Koup RA. Annu Rev Med, Emerging Concepts in the Immunopathogenesis of AIDS.,, 2009, 60,, 471-484, 3. Leitner T, Keuken C, Hahn B. HIV Seq Compend, HIV sequence compendium 2008 los alamos HIV sequence database.,, 2008, 60,, 1-7, 4. Hu WS, Hughes SH. Cold Spring Harb Perspect Med, HIV-1 reverse transcription.,, 2012, 2,, 1-22, 5. Kohlstaedt LA, Wang J, Friedman JM, Rice PA, Steitz TA. Science, Crystal structure at 3.5 A resolution of HIV-1 reverse transcriptase complexed with an inhibitor.,, 1992, 256,, 1783-1790,
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