Novel small synthetic HIV-1 V3 crown variants: CCR5 targeting ligands

Author:

Anitha Anju Krishnan12,Narayanan Pratibha12,Ajayakumar Neethu12,Sivakumar Krishnankutty Chandrika1,Kumar Kesavakurup Santhosh1

Affiliation:

1. Chemical Biology Laboratory, Pathogen Biology Research Program, Rajiv Gandhi Centre for Biotechnology , Thiruvananthapuram 695014, India

2. University of Kerala , Thiruvananthapuram, Kerala, 695014, India

Abstract

Abstract The CC chemokine receptor 5 (CCR5) antagonism represents a promising pharmacological strategy for therapeutic intervention as it plays a significant role in reducing the severity and progression of a wide range of pathological conditions. Here we designed and generated peptide ligands targeting the chemokine receptor, CCR5, that were derived from the critical interaction sites of the V3 crown domain of envelope protein glycoprotein gp120 (TRKSIHIGPGRAFYTTGEI) of HIV-1 using computational biology approach and the peptide sequence corresponding to this region was taken as the template peptide, designated as TMP-1. The peptide variants were synthesized by employing Fmoc chemistry using polymer support and were labelled with rhodamine B to study their interaction with the CCR5 receptor expressed on various cells. TMP-1 and TMP-2 were selected as the high-affinity ligands from in vitro receptor-binding assays. Specific receptor-binding experiments in activated peripheral blood mononuclear cells and HOS.CCR5 cells indicated that TMP-1 and TMP-2 had significant CCR5 specificity. Further, the functional analysis of TMP peptides using chemotactic migration assay showed that both peptides did not mediate the migration of responsive cells. Thus, template TMP-1 and TMP-2 represent promising CCR5 targeting peptide candidates.

Funder

Kerala State Council for Science Technology and Environment

Department of Biotechnology

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

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