Peptide Targeted by Human Antibodies Associated with HIV Vaccine-Associated Protection Assumes a Dynamic α-Helical Structure

The only evidence of vaccine-induced protection from HIV acquisition in humans was obtained in the RV144 HIV vaccine clinical trial. One immune correlate of risk in RV144 was observed to be higher titers of vaccine-induced antibodies (Abs) reacting with a 23-mer non-glycosylated peptide with the sam...

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Veröffentlicht in:PloS one 2017-01, Vol.12 (1), p.e0170530-e0170530
Hauptverfasser: Aiyegbo, Mohammed S, Shmelkov, Evgeny, Dominguez, Lorenzo, Goger, Michael, Battacharya, Shibani, deCamp, Allan C, Gilbert, Peter B, Berman, Phillip W, Cardozo, Timothy
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container_title PloS one
container_volume 12
creator Aiyegbo, Mohammed S
Shmelkov, Evgeny
Dominguez, Lorenzo
Goger, Michael
Battacharya, Shibani
deCamp, Allan C
Gilbert, Peter B
Berman, Phillip W
Cardozo, Timothy
description The only evidence of vaccine-induced protection from HIV acquisition in humans was obtained in the RV144 HIV vaccine clinical trial. One immune correlate of risk in RV144 was observed to be higher titers of vaccine-induced antibodies (Abs) reacting with a 23-mer non-glycosylated peptide with the same amino acid sequence as a segment in the second variable (V2) loop of the MN strain of HIV. We used NMR to analyze the dynamic 3D structure of this peptide. Distance restraints between spatially proximate inter-residue protons were calculated from NOE cross peak intensities and used to constrain a thorough search of all possible conformations of the peptide. α-helical folding was strongly preferred by part of the peptide. A high-throughput structure prediction of this segment in all circulating HIV strains demonstrated that α-helical conformations are preferred by this segment almost universally across all subtypes. Notably, α-helical conformations of this segment of the V2 loop cluster cross-subtype-conserved amino acids on one face of the helix and the variable amino acid positions on the other in a semblance of an amphipathic α-helix. Accordingly, some Abs that protected against HIV in RV144 may have targeted a specific, conserved α-helical peptide epitope in the V2 loop of HIV's surface envelope glycoprotein.
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subjects AIDS Vaccines - immunology
Amino Acid Sequence
Amino acids
Antibodies
Antibodies, Neutralizing - immunology
Biochemistry
Biology and Life Sciences
Computational chemistry
Conserved Sequence - genetics
Cytotoxicity
Epitopes
Glycoproteins
HIV
HIV Antibodies - immunology
HIV Envelope Protein gp120 - chemistry
HIV Envelope Protein gp120 - immunology
HIV-1 - genetics
HIV-1 - immunology
Human immunodeficiency virus
Humans
Immunoglobulins
Infections
Infectious diseases
Magnetic Resonance Spectroscopy
Medical research
Medicine
Medicine and Health Sciences
Models, Molecular
NMR
Nuclear magnetic resonance
Peptide Fragments - chemistry
Peptide Fragments - immunology
Peptides
Pharmacology
Physical Sciences
Protein Conformation, alpha-Helical
Protein Folding
Proteins
Protons
Research and Analysis Methods
Vaccines
title Peptide Targeted by Human Antibodies Associated with HIV Vaccine-Associated Protection Assumes a Dynamic α-Helical Structure
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