Molecular recognition of a membrane-anchored HIV-1 pan-neutralizing epitope

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作者
Johana Torralba
Igor de la Arada
Angélica Partida-Hanon
Edurne Rujas
Madalen Arribas
Sara Insausti
Claire Valotteau
Javier Valle
David Andreu
José M. M. Caaveiro
María Angeles Jiménez
Beatriz Apellániz
Lorena Redondo-Morata
José L. Nieva
机构
[1] University of the Basque Country (UPV/EHU),Instituto Biofisika (CSIC
[2] University of the Basque Country (UPV/EHU),UPV/EHU)
[3] Institute of Physical Chemistry “Rocasolano” (IQFR-CSIC),Department of Biochemistry and Molecular Biology
[4] Laboratoire Adhesion et Inflammation,Laboratory of Proteomics and Protein Chemistry, Department of Medicine and Life Sciences
[5] INSERM U1067,Laboratory of Global Healthcare, School of Pharmaceutical Sciences
[6] CNRS UMR 7333,Department of Physiology, Faculty of Pharmacy
[7] Aix-Marseille Université,Pharmacokinetic, Nanotechnology and Gene Therapy Group, Faculty of Pharmacy
[8] Turing Centre for Living systems,undefined
[9] Pompeu Fabra University,undefined
[10] Kyushu University,undefined
[11] University of the Basque Country (UPV/EHU),undefined
[12] Université de Lille,undefined
[13] CNRS,undefined
[14] Inserm,undefined
[15] CHU Lille,undefined
[16] Institut Pasteur de Lille,undefined
[17] Ikerbasque,undefined
[18] Basque Foundation for Science,undefined
[19] University of the Basque Country UPV/EHU,undefined
[20] Bioaraba,undefined
[21] Microbiology,undefined
[22] Infectious Disease,undefined
[23] Antimicrobial Agents,undefined
[24] and Gene Therapy,undefined
来源
Communications Biology | / 5卷
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摘要
Antibodies against the carboxy-terminal section of the membrane-proximal external region (C-MPER) of the HIV-1 envelope glycoprotein (Env) are considered as nearly pan-neutralizing. Development of vaccines capable of producing analogous broadly neutralizing antibodies requires deep understanding of the mechanism that underlies C-MPER recognition in membranes. Here, we use the archetypic 10E8 antibody and a variety of biophysical techniques including single-molecule approaches to study the molecular recognition of C-MPER in membrane mimetics. In contrast to the assumption that an interfacial MPER helix embodies the entire C-MPER epitope recognized by 10E8, our data indicate that transmembrane domain (TMD) residues contribute to binding affinity and specificity. Moreover, anchoring to membrane the helical C-MPER epitope through the TMD augments antibody binding affinity and relieves the effects exerted by the interfacial MPER helix on the mechanical stability of the lipid bilayer. These observations support that addition of TMD residues may result in more efficient and stable anti-MPER vaccines.
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