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1.
Cell ; 166(6): 1459-1470.e11, 2016 Sep 08.
Artigo em Inglês | MEDLINE | ID: mdl-27610570

RESUMO

Induction of broadly neutralizing antibodies (bnAbs) is a primary goal of HIV vaccine development. VRC01-class bnAbs are important vaccine leads because their precursor B cells targeted by an engineered priming immunogen are relatively common among humans. This priming immunogen has demonstrated the ability to initiate a bnAb response in animal models, but recall and maturation toward bnAb development has not been shown. Here, we report the development of boosting immunogens designed to guide the genetic and functional maturation of previously primed VRC01-class precursors. Boosting a transgenic mouse model expressing germline VRC01 heavy chains produced broad neutralization of near-native isolates (N276A) and weak neutralization of fully native HIV. Functional and genetic characteristics indicate that the boosted mAbs are consistent with partially mature VRC01-class antibodies and place them on a maturation trajectory that leads toward mature VRC01-class bnAbs. The results show how reductionist sequential immunization can guide maturation of HIV bnAb responses.


Assuntos
Anticorpos Neutralizantes/imunologia , Linfócitos B/imunologia , Anticorpos Anti-HIV/imunologia , HIV-1/imunologia , Vacinas Sintéticas/imunologia , Adulto , Sequência de Aminoácidos , Animais , Anticorpos Neutralizantes/genética , Antígenos Virais/imunologia , Feminino , Anticorpos Anti-HIV/sangue , Anticorpos Anti-HIV/genética , Humanos , Masculino , Camundongos , Camundongos Transgênicos , Mutação , Alinhamento de Sequência , Vacinas Sintéticas/administração & dosagem
2.
PLoS Pathog ; 13(2): e1006212, 2017 02.
Artigo em Inglês | MEDLINE | ID: mdl-28225819

RESUMO

Among broadly neutralizing antibodies to HIV, 10E8 exhibits greater neutralizing breadth than most. Consequently, this antibody is the focus of prophylactic/therapeutic development. The 10E8 epitope has been identified as the conserved membrane proximal external region (MPER) of gp41 subunit of the envelope (Env) viral glycoprotein and is a major vaccine target. However, the MPER is proximal to the viral membrane and may be laterally inserted into the membrane in the Env prefusion form. Nevertheless, 10E8 has not been reported to have significant lipid-binding reactivity. Here we report x-ray structures of lipid complexes with 10E8 and a scaffolded MPER construct and mutagenesis studies that provide evidence that the 10E8 epitope is composed of both MPER and lipid. 10E8 engages lipids through a specific lipid head group interaction site and a basic and polar surface on the light chain. In the model that we constructed, the MPER would then be essentially perpendicular to the virion membrane during 10E8 neutralization of HIV-1. As the viral membrane likely also plays a role in selecting for the germline antibody as well as size and residue composition of MPER antibody complementarity determining regions, the identification of lipid interaction sites and the MPER orientation with regard to the viral membrane surface during 10E8 engagement can be of great utility for immunogen and therapeutic design.


Assuntos
Anticorpos Neutralizantes/química , Anticorpos Neutralizantes/imunologia , Anticorpos Anti-HIV/química , Anticorpos Anti-HIV/imunologia , HIV-1/imunologia , Anticorpos Bloqueadores/química , Anticorpos Bloqueadores/imunologia , Proteína gp41 do Envelope de HIV/imunologia , Humanos , Conformação Proteica , Ressonância de Plasmônio de Superfície , Difração de Raios X
3.
Environ Sci Technol ; 50(2): 732-43, 2016 Jan 19.
Artigo em Inglês | MEDLINE | ID: mdl-26636722

RESUMO

Adsorption to solid-water interfaces is a major process governing the fate of waterborne viruses in natural and engineered systems. The relative contributions of different interaction forces to adsorption and their dependence on the physicochemical properties of the viruses remain, however, only poorly understood. Herein, we systematically studied the adsorption of four bacteriophages (MS2, fr, GA, and Qß) to five model surfaces with varying surface chemistries and to three dissolved organic matter adlayers, as a function of solution pH and ionic strength, using quartz crystal microbalance with dissipation monitoring. The viruses were selected to have similar sizes and shapes but different surface charges, polarities, and topographies, as identified by modeling the distributions of amino acids in the virus capsids. Virus-sorbent interactions were governed by long-ranged electrostatics and favorable contributions from the hydrophobic effect, and shorter-ranged van der Waals interactions were of secondary importance. Steric effects depended on the topographic irregularities on both the virus and sorbent surfaces. Differences in the adsorption characteristics of the tested viruses were successfully linked to differences in their capsid surface properties. Besides identifying the major interaction forces, this work highlights the potential of computable virus surface charge and polarity descriptors to predict virus adsorption to solid-water interfaces.


Assuntos
Bacteriófagos/química , Propriedades de Superfície , Adsorção , Interações Hidrofóbicas e Hidrofílicas , Compostos Orgânicos , Concentração Osmolar , Técnicas de Microbalança de Cristal de Quartzo , Soluções , Eletricidade Estática , Água/química
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