Structural characterization of Fab-dimerized glycan-reactive antibodies that neutralize HIV-1
Structural characterization of Fab-dimerized glycan-reactive antibodies that neutralize HIV-1
批准号:
10682532
负责人:
Priyamvada Acharya
金额:
$68.34万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-09-17 至 2026-08-31
关键词:
2019-nCoVAddressAffinityAmino Acid SubstitutionAntibodiesAntigensArchitectureAvidityB-Cell DevelopmentBindingBiologicalBiologyComplexCoronavirusCoronavirus spike proteinCryoelectron MicroscopyDimerizationDiscriminationDisulfide LinkageEpitopesEvolutionGoalsGrantHIV InfectionsHIV-1HumanHydrogen BondingHydrophobicityImmunoglobulin GImmunoglobulin Somatic HypermutationImmunologicsInvadedMacacaMiddle East Respiratory Syndrome CoronavirusMolecular ConformationNegative StainingPolysaccharidesPopulationPropertyProteinsResolutionSARS coronavirusSARS-CoV-2 spike proteinShapesStructureVariantX-Ray Crystallographyarmcross reactivitydesignexpectationexperimental studyglycosylationinnovationinsightmutantnatural antibodiesneutralizing antibodynovelpathogenresponsesimian human immunodeficiency virusstructural determinantssugar
中文摘要
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英文摘要
Structural characterization of Fab-dimerized glycan-reactive antibodies that neutralize HIV-1
A glycan shield covers the HIV-1 envelope (Env) limiting antibody access to broadly neutralizing
antibody (bnAb) epitopes. 2G12 had for long been the only example of a HIV-1 bnAb that interacts solely with
the Env glycan shield. Its unique VH domain-swapped architecture, with two Fab arms swapped to create a
Fab-dimerized IgG, allows 2G12 to simultaneously interact with 4 glycans, thus bolstering typically weak
protein-glycan binding through avidity. We have recently characterized structurally diverse Fab-dimerized,
glycan-reactive (FDG) antibodies that target the HIV-1 Env glycan shield. Unlike 2G12, these newly identified
FDG antibodies are not domain-swapped; instead, Fab dimerization occurred by mechanisms including inter-
Fab disulfide linkage, hydrophobic and hydrogen bond interactions. We further showed that the HIV-1 Env-
targeting FDG antibodies recognized a glycan cluster in the S2 subunit of the SARS-CoV-2 spike. While our
results reveal diverse ways antibodies can Fab dimerize to recognize glycans clusters, several questions
remain regarding the mechanisms of Fab dimerization and glycan recognition. Understanding these will
provide insights into the development of B cell responses to glycans.
The overall goals of this study are to understand structural determinants of antibody Fab dimerization
leading to high affinity glycan recognition. That 2G12 and other FDG bnAbs specifically recognize a conserved
glycan cluster on HIV-1 Envs that consists of self-sugars in a unique non-self presentation provides basis for
immunological discrimination between glycans on host and invading pathogens. The scientific premise of this
grant is that defining structural mechanisms for glycan recognition by Fab dimerized antibodies will allow
specific targeting of diverse glycosylated pathogens. The innovations in this grant derive from (i) an expanded
repertoire of FDG antibodies, (ii) the demonstration that FDG antibodies are prevalent, (iii) the finding that
domain-swapped VH conformation is not necessary for HIV-1 neutralization.
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Administrative Core
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项目类别:
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资助金额:$76.25万
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依托单位:
Project 3 - Dynamics of latent HIV-1 reservoirs: High resolution antigenic mapping and strategies to block rebound
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Structural characterization of Fab-dimerized glycan-reactive antibodies that neutralize HIV-1
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Structure and dynamics of a functional cavity in the HIV-1 Envelope, and its role in conformational changes required for infection
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Structures of initial CD4 engagement with pre-fusion, closed HIV-1 Envelope trimer and early CD4-induced conformational changes required for infection
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Structures of initial CD4 engagement with pre-fusion, closed HIV-1 Envelope trimer and early CD4-induced conformational changes required for infection
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依托单位:
海外基金