grant

Project 2 - B cell antigen receptor structure and antigen-BCR interaction dynamics

Organization DUKE UNIVERSITYLocation DURHAM, UNITED STATESPosted 14 Jun 2022Deadline 31 Mar 2027
NIHUS FederalResearch GrantFY202619S Gamma GlobulinAIDS VaccinesAIDS VirusAIDS vaccineAcquired Immune Deficiency Syndrome VirusAcquired Immunodeficiency Syndrome VirusAdoptedAntibodiesAntibody ResponseAntigen ReceptorsAntigensAutologousB blood cellsB cellB cell receptorB cellsB-Cell ActivationB-Cell Antigen ReceptorB-CellsB-LymphocytesB-cellBindingBinding ProteinsBiochemicalBiophysicsCD4 CellsCD4 Positive T LymphocytesCD4 T cellsCD4 helper T cellCD4 lymphocyteCD4+ T-LymphocyteCD4-Positive LymphocytesCategoriesCell BodyCell CommunicationCell Communication and SignalingCell ComponentsCell InteractionCell IsolationCell LineCell SegregationCell SeparationCell Separation TechnologyCell SignalingCell StructureCell membraneCell surfaceCell-to-Cell InteractionCellLineCellsCellular StructuresClass II GenesComplexCryo-electron MicroscopyCryoelectron MicroscopyCytoplasmic MembraneDevelopmentDimerizationDissociationDistalElectron CryomicroscopyEnv trimerEnvelope ProteinGerm LinesGlycansGoalsHIVHIV EnvHIV envelopeHIV envelope proteinHIV glycoprotein EnvHIV vaccineHIV-1HIV-1 EnvHIV-1 envelopeHIV-1 glycoprotein EnvHIV-1 vaccineHIV-IHIV/AIDS VaccinesHIV1HIV1 vaccineHLA Class II GenesHistocompatibility ComplexHistocompatibility ComplicesHuman Immunodeficiency Virus Type 1Human Immunodeficiency Virus-1Human Immunodeficiency VirusesHuman immunodeficiency virus 1IgDIgEIgMImmunobiologyImmunochemical ImmunologicImmunoglobulin DImmunoglobulin EImmunoglobulin MImmunologicImmunologicalImmunologicallyImmunologicsImmunophysiologyIntracellular Communication and SignalingLAV-HTLV-IIILigand Binding ProteinLigand Binding Protein GeneLigandsLymphadenopathy-Associated VirusMHC Class IIMHC Class II GenesMajor Histocompatibility ComplexMajor Histocompatibility ComplicesMass Photometry/Spectrum AnalysisMass SpectrometryMass SpectroscopyMass SpectrumMass Spectrum AnalysesMass Spectrum AnalysisMediatingMethodsModelingMolecular ConfigurationMolecular ConformationMolecular Dynamics SimulationMolecular InteractionMolecular StereochemistryNaturePeptidesPlasma MembranePolysaccharidesProliferatingPropertyProtein BindingProtein DimerizationProteinsRestShapesSignal TransductionSignal Transduction SystemsSignalingSpecificityStrains Cell LinesStructureT4 CellsT4 LymphocytesVaccine DesignVirusVirus-HIVactivated B cellsantigen bindingantigen boundbiological signal transductionbiophysical foundationbiophysical principlesbiophysical sciencesbound proteincell sortingconformationconformationalconformational stateconformationallyconformationscryo-EMcryoEMcryogenic electron microscopycultured cell linedesigndesigningdevelopmentalenv Antigensenv Gene Productsenv Glycoproteinsenv Polyproteinsenv Proteinexpectationhigh definitionhigh-resolutionhuman immunodeficiency virus vaccineimmunogenmolecular dynamicsmonomerneutralizing antibodyplasmalemmaresponsestructural biologyvaccine against HIVvaccine against HIV-1vaccine efficacy
Sign up free to applyApply link · pipeline · email alerts
— or —

Get email alerts for similar roles

Weekly digest · no password needed · unsubscribe any time

Full Description

Project Summary/Abstract – Project 2 Structural analysis of how HIV-1 Envelope (Env) interacts with antigen receptor on B cells (BCR) to initiate B cell signaling and activation is key to understanding antibody responses against HIV protein immunogens. Recent studies of the organization of the BCR complex on the cell membrane supports a model in which BCRs exist in different signaling states that require definition in structural terms. We hypothesize the following distinct states of the BCR complex – 1) “signaling-inhibited’, 2) signaling-competent and 3) ‘signaling-disrupted’. Advances in HIV-1 Env design including those that target germline precursors have led to the development of Env immunogens as potential candidates for HIV vaccines.

How BCRs of distinct specificities and signaling-states interact with Env protein immunogens that trigger signaling and activate these cells are not clearly understood. The overall goal of the project is to define BCR-antigen structures with specificity of broadly neutralizing antibodies (bnAb), non-canonical glycan-binding bnAbs and to-be isolated autologous neutralizing antibodies (anAb). In this project, we will perform biophysical/biochemical, structural and immunological analyses to define properties of HIV Env-BCR interactions for activation of B cells expressing bnAb or germline precursor BCRs. In Aim 1, we will perform Cryo-EM and molecular dynamic simulation analyses to define structures of antigen- liganded BCR complex with specificities of autologous or broadly neutralizing HIV-1 antibodies.

In addition, we will define the structures of BCRs with specificities of glycan-binding bnAbs that present non-canonical Fab configurations (I-shaped versus Y-shaped). In Aim 2, we will study specificity of bnAb precursors with disrupted proximal signaling and determine whether such BCRs show distinct cell surface interaction dynamics with Env proteins. Studies in Aim 3 will define antigen-BCR interaction parameters that enhance B cell signaling, antigen internalization and MHC class II-peptide presentation of Env protein eptiopes. The proposed studies will bridge high-resolution structures and antigen-BCR interaction dynamics to B cell signaling and activation.

The long- range goals of these studies are to provide the mechanistic basis for understanding the humoral response to HIV-1 vaccines and guide development of strategies to enhance vaccine efficacy.

Grant Number: 5U54AI170752-05
NIH Institute/Center: NIH

Principal Investigator: S. Munir ALAM

Sign up free to get the apply link, save to pipeline, and set email alerts.

Sign up free →

Agency Plan

7-day free trial

Unlock procurement & grants

Upgrade to access active tenders from World Bank, UNDP, ADB and more — with email alerts and pipeline tracking.

$29.99 / month

  • 🔔Email alerts for new matching tenders
  • 🗂️Track tenders in your pipeline
  • 💰Filter by contract value
  • 📥Export results to CSV
  • 📌Save searches with one click
Start 7-day free trial →