High-throughput mapping of antigen specificity to B-cell-receptor sequence for characterizing antibody responses in HIV-vaccinated and infected individuals
High-throughput mapping of antigen specificity to B-cell-receptor sequence for characterizing antibody responses in HIV-vaccinated and infected individuals
批准号:
10252047
负责人:
Ivelin Georgiev
金额:
$85.9万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-09-02 至 2024-08-31
关键词:
AddressAffectAntibodiesAntibody RepertoireAntibody ResponseAntibody TherapyAntigen TargetingAntigensAtlasesB-Cell Antigen ReceptorB-Lymphocyte EpitopesB-LymphocytesBar CodesBenchmarkingBinding SitesBiological AssayCell LineCellsCharacteristicsCollectionComplexDNAEpitope MappingEpitopesEventGenerationsGoalsHIVHIV InfectionsHIV Vaccine Trials NetworkHIV-1HIV-1 vaccineHumanImmune systemImmunodominant EpitopesIndividualInfectionKnock-outLeadLibrariesLightLinkMapsMeasuresMonoclonal AntibodiesMutationPeptidesPerformancePolysaccharidesPreventionProcessRecoveryResolutionSamplingSequence DeterminationSpecificityTechnologyTimeVaccinatedVaccinationVaccine DesignVaccinesValidationanalysis pipelineantigen bindingcell determinationco-infectioncohortexperimental studynext generation sequencingnovelpathogenpreventresponsescreeningtechnology developmenttoolvaccine candidatevaccine-induced antibodies
中文摘要
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英文摘要
Project Summary. The search for an effective HIV-1 vaccine remains a top priority, and a deeper
understanding of how the immune system recognizes HIV-1 can help inform vaccine design. Lately, much
effort has focused on understanding antibody responses to HIV-1 infection and vaccination, since antibodies
have proven useful in therapy and prevention, and as templates for antibody-specific vaccine design. While
antibody responses to HIV-1 are polyclonal and complex, advances in next-generation sequencing (NGS)
technologies enable us to see such polyclonal responses at an unprecedented resolution, as a collection of
individual monoclonal antibody sequences. Sequence identification is typically followed by functional antibody
characterization, a primary component of which is the mapping of antigen/epitope specificity.
A major challenge with the standard antibody analysis pipeline is that the sequence identification and
functional characterization processes for antibodies are generally decoupled. This prevents truly high-
throughput mapping of antibody-antigen specificity, providing only limited information for a small subset of
selected antibody sequences from any given sample. To address this challenge, here we propose to develop a
technology that, for a given sample, will enable the mapping of antibody sequence to antigen specificity from a
single high-throughput experiment. The technology, LIBRA-seq (LInking B-cell Receptor to Antigen specificity
through sequencing), involves physically mixing a B-cell sample with a (theoretically unlimited) pool of
barcoded antigens, thus enabling the simultaneous recovery of: (i) paired heavy-light chain BCR sequences
and (ii) antigen specificity for a given B cell. In particular, this technology development project will broadly focus
on two specific aims: In Specific Aim 1, we will evaluate the effect of different antigen barcoding strategies and
other assay variables on LIBRA-seq accuracy and performance. The goal in this aim is to optimize the LIBRA-
seq ability to accurately detect BCR sequence and antigen specificity from a sequencing experiment. In
Specific Aim 2, we will aim to simultaneously map the target epitope of a given HIV-specific B cell, by
screening a cocktail of antigens with epitope-knockout mutations along with the wildtype antigens. These
efforts will not only lead to the identification of HIV-specific B cells, but will also provide residue-level
information about the specific epitope target on the antigen from the same high-throughput experiment.
Ultimately, for a given infection or vaccination sample, the LIBRA-seq technology will provide the ability
to recover antibody sequence and antigen specificity for tens to hundreds of thousands of B cells at the single-
cell level. To demonstrate the utility of LIBRA-seq, we will characterize samples from HIV-1 infection and
vaccination cohorts. More generally, LIBRA-seq will be an integral tool for efficient and accurate B-cell
analysis, with the potential for broad impact on the fields of vaccine and antibody discovery not only for HIV-1
but also for a wide range of other pathogens of biomedical significance.
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Technologies for High-Throughput Mapping of Antigen Specificity to B-Cell-Receptor Sequence
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批准号:10734412
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项目类别:
-
资助金额:$84.17万
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财政年份:2023
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负责人:Ivelin Georgiev
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依托单位:
Core 3: Single-Cell Core
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批准号:10625690
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项目类别:
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资助金额:$22.88万
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财政年份:2023
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负责人:Ivelin Georgiev
-
依托单位:
High-throughput mapping of antigen specificity to B-cell-receptor sequence for characterizing antibody responses in HIV-vaccinated and infected individuals
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批准号:10478203
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项目类别:
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资助金额:$85.71万
-
财政年份:2020
-
负责人:Ivelin Georgiev
-
依托单位:
High-throughput mapping of antigen specificity to B-cell-receptor sequence for characterizing antibody responses in HIV-vaccinated and infected individuals
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批准号:10686168
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项目类别:
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资助金额:$82.38万
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财政年份:2020
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负责人:Ivelin Georgiev
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依托单位:
Antibody repertoire characterization in the context of coronaviruses
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批准号:10266227
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项目类别:
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资助金额:$67.33万
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财政年份:2020
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负责人:Ivelin Georgiev
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依托单位:
High-throughput mapping of antigen specificity to B-cell-receptor sequence for characterizing antibody responses in HIV-vaccinated and infected individuals
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批准号:10081501
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项目类别:
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资助金额:$87.9万
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财政年份:2020
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负责人:Ivelin Georgiev
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依托单位:
Neutralization Fingerprinting Analysis of Polyclonal Antibody Responses against HIV-1
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批准号:9407909
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项目类别:
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资助金额:$65.07万
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财政年份:2017
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负责人:Ivelin Georgiev
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依托单位:
海外基金