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Role of antigen processing HIV CTL immunodominance

Role of antigen processing HIV CTL immunodominance
抗原加工的作用 HIV CTL 免疫优势
批准号:
6843226
负责人:
Sylvie Le Gall
金额:
$25.63万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-07-01 至 2006-06-30

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中文摘要
翻译
描述(由申请人提供):细胞毒性t淋巴细胞(CTL)在HIV感染的免疫控制中是必不可少的,许多HLA等位基因的免疫显性CTL反应已被表征。然而,某些表位相对免疫优势的原因尚未确定,抗原加工中形成免疫优势表位的步骤尚不清楚。此外,还没有研究检验在HIV-1感染者体内积累的hla限制性突变如何影响表位的产生。我们的长期目标是了解控制特定HIV抗原的降解和递呈的规则,以及通过突变损害抗原递呈的规则。在初步研究中,我们已经在显性HIV表位的侧翼区域发现了等位基因特异性突变,这些突变损害了CTL对抗原的加工和识别。我们已经证明hla限制性突变可以影响内质网(ER)中较长的肽前体的修剪,从而改变I类装载表位的相对可用性。我们假设抗原加工影响表位之间观察到的层次结构,并且表位侧翼区域的特异性hla相关突变改变了加工的不同步骤,并作为免疫逃逸的机制。这一建议将集中在抗原加工途径的变化,可能导致病毒逃逸的详细分析。具体目标包括:1。定义cd8 T细胞表位的胞浆加工,重点关注HLA-A3/ a11限制性反应的初始研究;2. 确定内质网肽的n -糖基化在多大程度上作为病毒逃避CTL反应的潜在机制。这些目标是基于一个共同的实验设计。我们将在抗原提呈细胞中跟踪HIV表位的完整加工过程,或者用亚细胞组分重建这一过程。我们将分析HIV多肽在细胞质中被蛋白酶体和其他肽酶降解,转位到内质网,内质网管中n -延伸肽的修剪和潜在的n -糖基化,多肽装载到MHC-I分子上并随后呈递给CTL。鉴于艾滋病毒的极端突变率和免疫选择压力的持续存在,这些研究代表了确定抗原加工在免疫逃逸中的作用的关键的第一步,这不仅对理解艾滋病毒的免疫发病机制,而且对候选疫苗的设计都很重要。
英文摘要
DESCRIPTION (provided by applicant): Cytotoxic T-lymphocytes (CTL) are essential for immune control in HIV infection, and immunodominant CTL responses have been characterized for many HLA alleles. However the reasons for relative immunodominance of certain epitopes have not been defined, and the steps in antigen processing that shape an immunodominant epitope are not known. Moreover no studies have examined how HLA-restricted mutations that accumulate in HIV-1 infected people affect the generation of epitopes. Our long-term goal is to understand the rules that govern degradation and presentation of specific HIV antigens and the impairment of antigen presentation through mutations. In preliminary studies, we have identified allele-specific mutations in the flanking regions of dominant HIV epitopes that impair antigen processing and recognition by CTL. We have shown that an HLA-restricted mutation can affect trimming of longer peptide precursors in the endoplasmic reticulum (ER), thereby altering the relative availability of epitopes for class I loading. We hypothesize that antigen processing influences the hierarchy observed among epitopes and that specific HLA-associated mutations in flanking regions of epitopes alter distinct steps of the processing and serve as a mechanism for immune escape. This proposal will focus on a detailed analysis of changes in antigen processing pathways that may lead to viral escape. The specific aims include: 1. To define cytosolic processing ofCD8 T cell epitopes, focusing on HLA-A3/A11-restricted responses for initial studies; 2. To determine the extent to which N-glycosylation of peptides in the ER serves as a potential mechanism of viral escape from CTL responses. These goals are based on a common experimental design. We will follow the complete processing of HIV epitopes of interest in antigen presenting cells or reconstruct this process with subcellular fractions. We will analyze the degradation of HIV polypeptides in the cytosol by the proteasome and other peptidases, the translocation into the ER and the trimming and potential N-glycosylation of N-extended peptides in the ER lumen, the loading of peptides onto MHC-I molecules and their subsequent presentation to CTL. Given the extreme mutation rate of HIV and the persistence of immune selection pressure, these studies represent a critical first step in determining the role of antigen processing in immune escape, which will be important not only for the understanding of HIV immunopathogenesis but also for the design of candidate vaccines.
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The HLA-E peptidome in HIV infection
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  • 财政年份:
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  • 财政年份:
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Learning from attenuated CMV how to broaden HIV-specific T cell responses
  • 批准号:
    8732086
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  • 财政年份:
    2014
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  • 批准号:
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海外基金