Immune receptors on Cytotoxic Lymphocytes& Target Cell
Immune receptors on Cytotoxic Lymphocytes& Target Cell
批准号:
7076163
负责人:
Yuri Sykulev
金额:
$32.76万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-07-01 至 2007-06-30
关键词:
MHC class I antigenT cell receptorbiological signal transductioncell adhesion moleculescell cell interactioncell membranecellular immunityclinical researchcytokine receptorscytolysiscytoskeletal proteinscytotoxic T lymphocytegap junctionsgranulehelper T lymphocytehuman tissueinterleukin 2leukocyte adhesion moleculesnatural killer cells
中文摘要
描述(由申请人提供):虽然在一些病毒感染的细胞中抗原肽的天然丰度很低,但这些细胞仍然可以被病毒特异性细胞毒性T淋巴细胞(CTL)裂解。我们发现,在靶细胞上不到12个同源肽- mhc (pMHC)复合物足以使它们对CTL的特异性裂解敏感。CTL对靶细胞裂解具有惊人敏感性的分子机制尚不清楚。我们的初步数据表明,少量细胞溶解颗粒的释放不会诱导靶细胞裂解,除非颗粒集中在CTL和靶细胞膜之间的有限空间内。我们假设免疫突触将颗粒集中在精确的位置,保持其活性,并解释了CTL裂解靶细胞的敏感性和特异性。我们还发现LFA- 1 - 1cam -1相互作用足以在CTL形成免疫突触的早期阶段。这让我们提出,通过粘附分子的信号传导导致瞬态突触的形成,该突触具有两个典型的结构域或超分子激活簇(SMACs)。瞬时突触可能促进CTL对靶细胞表面的有效扫描。最近,我们发现mhc -1和ICAM-1分子在生物化学和膜筏成像中共定位。我们还发现筏完整性通过LFA-1和ICAM-1相互作用的机制促进了CTL对病毒肽- mhc (pMHC)的检测。基于此,我们假设icam -1- mhc -1在筏中的共同聚集提供了CTL上早期免疫突触形成与抗原在靶细胞上呈递之间的联系。我们进一步假设mhc -1和ICAM-1通过适配蛋白被招募到筏上形成复杂的分子组装,这些分子组装可能在不同的细胞类型上具有不同的结构。通过对已知特异性的人CTL克隆的精确操作,我们将通过三个特定目的来验证这一假设:(i)通过研究T细胞和靶细胞膜界面上的细胞溶解颗粒释放,以及LFA-1-ICAM-1相互作用导致突触形成和CTL有效裂解靶细胞的作用,来确定免疫突触对细胞溶解分子浓度的重要性;(ii)确定CTL和NK细胞形成免疫突触的机制,研究粘附分子模式和这些模式的功能相关性;(iii)确定mhc -1和ICAM-1在膜筏中相互作用的功能重要性和机制。
英文摘要
DESCRIPTION (provided by applicant):Although natural abundance of antigenic peptides in some virus-infected is very low, these cells are still lysed by virus-specific cytotoxic T lymphocytes (CTL). We have found that less then a dozen cognate peptide-MHC (pMHC) complexes on target cells are sufficient to render them susceptible for specific lysis by CTL. The molecular mechanism accounting for the striking sensitivity of target cell lysis by CTL is not understood. Our preliminary data suggest that release of a small amount of cytolytic granules would not induce target cell lysis unless the granules are concentrated in a limited space between CTL and target cell membranes. We hypothesized that immunological synapse concentrates the granules preserving their activity at the precise location and accounts for the sensitivity and specificity of target cell lysis by CTL. We have also found that LFA- 1 -1CAM- 1 interactions are sufficient for early stages of immunological synapse formation by CTL. This let us to propose that signaling through adhesion molecules results in the formation of transient synapse that has two typical domains or supramolecular activation clusters (SMACs). The transient synapse is likely to facilitate effective scanning of the surface of target cells by CTL. Most recently, we have found that MHC-I and ICAM-1 molecules are co-localized biochemically and by imaging within membrane rafts. We also showed that raft integrity facilitates viral peptide-MHC (pMHC) detection by CTL through mechanisms that require interaction of LFA-1 and ICAM-1. Based on this we hypothesized that ICAM-1-MHC-I co- clustering in rafts provides the linkage between early immunological synapse formation on CTL and the presentation of antigen on target cells. We further hypothesize that MHC-I and ICAM-1 are recruited to the rafts through adapter proteins to form complex molecular assemblies, which might have distinct structures on various cell types. Using precise manipulation of human CTL clones with known specificity, we will test this hypothesis by pursuing 3 specific aims: (i) To determine the significance of cytolytic molecule concentration by the immunological synapses by studying cytolytic granule release at the interface between the T cell and target cell membranes and the role of LFA-1-ICAM-1 interactions that lead to the synapse formation and effective target cell lysis by CTL; (ii) To determine the mechanism of immunological synapse formation by CTL and NK cells studying adhesion molecule patterns and functional correlates of these patterns; (iii) To determine the functional importance and mechanism of MHC-I and ICAM-1 interactions in membrane rafts.
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会议论文
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海外基金