The function of membrane vesiculation in CTLA-4-mediate*
The function of membrane vesiculation in CTLA-4-mediate*
批准号:
6868932
负责人:
Joonsoo Kang
金额:
$23.85万
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:
2004-03-15 至 2006-02-28
关键词:
CD28 moleculeRNA interferenceT cell receptorantigensbiological signal transductionconfocal scanning microscopycytotoxic T lymphocyteflow cytometrygene mutationgenetically modified animalsimmune tolerance /unresponsivenessimmunofluorescence techniqueimmunoregulationlaboratory mouseleukocyte activation /transformationprotein isoformsreceptor mediated endocytosissecretionubiquitinvesicle /vacuole
中文摘要
描述(由申请人提供):T细胞耐受性对于预防自身免疫性疾病、移植物抗宿主疾病和移植存活至关重要。共刺激分子在维持T细胞耐受性方面发挥着重要作用,即在产生生产性免疫反应和防止自身组织的致病反应之间取得平衡。在经典的T细胞激活双信号模型中,共刺激分子提供了第二信号。细胞毒性T淋巴细胞抗原-4(CTLA-4)是CD28共刺激家族的成员之一,是T细胞活化和效应功能的重要调节因子。CTLA-4的功能是中和激活信号,抑制或减弱T细胞的激活和反应。在这项建议中,我们假设CTLA-4可以通过一种迄今未知的新机制来调节T细胞耐受。在第一个特定目的中,我们建议检验存在CTLA-4内吞作用的替代方法的假设。此外,我们认为这些替代方法是至关重要的,因为它们将通过与TCR信号体空间上不同的细胞内信号提供一种未知的CTLA-4功能机制。我们将通过使用显性负突变和RNAi击倒候选细胞内运输途径中的关键蛋白的一系列方法来测试这些预测。在特定的目标2中,我们认为CTLA-4是通过囊泡从激活的T细胞中释放出来的,并且膜结合的CTLA-4可以通过反式获得。此外,我们认为CTLA-4的这个来源可以通过竞争配体来被动发挥作用,或者更有趣的是,可以被‘受体’T细胞占据并主动抑制T细胞的刺激。我们将对CTLA-4(全长和非配体非依赖的CTLA-4)的两种膜结合亚型的预测进行检验。从拟议的研究中获得的见解将阐明CTLA-4介导的T细胞反应性、T细胞耐受性和耐受性丧失的新的机制基础。了解这些过程对于设计新的治疗方法来治疗自身免疫性疾病和过敏性疾病以及移植至关重要。到目前为止,在增加CTLA-4功能的能力方面取得的进展有限。所提出的CTLA-4功能模型将为体内增强CTLA-4介导的抑制作用提供一种新的手段。
英文摘要
DESCRIPTION (provided by applicant): T cell tolerance is critical for the prevention of autoimmune disease, graft versus host disease and for transplantation survival. There is a growing appreciation for the role of costimulatory molecules, which provide the 'second signal' in the classic two-signal model of T cell activation, play in maintaining T cell tolerance, that is striking the balance between generating productive immune responses and preventing pathogenic responses to self-tissues. Cytotoxic T lymphocyte antigen-4 (CTLA-4) is a member of the CD28 costimulation family that is a critical regulator of T cell activation and effector functions. CTLA-4 functions to counteract activating signals and inhibit or attenuate T cell activation and responses. In this proposal we hypothesize that CTLA-4 can function using a heretofore unidentified and novel mechanisms to regulate T cell tolerance. In the first specific aim we propose to test the hypothesis that there are alternate methods of CTLA-4 endocytosis. Further we propose that these alternative methods are critical since they will provide an unidentified mechanism of CTLA-4 function via intracellular signaling occurring spatially distinct from the TCR signalosome. We will test these predictions by series of approaches using dominant negative mutants and RNAi knock-down of key proteins in candidate intracellular trafficking pathways. In Specific Aim 2 we propose that CTLA-4 is released from activated T cells via vesicles and that membrane bound CTLA-4 can be acquired in trans. Further we propose that this source of CTLA-4 can function passively by competing for ligand or, more interestingly, can be taken up by the 'acceptor' T cells and actively inhibit T cell stimulation. We will test these predictions for both membrane bound isoforms of CTLA-4 (full-length and ligand-independent CTLA-4). The insights gained from the proposed studies will elucidate a novel mechanistic basis for CTLA-4-mediated regulation of T cell responsiveness, T cell tolerance and loss of tolerance. Understanding these processes is critical for designing novel therapeutic approaches to treat autoimmune disease and allergic diseases and in transplantation. To date there has been limited advancement on the ability to increase CTLA-4 function. The proposed model of CTLA-4 function would provide a novel means to increase CTLA-4-mediated inhibition in vivo.
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