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Role of transcription coactivator OCA-B in gene poising and immunological memory.

Role of transcription coactivator OCA-B in gene poising and immunological memory.
转录辅激活因子 OCA-B 在基因平衡和免疫记忆中的作用。
批准号:
8585815
负责人:
DEAN TANTIN
金额:
$37.25万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-12-01 至 2017-11-30

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中文摘要
翻译
描述(由申请人提供):细胞必须保持一些基因处于沉默状态,同时保持它们为以后的表达做好准备。这种特性对记忆淋巴细胞至关重要,但其机制尚不清楚。我们先前的研究结果表明,Oct 1转录因子对于平衡IL 2基因以实现与次级T细胞刺激相关的更快速和更强的诱导至关重要。Oct 1对于维持CD 4记忆T细胞数量和功能也至关重要(未发表数据)。然而,我们的研究结果并没有解释Oct 1靶基因如何在T细胞活化后的长时间点保持在记忆细胞中的转录平衡。我们的中心假设是,OCA-B,一种已知与Oct 1对接的转录共激活因子,阻止了对多个靶点的稳定抑制,以帮助维持与免疫记忆相关的稳定转录状态。该提议将确定1)OCA-B在I12基因位点的基因平衡机制,2)OCA-B准备稍后表达的靶基因的数量和身份,以及3)OCA-B在体内调节记忆T细胞状态的能力。这些实验的成功将确定CD 4记忆T细胞维持关键基因在稳定的表观遗传状态以供以后表达的机制,并揭示免疫记忆的中央调节器。具体目标1:确定OCA-B维持IL 2处于稳定转录状态的机制,作为维持记忆功能的表观遗传程序的一部分。具体目标2:鉴定利用OCA-B防止稳定阻遏的靶基因。具体目标3:确定OCA-B抗阻遏的体内结果。
英文摘要
DESCRIPTION (provided by applicant): Cells must maintain some genes in a silent state while simultaneously keeping them poised for later expression. This property is critical for memory lymphocytes, however the mechanisms are unclear. Our prior findings showed that the Oct1 transcription factor is critical for poising the Il2 gene for the more rapid and stronger induction associated with secondary T cell stimulation. Oct1 is also critical for maintaining CD4 memory T cell numbers and function (unpublished data). However, our findings do not explain how Oct1 target genes remain transcriptionally poised in memory cells at long timepoints following T cell activation. Our central hypothesis is that OCA-B, a transcriptional co-activator known to dock with Oct1, prevents stable repression of multiple targets, to help maintain poised transcriptional states associated with immunological memory. This proposal will determine 1) the mechanism of gene poising by OCA-B at the Il2 gene locus, 2) the number and identity of target genes poised for later expression by OCA-B and 3) the capacity of OCA-B to regulate memory T cell states in vivo. Success with these experiments will identify the mechanism whereby CD4 memory T cells maintain critical genes in poised epigenetic states for later expression, and uncover a central regulator of immunological memory. Specific Aim 1: Determine the mechanism by which OCA-B maintains Il2 in a poised transcriptional state as part of the epigenetic program that maintains memory functionality. Specific Aim 2: Identify the target genes that utilize OCA-B to prevent stable repression. Specific Aim 3: Determine the in vivo consequences of OCA-B anti-repression.
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