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Il2 Receptors--molecular regulation

Il2 Receptors--molecular regulation
Il2受体--分子调控
批准号:
6967133
负责人:
Warren J Leonard
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
人类白细胞介素-2受体和相关的细胞因子/细胞因子受体系统正在被研究,以了解正常和肿瘤细胞中T细胞免疫反应的关键组成部分。t细胞激活后,IL-2和IL-2受体被诱导;t细胞免疫反应的强度和持续时间由IL-2产生的量、受体表达的水平和这些事件的时间进程控制。IL-2受体存在IL-2Ra、IL-2Rb和gc三条链,其中IL-2Ra和IL-2Rb在转录水平上受到显著调控。gc是IL-4、IL-7、IL-9、IL-15和IL-21受体也使用的共享链,是XSCID中发生突变的蛋白。该小组主要关注IL-2诱导的信号类型,特别是STAT蛋白(信号转导和转录激活因子)的激活,以及它们调节IL-2Ra基因和其他IL-2诱导基因的机制。在随附的年度报告中,总结了我们已经报道了大量由gc依赖性细胞因子调节的基因的特征。其中许多似乎依赖于两种密切相关的Stat5蛋白,即Stat5a和Stat5b,我们之前已经证明,这两种蛋白通过结合两个广泛分离的IL-2应答元件来关键地控制IL-2受体α链基因调控。
英文摘要
The human interleukin-2 receptor and related cytokine/cytokine receptor systems are being studied to understand critical components of the T cell immune response in normal and neoplastic cells. Following T-cell activation, IL-2 and IL-2 receptors are induced; the magnitude and duration of the T-cell immune response is controlled by the amount of IL-2 produced, the levels of receptors expressed, and the time course of these events. Three chains of the IL-2 receptor exist, IL-2Ra, IL-2Rb, and gc, with IL-2Ra and IL-2Rb being significantly regulated at the level of transcription. gc is a shared chain also used by the receptors for IL-4, IL-7, IL-9, IL-15, and IL-21, and is the protein that is mutated in XSCID. The group has focused primarily on the types of signals induced by IL-2, particularly the activation of STAT proteins (signal transducers and activators of transcription), and the mechanism by which they regulate the IL-2Ra gene and other IL-2 induced genes. In the accompanying annual report, it is summarized that we have reported the characterization of a large number of genes that are regulated by gc dependent cytokines. Many of these appear to be dependent on two closely-related Stat5 proteins, denoted Stat5a and Stat5b, and we have previously demonstrated that these two proteins critically control IL-2 receptor alpha chain gene regulation by binding to two widely separated IL-2 response elements. Stat5a and Stat5b are two closely related proteins with >90% amino acid identity that are activated by IL-2. The genes encoding Stat5a and Stat5b are adjacent and the genes are located in a head-to-head orientation. An important issue is whether these closely related proteins are redundant or distinctive in their actions. To attempt to clarify this issue, Stat5a and Stat5b transgenic mice were generated to reconstitute the knockout mice. In addition, aspects of similarities vs. differences in regulation of these genes are being studied. The phenotype of Stat5a and Stat5b transgenic mice was striking. Our studies revealed that these proteins play a major role in the regulation of CD8+ T cell homeostasis and these findings were reported. Moreover, as the mice aged, they developed thymic lymphoblastic lymphoma, even though they did not exhibit a constitutively activated Jak-STAT pathway. The basis for this malignancy is being investigated further. Previously, we and others demonstrated that a constitutively activated Jak-STAT pathway correlates with and perhaps is causal in the development of certain malignancies. Thus, these thymic lymphomas may be distinctive. DNA array profiling revealed some genes that are induced in the tumors but not in the non-tumor bearing transgenic mice. These findings are important in teaching more about the effects of Stat5 expression and link our earlier signaling studies to oncogenesis. In the associated report, it is noted that we previously demonstrated that IL-7 receptor alpha chain expression is potently negatively regulated by IL-2. Although there is some information regarding the basis for regulation of the IL-7 receptor in B cells, essentially nothing was known in T cells. In B cells, an Ets family transcription factor, PU.1, is critical for control of the gene. We now have defined and reported the transcription initiation site for the gene, and discovered that the same Ets binding site that binds PU.1 in B cells is also essential for IL-7Ra expression in T cells, but that in T cells, the critical factor is GA binding protein (GABP). We generated mice with diminished levels of GABPalpha by a gene-trap methodology. Embryos with diminished expression of GABPalpha exhibited marked diminished numbers of thymocytes and diminished IL-7Ra on those cells. In contrast fetal liver B cells had normal levels of IL-7R expression. These data indicate that differential regulation of IL-7Ra in distinct lymphoid lineages is achieved at lleast in part by differential recruitment of factors to the same GGAA motif.
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Il2 Receptors--molecular Regulation
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Il2 Receptors--molecular Regulation
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