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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >CD28 and Inducible Costimulatory Protein Src Homology 2 Binding Domains Show Distinct Regulation of Phosphatidylinositol 3-Kinase, Bcl-x(L), and IL-2 Expression in Primary Human CD4 T Lymphocytes.
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CD28 and Inducible Costimulatory Protein Src Homology 2 Binding Domains Show Distinct Regulation of Phosphatidylinositol 3-Kinase, Bcl-x(L), and IL-2 Expression in Primary Human CD4 T Lymphocytes.

机译:CD28和诱导性共刺激蛋白Src同源性2绑定域显示磷脂酰肌醇3-激酶,Bcl-x(L)和IL-2在原代人CD4 T淋巴细胞中的不同调节。

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摘要

Ligation of either CD28 or inducible costimulatory protein (ICOS) produces a second signal required for optimal T cell activation and proliferation. One prominent difference between ICOS- and CD28-costimulated T cells is the quantity of IL-2 produced. To understand why CD28 but not ICOS elicits major increases in IL-2 expression, we compared the abilities of these molecules to activate the signal transduction cascades implicated in the regulation of IL-2. Major differences were found in the regulation of phosphatidylinositol 3-kinase activity (PI3K) and c-jun N-terminal kinase. ICOS costimulation led to greatly augmented levels of PI3K activity compared with CD28 costimulation, whereas only CD28 costimulation activated c-jun N-terminal kinase. To examine how these differences in signal transduction affected IL-2 production, we transduced primary human CD4 T cells with a lentiviral vector that expressed the murine CD28 extracellular domain with a variety of human CD28 and ICOS cytoplasmic domain swap constructs. These domains were able to operate as discrete signaling units, suggesting that they can function independently. Our results show that even though the ICOS Src homology (SH) 2 binding domain strongly activated PI3K, it was unable to substitute for the CD28 SH2 binding domain to induce high levels of IL-2 and Bcl-x(L). Moreover, the CD28 SH2 binding domain alone was sufficient to mediate optimal levels of Bcl-x(L) induction, whereas the entire CD28 cytoplasmic tail was required for high levels of IL-2 expression. Thus, differences within their respective SH2 binding domains explain, at least in part, the distinct regulation of IL-2 and Bcl-x(L) expression following ICOS- or CD28-mediated costimulation.
机译:CD28或诱导性共刺激蛋白(ICOS)的连接产生最佳T细胞活化和增殖所需的第二个信号。 ICOS和CD28共刺激的T细胞之间的一个显着差异是产生的IL-2数量。为了理解为什么CD28而不是ICOS引起IL-2表达的大幅增加,我们比较了这些分子激活与IL-2调节有关的信号转导级联反应的能力。发现在磷脂酰肌醇3-激酶活性(PI3K)和c-jun N-末端激酶的调节上存在主要差异。与CD28共刺激相比,ICOS共刺激导致PI3K活性大大提高,而只有CD28共刺激激活c-jun N末端激酶。为了检查信号转导中的这些差异如何影响IL-2的产生,我们用慢病毒载体转导了原代人CD4 T细胞,该载体表达了具有多种人CD28和ICOS细胞质域互换构建体的鼠CD28细胞外域。这些域能够作为离散的信号单元运行,表明它们可以独立运行。我们的结果表明,即使ICOS Src同源性(SH)2结合域强烈激活了PI3K,它也不能替代CD28 SH2结合域来诱导高水平的IL-2和Bcl-x(L)。此外,单独的CD28 SH2结合域足以介导最佳水平的Bcl-x(L)诱导,而高水平的IL-2表达则需要整个CD28细胞质尾巴。因此,它们各自的SH2结合域内的差异至少部分解释了在ICOS或CD28介导的共刺激后IL-2和Bcl-x(L)表达的独特调节。

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