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Raf和Ras的活性对于蛋白激酶C激活人类T细胞受体β基因的转录是必需的,Ras发挥多种作用。

Activity of both Raf and Ras is necessary for activation of transcription of the human T cell receptor beta gene by protein kinase C, Ras plays multiple roles.

作者信息

Wotton D, Ways D K, Parker P J, Owen M J

机构信息

Laboratory of Lymphocyte Molecular Biology, Imperial Cancer Research Fund, London, United Kingdom.

出版信息

J Biol Chem. 1993 Aug 25;268(24):17975-82.

PMID:8349679
Abstract

Transcription of the T cell receptor beta gene is up-regulated during T cell activation. We have previously defined the elements within the TcR beta gene enhancer responsible for increased transcription in response to phorbol esters, which mimic part of the pathway for T cell activation. Using a reporter construct (beta E2 x 4) containing four copies of this inducible element, activation was achieved by the addition of phytohemagglutinin or phorbol esters. Activation was observed after 2 h of treatment, was maximal by 8 h, and could be blocked by the protein synthesis inhibitor cycloheximide. Coexpression of v-Ha-Ras-, v-Raf-, and v-Src-activated beta E2 x 4, and constitutively active mutants of protein kinase C also increased transcription from this construct. Calcium ionophore generated signals which synergized with both Ras and protein kinase C. Expression of a truncated Raf protein which has been shown to act in a dominant negative manner, was able to inhibit activation of beta E2 x 4, demonstrating that Raf plays an important role in T cell signaling. A dominant negative mutant of v-Ha-Ras inhibited all methods of activation tested, including transfection with v-Raf. Thus, Ras activity appears to be necessary at more than one point in the transduction of signals from T cell receptor to nucleus.

摘要

T细胞受体β基因的转录在T细胞激活过程中上调。我们之前已经确定了TcRβ基因增强子中的元件,这些元件负责响应佛波酯增加转录,佛波酯模拟了T细胞激活途径的一部分。使用含有该诱导元件四个拷贝的报告构建体(βE2x4),通过添加植物血凝素或佛波酯实现激活。处理2小时后观察到激活,8小时时达到最大值,并且可以被蛋白质合成抑制剂环己酰亚胺阻断。v-Ha-Ras、v-Raf和v-Src激活的βE2x4以及蛋白激酶C的组成型活性突变体的共表达也增加了该构建体的转录。钙离子载体产生的信号与Ras和蛋白激酶C都有协同作用。已证明以显性负性方式起作用的截短型Raf蛋白的表达能够抑制βE2x4的激活,表明Raf在T细胞信号传导中起重要作用。v-Ha-Ras的显性负性突变体抑制了所有测试的激活方法,包括用v-Raf转染。因此,Ras活性似乎在从T细胞受体到细胞核的信号转导的多个点上都是必需的。

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