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Gα13 通过 p115RhoGEF 级联信号传导来调节 JNK1 和原始内胚层的形成。

G alpha 13 signals via p115RhoGEF cascades regulating JNK1 and primitive endoderm formation.

作者信息

Lee Yi-Nan, Malbon Craig C, Wang Hsien-yu

机构信息

Department of Physiology and Biophysics, Diabetes and Metabolic Diseases Research Center, State University of New York Stony Brook, New York 11794-8661, USA.

出版信息

J Biol Chem. 2004 Dec 24;279(52):54896-904. doi: 10.1074/jbc.M407581200. Epub 2004 Oct 18.

Abstract

The heterotrimeric G-protein G(13) mediates the formation of primitive endoderm from mouse P19 embryonal carcinoma cells in response to retinoic acid, signaling to the level of activation of c-Jun N-terminal kinase. The signal linkage map from MEKK1/MEKK4 to MEK1/MKK4 to JNK is obligate in this G alpha(13)-mediated pathway, whereas that between G alpha(13) and MEKKs is not known. The overall pathway to primitive endoderm formation was shown to be inhibited by treatment with Clostridium botulinum C3 exotoxin, a specific inactivator of RhoA family members. Constitutively active G alpha(13) was found to activate RhoA as well as Cdc42 and Rac1 in these cells. Although constitutively active Cdc42, Rac1, and RhoA all can activate JNK1, only the RhoA mutant was able to promote formation of primitive endoderm, mimicking expression of the constitutively activated G alpha(13). Expression of the constitutively active mutant form of p115RhoGEF (guanine nucleotide exchange factor) was found to activate RhoA and JNK1 activities. Expression of the dominant negative p115RhoGEF was able to inhibit activation of both RhoA and JNK1 in response to either retinoic acid or the expression of a constitutively activated mutant of G alpha(13). Expression of the dominant negative mutants of RhoA as well as those of either Cdc42 or Rac1, but not Ras, attenuated G alpha(13)-stimulated as well as retinoic acid-stimulated activation of all three of these small molecular weight GTPases, suggesting complex interrelationships among the three GTPases in this pathway. The formation of primitive endoderm in response to retinoic acid also could be blocked by expression of dominant negative mutants of RhoA, Cdc42, or Rac1. Thus, the signal propagated from G alpha(13) to JNK requires activation of p115RhoGEF cascades, including p115RhoGEF itself, RhoA, Cdc42, and Rac1. In a concerted effort, RhoA in tandem with Cdc42 and Rac1 activates the MEKK1/4, MEK1/MKK4, and JNK cascade, thereby stimulating formation of primitive endoderm.

摘要

异三聚体G蛋白G(13)介导小鼠P19胚胎癌细胞在视黄酸作用下形成原始内胚层,信号传导至c-Jun氨基末端激酶的激活水平。在这条Gα(13)介导的信号通路中,从MEKK1/MEKK4到MEK1/MKK4再到JNK的信号连接图谱是必需的,而Gα(13)与MEKKs之间的信号连接尚不清楚。研究表明,用肉毒杆菌C3外毒素(一种RhoA家族成员的特异性失活剂)处理可抑制原始内胚层形成的整个信号通路。在这些细胞中,组成型活性Gα(13)被发现可激活RhoA以及Cdc42和Rac1。虽然组成型活性Cdc42、Rac1和RhoA都能激活JNK1,但只有RhoA突变体能够促进原始内胚层的形成,模拟组成型活性Gα(13)的表达。研究发现,组成型活性p115RhoGEF(鸟嘌呤核苷酸交换因子)突变体的表达可激活RhoA和JNK1活性。显性负性p115RhoGEF的表达能够抑制视黄酸或组成型活性Gα(13)突变体表达所诱导的RhoA和JNK1的激活。RhoA以及Cdc42或Rac1的显性负性突变体的表达,但不是Ras的显性负性突变体的表达,减弱了Gα(13)刺激以及视黄酸刺激的这三种小分子GTP酶的激活,表明该信号通路中这三种GTP酶之间存在复杂的相互关系。视黄酸诱导的原始内胚层形成也可被RhoA、Cdc42或Rac1的显性负性突变体的表达所阻断。因此,从Gα(13)传导至JNK的信号需要激活p115RhoGEF级联反应,包括p115RhoGEF本身、RhoA、Cdc42和Rac1。协同作用下,RhoA与Cdc42和Rac1一起激活MEKK1/4、MEK1/MKK4和JNK级联反应,从而刺激原始内胚层的形成。

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