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通过一条独立于p21ras的信号通路激活p70/p85 S6激酶。

Activation of p70/p85 S6 kinase by a pathway independent of p21ras.

作者信息

Ming X F, Burgering B M, Wennström S, Claesson-Welsh L, Heldin C H, Bos J L, Kozma S C, Thomas G

机构信息

Friedrich Miescher Institute, Basel, Switzerland.

出版信息

Nature. 1994 Sep 29;371(6496):426-9. doi: 10.1038/371426a0.

Abstract

The enzymes p70s6k and p85s6k are two isoforms of the same kinase and are important in mitogenesis. Both isoforms are activated by a complex phosphorylation event and lie on a common signalling pathway, distinct from that of the p42mapk/p44mapk kinases. Activation of p42mapk/p44mapk is triggered by sequential activation of the GDP-GTP exchange factor Sos, the GTP-binding protein p21ras, and protein kinases p74raf and p47mek (refs 7-10). As p21ras transformed cells have increased S6 phosphorylation, we tested whether the p70s6k/p85s6k signalling pathway bifurcates between p21ras and p42mapk/p44mapk. We found that mutants of p74raf and p21ras blocked activation of epitope-tagged p44mapk but not epitope-tagged p70s6k. Moreover, in cells expressing human platelet-derived growth factor receptors lacking the kinase-insert domain, the growth factor activates p21ras but not p70s6k/p85s6k. The critical autophosphorylation site for p70s6k/p85s6k activation within this domain is a tyrosine at residue 751. Our results show that the p70s6k/p85s6k signalling pathway is independent of p21ras, that it bifurcates from the p21ras pathway at the receptor, and that it is initiated by autophosphorylation at a specific site.

摘要

酶p70s6k和p85s6k是同一激酶的两种亚型,在有丝分裂原生成过程中起重要作用。两种亚型均通过复杂的磷酸化事件被激活,且位于一条共同的信号通路中,这与p42mapk/p44mapk激酶的信号通路不同。p42mapk/p44mapk的激活是由GDP-GTP交换因子Sos、GTP结合蛋白p21ras以及蛋白激酶p74raf和p47mek的顺序激活所触发(参考文献7-10)。由于p21ras转化细胞的S6磷酸化增加,我们测试了p70s6k/p85s6k信号通路是否在p21ras和p42mapk/p44mapk之间发生分支。我们发现p74raf和p21ras的突变体阻断了表位标记p44mapk的激活,但未阻断表位标记p70s6k的激活。此外,在表达缺乏激酶插入结构域的人血小板衍生生长因子受体的细胞中,生长因子激活p21ras但不激活p70s6k/p85s6k。该结构域内p70s6k/p85s6k激活的关键自磷酸化位点是第751位残基处的酪氨酸。我们的结果表明p70s6k/p85s6k信号通路独立于p21ras,它在受体处与p21ras通路发生分支,并且由特定位点的自磷酸化引发。

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