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在裂殖酵母中存在一条独立于新型MAPKKK的途径控制应激激活的Sty1/Spc1 MAP激酶的证据。

Evidence for a novel MAPKKK-independent pathway controlling the stress activated Sty1/Spc1 MAP kinase in fission yeast.

作者信息

Shieh J C, Martin H, Millar J B

机构信息

Division of Yeast Genetics, National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, UK.

出版信息

J Cell Sci. 1998 Sep;111 ( Pt 18):2799-807. doi: 10.1242/jcs.111.18.2799.

Abstract

The fission yeast Sty1/Spc1 MAP kinase, like the mammalian JNK/SAPK and p38/CSBP1 kinases, is activated by a range of environmental insults including osmotic stress, hydrogen peroxide, heat shock, UV light and the protein synthesis inhibitor anisomycin. Sty1 is activated by a single MAPKK, Wis1. We demonstrate that the conserved MAPKKK phosphorylation sites Ser 469 and Thr 473 in the catalytic domain of Wis1 are normally essential for Sty1 activation. However, when mildly overexpressed, a mutant Wis1 kinase lacking these conserved phosphorylation sites is able to support stress inducible gene expression and activation of the Sty1 MAP kinase in response to an oxidative or osmotic stress or to a mild heat shock. We show that phosphorylation and activation of Sty1 under these conditions is not due to inactivation of the Pyp1 MAP kinase phosphatase. These results reveal a novel MAPKKK-independent pathway by which the Wis1 MAPKK can activate the Sty1 MAPK in response to stress in fission yeast.

摘要

裂殖酵母Sty1/Spc1丝裂原活化蛋白激酶(MAP激酶)与哺乳动物的JNK/SAPK及p38/CSBP1激酶一样,可被一系列环境应激激活,包括渗透应激、过氧化氢、热休克、紫外线及蛋白质合成抑制剂茴香霉素。Sty1由单一的MAPKK即Wis1激活。我们证明,Wis1催化结构域中保守的MAPKKK磷酸化位点Ser 469和Thr 473通常对Sty1激活至关重要。然而,当轻度过表达时,一个缺乏这些保守磷酸化位点的突变Wis1激酶能够支持应激诱导的基因表达以及在响应氧化或渗透应激或轻度热休克时激活Sty1 MAP激酶。我们表明,在这些条件下Sty1的磷酸化和激活并非由于Pyp1 MAP激酶磷酸酶的失活。这些结果揭示了一种新的不依赖MAPKKK的途径,通过该途径Wis1 MAPKK可在裂殖酵母中响应应激激活Sty1 MAPK。

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