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Activation and regulation of the Spc1 stress-activated protein kinase in Schizosaccharomyces pombe.

机译:裂殖酵母中Spc1应力激活蛋白激酶的激活和调节。

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摘要

Spc1, an osmotic-stress-stimulated mitogen-activated protein kinase (MAPK) homolog in the fission yeast Schizosaccharomyces pombe, is required for the induction of mitosis and survival in high-osmolarity conditions. Spc1, also known as Sty1, is activated by Wis1 MAPK kinase and inhibited by Pyp1 tyrosine phosphatase. Spc1 is most closely related to Saccharomyces cerevisiae Hog1 and mammalian p38 kinases. Whereas Hog1 is specifically responsive to osmotic stress, we report here that Spc1 is activated by multiple forms of stress, including high temperature and oxidative stress. In this regard Spc1 is more similar to mammalian p38. Activation of Spc1 is crucial for survival of various forms of stress. Spc1 regulates expression of genes encoding stress-related proteins such as glycerol-3-phosphate dehydrogenase (gpd1+) and trehalose-6-phosphate synthase (tps1+). Spc1 also promotes expression of pyp2+, which encodes a tyrosine phosphatase postulated as a negative regulator of Spc1. This proposal is supported by the finding that Spc1 associates with Pyp2 in vivo and that the amount of Spc1 tyrosine phosphorylation is lower in a Pyp2-overproducing strain than in the wild type. Moreover, the level of stress-stimulated gpd1+ expression is higher in delta pyp2 mutants than in the wild type. These findings demonstrate that Spc1 promotes expression of genes involved in stress survival and that of regulation may be commonly employed to modulate MAPK signal transduction pathways in eukaryotic species.
机译:Spc1是裂变酵母裂殖酵母中的一种渗透胁迫刺激的丝裂原活化蛋白激酶(MAPK)同源物,是诱导高渗透压条件下有丝分裂和生存所必需的。 Spc1,也称为Sty1,被Wis1 MAPK激酶激活,并被Pyp1酪氨酸磷酸酶抑制。 Spc1与酿酒酵母Hog1和哺乳动物p38激酶最密切相关。尽管Hog1对渗透压具有特异性反应,但我们在此报告Spc1被多种形式的应力激活,包括高温和氧化应激。在这方面,Spc1与哺乳动物p38更相似。 Spc1的激活对于各种形式的压力的生存至关重要。 Spc1调节编码与压力相关的蛋白质的基因的表达,例如3-磷酸甘油脱氢酶(gpd1 +)和海藻糖-6-磷酸合酶(tps1 +)。 Spc1还促进pyp2 +的表达,该编码一种酪氨酸磷酸酶,该酪氨酸磷酸酶被假定为Spc1的负调节剂。这项提议得到了以下发现的支持:Spc1在体内与Pyp2缔合,并且在Pyp2过量生产的菌株中Spc1酪氨酸磷酸化的量低于野生型。而且,在Δppyp2突变体中,应激刺激的gpd1 +表达水平高于野生型。这些发现表明,Spc1促进了压力生存中涉及的基因的表达,而调控的基因通常可用于调节真核生物中的MAPK信号转导途径。

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