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Functional analysis of the interaction between the small GTP binding protein Cdc42 and the Ste20 protein kinase in yeast.

机译:酵母中小GTP结合蛋白Cdc42和Ste20蛋白激酶之间相互作用的功能分析。

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摘要

STE20 encodes a protein kinase related to mammalian p65Pak which functions in several signal transduction pathways in yeast, including those involved in pseudohyphal and invasive growth, as well as mating. In addition, Ste20 plays an essential role in cells lacking Cla4, a kinase with significant homology to Ste20. It is not clear how the activity of Ste20 is regulated in response to these different signals in vivo, but it has been demonstrated recently that binding of the small GTP binding protein Cdc42 is able to activate Ste20 in vitro. Here we show that Ste20 functionally interacts with Cdc42 in a GTP-dependent manner in vivo: Ste20 mutants that can no longer bind Cdc42 were unable to restore growth of ste20 cla4 mutant cells. They were also defective for pseudohyphal growth and agar invasion, and displayed reduced mating efficiency when mated with themselves. Surprisingly, however, the kinase activity of such Ste20 mutants was normal when assayed in vitro. Furthermore, these alleles were able to fully activate the MAP kinase pathway triggered by mating pheromones in vivo, suggesting that binding of Cdc42 and Ste20 was not required to activate Ste20. Wild-type Ste20 protein was visualized as a crescent at emerging buds during vegetative growth and at shmoo tips in cells arrested with alpha-factor. In contrast, a Ste20 mutant protein unable to bind Cdc42 was found diffusely throughout the cytoplasm, suggesting that Cdc42 is required to localize Ste20 properly in vivo.
机译:STE20编码与哺乳动物p65Pak相关的蛋白激酶,该蛋白激酶在酵母中的几种信号转导途径中起作用,包括与假菌丝和侵袭性生长以及交配有关的那些。此外,Ste20在缺乏Cla4的细胞中起着重要作用,Cla4是一种与Ste20具有明显同源性的激酶。尚不清楚如何响应体内的这些不同信号调节Ste20的活性,但最近已证明小GTP结合蛋白Cdc42的结合能够在体外激活Ste20。在这里,我们显示Ste20在体内以GTP依赖性方式与Cdc42功能性相互作用:不再能结合Cdc42的Ste20突变体无法恢复ste20 cla4突变细胞的生长。它们还存在假菌丝生长和琼脂入侵的缺陷,并且与自身交配时交配效率降低。然而,令人惊讶的是,当在体外测定时,这种Ste20突变体的激酶活性是正常的。此外,这些等位基因能够完全激活因信息素在体内交配而触发的MAP激酶途径,这表明激活Ste20不需要Cdc42和Ste20的结合。在营养生长过程中,野生型Ste20蛋白在新芽处显示为新月形,而在被alpha因子阻滞的细胞中则显示为shmoo尖端。相比之下,发现无法结合Cdc42的Ste20突变蛋白遍布整个细胞质,提示Cdc42是在体内正确定位Ste20所必需的。

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