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Identification of p21-Activated Kinase Specificity Determinants in Budding Yeast: a Single Amino Acid Substitution Imparts Ste20 Specificity to Cla4

机译:p21活化的激酶特异性决定因素在萌芽酵母中的识别:一个单一的氨基酸替代影响Ste20对Cla4的特异性。

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摘要

Two closely related p21-activated kinases from Saccharomyces cerevisiae, Ste20 and Cla4, interact with and are regulated by Cdc42, a small Rho-like GTPase. These kinases are argued to perform a common essential function, based on the observation that the single mutants are viable whereas the double mutant is inviable. Despite having a common upstream regulator and at least one common function, these molecules also have many distinct cellular signaling roles. Ste20 signals upstream of several mitogen-activated protein kinase cascades (e.g., pheromone response, filamentous growth, and high osmolarity), and Cla4 signals during budding and cytokinesis. In order to investigate how these kinases are directed to distinct functions, we sought to identify specificity determinants within Ste20 and Cla4. To this end, we constructed both chimeric fusions and point mutants and tested their ability to perform unique and shared cellular roles. Specificity determinants for both kinases were mapped to the C-terminal kinase domains. Remarkably, the substitution of a single amino acid, threonine 818, from Ste20 into an otherwise wild-type Cla4, Cla4D772T, conferred the ability to perform many Ste20-specific functions.
机译:来自酿酒酵母的两个紧密相关的p21活化激酶Ste20和Cla4与Cdc42(一种小的Rho样GTP酶)相互作用并受其调控。基于单个突变体是可行的而双重突变体是不可行的观察,认为这些激酶具有共同的基本功能。尽管具有共同的上游调节剂和至少一种共同的功能,但是这些分子还具有许多不同的细胞信号传导作用。 Ste20在几个有丝分裂原激活的蛋白激酶级联反应的上游发出信号(例如信息素反应,丝状生长和高渗透压),并在出芽和胞质分裂期间发出Cla4信号。为了研究这些激酶如何针对不同功能,我们试图鉴定Ste20和Cla4内的特异性决定簇。为此,我们构建了嵌合融合体和点突变体,并测试了它们执行独特和共享细胞作用的能力。将两种激酶的特异性决定子定位于C-末端激酶结构域。值得注意的是,将单个氨基酸苏氨酸818从Ste20取代成野生型Cla4 Cla4D772T,赋予了执行许多Ste20特定功能的能力。

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