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Saccharomyces cerevisiae Histidine Phosphotransferase Ypd1p Shuttles between the Nucleus and Cytoplasm for SLN1-Dependent Phosphorylation of Ssk1p and Skn7p

机译:酿酒酵母组氨酸磷酸转移酶Ypd1p穿梭在细胞核和胞质之间,用于Ssk1p和Skn7p的SLN1依赖性磷酸化

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Sln1p is a plasma membrane-localized two-component histidine kinase that functions as an osmotic stress sensor in Saccharomyces cerevisiae. Changes in osmotic pressure modulate Sln1p kinase activity, which, together with Ypd1p, a phosphorelay intermediate, changes the phosphorylation status of two response regulators, Ssk1p and Skn7p. Ssk1p controls the activity of the HOG1 mitogen-activated protein kinase pathway. Skn7p is a nuclearly localized transcription factor that regulates genes involved in cell wall integrity and other processes. Subcellular compartmentalization may therefore play an important role in eukaryotic two-component pathway regulation. We have studied the subcellular localization of SLN1 pathway components and find that Ypd1p is a dynamic protein with a role in shuttling the osmotic stress signal from Sln1p to Ssk1p in the cytosol and to Skn7p in the nucleus. The need to translocate the signal into different intracellular compartments contributes a spatial dimension to eukaryotic two-component pathways compared to the prototypical two-component pathways of prokaryotes.
机译:Sln1p是一种定位在质膜上的两组分组氨酸激酶,在酿酒酵母中用作渗透压传感器。渗透压的变化调节了Sln1p激酶的活性,该活性与Ypd1p(一种磷酸化的中间体)一起改变了两个应答调节因子Ssk1p和Skn7p的磷酸化状态。 Ssk1p控制HOG1丝裂原激活的蛋白激酶途径的活性。 Skn7p是一种核定位转录因子,可调节参与细胞壁完整性和其他过程的基因。因此,亚细胞区室化可能在真核两组分途径调控中起重要作用。我们已经研究了SLN1途径组分的亚细胞定位,并发现Ypd1p是一种动态蛋白,它在穿梭从细胞质中的Sln1p到Ssk1p以及细胞核中的Skn7p的渗透胁迫信号中起作用。与原核生物的原型两组分途径相比,将信号易位到不同细胞内区室的需要为真核生物两组分途径贡献了空间尺寸。

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