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Regulation of the Nucleocytoplasmic Distribution of Snf1-Gal83 Protein Kinase

机译:Snf1-Gal83蛋白激酶的核质分布的调节。

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Snf1 protein kinase containing the β subunit Gal83 is localized in the cytoplasm during growth of Saccharomyces cerevisiae cells in abundant glucose and accumulates in the nucleus in response to glucose limitation. Nuclear localization of Snf1-Gal83 requires activation of the Snf1 catalytic subunit and depends on Gal83, but in the snf1Δ mutant, Gal83 exhibits glucose-regulated nuclear accumulation. We show here that the N terminus of Gal83, which is divergent from those of the other β subunits, is necessary and sufficient for Snf1-independent, glucose-regulated localization. We identify a leucine-rich nuclear export signal in the N terminus and show that export depends on the Crm1 export receptor. We present evidence that catalytically inactive Snf1 promotes the cytoplasmic retention of Gal83 in glucose-grown cells through its interaction with the C terminus of Gal83; cytoplasmic localization of inactive Snf1-Gal83 maintains accessibility to the Snf1-activating kinases. Finally, we characterize the effects of glucose phosphorylation on localization. These studies define roles for Snf1 and Gal83 in determining the nucleocytoplasmic distribution of Snf1-Gal83 protein kinase.
机译:含有β亚基Gal83的Snf1蛋白激酶在富含糖的酿酒酵母细胞生长过程中位于细胞质中,并在葡萄糖限制下积累在细胞核中。 Snf1-Gal83的核定位需要激活Snf1催化亚基并依赖于Gal83,但在snf1Δ突变体中,Gal83表现出葡萄糖调节的核蓄积。我们在这里显示,Gal83的N末端与其他β亚基的末端不同,对于非Snf1依赖性,葡萄糖调节的定位是必要和充分的。我们在N末端识别出富含亮氨酸的核出口信号,并表明出口取决于Crm1出口受体。我们目前的证据表明,催化失活的Snf1通过与Gal83的C末端相互作用而促进葡萄糖生长细胞中Gal83的胞质保留;失活的Snf1-Gal83的胞质定位保持了对Snf1激活激酶的可及性。最后,我们表征了葡萄糖磷酸化对定位的影响。这些研究定义了Snf1和Gal83在确定Snf1-Gal83蛋白激酶的胞质分布中的作用。

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