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Reg1 Protein Regulates Phosphorylation of All Three Snf1 Isoforms but Preferentially Associates with the Gal83 Isoform

机译:Reg1蛋白调节所有三个Snf1同工型的磷酸化,但优先与Gal83同工型相关。

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The phosphorylation status of the Snf1 activation loop threonine is determined by changes in the rate of its dephosphorylation, catalyzed by the yeast PP1 phosphatase Glc7 in complex with the Reg1 protein. Previous studies have shown that Reg1 can associate with both Snf1 and Glc7, suggesting substrate binding as a mechanism for Reg1-mediated targeting of Glc7. In this study, the association of Reg1 with the three Snf1 isoforms was measured by two-hybrid analysis and coimmunoprecipitation. We found that Reg1 association with Snf1 occurred almost exclusively with the Gal83 isoform of the Snf1 complex. Nonetheless, Reg1 plays an important role in determining the phosphorylation status of all three Snf1 isoforms. We found that the rate of dephosphorylation for isoforms of Snf1 did not correlate with the amount of associated Reg1 protein. Functional chimeric β subunits containing residues from Gal83 and Sip2 were used to map the residues needed to promote Reg1 association with the N-terminal 150 residues of Gal83. The Gal83 isoform of Snf1 is the only isoform capable of nuclear localization. A Gal83-Sip2 chimera containing the first 150 residues of Gal83 was able to associate with the Reg1 protein but did not localize to the nucleus. Therefore, nuclear localization is not required for Reg1 association. Taken together, these data indicate that the ability of Reg1 to promote the dephosphorylation of Snf1 is not directly related to the strength of its association with the Snf1 complex.
机译:Snf1激活环苏氨酸的磷酸化状态取决于酵母PP1磷酸酶Glc7与Reg1蛋白复合物催化的去磷酸化速率的变化。以前的研究表明Reg1可以与Snf1和Glc7都相关,这表明底物结合是Reg1介导的靶向Glc7的一种机制。在这项研究中,Reg1与三个Snf1亚型的关联是通过两杂交分析和共免疫沉淀法测量的。我们发现Reg1与Snf1的关联几乎只发生在Snf1复合体的Gal83亚型中。但是,Reg1在确定所有三个Snf1同工型的磷酸化状态中起着重要作用。我们发现Snf1亚型的去磷酸化速率与相关Reg1蛋白的量不相关。含有来自Gal83和Sip2的残基的功能性嵌合β亚基被用于定位促进Reg1与Gal83的N端残基缔合所需的残基。 Snf1的Gal83同工型是唯一能够进行核定位的同工型。包含Gal83的前150个残基的Gal83-Sip2嵌合体能够与Reg1蛋白缔合,但未定位于细胞核。因此,Reg1关联不需要核定位。综上所述,这些数据表明Reg1促进Snf1的去磷酸化的能力与与其与Snf1复合物的缔合强度没有直接关系。

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