首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Conserved Sr Protein Kinase Functions in Nuclear Import and Its Action Is Counteracted by Arginine Methylation in Saccharomyces cerevisiae
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Conserved Sr Protein Kinase Functions in Nuclear Import and Its Action Is Counteracted by Arginine Methylation in Saccharomyces cerevisiae

机译:酿酒酵母中保守的Sr蛋白激酶功能及其作用被精氨酸甲基化作用抵消。

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摘要

Mammalian serine and arginine–rich (SR) proteins play important roles in both constitutive and regulated splicing, and SR protein–specific kinases (SRPKs) are conserved from humans to yeast. Here, we demonstrate a novel function of the single conserved SR protein kinase Sky1p in nuclear import in budding yeast. The yeast SR-like protein Npl3p is known to enter the nucleus through a composite nuclear localization signal (NLS) consisting of a repetitive arginine- glycine-glycine (RGG) motif and a nonrepetitive sequence. We found that the latter is the site for phosphorylation by Sky1p and that this phosphorylation regulates nuclear import of Npl3p by modulating the interaction of the RGG motif with its nuclear import receptor Mtr10p. The RGG motif is also methylated on arginine residues, but methylation does not affect the Npl3p–Mtr10p interaction in vitro. Remarkably, arginine methylation interferes with Sky1p-mediated phosphorylation, thereby indirectly influencing the Npl3p–Mtr10p interaction in vivo and negatively regulating nuclear import of Npl3p. These results suggest that nuclear import of Npl3p is coordinately influenced by methylation and phosphorylation in budding yeast, which may represent conserved components in the dynamic regulation of RNA processing in higher eukaryotic cells.
机译:哺乳动物的富含丝氨酸和精氨酸(SR)的蛋白在组成型和受调控的剪接中都起着重要作用,并且从人到酵母都保守了SR蛋白特异性激酶(SRPK)。在这里,我们展示了单个保守的SR蛋白激酶Sky1p在发芽酵母中的核导入中的新功能。已知酵母SR样蛋白Npl3p通过复合核定位信号(NLS)进入细胞核,复合信号由重复的精氨酸-甘氨酸-甘氨酸(RGG)基序和非重复序列组成。我们发现后者是Sky1p磷酸化的位点,并且该磷酸化通过调节RGG基序与其核导入受体Mtr10p的相互作用来调节Npl3p的核导入。 RGG基序在精氨酸残基上也被甲基化,但是在体外甲基化不会影响Npl3p–Mtr10p的相互作用。值得注意的是,精氨酸甲基化会干扰Sky1p介导的磷酸化,从而在体内间接影响Npl3p-Mtr10p的相互作用,并负面调节Npl3p的核输入。这些结果表明,Npl3p的核输入受发芽酵母中甲基化和磷酸化的协调影响,这可能代表了高等真核细胞中RNA加工动态调节中的保守成分。

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