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Acetylation of the SUN protein Mps3 by Eco1 regulates its function in nuclear organization

机译:Eco1对SUN蛋白Mps3的乙酰化调节其在核组织中的功能

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The Saccharomyces cerevisiae SUN-domain protein Mps3 is required for duplication of the yeast centrosome-equivalent organelle, the spindle pole body (SPB), and it is involved in multiple aspects of nuclear organization, including telomere tethering and gene silencing at the nuclear membrane, establishment of sister chromatid cohesion, and repair of certain types of persistent DNA double-stranded breaks. How these diverse SUN protein functions are regulated is unknown. Here we show that the Mps3 N-terminus is a substrate for the acetyltransferase Eco1/Ctf7 in vitro and in vivo and map the sites of acetylation to three lysine residues adjacent to the Mps3 transmembrane domain. Mutation of these residues shows that acetylation is not essential for growth, SPB duplication, or distribution in the nuclear membrane. However, analysis of nonacetylatable mps3 mutants shows that this modification is required for accurate sister chromatid cohesion and for chromosome recruitment to the nuclear membrane. Acetylation of Mps3 by Eco1 is one of the few regulatory mechanisms known to control nuclear organization.
机译:酿酒酵母SUN域蛋白Mps3是复制酵母中心体等效细胞器,纺锤极体(SPB)所必需的,并且它参与核组织的多个方面,包括端粒束缚和核膜基因沉默,建立姐妹染色单体的内聚力,并修复某些类型的持久性DNA双链断裂。尚不清楚如何调节这些多种SUN蛋白功能。在这里,我们显示Mps3 N末端是在体外和体内乙酰转移酶Eco1 / Ctf7的底物,并将乙酰化位点映射到与Mps3跨膜结构域相邻的三个赖氨酸残基。这些残基的突变表明乙酰化对于生长,SPB复制或在核膜中的分布不是必需的。但是,对不可乙酰化的mps3突变体的分析表明,这种修饰对于准确的姐妹染色单体凝聚力和染色体募集到核膜是必需的。 Eco1对Mps3的乙酰化是已知控制核组织的少数调节机制之一。

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