Birot Adrien, Eguienta Karen, Vazquez Stéphanie, Claverol Stéphane, Bonneu Marc, Ekwall Karl, Javerzat Jean-Paul, Vaur Sabine
Institut de Biochimie et Génétique Cellulaires, UMR 5095 CNRS - Université de Bordeaux, Bordeaux, France.
Centre Génomique Fonctionnelle de Bordeaux, Université de Bordeaux, Bordeaux, France.
EMBO J. 2017 May 15;36(10):1364-1378. doi: 10.15252/embj.201696050. Epub 2017 Apr 24.
Cohesin mediates sister chromatid cohesion which is essential for chromosome segregation and repair. Sister chromatid cohesion requires an acetyl-transferase (Eso1 in fission yeast) counteracting Wpl1, promoting cohesin release from DNA We report here that Wpl1 anti-cohesion function includes an additional mechanism. A genetic screen uncovered that Protein Phosphatase 4 (PP4) mutants allowed cell survival in the complete absence of Eso1. PP4 co-immunoprecipitated Wpl1 and cohesin and Wpl1 triggered Rad21 de-phosphorylation in a PP4-dependent manner. Relevant residues were identified and mapped within the central domain of Rad21. Phospho-mimicking alleles dampened Wpl1 anti-cohesion activity, while alanine mutants were neutral indicating that Rad21 phosphorylation would shelter cohesin from Wpl1 unless erased by PP4. Experiments in post-replicative cells lacking Eso1 revealed two cohesin populations. Type 1 was released from DNA by Wpl1 in a PP4-independent manner. Type 2 cohesin, however, remained DNA-bound and lost its cohesiveness in a manner depending on Wpl1- and PP4-mediated Rad21 de-phosphorylation. These results reveal that Wpl1 antagonizes sister chromatid cohesion by a novel pathway regulated by the phosphorylation status of the cohesin kleisin subunit.
黏连蛋白介导姐妹染色单体黏连,这对染色体分离和修复至关重要。姐妹染色单体黏连需要一种乙酰转移酶(裂殖酵母中的Eso1)来对抗Wpl1,促进黏连蛋白从DNA上释放。我们在此报告,Wpl1的抗黏连功能还包括另一种机制。一项遗传筛选发现,蛋白磷酸酶4(PP4)突变体在完全没有Eso1的情况下能使细胞存活。PP4与Wpl1和黏连蛋白进行共免疫沉淀,并且Wpl1以PP4依赖的方式触发Rad21去磷酸化。在Rad21的中央结构域内鉴定并定位了相关残基。模拟磷酸化的等位基因会减弱Wpl1的抗黏连活性,而丙氨酸突变体则无此作用,这表明Rad21磷酸化会保护黏连蛋白免受Wpl1的影响,除非被PP4消除。在缺乏Eso1的复制后细胞中进行的实验揭示了两种黏连蛋白群体。第1类黏连蛋白以PP4非依赖的方式被Wpl1从DNA上释放。然而,第2类黏连蛋白仍与DNA结合,并以依赖于Wpl1和PP4介导的Rad21去磷酸化的方式失去其黏连性。这些结果表明,Wpl1通过一种由黏连蛋白kleisin亚基磷酸化状态调节的新途径来拮抗姐妹染色单体黏连。