Stankovic Ana, Guo Lucie Y, Mata João F, Bodor Dani L, Cao Xing-Jun, Bailey Aaron O, Shabanowitz Jeffrey, Hunt Donald F, Garcia Benjamin A, Black Ben E, Jansen Lars E T
Instituto Gulbenkian de Ciência, 2780-156 Oeiras, Portugal.
Epigenetics Program, Department of Biochemistry and Biophysics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Mol Cell. 2017 Jan 19;65(2):231-246. doi: 10.1016/j.molcel.2016.11.021. Epub 2016 Dec 22.
Chromatin featuring the H3 variant CENP-A at the centromere is critical for its mitotic function and epigenetic maintenance. Assembly of centromeric chromatin is restricted to G1 phase through inhibitory action of Cdk1/2 kinases in other phases of the cell cycle. Here, we identify the two key targets sufficient to maintain cell-cycle control of CENP-A assembly. We uncovered a single phosphorylation site in the licensing factor M18BP1 and a cyclin A binding site in the CENP-A chaperone, HJURP, that mediated specific inhibitory phosphorylation. Simultaneous expression of mutant proteins lacking these residues results in complete uncoupling from the cell cycle. Consequently, CENP-A assembly is fully recapitulated under high Cdk activities, indistinguishable from G1 assembly. We find that Cdk-mediated inhibition is exerted by sequestering active factors away from the centromere. Finally, we show that displacement of M18BP1 from the centromere is critical for the assembly mechanism of CENP-A.
在着丝粒处具有组蛋白 H3 变体 CENP-A 的染色质对其有丝分裂功能和表观遗传维持至关重要。通过细胞周期其他阶段中 Cdk1/2 激酶的抑制作用,着丝粒染色质的组装被限制在 G1 期。在这里,我们确定了足以维持 CENP-A 组装细胞周期控制的两个关键靶点。我们在许可因子 M18BP1 中发现了一个单一的磷酸化位点,以及在 CENP-A 伴侣蛋白 HJURP 中的一个细胞周期蛋白 A 结合位点,它们介导了特异性抑制性磷酸化。缺乏这些残基的突变蛋白的同时表达导致与细胞周期完全解偶联。因此,在高 Cdk 活性下 CENP-A 组装被完全重现,与 G1 期组装无异。我们发现 Cdk 介导的抑制作用是通过将活性因子从着丝粒处隔离来实现的。最后,我们表明 M18BP1 从着丝粒的位移对 CENP-A 的组装机制至关重要。