a Genetics Branch , National Cancer Institute , National Institutes of Health , Bethesda , MD , USA.
b Purdue University , Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University Center for Cancer Research (PUCCR) , West Lafayette , IN , USA.
Cell Cycle. 2018;17(1):11-23. doi: 10.1080/15384101.2017.1380129. Epub 2018 Jan 2.
Shugoshin is an evolutionarily conserved protein, which is involved in tension sensing on mitotic chromosomes, kinetochore biorientation, and protection of centromeric (CEN) cohesin for faithful chromosome segregation. Interaction of the C-terminus of Sgo1 with phosphorylated histone H2A regulates its association with CEN and pericentromeric (peri-CEN) chromatin, whereas mutations in histone H3 selectively compromise the association of Sgo1 with peri-CEN but not CEN chromatin. Given that histone H3 is absent from CEN and is replaced by a histone H3 variant CENP-A, we investigated if CENP-A interacts with Sgo1 and promotes its association with the CEN chromatin. In this study, we found that Sgo1 interacts with CENP-A in vivo and in vitro. The N-terminus coiled-coil domain of Sgo1 without the C-terminus (sgo1-NT) is sufficient for its interaction with CENP-A, association with CEN but not the peri-CEN, and this CEN association is cell cycle dependent with maximum enrichment in mitosis. In agreement with the role of CENP-A in CEN maintenance of Sgo1, depletion of CENP-A results in the loss of Sgo1 and sgo1-NT from the CEN chromatin. The N-terminus of Sgo1 is required for genome stability as a mutant lacking the N-terminus (sgo1-CT) exhibits increased chromosome missegregation when compared to a sgo1-NT mutant. In summary, our results define a novel role for the N-terminus of Sgo1 in CENP-A mediated recruitment of Sgo1 to CEN chromatin for faithful chromosome segregation.
着丝粒蛋白抑制因子(Shugoshin)是一种进化上保守的蛋白,参与有丝分裂染色体张力感应、动粒的双定向以及保护着丝粒(CEN)黏合蛋白以实现染色体的正确分离。Sgo1 的 C 末端与磷酸化组蛋白 H2A 的相互作用调节其与 CEN 和着丝粒周围(peri-CEN)染色质的结合,而组蛋白 H3 的突变选择性地破坏 Sgo1 与 peri-CEN 而非 CEN 染色质的结合。鉴于 CEN 处不存在组蛋白 H3,而是被组蛋白 H3 变体 CENP-A 取代,我们研究了 CENP-A 是否与 Sgo1 相互作用并促进其与 CEN 染色质的结合。在这项研究中,我们发现 Sgo1 体内和体外均与 CENP-A 相互作用。Sgo1 无 C 末端的 N 端卷曲螺旋结构域(sgo1-NT)足以与其相互作用、与 CEN 结合而不是与 peri-CEN 结合,这种 CEN 结合依赖于细胞周期,在有丝分裂中丰度最高。与 CENP-A 在 Sgo1 着丝粒维持中的作用一致,CENP-A 的耗竭导致 Sgo1 和 sgo1-NT 从着丝粒染色质中丢失。Sgo1 的 N 端对于基因组稳定性是必需的,因为缺乏 N 端的突变体(sgo1-CT)与 sgo1-NT 突变体相比,染色体错误分离增加。总之,我们的结果定义了 Sgo1 的 N 端在 CENP-A 介导的 Sgo1 募集到 CEN 染色质中以实现染色体的正确分离的新作用。