Perpelescu Marinela, Nozaki Naohito, Obuse Chikashi, Yang Hua, Yoda Kinya
Bioscience and Biotechnology Center, Nagoya University, Nagoya, Aichi, Japan.
J Cell Biol. 2009 May 4;185(3):397-407. doi: 10.1083/jcb.200903088. Epub 2009 Apr 27.
Centromeres are chromosomal structures required for equal DNA segregation to daughter cells, comprising specialized nucleosomes containing centromere protein A (CENP-A) histone, which provide the basis for centromeric chromatin assembly. Discovery of centromere protein components is progressing, but knowledge related to their establishment and maintenance remains limited. Previously, using anti-CENP-A native chromatin immunoprecipitation, we isolated the interphase-centromere complex (ICEN). Among ICEN components, subunits of the remodeling and spacing factor (RSF) complex, Rsf-1 and SNF2h proteins, were found. This paper describes the relationship of the RSF complex to centromere structure and function, demonstrating its requirement for maintenance of CENP-A at the centromeric core chromatin in HeLa cells. The RSF complex interacted with CENP-A chromatin in mid-G1. Rsf-1 depletion induced loss of centromeric CENP-A, and purified RSF complex reconstituted and spaced CENP-A nucleosomes in vitro. From these data, we propose the RSF complex as a new factor actively supporting the assembly of CENP-A chromatin.
着丝粒是DNA向子细胞均等分离所必需的染色体结构,由含有着丝粒蛋白A(CENP-A)组蛋白的特殊核小体组成,为着丝粒染色质组装提供基础。着丝粒蛋白成分的发现正在取得进展,但与其建立和维持相关的知识仍然有限。此前,我们利用抗CENP-A天然染色质免疫沉淀技术分离出了间期着丝粒复合体(ICEN)。在ICEN成分中,发现了重塑和间隔因子(RSF)复合体的亚基Rsf-1和SNF2h蛋白。本文描述了RSF复合体与着丝粒结构和功能的关系,证明了其在HeLa细胞中维持着丝粒核心染色质上CENP-A的必要性。RSF复合体在G1期中期与CENP-A染色质相互作用。Rsf-1缺失导致着丝粒CENP-A丢失,纯化的RSF复合体在体外重组并间隔CENP-A核小体。基于这些数据,我们提出RSF复合体是积极支持CENP-A染色质组装的新因子。