Lechner J
Institut für Biochemie, Genetik und Mikrobiologie, Universität Regensburg, Germany.
EMBO J. 1994 Nov 1;13(21):5203-11. doi: 10.1002/j.1460-2075.1994.tb06851.x.
A multisubunit protein complex, Cbf3, is a component of the Saccharomyces cerevisiae kinetochore. Cbf3 was recently shown to be essential for chromosome segregation in vivo and for movement of centromere DNA (CEN) along microtubules in vitro. Cbf3 contains three proteins, Cbf3a, Cbf3b and Cbf3c. Here the characterization of Cbf3b is described. Cbf3b contains an N-terminal Zn2Cys6 type zinc finger domain, a C-terminal acidic domain and a putative coiled coil dimerization domain. Cbf3b is essential for growth. Mutations within the zinc finger domain result in cells that exhibit a G2-M cell cycle delay and increased chromosome loss in each mitotic cell division. Therefore, Cbf3b has an essential function in chromosome segregation and the zinc finger domain executes part of this function presumably by providing the specific interaction between Cbf3 and CEN. Finally, data are provided to show that Cbf3c is encoded by CTF13, a gene that had been cloned recently by complementing a temperature sensitive mutant that exhibits chromosome loss as a result of a defective centromere.
一种多亚基蛋白复合体Cbf3是酿酒酵母动粒的一个组成部分。最近研究表明,Cbf3在体内对染色体分离以及在体外对着丝粒DNA(CEN)沿微管的移动至关重要。Cbf3包含三种蛋白质,即Cbf3a、Cbf3b和Cbf3c。本文描述了Cbf3b的特性。Cbf3b含有一个N端Zn2Cys6型锌指结构域、一个C端酸性结构域和一个假定的卷曲螺旋二聚化结构域。Cbf3b对细胞生长至关重要。锌指结构域内的突变会导致细胞在每个有丝分裂细胞分裂中出现G2-M期细胞周期延迟和染色体丢失增加的情况。因此,Cbf3b在染色体分离中具有重要功能,锌指结构域可能通过提供Cbf3与CEN之间的特异性相互作用来执行该功能的一部分。最后,提供的数据表明Cbf3c由CTF13编码,CTF13是最近通过互补一个由于着丝粒缺陷而表现出染色体丢失的温度敏感突变体而克隆的基因。