Bansal Parmil K, Nourse Amanda, Abdulle Rashid, Kitagawa Katsumi
Department of Molecular Pharmacology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105-3678, USA.
J Biol Chem. 2009 Feb 6;284(6):3586-92. doi: 10.1074/jbc.M806281200. Epub 2008 Dec 10.
The kinetochore, which consists of DNA sequence elements and structural proteins, is essential for high-fidelity chromosome transmission during cell division. In budding yeast, Sgt1 and Hsp90 help assemble the core kinetochore complex CBF3 by activating the CBF3 components Skp1 and Ctf13. In this study, we show that Sgt1 forms homodimers by performing in vitro and in vivo immunoprecipitation and analytical ultracentrifugation analyses. Analyses of the dimerization of Sgt1 deletion proteins showed that the Skp1-binding domain (amino acids 1-211) contains the Sgt1 homodimerization domain. Also, the Sgt1 mutant proteins that were unable to dimerize also did not bind Skp1, suggesting that Sgt1 dimerization is important for Sgt1-Skp1 binding. Restoring dimerization activity of a dimerization-deficient sgt1 mutant (sgt1-L31P) by using the CENP-B (centromere protein-B) dimerization domain suppressed the temperature sensitivity, the benomyl sensitivity, and the chromosome missegregation phenotype of sgt1-L31P. These results strongly suggest that Sgt1 dimerization is required for kinetochore assembly.
动粒由DNA序列元件和结构蛋白组成,对于细胞分裂过程中高保真染色体传递至关重要。在芽殖酵母中,Sgt1和Hsp90通过激活CBF3组件Skp1和Ctf13来帮助组装核心动粒复合体CBF3。在本研究中,我们通过进行体外和体内免疫沉淀及分析超速离心分析表明,Sgt1形成同源二聚体。对Sgt1缺失蛋白二聚化的分析表明,Skp1结合结构域(氨基酸1 - 211)包含Sgt1同源二聚化结构域。此外,无法二聚化的Sgt1突变蛋白也不与Skp1结合,这表明Sgt1二聚化对于Sgt1 - Skp1结合很重要。通过使用CENP - B(着丝粒蛋白B)二聚化结构域恢复二聚化缺陷型sgt1突变体(sgt1 - L31P)的二聚化活性,可抑制sgt1 - L31P的温度敏感性、苯菌灵敏感性和染色体错分离表型。这些结果强烈表明,Sgt1二聚化是动粒组装所必需的。