Bellizzi John J, Sorger Peter K, Harrison Stephen C
Jack and Eileen Connors Laboratory of Structural Biology, Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA 02115, USA.
Structure. 2007 Nov;15(11):1422-30. doi: 10.1016/j.str.2007.09.008.
In budding yeast, the four-protein CBF3 complex (Skp1p-Ctf13p-Cep3p-Ndc10p) initiates kinetochore assembly by binding to the CDEIII locus of centromeric DNA. A Cep3p dimer recruits a Skp1p-Ctf13p heterodimer and contacts two sites on CDEIII. We report here the crystal structure, determined at 2.8 A resolution by multiple isomorphous replacement with anomalous scattering, of a truncated Cep3p (Cep3p [47-608]), comprising all but an N-terminal, Zn(2)Cys(6)-cluster, DNA-binding module. Cep3p has a well-ordered structure throughout essentially all of its polypeptide chain, unlike most yeast transcription factors, including those with Zn(2)Cys(6) clusters, such as Gal4p. This difference may reflect an underlying functional distinction: whereas any particular transcription factor must adapt to a variety of upstream activating sites, Cep3p scaffolds kinetochore assembly on centromeres uniformly configured on all 16 yeast chromosomes. We have, using the structure of Cep3p (47-608) and the known structures of Zn(2)Cys(6)-cluster domains, modeled the interaction of Cep3p with CDEIII.
在出芽酵母中,由四种蛋白质组成的CBF3复合物(Skp1p-Ctf13p-Cep3p-Ndc10p)通过与着丝粒DNA的CDEIII位点结合来启动动粒组装。一个Cep3p二聚体招募一个Skp1p-Ctf13p异二聚体,并与CDEIII上的两个位点接触。我们在此报告了截短的Cep3p(Cep3p [47-608])的晶体结构,该结构通过多同晶置换加反常散射以2.8埃的分辨率确定,Cep3p [47-608]除了一个N端的Zn(2)Cys(6)簇DNA结合模块外包含了所有部分。与大多数酵母转录因子不同,包括那些具有Zn(2)Cys(6)簇的转录因子,如Gal4p,Cep3p在其基本上所有的多肽链中都具有有序的结构。这种差异可能反映了潜在的功能区别:任何特定的转录因子必须适应多种上游激活位点,而Cep3p则在所有16条酵母染色体上统一配置的着丝粒上构建动粒组装。我们利用Cep3p(47-608)的结构和Zn(2)Cys(6)簇结构域的已知结构,模拟了Cep3p与CDEIII的相互作用。