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酵母动粒蛋白与着丝粒蛋白/转录因子Cbf1的相互作用。

Interaction of yeast kinetochore proteins with centromere-protein/transcription factor Cbf1.

作者信息

Hemmerich P, Stoyan T, Wieland G, Koch M, Lechner J, Diekmann S

机构信息

Institut fuer Molekulare Biotechnologie, Abteilung Molekularbiologie, Beutenbergstrasse 11, 07745 Jena, Germany.

出版信息

Proc Natl Acad Sci U S A. 2000 Nov 7;97(23):12583-8. doi: 10.1073/pnas.97.23.12583.

Abstract

The centromere-kinetochore complex of Saccharomyces cerevisiae is a specialized chromosomal substructure that mediates attachment of duplicated chromosomes to the mitotic spindle by a regulated network of protein-DNA and protein-protein interactions. We have used in vitro assays to analyze putative molecular interactions between components of the yeast centromerekinetochore complex. Glutathione S-transferase pull-down experiments showed the direct interaction of in vitro translated p110, p64, and p58 of the essential CBF3 kinetochore protein complex with Cbf1p, a basic region helix-loop-helix zipper protein (bHLHzip) that specifically binds to the CDEI region on the centromere DNA. Furthermore, recombinant p64 and p23 each stimulated the in vitro DNA binding activity of Cbf1p. The N-terminal 70 amino acids of p23 were sufficient to mediate this effect. P64 could also promote the multimerization activity of Cbf1p in the presence of centromere DNA in vitro. These results show the direct physical interaction of Cbf1p and CBF3 subunits and provide evidence that CBF3 components can promote the binding of Cbf1p to its binding site in the yeast kinetochore. A functional comparison of the centromere binding proteins with transcription factors binding at MET16 promoters reveals the strong analogy between centromeres and the MET16 promoter.

摘要

酿酒酵母的着丝粒-动粒复合体是一种特殊的染色体亚结构,它通过蛋白质-DNA和蛋白质-蛋白质相互作用的调控网络,介导复制后的染色体与有丝分裂纺锤体的附着。我们利用体外试验来分析酵母着丝粒-动粒复合体各组分之间可能存在的分子相互作用。谷胱甘肽S-转移酶下拉实验表明,必需的CBF3动粒蛋白复合体的体外翻译产物p110、p64和p58与Cbf1p直接相互作用,Cbf1p是一种碱性区域螺旋-环-螺旋拉链蛋白(bHLHzip),它特异性结合着丝粒DNA上的CDEI区域。此外,重组p64和p23均能刺激Cbf1p的体外DNA结合活性。p23的N端70个氨基酸足以介导这种效应。在体外存在着丝粒DNA的情况下,p64还能促进Cbf1p的多聚化活性。这些结果表明Cbf1p与CBF3亚基之间存在直接的物理相互作用,并提供了证据证明CBF3组分能够促进Cbf1p与酵母动粒中其结合位点的结合。对着丝粒结合蛋白与在MET16启动子处结合的转录因子进行功能比较,揭示了着丝粒与MET16启动子之间的强烈相似性。

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