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Cdc20新的Mad2相互作用结构域对Mad2-Cdc20复合物在纺锤体组装检查点中的功能至关重要。

A new Mad2-interacting domain of Cdc20 is critical for the function of Mad2-Cdc20 complex in the spindle assembly checkpoint.

作者信息

Mondal Gourish, Baral Rathindra N, Roychoudhury Susanta

机构信息

Human Genetics and Genomics Division, Indian Institute of Chemical Biology, Kolkata-700 032, India.

出版信息

Biochem J. 2006 Jun 1;396(2):243-53. doi: 10.1042/BJ20051914.

Abstract

Interaction between Mad2 and Cdc20 (cell division cycle 20) is a key event during spindle assembly checkpoint activation. In the past, an N-terminal peptide containing amino acid residues 111-150 of Cdc20 was shown to bind Mad2 much better than the full-length Cdc20 protein. Using co-localization, co-immunoprecipitation and peptide inhibition analysis with different deletion mutants of Cdc20, we identified another Mad2-binding domain on Cdc20 from amino acids 342-355 within the WD repeat region. An intervening region between these two domains interferes with its Mad2 binding when present individually with any of these two Mad2-binding sites. We suggest that these three domains together determine the overall strength of Mad2 binding with Cdc20. Functional analysis suggests that an optimum Mad2 binding efficiency of Cdc20 is required during checkpoint arrest and release. Further, we have identified a unique polyhistidine motif with metal binding property adjacent to this second binding domain that may be important for maintaining the overall conformation of Cdc20 for its binding to Mad2.

摘要

Mad2与细胞分裂周期蛋白20(Cdc20)之间的相互作用是纺锤体组装检查点激活过程中的关键事件。过去研究表明,包含Cdc20第111 - 150位氨基酸残基的N端肽与Mad2的结合能力比全长Cdc20蛋白更强。通过对Cdc20不同缺失突变体进行共定位、免疫共沉淀和肽抑制分析,我们在Cdc20的WD重复区域内第342 - 355位氨基酸处鉴定出另一个Mad2结合结构域。当这两个结构域中的任何一个单独存在时,它们之间的间隔区域会干扰其与Mad2的结合。我们认为这三个结构域共同决定了Mad2与Cdc20结合的整体强度。功能分析表明,在检查点停滞和解除过程中,需要Cdc20具有最佳的Mad2结合效率。此外,我们在这个第二个结合结构域附近鉴定出一个具有金属结合特性的独特多组氨酸基序,它可能对维持Cdc20与Mad2结合所需的整体构象很重要。

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