Iwanaga Yoichi, Kasai Takefumi, Kibler Karen, Jeang Kuan-Teh
Molecular Virology Section, Laboratory of Molecular Microbiology, NIAID/National Institutes of Health, 9000 Rockville Pike, Bethesda, MD 20892-0460, USA.
J Biol Chem. 2002 Aug 23;277(34):31005-13. doi: 10.1074/jbc.M110666200. Epub 2002 May 31.
In eukaryotes, the mitotic spindle assembly checkpoint provides a monitor for the fidelity of chromosomal segregation. In this context, the mitotic arrest deficiency protein 2 (MAD2) censors chromosomal mis-segregation by monitoring microtubule attachment/tension, a role that requires its attachment to kinetochores. Studies in yeast have shown that binding of MAD1 to MAD2 is important for the checkpoint function of the latter. The interactions between human MAD1 (hsMAD1) and human MAD2 (hsMAD2) have, however, remained poorly characterized. Here we report that two leucine zipper domains (amino acids 501-522 and 557-571) in hsMAD1 are required for its contact with hsMAD2. Interestingly, in several cancer cell lines, we noted the frequent presence of a coding single nucleotide Arg to His polymorphism at codon 558 located within the second leucine zipper of hsMAD1. We found that hsMAD1H558 is less proficient than hsMAD1R558 in binding hsMAD2 and in enforcing mitotic arrest. We also document a first example of loss-of-heterozygosity for a spindle checkpoint gene (at the hsMAD1 558 locus) in a human breast cancer. Based on our findings, it is possible that hsMAD1H558 could be an at-risk polymorphism that contributes to attenuated spindle checkpoint function in human cells.
在真核生物中,有丝分裂纺锤体组装检查点可监测染色体分离的准确性。在此背景下,有丝分裂阻滞缺陷蛋白2(MAD2)通过监测微管附着/张力来审查染色体的错误分离,这一作用要求其附着于动粒。酵母研究表明,MAD1与MAD2的结合对后者的检查点功能很重要。然而,人类MAD1(hsMAD1)与人类MAD2(hsMAD2)之间的相互作用仍未得到充分表征。在此我们报告,hsMAD1中的两个亮氨酸拉链结构域(氨基酸501 - 522和557 - 571)是其与hsMAD2接触所必需的。有趣的是,在几种癌细胞系中,我们注意到位于hsMAD1第二个亮氨酸拉链内的第558密码子处频繁出现编码单核苷酸由精氨酸突变为组氨酸的多态性。我们发现,hsMAD1H558在结合hsMAD2和实施有丝分裂阻滞方面不如hsMAD1R558熟练。我们还记录了人类乳腺癌中纺锤体检查点基因(在hsMAD1 558位点)杂合性缺失的首个实例。基于我们的发现,hsMAD1H558有可能是一种风险多态性,它会导致人类细胞中纺锤体检查点功能减弱。