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粟酒裂殖酵母Bub1p的Mad3样结构域中的A78V突变扰乱了Bub1p、Bub3p和Mad3p的核积累和动粒靶向以及纺锤体组装检查点功能。

The A78V mutation in the Mad3-like domain of Schizosaccharomyces pombe Bub1p perturbs nuclear accumulation and kinetochore targeting of Bub1p, Bub3p, and Mad3p and spindle assembly checkpoint function.

作者信息

Kadura Sheila, He Xiangwei, Vanoosthuyse Vincent, Hardwick Kevin G, Sazer Shelley

机构信息

Verna and Marrs McClean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Mol Biol Cell. 2005 Jan;16(1):385-95. doi: 10.1091/mbc.e04-07-0558. Epub 2004 Nov 3.

Abstract

During mitosis, the spindle assembly checkpoint (SAC) responds to faulty attachments between kinetochores and the mitotic spindle by imposing a metaphase arrest until the defect is corrected, thereby preventing chromosome missegregation. A genetic screen to isolate SAC mutants in fission yeast yielded point mutations in three fission yeast SAC genes: mad1, bub3, and bub1. The bub1-A78V mutant is of particular interest because it produces a wild-type amount of protein that is mutated in the conserved but uncharacterized Mad3-like region of Bub1p. Characterization of mutant cells demonstrates that the alanine at position 78 in the Mad3-like domain of Bub1p is required for: 1) cell cycle arrest induced by SAC activation; 2) kinetochore accumulation of Bub1p in checkpoint-activated cells; 3) recruitment of Bub3p and Mad3p, but not Mad1p, to kinetochores in checkpoint-activated cells; and 4) nuclear accumulation of Bub1p, Bub3p, and Mad3p, but not Mad1p, in cycling cells. Increased targeting of Bub1p-A78V to the nucleus by an exogenous nuclear localization signal does not significantly increase kinetochore localization or SAC function, but GFP fused to the isolated Bub1p Mad 3-like accumulates in the nucleus. These data indicate that Bub1p-A78V is defective in both nuclear accumulation and kinetochore targeting and that a threshold level of nuclear Bub1p is necessary for the nuclear accumulation of Bub3p and Mad3p.

摘要

在有丝分裂过程中,纺锤体组装检查点(SAC)通过使细胞停滞在中期直至缺陷被纠正,来应对动粒与有丝分裂纺锤体之间的错误连接,从而防止染色体错分离。一项在裂殖酵母中分离SAC突变体的遗传筛选,在三个裂殖酵母SAC基因(mad1、bub3和bub1)中产生了点突变。bub1 - A78V突变体特别令人感兴趣,因为它产生野生型数量的蛋白质,该蛋白质在Bub1p保守但未表征的Mad3样区域发生了突变。对突变细胞的表征表明,Bub1p的Mad3样结构域中第78位的丙氨酸对于以下方面是必需的:1)SAC激活诱导的细胞周期停滞;2)检查点激活细胞中Bub1p在动粒上的积累;3)在检查点激活细胞中,将Bub3p和Mad3p而非Mad1p募集到动粒上;4)在循环细胞中,Bub1p、Bub3p和Mad3p而非Mad1p在细胞核中的积累。通过外源性核定位信号增加Bub1p - A78V向细胞核的靶向作用,并不会显著增加其在动粒上的定位或SAC功能,但与分离出的Bub1p Mad 3样结构域融合的绿色荧光蛋白(GFP)会在细胞核中积累。这些数据表明,Bub1p - A78V在细胞核积累和动粒靶向方面均存在缺陷,并且细胞核中Bub1p的阈值水平对于Bub3p和Mad3p的细胞核积累是必需的。

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