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首页> 外文期刊>Genes to cells : >The C-terminus of Bfa1p in budding yeast is essential to induce mitotic arrest in response to diverse checkpoint-activating signals.
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The C-terminus of Bfa1p in budding yeast is essential to induce mitotic arrest in response to diverse checkpoint-activating signals.

机译:在发芽酵母中,Bfa1p的C末端对诱导多种检查点激活信号诱导有丝分裂阻滞至关重要。

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摘要

During mitosis, genomic integrity is maintained by the proper coordination of anaphase entry and mitotic exit through mitotic checkpoints. In budding yeast, exit from mitosis is triggered by the activation of the small GTPase Tem1p. Bfa1p in association with Bub2p negatively regulates Tem1p in response to spindle damage, spindle misorientation, and DNA damage, resulting in cell cycle arrest. To delineate the Bfa1p domains that respond to distinct checkpoint signals, we constructed 13 Bfa1 deletion mutants. The C-terminal 184 amino acids of Bfa1p (Bfa1-D8(391-574)) contained the entire capacity of Bfa1p to generate mitotic arrest in response to spindle damage, spindle misorientation, and DNA damage. This domain was also enough to interact with the mitotic exit network proteins Tem1p, Bub2p, and Cdc5p, and to localize to the spindle pole body (SPB). Over-expression of Bfa1-D8(391-574) induced late anaphase arrest as efficient as the full-length Bfa1p in a Bub2p-dependent manner. In contrast, the N-terminal portion of Bfa1p (Bfa1-D16(1-376)) could not localize to SPB and did not block mitotic exit in response to diverse checkpoint signals. Bfa1-D16(1-376) interacted with Tem1p but not with Bub2p and its over-expression partially arrested cells in mitosis in the absence of Bub2p. By random mutagenesis of Bfa1-D8(391-574) with hydroxylamine, we isolated a point mutant of D8, D8(E438K), which interacts with both Tem1p and Bub2p but cannot respond to checkpoint signals. This mutant also showed reduced efficiency in the localization to SPB. Taken together, our study demonstrated that various checkpoint signals are transmitted to the C-terminal domain of Bfa1 (Bfa1-D8(391-574)) and that Bfa1p localization to SPB is necessary but not sufficient to regulate mitotic exit in response to various checkpoint signals.
机译:在有丝分裂期间,通过后期进入和通过有丝分裂检查点的有丝分裂的适当协调,可以维持基因组的完整性。在出芽的酵母中,有丝分裂的退出是由小GTPase Tem1p的激活触发的。 Bfa1p与Bub2p结合对Tem1p负调节,以响应纺锤体损伤,纺锤体定向错误和DNA损伤,从而导致细胞周期停滞。为了描述响应不同检查点信号的Bfa1p域,我们构建了13个Bfa1缺失突变体。 Bfa1p(Bfa1-D8(391-574))的C端184个氨基酸包含Bfa1p的全部能力,以响应纺锤体损伤,纺锤体定向错误和DNA损伤而产生有丝分裂停滞。该域也足以与有丝分裂出口网络蛋白Tem1p,Bub2p和Cdc5p相互作用,并定位于纺锤极体(SPB)。 Bfa1-D8(391-574)的过度表达以Bub2p依赖的方式诱导了与后期Bfa1p一样有效的后期后期停滞。相比之下,Bfa1p(Bfa1-D16(1-376))的N端部分不能定位到SPB,并且不能响应各种检查点信号而阻止有丝分裂退出。 Bfa1-D16(1-376)与Tem1p相互作用,但不与Bub2p相互作用,在不存在Bub2p的情况下,其过表达使部分细胞停滞在有丝分裂中。通过使用羟胺对Bfa1-D8(391-574)进行随机诱变,我们分离了D8的点突变体D8(E438K),该突变体与Tem1p和Bub2p相互作用但不能响应检查点信号。此突变体还显示出降低到SPB的效率。综上所述,我们的研究表明,各种检查点信号均被传输至Bfa1的C末端域(Bfa1-D8(391-574)),并且Bfa1p定位至SPB是必要的,但不足以调节有丝分裂出口以响应各种检查点信号。

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