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删除酿酒酵母中部分Ras-cAMP途径缺陷的新型抑制因子SFI1会导致G2期阻滞。

Deletion of SFI1, a novel suppressor of partial Ras-cAMP pathway deficiency in the yeast Saccharomyces cerevisiae, causes G(2) arrest.

作者信息

Ma P, Winderickx J, Nauwelaers D, Dumortier F, De Doncker A, Thevelein J M, Van Dijck P

机构信息

Laboratorium voor Moleculaire Celbiologie, Katholieke Universiteit Leuven, Leuven, Belgium.

出版信息

Yeast. 1999 Aug;15(11):1097-109. doi: 10.1002/(SICI)1097-0061(199908)15:11<1097::AID-YEA437>3.0.CO;2-B.

Abstract

When glucose is added to Saccharomyces cerevisiae cells grown into stationary phase or on non-fermentable carbon sources a rapid loss of heat stress resistance occurs. Mutants that retain high stress resistance after addition of glucose are called 'fil', for deficient in fermentation induced loss of stress resistance. Transformation of the fil1 mutant, which harbours a point mutation in adenylate cyclase, with a yeast gene library on a single copy plasmid resulted in transformants that were again stress-sensitive. One of the genes isolated in this way was a gene of previously unknown function. We have called it SFI1, for suppressor of fil1. SFI1 is an essential gene. Combination of Sfi1 and cAMP pathway mutations indicates that Sfi1 itself is not involved in the cAMP pathway. Conditional sfi1 mutants did not show enhanced heat resistance under the restrictive condition, whereas overexpression of SFI1 rendered cells heat-sensitive. Sfi1 may be a downstream target of the protein kinase A pathway, but its precise relationship with heat resistance remains unclear. Further analysis showed that Sfi1 is required for cell cycle progression, more specifically for progression through G(2)-M transition. Cells expressing SFI1 under the control of a galactose-inducible promoter arrest after addition of glucose as doublets of undivided mother and daughter cells. These doublets contain a single nucleus and lack mitotic spindles. Sfi1 shares homology with Xenopus laevis XCAP-C, a protein required for chromosome assembly. The conserved residues between these two proteins show a strong bias for charged amino acids. Hence, Sfi1 might be required for correct mitotic spindle assembly and its precise role might be in chromosome condensation. In conclusion, we have identified an essential function in the G(2)-M transition of the cell cycle for a yeast gene of previously unknown function.

摘要

当向处于稳定期生长或利用非发酵性碳源培养的酿酒酵母细胞中添加葡萄糖时,热应激抗性会迅速丧失。添加葡萄糖后仍保持高应激抗性的突变体被称为“fil”,即发酵诱导的应激抗性丧失缺陷型。用单拷贝质粒上的酵母基因文库转化在腺苷酸环化酶中存在点突变的fil1突变体,得到的转化体再次表现出应激敏感性。通过这种方式分离出的一个基因是一个功能此前未知的基因。我们将其命名为SFI1,即fil1的抑制因子。SFI1是一个必需基因。Sfi1与cAMP途径突变的组合表明Sfi1本身不参与cAMP途径。条件性sfi1突变体在限制条件下未表现出增强的耐热性,而SFI1的过表达使细胞对热敏感。Sfi1可能是蛋白激酶A途径的下游靶点,但其与耐热性的确切关系仍不清楚。进一步分析表明,Sfi1是细胞周期进程所必需的,更具体地说是G(2)-M期转换所必需的。在半乳糖诱导型启动子控制下表达SFI1的细胞在添加葡萄糖后会停滞,形成未分裂的母细胞和子细胞的双核体。这些双核体含有单个细胞核且缺乏有丝分裂纺锤体。Sfi1与非洲爪蟾的XCAP-C具有同源性,XCAP-C是染色体组装所需的一种蛋白质。这两种蛋白质之间的保守残基强烈偏向于带电荷的氨基酸。因此,Sfi1可能是正确的有丝分裂纺锤体组装所必需的,其确切作用可能在于染色体凝聚。总之,我们确定了一个在细胞周期G(2)-M期转换中具有重要功能的、功能此前未知的酵母基因。

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