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细胞周期蛋白依赖性激酶2(cdc2)与有丝分裂调控:六个相互作用的MCS基因

cdc2 and the regulation of mitosis: six interacting mcs genes.

作者信息

Molz L, Booher R, Young P, Beach D

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724.

出版信息

Genetics. 1989 Aug;122(4):773-82. doi: 10.1093/genetics/122.4.773.

Abstract

A cdc2-3w weel-50 double mutant of fission yeast displays a temperature-sensitive lethal phenotype that is associated with gross abnormalities of chromosome segregation and has been termed mitotic catastrophe. In order to identify new genetic elements that might interact with the cdc2 protein kinase in the regulation of mitosis, we have isolated revertants of the lethal double mutant. The suppressor mutations define six mcs genes (mcs: mitotic catastrophe suppressor) that are not allelic to any of the following mitotic control genes: cdc2, wee 1, cdc13, cdc25, suc1 or nim1. Each mcs mutation is recessive with respect to wild-type in its ability to suppress mitotic catastrophe. None confer a lethal phenotype as a single mutant but few of the mutants are expected to be nulls. A diverse range of genetic interactions between the mcs mutants and other mitotic regulators were uncovered, including the following examples. First, mcs2 cdc2w or mcs6 cdc2w double mutants display a cell cycle defect dependent on the specific wee allele of cdc2. Second, both mcs1 cdc25-22 or mcs4 cdc25-22 double mutants are nonconditionally lethal, even at a temperature normally permissive for cdc25-22. Finally, the characteristic suppression of the cdc25 phenotype by a loss-of-function wee1 mutation is reversed in a mcs3 mutant background. The mcs genes define new mitotic elements that might be activators or substrates of the cdc2 protein kinase.

摘要

裂殖酵母的cdc2-3w weel-50双突变体表现出温度敏感的致死表型,这与染色体分离的严重异常有关,被称为有丝分裂灾难。为了鉴定在有丝分裂调控中可能与cdc2蛋白激酶相互作用的新遗传元件,我们分离了致死双突变体的回复突变体。这些抑制突变定义了六个mcs基因(mcs:有丝分裂灾难抑制基因),它们与以下任何有丝分裂控制基因都不等位:cdc2、wee 1、cdc13、cdc25、suc1或nim1。每个mcs突变在抑制有丝分裂灾难的能力方面相对于野生型是隐性的。没有一个作为单一突变体赋予致死表型,但预计很少有突变体是无效的。发现了mcs突变体与其他有丝分裂调节因子之间多种遗传相互作用,包括以下例子。首先,mcs2 cdc2w或mcs6 cdc2w双突变体表现出依赖于cdc2特定wee等位基因的细胞周期缺陷。其次,mcs1 cdc25-22或mcs4 cdc25-22双突变体都是无条件致死的,即使在通常允许cdc25-22的温度下也是如此。最后,在mcs3突变体背景中,功能缺失的wee1突变对cdc25表型的特征性抑制作用被逆转。mcs基因定义了可能是cdc2蛋白激酶的激活剂或底物的新有丝分裂元件。

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