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Wee1和Nim1蛋白激酶在裂殖酵母中调控从有丝分裂到有性发育转变过程中的作用。

Roles of Wee1 and Nim1 protein kinases in regulating the switch from mitotic division to sexual development in Schizosaccharomyces pombe.

作者信息

Wu L, Russell P

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Mol Cell Biol. 1997 Jan;17(1):10-7. doi: 10.1128/MCB.17.1.10.

Abstract

In self-fertile strains of the fission yeast Schizosaccharomyces pombe, nitrogen starvation initiates a program of sexual development in which cells express mating pheromones and receptors, arrest cell cycle progression in G1, and conjugate. This process is dependent on Rum1, an inhibitor of the Cdc2-Cdc13 and Cdc2-Cig2 cyclin B kinases. The M-phase induction activity of Cdc2-Cdc13 is inhibited by Wee1 tyrosine kinase, which phosphorylates Cdc2 on tyrosine-15. We report here that Wee1 activity is also important for mating. This discovery arose from studies of Nim1, a kinase which promotes mitosis by inhibiting Wee1. Nim1 was previously thought to have an important role in promoting mitosis during nitrogen starvation, but our studies revealed that Nim1 protein drops to an undetectable level within 15 min of nitrogen depletion. In contrast, Wee1 remains abundant, and tyrosine-phosphorylated Cdc2 is detected for at least 4 h after resuspension of cells in nitrogen-free medium. This suggested that maintenance of Wee1 activity may be important during the early stages of nitrogen starvation, a proposal confirmed by the observation that mating efficiency is reduced ca. fivefold in wee1- cells. Transcriptional induction of genes encoding mating factors and receptors is also delayed in wee1- cells. The wee1- mating defect is suppressed by deletion of cig2+, which encodes a B-type cyclin that promotes the onset of S and inhibits conjugation. These findings indicate that Wee1 and Rum1 act jointly to inhibit Cdc2 and promote sexual development in nitrogen-starved cells.

摘要

在裂殖酵母粟酒裂殖酵母的自育菌株中,氮饥饿会启动一个有性发育程序,在此过程中细胞会表达交配信息素和受体,在G1期阻止细胞周期进程,并进行接合。这个过程依赖于Rum1,它是Cdc2 - Cdc13和Cdc2 - Cig2细胞周期蛋白B激酶的抑制剂。Cdc2 - Cdc13的M期诱导活性受到Wee1酪氨酸激酶的抑制,Wee1会使Cdc2的酪氨酸 - 15位点磷酸化。我们在此报告,Wee1活性对于交配也很重要。这一发现源于对Nim1的研究,Nim1是一种通过抑制Wee1来促进有丝分裂的激酶。Nim1之前被认为在氮饥饿期间促进有丝分裂中起重要作用,但我们的研究表明,在氮耗尽后15分钟内,Nim1蛋白水平降至无法检测的程度。相比之下,Wee1仍然大量存在,并且在将细胞重悬于无氮培养基中至少4小时后仍能检测到酪氨酸磷酸化的Cdc2。这表明在氮饥饿的早期阶段维持Wee1活性可能很重要,这一推测通过观察wee1⁻细胞中交配效率降低约五倍得到证实。在wee1⁻细胞中,编码交配因子和受体的基因的转录诱导也会延迟。cig2⁺的缺失抑制了wee1⁻的交配缺陷,cig2⁺编码一种B型细胞周期蛋白,可促进S期的开始并抑制接合。这些发现表明,Wee1和Rum1共同作用以抑制Cdc2并促进氮饥饿细胞中的有性发育。

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