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裂殖酵母有丝分裂周期中S期周期性转录的调控。

Control of S-phase periodic transcription in the fission yeast mitotic cycle.

作者信息

Baum B, Wuarin J, Nurse P

机构信息

Imperial Cancer Research Fund, Cell Cycle Laboratory, London, UK.

出版信息

EMBO J. 1997 Aug 1;16(15):4676-88. doi: 10.1093/emboj/16.15.4676.

Abstract

In fission yeast, passage through START and into S-phase requires cyclin-dependent kinase (CDK) activity and the periodic transcription of genes essential for S-phase ('S-phase transcription'). Here we investigate the control of this transcription in the mitotic cell cycle. We demonstrate that the periodicity of S-phase transcription is likely to be controlled independently of CDK activity. This contrasts with the equivalent system in budding yeast. Furthermore, the CDK function required for S-phase acts after the onset of S-phase transcription and after the accumulation of cdc18p, a critical target of this transcriptional machinery. We investigate the role of individual components of the S-phase transcriptional machinery, cdc10p, res1p, res2p and rep2p, and define a new role for res2p, previously demonstrated to be important in the meiotic cycle, in switching off S-phase transcription during G2 of the mitotic cycle. We show that the presence of the in vitro bandshift activity DSC1, conventionally thought to represent the active complex, requires res2p and correlates with inactive transcription. We suggest that S-phase transcription is controlled by both activation and repression, and that res2p represses transcription in G2 of the cell cycle as a part of the DSC1 complex.

摘要

在裂殖酵母中,通过起始点并进入S期需要细胞周期蛋白依赖性激酶(CDK)活性以及S期必需基因的周期性转录(“S期转录”)。在此,我们研究有丝分裂细胞周期中这种转录的调控。我们证明,S期转录的周期性可能独立于CDK活性进行调控。这与芽殖酵母中的等效系统形成对比。此外,S期所需的CDK功能在S期转录开始后以及cdc18p(这种转录机制的关键靶点)积累后发挥作用。我们研究了S期转录机制中各个组分cdc10p、res1p、res2p和rep2p的作用,并确定了res2p的新作用,res2p先前已证明在减数分裂周期中很重要,在有丝分裂周期的G2期关闭S期转录。我们表明,传统上认为代表活性复合物的体外条带迁移活性DSC1的存在需要res2p,并且与非活性转录相关。我们认为,S期转录受激活和抑制共同调控,并且res2p作为DSC1复合物的一部分在细胞周期的G2期抑制转录。

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