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酵母中的DNA合成控制:一种调控DNA合成基因的进化保守机制?

DNA synthesis control in yeast: an evolutionarily conserved mechanism for regulating DNA synthesis genes?

作者信息

Merrill G F, Morgan B A, Lowndes N F, Johnston L H

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis 97331.

出版信息

Bioessays. 1992 Dec;14(12):823-30. doi: 10.1002/bies.950141206.

Abstract

After yeast cells commit to the cell cycle in a process called START, genes required for DNA synthesis are expressed in late G1. Periodicity is mediated by a hexameric sequence, known as a MCB element, present in all DNA synthesis gene promoters. A complex that specifically binds MCBs has been identified. One polypeptide in the MCB complex is Swi6, a transcription factor that together with Swi4 also binds G1 cyclin promoters and participates in a positive feedback loop at START. The finding that Swi6 is directly involved in both START and DNA synthesis gene control suggest a model in which Swi6, activated through its participation in START, serves as the central transcription factor in coordinating late G1 gene expression. The mechanism may be conserved in all eukaryotic cells.

摘要

在酵母细胞通过一个称为START的过程进入细胞周期后,DNA合成所需的基因在G1晚期表达。周期性由存在于所有DNA合成基因启动子中的六聚体序列介导,该序列称为MCB元件。已鉴定出一种特异性结合MCB的复合物。MCB复合物中的一种多肽是Swi6,它是一种转录因子,与Swi4一起还结合G1细胞周期蛋白启动子,并参与START处的正反馈环。Swi6直接参与START和DNA合成基因控制这一发现提示了一种模型,即通过参与START而被激活的Swi6作为协调G1晚期基因表达的中心转录因子。该机制可能在所有真核细胞中都是保守的。

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