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酵母细胞周期转录因子SBF和MBF的基因组结合位点

Genomic binding sites of the yeast cell-cycle transcription factors SBF and MBF.

作者信息

Iyer V R, Horak C E, Scafe C S, Botstein D, Snyder M, Brown P O

机构信息

Department of Biochemistry, Stanford University Medical Center, California 94305, USA.

出版信息

Nature. 2001 Jan 25;409(6819):533-8. doi: 10.1038/35054095.

Abstract

Proteins interact with genomic DNA to bring the genome to life; and these interactions also define many functional features of the genome. SBF and MBF are sequence-specific transcription factors that activate gene expression during the G1/S transition of the cell cycle in yeast. SBF is a heterodimer of Swi4 and Swi6, and MBF is a heterodimer of Mbpl and Swi6 (refs 1, 3). The related Swi4 and Mbp1 proteins are the DNA-binding components of the respective factors, and Swi6 mayhave a regulatory function. A small number of SBF and MBF target genes have been identified. Here we define the genomic binding sites of the SBF and MBF transcription factors in vivo, by using DNA microarrays. In addition to the previously characterized targets, we have identified about 200 new putative targets. Our results support the hypothesis that SBF activated genes are predominantly involved in budding, and in membrane and cell-wall biosynthesis, whereas DNA replication and repair are the dominant functions among MBF activated genes. The functional specialization of these factors may provide a mechanism for independent regulation of distinct molecular processes that normally occur in synchrony during the mitotic cell cycle.

摘要

蛋白质与基因组DNA相互作用,使基因组发挥作用;这些相互作用也决定了基因组的许多功能特征。SBF和MBF是序列特异性转录因子,在酵母细胞周期的G1/S转换期间激活基因表达。SBF是Swi4和Swi6的异二聚体,MBF是Mbp1和Swi6的异二聚体(参考文献1、3)。相关的Swi4和Mbp1蛋白是各自因子的DNA结合成分,而Swi6可能具有调节功能。已经鉴定出少数SBF和MBF靶基因。在这里,我们通过使用DNA微阵列在体内定义了SBF和MBF转录因子的基因组结合位点。除了先前已表征的靶标外,我们还鉴定出约200个新的假定靶标。我们的结果支持以下假设:SBF激活的基因主要参与出芽以及膜和细胞壁的生物合成,而DNA复制和修复是MBF激活的基因中的主要功能。这些因子的功能特化可能为通常在有丝分裂细胞周期中同步发生的不同分子过程的独立调节提供一种机制。

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