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SWI4、CLN3、CDC6和CDC47启动子中一种新的依赖Mcm1的元件激活M期/G1期特异性转录。

A novel Mcm1-dependent element in the SWI4, CLN3, CDC6, and CDC47 promoters activates M/G1-specific transcription.

作者信息

McInerny C J, Partridge J F, Mikesell G E, Creemer D P, Breeden L L

机构信息

Fred Hutchinson Cancer Research Center, Basic Sciences Division, Seattle, Washington 98104, USA.

出版信息

Genes Dev. 1997 May 15;11(10):1277-88. doi: 10.1101/gad.11.10.1277.

Abstract

We have identified a novel promoter element that confers M/G1-specific transcription in Saccharomyces cerevisiae. This element, which we call an ECB (early cell cycle box), was first identified in the SWI4 promoter, but it is also present in the promoter of a G1 cyclin CLN3, as well as in the promoters of three DNA replication genes: CDC6, CDC47, and CDC46. Transcripts from all five of these genes oscillate during the cell cycle and peak at the M/G1 boundary, as do isolated ECB elements in reporter constructs. The ECB element contains an Mcm1 binding site to which Mcm1 binds in vitro, and an Mcm1-VP16 fusion, which places a constitutive activator on Mcm1-binding sites in vivo, can deregulate ECB-containing promoters. Mcm1 is a transcription factor that is also required for minichromosome maintenance. We provide evidence that the replication defect of mcm1 mutants can be suppressed by ectopic CDC6 transcription. Periodic expression of SWI4 and CLN3 may be important for cell cycle progression, as we find that these genes are both haploinsufficient and rate limiting for G1 progression. We suggest that ECB-regulated gene products play critical roles in promoting the initiation of S-phase, both by regulating CLN1 and CLN2 transcription and as components of the initiation complex on origins of replication.

摘要

我们已经鉴定出一种新型启动子元件,它可在酿酒酵母中赋予M/G1特异性转录。这种元件,我们称之为ECB(早期细胞周期框),首先在SWI4启动子中被鉴定出来,但它也存在于G1周期蛋白CLN3的启动子中,以及三个DNA复制基因CDC6、CDC47和CDC46的启动子中。这五个基因的转录本在细胞周期中都会振荡,并在M/G1边界达到峰值,报告基因构建体中的分离ECB元件也是如此。ECB元件包含一个Mcm1结合位点,Mcm1在体外可与之结合,并且一个Mcm1-VP16融合蛋白,它在体内将一个组成型激活剂置于Mcm1结合位点上,可解除对含ECB启动子的调控。Mcm1是一种转录因子,也是维持微型染色体所必需的。我们提供的证据表明,异位表达CDC6可抑制mcm1突变体的复制缺陷。SWI4和CLN3的周期性表达可能对细胞周期进程很重要,因为我们发现这两个基因对于G1期进程而言单倍剂量不足且具有速率限制作用。我们认为,ECB调控的基因产物在促进S期起始过程中发挥关键作用,这既通过调控CLN1和CLN2的转录,也作为复制起点起始复合物的组成部分来实现。

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