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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Sfp1 regulates transcriptional networks driving cell growth and division through multiple promoter-binding modes
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Sfp1 regulates transcriptional networks driving cell growth and division through multiple promoter-binding modes

机译:SFP1通过多个启动子结合模式调节驱动细胞生长和划分的转录网络

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摘要

The yeast Sfp1 protein regulates both cell division and growth but how it coordinates these processes is poorly understood. We demonstrate that Sfp1 directly controls genes required for ribosome production and many other growth-promoting processes. Remarkably, the complete set of Sfp1 target genes is revealed only by a combination of ChIP (chromatin immunoprecipitation) and ChEC (chromatin endogenous cleavage) methods, which uncover two promoter binding modes, one requiring a cofactor and the other a DNA-recognition motif. Glucose-regulated Sfp1 binding at cell cycle "START" genes suggests that Sfp1 controls cell size by coordinating expression of genes implicated in mass accumulation and cell division.
机译:酵母SFP1蛋白调节细胞分裂和生长,但它如何协调这些过程知之甚少。 我们证明SFP1直接控制核糖体生产所需的基因以及许多其他生长促进过程。 值得注意的是,仅通过芯片(染色质免疫沉淀)和CHEC(染色质内源性裂解)方法的组合揭示了完整的SFP1靶基因,该方法揭示了另外两个启动子结合模式,需要辅因子和另一个DNA识别基序。 在细胞周期“开始”基因下的葡萄糖调节的SFP1结合表明SFP1通过协调涉及质量积聚和细胞分裂的基因的表达来控制细胞尺寸。

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