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Transcriptional control of yeast ribosome biogenesis: A multifaceted role for general regulatory factors

机译:酵母核糖体生物发生的转录控制:一般监管因素的多方面作用

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摘要

In Saccharomyces cerevisiae, a group of more than 200 co-regulated genes (Ribi genes) is involved in ribosome biogenesis. This regulon has recently been shown to rely on a small set of transcriptional regulators (mainly Abf1, but also Reb1, Tbfl and Rap1) previously referred to as general regulatory factors (GRFs) because of their widespread binding and action at many promoters and other specialized genomic regions. Intriguingly, Abf1 binding to Ribi genes is differentially modulated in response to distinct nutrition signaling pathways. Such a dynamic promoter association has the potential to orchestrate both activation and repression of Ribi genes in synergy with neighboring regulatory sites and through the functional interplay of histone acetyltransferases and deacetylases.
机译:在酿酒酵母中,一组超过200个共调节基因(Ribi基因)涉及核糖体生物发生。 最近被证明依赖于一小组转录监管机构(主要是ABF1,也是REB1,TBFL和RAP1),原因是许多启动子和其他专业的普遍约束力和行动 基因组区域。 有趣的是,响应于不同的营养信号通路,差异调节与Ribi基因的ABF1结合。 这种动态启动子协会具有邻近调节部位的协同作用和通过组蛋白乙酰转移酶和脱乙酰酶的功能相互作用来协同协同作用的激活和抑制Ribi基因的潜力。

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