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蛋白激酶 A 和 TORC1 通过失活由 Dot6 和其同源物 Tod6 编码的阻遏物来激活核糖体生物发生的基因。

Protein kinase A and TORC1 activate genes for ribosomal biogenesis by inactivating repressors encoded by Dot6 and its homolog Tod6.

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.

出版信息

Proc Natl Acad Sci U S A. 2009 Nov 24;106(47):19928-33. doi: 10.1073/pnas.0907027106. Epub 2009 Nov 9.

Abstract

Genes required for ribosome biogenesis in yeast, referred to collectively as the Ribi regulon, are tightly regulated in coordination with nutrient availability and cellular growth rate. The promoters of a significant fraction of Ribi genes contain one or more copies of the RNA polymerases A and C (PAC) and/or ribosomal RNA-processing element (RRPE) motifs. Prompted by recent studies showing that the yeast protein Dot6 and its homolog Tod6 can bind to a PAC motif sequence in vitro and are required for efficient Ribi gene repression in response to heat shock, we have examined the role of Dot6 and Tod6 in nutrient control of Ribi gene expression in vivo. Our results indicate that PAC sites function as Dot6/Tod6-dependent repressor elements in vivo. Moreover, Dot6 and Tod6 mediate different nutrient signals, with Tod6 responsible for efficient repression of Ribi genes after inhibition of the nitrogen-sensitive TORC1 pathway and Dot6 responsible for repression after inhibition of the carbon-sensitive protein kinase A signaling pathway. Consistently, Dot6 and Tod6 are required for efficient repression of Ribi gene repression immediately after nutrient deprivation and for successful adaptation to nutrient limitation. Thus, these results establish Dot6/Tod6 as a direct link between nutrient availability, Ribi gene regulation, and growth control.

摘要

酵母核糖体生物发生所需的基因,统称为 Ribi 调控基因,与营养可用性和细胞生长速率密切协调。Ribi 基因的一个重要部分的启动子包含一个或多个 RNA 聚合酶 A 和 C(PAC)和/或核糖体 RNA 加工元件(RRPE)基序。最近的研究表明,酵母蛋白 Dot6 和其同源物 Tod6 可以在体外与 PAC 基序序列结合,并在响应热休克时有效地抑制 Ribi 基因表达,这促使我们研究了 Dot6 和 Tod6 在体内营养控制 Ribi 基因表达中的作用。我们的结果表明,PAC 位点在体内作为 Dot6/Tod6 依赖性阻遏元件发挥作用。此外,Dot6 和 Tod6 介导不同的营养信号,其中 Tod6 负责在抑制氮敏感 TORC1 途径后有效地抑制 Ribi 基因的表达,而 Dot6 负责在抑制碳敏感蛋白激酶 A 信号通路后抑制 Ribi 基因的表达。一致地,Dot6 和 Tod6 是在营养剥夺后立即有效地抑制 Ribi 基因表达和成功适应营养限制所必需的。因此,这些结果将 Dot6/Tod6 确立为营养可用性、Ribi 基因调控和生长控制之间的直接联系。

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