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真核生物中营养物质调控的基因表达。

Nutrient-regulated gene expression in eukaryotes.

作者信息

Reece Richard J, Beynon Laila, Holden Stacey, Hughes Amanda D, Rébora Karine, Sellick Christopher A

机构信息

Faculty of Life Sciences, University of Manchester, The Michael Smith Building, Oxford Road, Manchester M13 9PT, UK.

出版信息

Biochem Soc Symp. 2006(73):85-96. doi: 10.1042/bss0730085.

Abstract

The recognition of changes in environmental conditions, and the ability to adapt to these changes, is essential for the viability of cells. There are numerous well characterized systems by which the presence or absence of an individual metabolite may be recognized by a cell. However, the recognition of a metabolite is just one step in a process that often results in changes in the expression of whole sets of genes required to respond to that metabolite. In higher eukaryotes, the signalling pathway between metabolite recognition and transcriptional control can be complex. Recent evidence from the relatively simple eukaryote yeast suggests that complex signalling pathways may be circumvented through the direct interaction between individual metabolites and regulators of RNA polymerase II-mediated transcription. Biochemical and structural analyses are beginning to unravel these elegant genetic control elements.

摘要

识别环境条件的变化并适应这些变化的能力,对于细胞的生存能力至关重要。细胞有许多特征明确的系统,通过这些系统细胞可以识别单个代谢物的存在或缺失。然而,代谢物的识别只是一个过程中的一步,这个过程通常会导致对该代谢物做出反应所需的整套基因表达发生变化。在高等真核生物中,代谢物识别与转录控制之间的信号通路可能很复杂。来自相对简单的真核生物酵母的最新证据表明,复杂的信号通路可能通过单个代谢物与RNA聚合酶II介导转录的调节因子之间的直接相互作用而被绕过。生化和结构分析开始揭示这些精妙的遗传控制元件。

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