Translational Regulation of Cytoplasmic mRNAs.

The arabidopsis book Pub Date : 2013-07-18 Print Date: 2013-01-01 DOI:10.1199/tab.0165
Bijoyita Roy, Albrecht G von Arnim
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引用次数: 0

Abstract

Translation of the coding potential of a messenger RNA into a protein molecule is a fundamental process in all living cells and consumes a large fraction of metabolites and energy resources in growing cells. Moreover, translation has emerged as an important control point in the regulation of gene expression. At the level of gene regulation, translational control is utilized to support the specific life histories of plants, in particular their responses to the abiotic environment and to metabolites. This review summarizes the diversity of translational control mechanisms in the plant cytoplasm, focusing on specific cases where mechanisms of translational control have evolved to complement or eclipse other levels of gene regulation. We begin by introducing essential features of the translation apparatus. We summarize early evidence for translational control from the pre-Arabidopsis era. Next, we review evidence for translation control in response to stress, to metabolites, and in development. The following section emphasizes RNA sequence elements and biochemical processes that regulate translation. We close with a chapter on the role of signaling pathways that impinge on translation.

细胞质 mRNA 的翻译调控。
将信使 RNA 的编码潜能翻译成蛋白质分子是所有活细胞的基本过程,在细胞生长过程中会消耗大量的代谢物和能量资源。此外,翻译已成为基因表达调控的一个重要控制点。在基因调控层面,翻译控制被用来支持植物的特定生活史,特别是它们对非生物环境和代谢物的反应。本综述总结了植物细胞质中转译调控机制的多样性,重点关注转译调控机制进化到补充或削弱其他基因调控水平的具体案例。我们首先介绍了翻译装置的基本特征。我们总结了拟南芥前期翻译控制的早期证据。接下来,我们回顾了翻译控制在响应压力、代谢物和发育过程中的证据。接下来的章节强调了调节翻译的 RNA 序列元素和生化过程。最后,我们将介绍影响翻译的信号通路的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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