Characterizing inactive ribosomes in translational profiling.

Translation (Austin, Tex.) Pub Date : 2016-01-08 eCollection Date: 2016-01-01 DOI:10.1080/21690731.2015.1138018
Botao Liu, Shu-Bing Qian
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引用次数: 27

Abstract

The broad impact of translational regulation has emerged explosively in the last few years in part due to the technological advance in genome-wide interrogation of gene expression. During mRNA translation, the majority of actively translating ribosomes exist as polysomes in cells with multiple ribosomes loaded on a single transcript. The importance of the monosome, however, has been less appreciated in translational profiling analysis. Here we report that the monosome fraction isolated by sucrose sedimentation contains a large quantity of inactive ribosomes that do not engage on mRNAs to direct translation. We found that the elongation factor eEF2, but not eEF1A, stably resides in these non-translating ribosomes. This unique feature permits direct evaluation of ribosome status under various stress conditions and in the presence of translation inhibitors. Ribosome profiling reveals that the monosome has a similar but not identical pattern of ribosome footprints compared to the polysome. We show that the association of free ribosomal subunits minimally contributes to ribosome occupancy outside of the coding region. Our results not only offer a quantitative method to monitor ribosome availability, but also uncover additional layers of ribosome status needed to be considered in translational profiling analysis.

Abstract Image

Abstract Image

翻译分析中非活性核糖体的特征。
翻译调控的广泛影响在过去几年中出现了爆炸式的增长,部分原因是基因表达全基因组调查的技术进步。在mRNA翻译过程中,大多数积极翻译的核糖体以多体形式存在于细胞中,多个核糖体装载在单个转录物上。然而,单体的重要性在翻译分析中很少得到重视。在这里,我们报告了通过蔗糖沉降分离的单体部分含有大量不参与mrna直接翻译的无活性核糖体。我们发现延伸因子eEF2,而不是eEF1A,稳定地存在于这些非翻译核糖体中。这种独特的特征允许在各种应激条件下和翻译抑制剂存在下直接评估核糖体状态。核糖体分析显示,单体与多体具有相似但不相同的核糖体足迹模式。我们表明,自由核糖体亚基的结合对编码区外的核糖体占用的贡献最小。我们的研究结果不仅提供了一种监测核糖体可用性的定量方法,而且还揭示了在翻译分析中需要考虑的核糖体状态的其他层。
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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