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Genome-wide studies of mRNA synthesis and degradation in eukaryotes

机译:全基因组的真核生物mRNA合成和降解研究

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In recent years, the use of genome-wide technologies has revolutionized the study of eukaryotic transcription producing results for thousands of genes at every step of mRNA life. The statistical analyses of the results for a single condition, different conditions, different transcription stages, or even between different techniques, is outlining a totally new landscape of the eukaryotic transcription process. Although most studies have been conducted in the yeast Saccharomyces cerevisiae as a model cell, others have also focused on higher eukaryotes, which can also be comparatively analyzed. The picture which emerges is that transcription is a more variable process than initially suspected, with large differences between genes at each stage of the process, from initiation to mRNA degradation, but with striking similarities for functionally related genes, indicating that all steps are coordinately regulated. This article is part of a Special Issue entitled: Nuclear Transport and RNA Processing.
机译:近年来,全基因组技术的使用彻底改变了真核转录的研究,从而在mRNA生命的每个步骤中产生了成千上万个基因。对单个条件,不同条件,不同转录阶段甚至不同技术之间的结果进行统计分析,概述了真核转录过程的全新面貌。尽管大多数研究都是在酵母酿酒酵母中作为模型细胞进行的,但其他研究也集中在高级真核生物上,这也可以进行比较分析。出现的情况是,转录是一个比最初怀疑的过程更可变的过程,在该过程的每个阶段,从起始到mRNA降解,各基因之间的差异都很大,但是功能相关基因具有惊人的相似性,这表明所有步骤都受到协调调控。本文是名为“核转运和RNA处理”的特刊的一部分。

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