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首页> 外文期刊>PLoS Biology >Chromatin- and Transcription-Related Factors Repress Transcription from within Coding Regions throughout the Saccharomyces cerevisiae Genome
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Chromatin- and Transcription-Related Factors Repress Transcription from within Coding Regions throughout the Saccharomyces cerevisiae Genome

机译:染色质和转录相关因子可抑制整个酿酒酵母基因组编码区域内的转录。

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摘要

Previous studies in Saccharomyces cerevisiae have demonstrated that cryptic promoters within coding regions activate transcription in particular mutants. We have performed a comprehensive analysis of cryptic transcription in order to identify factors that normally repress cryptic promoters, to determine the amount of cryptic transcription genome-wide, and to study the potential for expression of genetic information by cryptic transcription. Our results show that a large number of factors that control chromatin structure and transcription are required to repress cryptic transcription from at least 1,000 locations across the S. cerevisiae genome. Two results suggest that some cryptic transcripts are translated. First, as expected, many cryptic transcripts contain an ATG and an open reading frame of at least 100 codons. Second, several cryptic transcripts are translated into proteins. Furthermore, a subset of cryptic transcripts tested is transiently induced in wild-type cells following a nutritional shift, suggesting a possible physiological role in response to a change in growth conditions. Taken together, our results demonstrate that, during normal growth, the global integrity of gene expression is maintained by a wide range of factors and suggest that, under altered genetic or physiological conditions, the expression of alternative genetic information may occur.
机译:先前在酿酒酵母中的研究表明,编码区内的隐秘启动子可激活特定突变体中的转录。我们已经对隐秘转录进行了全面分析,以便确定通常抑制隐秘启动子的因素,确定全基因组隐秘转录的数量,并研究通过隐秘转录表达遗传信息的潜力。我们的结果表明,需要许多控制染色质结构和转录的因子来抑制酿酒酵母基因组中至少1,000个位置的隐性转录。有两个结果表明,翻译了一些隐秘的笔录。首先,正如预期的那样,许多密码本都包含一个ATG和一个至少100个密码子的开放阅读框。其次,将一些隐秘的转录本翻译成蛋白质。此外,在营养转移后,野生型细胞中短暂诱导了一部分被测试的隐秘转录物,提示其可能对生长条件的变化起生理作用。综上所述,我们的结果表明,在正常生长过程中,基因表达的整体完整性受到多种因素的影响,并暗示在改变的遗传或生理条件下,可能会出现其他遗传信息的表达。

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