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A genomic study of the inter-ORF distances in Saccharomyces cerevisiae

机译:酿酒酵母中ORF间距离的基因组研究

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摘要

The genome of eukaryotic microbes is usually quite compacted. The yeast Saccharomyces cerevisiae is one of the best-known examples. Open reading frames (ORFs) occupy about 75% of the total DNA sequence. The existence of other, non-protein coding genes and other genetic elements leaves very little space for gene promoters and terminators. We have performed an in silico study of inter-ORF distances that shows that there is a minimum distance between two adjacent ORFs that depends on the relative orientation between them. Our analyses suggest that different kinds of promoters and terminators exist with regard to their length and ability to overlap each other. The experimental testing of some putative exceptions to the minimum length model in tandemly orientated ORF pairs suggests that, in those cases, defects in promoter or terminator functionality exist that provoke transcription of polycistronic mRNAs.
机译:真核微生物的基因组通常非常紧凑。酵母啤酒酵母是最著名的例子之一。开放阅读框(ORF)占总DNA序列的约75%。其他非蛋白质编码基因和其他遗传元件的存在为基因启动子和终止子留下了很小的空间。我们对ORF之间的距离进行了计算机分析,结果表明两个相邻ORF之间存在最小距离,这取决于它们之间的相对方向。我们的分析表明,就其长度和彼此重叠的能力而言,存在不同种类的启动子和终止子。在串联定向ORF对中对最小长度模型的某些假定例外的实验测试表明,在这些情况下,存在启动子或终止子功能的缺陷,这些缺陷会引起多顺反子mRNA的转录。

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