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A First Look at ARFome: Dual-Coding Genes in Mammalian Genomes

机译:初步了解ARFome:哺乳动物基因组中的双重编码基因

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摘要

Coding of multiple proteins by overlapping reading frames is not a feature one would associate with eukaryotic genes. Indeed, codependency between codons of overlapping protein-coding regions imposes a unique set of evolutionary constraints, making it a costly arrangement. Yet in cases of tightly coexpressed interacting proteins, dual coding may be advantageous. Here we show that although dual coding is nearly impossible by chance, a number of human transcripts contain overlapping coding regions. Using newly developed statistical techniques, we identified 40 candidate genes with evolutionarily conserved overlapping coding regions. Because our approach is conservative, we expect mammals to possess more dual-coding genes. Our results emphasize that the skepticism surrounding eukaryotic dual coding is unwarranted: rather than being artifacts, overlapping reading frames are often hallmarks of fascinating biology.
机译:通过重叠阅读框对多种蛋白质进行编码不是将与真核基因相关联的特征。实际上,重叠蛋白质编码区的密码子之间的相互依赖性强加了一组独特的进化限制,使其成为昂贵的安排。然而,在相互作用蛋白紧密共表达的情况下,双重编码可能是有利的。在这里,我们显示尽管几乎不可能偶然进行双重编码,但是许多人类转录本都包含重叠的编码区。使用最新开发的统计技术,我们确定了40个候选基因,它们在进化上保守了重叠的编码区。因为我们的方法很保守,所以我们期望哺乳动物拥有更多的双编码基因。我们的研究结果强调,围绕真核生物双重编码的怀疑是没有根据的:重叠的阅读框不是假象,而是通常是令人着迷的生物学的标志。

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