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Toward a resolution of the introns early/late debate: Only phase zero introns are correlated with the structure of ancient proteins

机译:为了解决内含子的早期/晚期争论:只有零相内含子与古代蛋白质的结构相关

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摘要

We present evidence that a well defined subset of intron positions shows a non-random distribution in ancient genes. We analyze a database of ancient conserved regions drawn from GenBank 101 to retest two predictions of the theory that the first genes were constructed by exon shuffling. These predictions are that there should be an excess of symmetric exons (and sets of exons) flanked by introns of the same phase (positions within the codon) and that intron positions in ancient proteins should correlate with the boundaries of compact protein modules. Both these predictions are supported by the data, with considerable statistical force (P values < 0.0001). Intron positions correlate to modules of diameters around 21, 27, and 33 Å, and this correlation is due to phase zero introns. We suggest that 30–40% of present day intron positions in ancient genes correspond to phase zero introns originally present in the progenote, while almost all of the remaining intron positions correspond to introns added, or moved, appearing equally in all three intron phases. This proposal provides a resolution for many of the arguments of the introns-early/introns-late debate.
机译:我们提供的证据表明,内含子位置的明确定义的子集显示了古代基因中的非随机分布。我们分析了一个从GenBank 101提取的古代保守区的数据库,以重新检验关于第一个基因是通过外显子改组构建的理论的两个预测。这些预测是,应该有过量的对称外显子(和外显子组)与同相内含子(密码子内的位置)侧接,并且古代蛋白质中的内含子位置应与致密蛋白质模块的边界相关。这些预测都得到了数据的支持,并具有相当大的统计力(P值<0.0001)。内含子位置与直径约21、27和33 modules的模数相关,并且这种相关性是由于零相内含子。我们建议,古代基因中当前内含子位置的30–40%对应于原始存在于该先生子中的零相内含子,而几乎所有其余的内含子位置都对应于添加或移动的内含子,在所有三个内含子相中均等地出现。该提议为内含子-早期/内含子-后期辩论的许多论点提供了解决方案。

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