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从真核细胞核RNA聚合酶亚基基因的外显子-内含子组织看其分子进化与结构

[Molecular evolution and structure of eukaryotic nuclear RNA polymerase subunits in light of the exon-intron organization of their genes].

作者信息

Shpakovskiĭ G V, Lebedenko E N

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia.

出版信息

Bioorg Khim. 1999 Nov;25(11):828-37.

Abstract

Analysis of literary data (for Saccharomyces cerevisiae, Caenorhabditis elegans, Arabidopsis thaliana, Homo sapiens, and some other Eucarya) and our data (for Schizosaccharomyces pombe) on the exon-intron organization of the genes encoding subunits of nuclear RNA polymerases showed that introns in the orthologous genes from different organisms are arranged nonrandomly, namely, their positions, if projected on the map of the comparison of the amino acid sequences of the orthologous subunits, not infrequently coincide in evolutionarily distant species. As a rule, intron positions correspond to the boundaries of the structurally conserved regions (domains) or to the sites of possible turns of the polypeptide chain. For example, introns flank the secondary structure elements in the Rpb8 subunit with the known three-dimensional structure or the structure-function modules in subunits Rpb10 and Rpc10. These facts are in agreement with the idea of the ancient origin of introns, and with the notion of evolution of ancient protein sequences through the assembly of their genes from short protoexons selected by the nature as far back as the RNA world times. Comparative analysis of the primary structures of the subunits of eukaryotic RNA polymerases allowed us to reveal a nuclear localization signal in subunit Rpb10 and some hypothetical archaeal homologues of subunit Rpc10.

摘要

对文学数据(关于酿酒酵母、秀丽隐杆线虫、拟南芥、智人以及其他一些真核生物)和我们自己的数据(关于粟酒裂殖酵母)进行分析,这些数据涉及编码核RNA聚合酶亚基的基因的外显子-内含子组织,结果表明不同生物体直系同源基因中的内含子排列并非随机,也就是说,如果将它们的位置投影到直系同源亚基氨基酸序列比较图上,在进化距离较远的物种中其位置常常重合。通常,内含子位置对应于结构保守区域(结构域)的边界或多肽链可能发生转折的位点。例如,内含子位于具有已知三维结构的Rpb8亚基的二级结构元件两侧,或位于Rpb10和Rpc10亚基的结构-功能模块两侧。这些事实与内含子起源古老的观点一致,也与早在RNA世界时期通过从自然界选择的短原外显子组装其基因来进化古老蛋白质序列的概念相符。对真核生物RNA聚合酶亚基一级结构的比较分析使我们能够在Rpb10亚基和Rpc10亚基的一些假定古细菌同源物中揭示出核定位信号。

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