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真核生物和细菌的小亚基核糖体 RNA 的晶体结构比较显示了超变区的共同结构特征。

A comparison of the crystal structures of eukaryotic and bacterial SSU ribosomal RNAs reveals common structural features in the hypervariable regions.

机构信息

Center for Computational Biology and Bioinformatics, Institute for Cellular and Molecular Biology, and Section of Integrative Biology, The University of Texas at Austin, Austin, Texas, United States of America.

出版信息

PLoS One. 2012;7(5):e38203. doi: 10.1371/journal.pone.0038203. Epub 2012 May 31.

Abstract

While the majority of the ribosomal RNA structure is conserved in the three major domains of life--archaea, bacteria, and eukaryotes, specific regions of the rRNA structure are unique to at least one of these three primary forms of life. In particular, the comparative secondary structure for the eukaryotic SSU rRNA contains several regions that are different from the analogous regions in the bacteria. Our detailed analysis of two recently determined eukaryotic 40S ribosomal crystal structures, Tetrahymena thermophila and Saccharomyces cerevisiae, and the comparison of these results with the bacterial Thermus thermophilus 30S ribosomal crystal structure: (1) revealed that the vast majority of the comparative structure model for the eukaryotic SSU rRNA is substantiated, including the secondary structure that is similar to both bacteria and archaea as well as specific for the eukaryotes, (2) resolved the secondary structure for regions of the eukaryotic SSU rRNA that were not determined with comparative methods, (3) identified eukaryotic helices that are equivalent to the bacterial helices in several of the hypervariable regions, (4) revealed that, while the coaxially stacked compound helix in the 540 region in the central domain maintains the constant length of 10 base pairs, its two constituent helices contain 5+5 bp rather than the 6+4 bp predicted with comparative analysis of archaeal and eukaryotic SSU rRNAs.

摘要

虽然核糖体 RNA 结构的大部分在生命的三个主要领域(古菌、细菌和真核生物)中是保守的,但 rRNA 结构的特定区域至少是这三种主要生命形式之一所特有的。特别是,真核生物的 SSU rRNA 的比较二级结构包含几个与细菌中类似区域不同的区域。我们对最近确定的两个真核 40S 核糖体晶体结构(嗜热四膜虫和酿酒酵母)进行了详细分析,并将这些结果与细菌 Thermus thermophilus 30S 核糖体晶体结构进行了比较:(1)揭示了真核生物 SSU rRNA 的大部分比较结构模型是合理的,包括与细菌和古菌相似的二级结构以及真核生物特有的二级结构,(2)解决了真核生物 SSU rRNA 中未通过比较方法确定的二级结构区域,(3)确定了真核生物螺旋与细菌在几个超变区中的螺旋相当,(4)揭示了在中央域的 540 区域中同轴堆叠的复合螺旋保持 10 个碱基对的恒定长度,但其两个组成螺旋包含 5+5bp 而不是通过对古菌和真核生物 SSU rRNA 的比较分析预测的 6+4bp。

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