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来自嗜热栖热菌的小亚基核糖体RNA的转录后修饰,包括一种新型修饰胞苷的存在。

Post-transcriptional modifications in the small subunit ribosomal RNA from Thermotoga maritima, including presence of a novel modified cytidine.

作者信息

Guymon Rebecca, Pomerantz Steven C, Ison J Nicholas, Crain Pamela F, McCloskey James A

机构信息

Department of Medical Chemistry, University of Utah, Salt Lake City 84112, USA.

出版信息

RNA. 2007 Mar;13(3):396-403. doi: 10.1261/rna.361607. Epub 2007 Jan 25.

Abstract

Post-transcriptional modifications of RNA are nearly ubiquitous in the principal RNAs involved in translation. However, in the case of rRNA the functional roles of modification are far less established than for tRNA, and are subject to less knowledge in terms of specific nucleoside identities and their sequence locations. Post-transcriptional modifications have been studied in the SSU rRNA from Thermotoga maritima (optimal growth 80 degrees C), one of the most deeply branched organisms in the Eubacterial phylogenetic tree. A total of 10 different modified nucleosides were found, the greatest number reported for bacterial SSU rRNA, occupying a net of approximately 14 sequence sites, compared with a similar number of sites recently reported for Thermus thermophilus and 11 for Escherichia coli. The relatively large number of modifications in Thermotoga offers modest support for the notion that thermophile rRNAs are more extensively modified than those from mesophiles. Seven of the Thermotoga modified sites are identical (location and identity) to those in E. coli. An unusual derivative of cytidine was found, designated N-330 (Mr 330.117), and was sequenced to position 1404 in the decoding region of the rRNA. It was unexpectedly found to be identical to an earlier reported nucleoside of unknown structure at the same location in the SSU RNA of the archaeal mesophile Haloferax volcanii.

摘要

RNA的转录后修饰在参与翻译的主要RNA中几乎无处不在。然而,就核糖体RNA(rRNA)而言,修饰的功能作用远不如转运RNA(tRNA)那样明确,而且在特定核苷的身份及其序列位置方面了解较少。转录后修饰已在嗜热栖热菌(最佳生长温度80摄氏度)的小亚基rRNA中进行了研究,嗜热栖热菌是真细菌系统发育树中分支最深的生物之一。总共发现了10种不同的修饰核苷,这是报道的细菌小亚基rRNA中数量最多的,占据了大约14个序列位点,相比之下,最近报道的嗜热栖热放线菌有类似数量的位点,大肠杆菌有11个位点。嗜热栖热菌中相对大量的修饰为嗜热菌rRNA比中温菌rRNA修饰更广泛这一观点提供了一定支持。嗜热栖热菌的7个修饰位点与大肠杆菌中的相同(位置和身份)。发现了一种不寻常的胞苷衍生物,命名为N - 330(分子量330.117),并对其进行测序,确定其位于rRNA解码区域的1404位。意外发现它与古生菌中温菌嗜盐栖热菌的小亚基RNA相同位置上先前报道的一种结构未知的核苷相同。

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