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转运RNA的7-脱氮鸟苷超修饰核苷的生物合成。

Biosynthesis of the 7-deazaguanosine hypermodified nucleosides of transfer RNA.

作者信息

Iwata-Reuyl Dirk

机构信息

Department of Chemistry, Portland State University, P.O. Box 751, Portland, OR 97201, USA.

出版信息

Bioorg Chem. 2003 Feb;31(1):24-43. doi: 10.1016/s0045-2068(02)00513-8.

Abstract

Transfer RNA (tRNA) is structurally unique among nucleic acids in harboring an astonishing diversity of post-transcriptionally modified nucleoside. Two of the most radically modified nucleosides known to occur in tRNA are queuosine and archaeosine, both of which are characterized by a 7-deazaguanosine core structure. In spite of the phylogenetic segregation observed for these nucleosides (queuosine is present in Eukarya and Bacteria, while archaeosine is present only in Archaea), their structural similarity suggested a common biosynthetic origin, and recent biochemical and genetic studies have provided compelling evidence that a significant portion of their biosynthesis may in fact be identical. This review covers current understanding of the physiology and biosynthesis of these remarkable nucleosides, with particular emphasis on the only two enzymes that have been discovered in the pathways: tRNA-guanine transglycosylase (TGT), which catalyzes the insertion of a modified base into the polynucleotide with the concomitant elimination of the genetically encoded guanine in the biosynthesis of both nucleosides, and S-adenosylmethionine:tRNA ribosyltransferase-isomerase (QueA), which catalyzes the penultimate step in the biosynthesis of queuosine, the construction of the carbocyclic side chain.

摘要

转运RNA(tRNA)在核酸中结构独特,含有种类惊人的转录后修饰核苷。已知tRNA中存在的两种修饰最为彻底的核苷是queuosine和archaeosine,二者均以7-脱氮鸟苷核心结构为特征。尽管观察到这些核苷存在系统发育隔离(queuosine存在于真核生物和细菌中,而archaeosine仅存在于古细菌中),但它们的结构相似性表明其生物合成起源相同,最近的生化和遗传学研究提供了有力证据,表明它们生物合成的很大一部分实际上可能是相同的。本综述涵盖了对这些非凡核苷的生理学和生物合成的当前理解,特别强调了在这些途径中发现的仅有的两种酶:tRNA-鸟嘌呤转糖基酶(TGT),它在两种核苷的生物合成中催化将修饰碱基插入多核苷酸,并伴随消除遗传编码的鸟嘌呤;以及S-腺苷甲硫氨酸:tRNA核糖基转移酶-异构酶(QueA),它催化queuosine生物合成的倒数第二步,即构建碳环侧链。

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