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含O-β-D-呋喃核糖基-(1''-2')-腺苷-5''-磷酸和1-甲基腺苷的RNA的合成,tRNA的次要成分

Synthesis of RNA containing O-beta-D-ribofuranosyl-(1''-2')-adenosine-5''-phosphate and 1-methyladenosine, minor components of tRNA.

作者信息

Mikhailov Sergey N, Efimtseva Ekaterina V, Rodionov Andrei A, Shelkunova Alexandra A, Rozenski Jef, Emmerechts Gert, Schepers Guy, Van Aerschot Arthur, Herdewijn Piet

机构信息

Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilov str. 32, Moscow, 119991, Russia.

出版信息

Chem Biodivers. 2005 Sep;2(9):1153-63. doi: 10.1002/cbdv.200590085.

Abstract

tRNA is best known for its function as amino acid carrier in the translation process, using the anticodon loop in the recognition process with mRNA. However, the impact of tRNA on cell function is much wider, and mutations in tRNA can lead to a broad range of diseases. Although the cloverleaf structure of tRNA is well-known based on X-ray-diffraction studies, little is known about the dynamics of this fold, the way structural dynamics of tRNA is influenced by the modified nucleotides present in tRNA, and their influence on the recognition of tRNA by synthetases, ribosomes, and other biomolecules. One of the reasons for this is the lack of good synthetic methods to incorporate modified nucleotides in tRNA so that larger amounts become available for NMR studies. Except of 2'-O-methylated nucleosides, only one other sugar-modified nucleoside is present in tRNA, i.e., 2'-O-beta-D-ribofuranosyl nucleosides. The T loop of tRNA often contains charged modified nucleosides, of which 1-methyladenosine and phosphorylated disaccharide nucleosides are striking examples. A protecting-group strategy was developed to introduce 1-methyladenosine and 5''-O-phosphorylated 2'-O-(beta-D-ribofuranosyl)-beta-D-ribofuranosyladenine in the same RNA fragment. The phosphorylation of the disaccharide nucleoside was performed after the assembly of the RNA on solid support. The modified RNA was characterized by mass-spectrometry analysis from the RNase T1 digestion fragments. The successful synthesis of this T loop of the tRNA of Schizosaccharomyces pombe initiator tRNA(Met) will be followed by its structural analysis by NMR and by studies on the influence of these modified nucleotides on dynamic interactions within the complete tRNA.

摘要

转运RNA(tRNA)最为人所知的功能是在翻译过程中作为氨基酸载体,在与信使RNA(mRNA)的识别过程中使用反密码子环。然而,tRNA对细胞功能的影响要广泛得多,tRNA中的突变会导致多种疾病。尽管基于X射线衍射研究,tRNA的三叶草结构广为人知,但对于这种折叠的动力学、tRNA的结构动力学如何受到tRNA中存在的修饰核苷酸的影响,以及它们对合成酶、核糖体和其他生物分子识别tRNA的影响,人们却知之甚少。造成这种情况的原因之一是缺乏将修饰核苷酸掺入tRNA的良好合成方法,以便获得更多用于核磁共振(NMR)研究的材料。除了2'-O-甲基化核苷外,tRNA中仅存在另一种糖修饰核苷,即2'-O-β-D-呋喃核糖核苷。tRNA的T环通常含有带电荷修饰核苷,其中1-甲基腺苷和磷酸化二糖核苷就是突出的例子。人们开发了一种保护基团策略,以便在同一RNA片段中引入1-甲基腺苷和5''-O-磷酸化的2'-O-(β-D-呋喃核糖基)-β-D-呋喃核糖基腺嘌呤。二糖核苷的磷酸化是在RNA在固体支持物上组装后进行的。通过对核糖核酸酶T1消化片段进行质谱分析来表征修饰后的RNA。在成功合成粟酒裂殖酵母起始tRNA(Met)的tRNA的这个T环之后,将通过核磁共振对其进行结构分析,并研究这些修饰核苷酸对完整tRNA内动态相互作用的影响。

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