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具有卓越翻译特性的新型“抗反转”帽类似物。

Novel "anti-reverse" cap analogs with superior translational properties.

作者信息

Jemielity Jacek, Fowler Tolvert, Zuberek Joanna, Stepinski Janusz, Lewdorowicz Magdalena, Niedzwiecka Anna, Stolarski Ryszard, Darzynkiewicz Edward, Rhoads Robert E

机构信息

Department of Biophysics, Warsaw University, 02-089 Warsaw, Poland.

出版信息

RNA. 2003 Sep;9(9):1108-22. doi: 10.1261/rna.5430403.

Abstract

Synthetic analogs of the 5'-terminal caps of eukaryotic mRNAs and snRNAs are used in elucidating such physiological processes as mRNA translation, pre-mRNA splicing, intracellular transport of mRNA and snRNAs, and mRNA turnover. Particularly useful are RNAs capped with synthetic analogs, which are produced by in vitro transcription of a DNA template using a bacteriophage RNA polymerase in the presence of ribonucleoside triphosphates and a cap dinucleotide such as m(7)Gp(3)G. Unfortunately, because of the presence of a 3'-OH on both the m(7)Guo and Guo moieties, up to half of the mRNAs contain caps incorporated in the reverse orientation. Previously we designed and synthesized two "anti-reverse" cap analogs (ARCAs), m(7)3'dGp(3)G and m(2)(7,3'-)(O)Gp(3)G, that cannot be incorporated in the reverse orientation because of modifications at the C3' position of m(7)Guo. In the present study, we have synthesized seven new cap analogs modified in the C2' and C3' positions of m(7)Guo and in the number of phosphate residues, m(2)(7,2'-)(O)Gp(3)G, m(7)2'dGp(3)G, m(7)2'dGp(4)G, m(2)(7,2'-)(O)Gp(4)G, m(2)(7,3'-)(O)Gp(4)G, m(7)Gp(5)G, and m(2)(7,3'-)(O)Gp(5)G. These were analyzed for conformation in solution, binding affinity to eIF4E, inhibition of in vitro translation, degree of reverse capping during in vitro transcription, capping efficiency, and the ability to stimulate cap-dependent translation in vitro when incorporated into mRNA. The results indicate that modifications at C2', like those at C3', prevent reverse incorporation, that tetra- and pentaphosphate cap analogs bind eIF4E and inhibit translation more strongly than their triphosphate counterparts, and that tetraphosphate ARCAs promote cap-dependent translation more effectively than previous cap analogs.

摘要

真核生物mRNA和snRNA的5'-末端帽的合成类似物被用于阐明诸如mRNA翻译、前体mRNA剪接、mRNA和snRNA的细胞内运输以及mRNA周转等生理过程。特别有用的是用合成类似物加帽的RNA,其通过在核糖核苷三磷酸和帽二核苷酸(如m(7)Gp(3)G)存在下使用噬菌体RNA聚合酶对DNA模板进行体外转录产生。不幸的是,由于m(7)Guo和Guo部分上都存在3'-OH,高达一半的mRNA包含以反向掺入的帽。以前我们设计并合成了两种“抗反向”帽类似物(ARCAs),即m(7)3'dGp(3)G和m(2)(7,3'-)(O)Gp(3)G,由于m(7)Guo的C3'位置的修饰,它们不能以反向掺入。在本研究中,我们合成了七种新的帽类似物,它们在m(7)Guo的C2'和C3'位置以及磷酸残基数量上有所修饰,分别为m(2)(7,2'-)(O)Gp(3)G、m(7)2'dGp(3)G、m(7)2'dGp(4)G、m(2)(7,2'-)(O)Gp(4)G、m(2)(7,3'-)(O)Gp(4)G、m(7)Gp(5)G和m(2)(7,3'-)(O)Gp(5)G。对这些类似物进行了溶液构象分析、与eIF4E的结合亲和力分析、体外翻译抑制分析、体外转录过程中的反向加帽程度分析、加帽效率分析以及掺入mRNA后在体外刺激帽依赖性翻译的能力分析。结果表明,C2'位置的修饰与C3'位置的修饰一样,可防止反向掺入,四磷酸和五磷酸帽类似物比其三磷酸对应物更强烈地结合eIF4E并抑制翻译,并且四磷酸ARCA比以前的帽类似物更有效地促进帽依赖性翻译。

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