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酵母tRNA中鸟苷-26的N2-甲基化的识别元件。

Identity elements for N2-dimethylation of guanosine-26 in yeast tRNAs.

作者信息

Edqvist J, Grosjean H, Stråby K B

机构信息

Department of Microbiology, University of Umeå, Sweden.

出版信息

Nucleic Acids Res. 1992 Dec 25;20(24):6575-81. doi: 10.1093/nar/20.24.6575.

Abstract

N2,N2-dimethylguanosine (m2(2)G) is a characteristic nucleoside that is found in the bend between the dihydro-uridine (D) stem and the anticodon (AC) stem in over 80% of the eukaryotic tRNA species having guanosine at position 26 (G26). However, since a few eukaryotic tRNAs have an unmodified G in that position, G26 is a necessary but not a sufficient condition for dimethylation. In yeast tRNA(Asp) G26 is unmodified. We have successively changed the near surroundings of G26 in this tRNA until G26 became modified to m2(2)G by a tRNA(m2(2)G26)methyltransferase in Xenopus laevis oocytes. In this way we have identified the two D-stem basepairs C11-G24, G10-C25 immediately preceding G26 as major identity elements for the dimethylating enzyme modifying G26. Furthermore, increasing the extra loop in tRNA(Asp) from four to the more usual five bases influenced the global structure of the tRNA such that the m2(2)G26 formation was drastically decreased even if the near region of G26 had the two consensus basepairs. We conclude that not only are the two consensus base pairs in the D-stem a prerequisite for G26 modification, but also is any part of the tRNA molecule that influence the 3D-structure important for the recognition between nuclear coded tRNAs and the tRNA(m2(2)G26)methyltransferase.

摘要

N2,N2-二甲基鸟苷(m2(2)G)是一种特征性核苷,在超过80%的26位为鸟苷(G26)的真核tRNA物种中,它存在于二氢尿嘧啶(D)茎和反密码子(AC)茎之间的弯曲处。然而,由于少数真核tRNA在该位置有未修饰的G,所以G26是二甲基化的必要但不充分条件。在酵母tRNA(Asp)中,G26未被修饰。我们相继改变了该tRNA中G26的邻近区域,直到G26在非洲爪蟾卵母细胞中被tRNA(m2(2)G26)甲基转移酶修饰为m2(2)G。通过这种方式,我们确定了紧接在G26之前的两个D茎碱基对C11-G24、G10-C25是修饰G26的二甲基化酶的主要识别元件。此外,将tRNA(Asp)中的额外环从四个碱基增加到更常见的五个碱基,影响了tRNA的整体结构,使得即使G26的邻近区域有两个共有碱基对,m2(2)G26的形成也大幅减少。我们得出结论,不仅D茎中的两个共有碱基对是G26修饰的先决条件,而且tRNA分子中影响三维结构的任何部分对于核编码tRNA与tRNA(m2(2)G26)甲基转移酶之间的识别也很重要。

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