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tRNA中修饰核苷的酶促形成:对tRNA结构的依赖性。

Enzymatic formation of modified nucleosides in tRNA: dependence on tRNA architecture.

作者信息

Grosjean H, Edqvist J, Stråby K B, Giegé R

机构信息

Laboratoire d'Enzymologie du CNRS, Gif-sur-Yvette, France.

出版信息

J Mol Biol. 1996 Jan 12;255(1):67-85. doi: 10.1006/jmbi.1996.0007.

Abstract

Information is still quite limited concerning the structural requirements in tRNA molecules for their post-transcriptional maturation by base and ribose modification enzymes. To address this question, we have chosen as the model system yeast tRNAAsp that has a known three-dimensional structure and the in vivo modifying machinery of the Xenopus laevis oocyte able to act on microinjected tRNA precursors. We have systematically compared the modification pattern of wild-type tRNAAsp with that of a series of structural mutants (21 altogether) altered at single or multiple positions in the D-, T-and the anticodon branch, as well as in the variable region. The experimental system allowed us to analyze the effects of structural perturbations in tRNA on the enzymatic formation of modified nucleosides at 12 locations scattered over the tRNA cloverleaf. We found that the formation of m1G37 and psi 40 in the anticodon loop and stem and psi 13 in the D-stem, were extremely sensitive to 3D perturbations. In contrast, the formation of T54, psi 55 and m1A58 in the T-loop, m5C49 in the T-stem and m2G6 in the amino acid accepting stem were essentially insensitive to change in the overall tRNA architecture; these modified nucleosides were also formed in appropriate minimalist (stems and loops) tRNA domains. The formation of m2G26 at the junction between the anticodon and the D-stem, of Q34 and manQ34 in the anticodon loop were sensitive only to drastic structural perturbation of the tRNA. Altogether, these results reflect the existence of different modes of tRNA recognition by the many different modifying enzymes. A classification of this family of maturation enzymes into two major groups, according to their sensitivities to structural perturbations in tRNA, is proposed.

摘要

关于tRNA分子通过碱基和核糖修饰酶进行转录后成熟的结构要求,目前信息仍然非常有限。为了解决这个问题,我们选择了酵母天冬氨酸tRNA作为模型系统,它具有已知的三维结构,并且非洲爪蟾卵母细胞的体内修饰机制能够作用于显微注射的tRNA前体。我们系统地比较了野生型天冬氨酸tRNA与一系列结构突变体(共21个)的修饰模式,这些突变体在D环、T环和反密码子臂以及可变区的单个或多个位置发生了改变。该实验系统使我们能够分析tRNA结构扰动对遍布tRNA三叶草结构12个位置修饰核苷酶促形成的影响。我们发现,反密码子环和茎中的m1G37和ψ40以及D茎中的ψ13的形成对三维扰动极其敏感。相比之下,T环中的T54、ψ55和m1A58、T茎中的m5C49以及氨基酸接受茎中的m2G6的形成对tRNA整体结构的变化基本不敏感;这些修饰核苷也在适当的简约(茎和环)tRNA结构域中形成。反密码子与D茎交界处的m2G26、反密码子环中的Q34和甘露Q34的形成仅对tRNA的剧烈结构扰动敏感。总之,这些结果反映了许多不同修饰酶对tRNA识别的不同模式。根据它们对tRNA结构扰动的敏感性,将这个成熟酶家族分为两大类。

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