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通过足迹实验研究酵母tRNA(Ser)与丝氨酰-tRNA合成酶的相互作用。

The contacts of yeast tRNA(Ser) with seryl-tRNA synthetase studied by footprinting experiments.

作者信息

Dock-Bregeon A C, Garcia A, Giegé R, Moras D

机构信息

Laboratoires de Biochimie et de Cristallographie, Centre National de la Recherche Scientifique, Strasbourg, France.

出版信息

Eur J Biochem. 1990 Mar 10;188(2):283-90. doi: 10.1111/j.1432-1033.1990.tb15401.x.

Abstract

Yeast tRNA(Ser) is a member of the class II tRNAs, whose characteristic is the presence of an extended variable loop. This additional structural feature raises questions about the recognition of these class II tRNAs by their cognate synthetase and the possibility of the involvement of the extra arm in the recognition process. A footprinting study of yeast tRNA(Ser) complexed with its cognate synthetase, yeast seryl-tRNA synthetase (an alpha 2 dimer), was undertaken. Chemical (ethylnitrosourea) and enzymatic (nucleases S1 and V1) probes were used in the experiments. A map of the contact points between the tRNA and the synthetase was established and results were analyzed with respect to a three-dimensional model of yeast tRNA(Ser). Regions in close vicinity with the synthetase are clustered on one face of tRNA. The extra arm, which is strongly protected from chemical modifications, appears as an essential part of the contact area. The anticodon triplet and a large part of the anticodon arm are, in contrast, still accessible to the probes when the complex is formed. These results are discussed in the context of the recognition of tRNAs in the aminoacylation reaction.

摘要

酵母tRNA(Ser)是II类tRNA的成员,其特征是存在一个延伸的可变环。这种额外的结构特征引发了关于这些II类tRNA被其同源合成酶识别以及额外臂参与识别过程可能性的问题。对与同源合成酶酵母丝氨酰-tRNA合成酶(一种α2二聚体)复合的酵母tRNA(Ser)进行了足迹分析研究。实验中使用了化学(乙基亚硝基脲)和酶促(核酸酶S1和V1)探针。建立了tRNA与合成酶之间接触点的图谱,并根据酵母tRNA(Ser)的三维模型对结果进行了分析。与合成酶紧邻的区域聚集在tRNA的一个面上。受到化学修饰强烈保护的额外臂似乎是接触区域的重要组成部分。相比之下,当形成复合物时,反密码子三联体和大部分反密码子臂仍可被探针接近。这些结果在氨基酰化反应中tRNA识别的背景下进行了讨论。

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