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氨酰化作用下tRNA 3'端的荧光监测构象变化

Fluorescence-monitored conformational change on the 3'-end of tRNA upon aminoacylation.

作者信息

Schlosser A, Nawrot B, Grillenbeck N, Sprinzl M

机构信息

Laboratorium für Biochemie Universität Bayreuth, Germany.

出版信息

J Biomol Struct Dyn. 2001 Oct;19(2):285-91. doi: 10.1080/07391102.2001.10506739.

Abstract

Fluorescent tRNAs species with formycine in the 3'-terminal position (tRNA-CCF) were derived from Escherichia coli tRNA(Val). Thermus thermophilus tRNA(Aap) and Thermus thermophilus tRNA(Phe). The fluorescence of formycine was used to monitor the conformational changes at the 3'-terminus of tRNA caused by aminoacylation and hydrolysis of aminoacyl residue from aminoacyl-tRNAs. An increase of about 15% in the fluorescence intensity was observed after aminoacylation of the three tRNA-CCF. This change in fluorescence amplitude that is reversed by hydrolysis of the aminoacyl residue, does not depend on the structure of the amino acid or tRNA sequence. A local conformational change at the 3'-terminal formycine probably involving a partial destacking of the base moiety in the ACCF end takes place as a consequence of aminoacylation. A structural change at the 3'-terminus of tRNA induced by attachment and detachment of the acyl residue may be important in controlling the substrate/product relationship in reactions in which tRNA participates during protein biosynthesis.

摘要

3'-末端带有甲酰霉素的荧光tRNA种类(tRNA-CCF)源自大肠杆菌tRNA(Val)、嗜热栖热菌tRNA(Aap)和嗜热栖热菌tRNA(Phe)。利用甲酰霉素的荧光来监测tRNA 3'-末端因氨酰化以及氨酰-tRNA上氨酰基残基的水解而引起的构象变化。对三种tRNA-CCF进行氨酰化后,观察到荧光强度增加了约15%。这种荧光幅度的变化可通过氨酰基残基的水解而逆转,且不依赖于氨基酸的结构或tRNA序列。氨酰化导致3'-末端甲酰霉素处发生局部构象变化,可能涉及ACCF末端碱基部分的部分解堆叠。酰基残基的附着和脱离所诱导的tRNA 3'-末端结构变化,在控制tRNA参与蛋白质生物合成反应中的底物/产物关系方面可能很重要。

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