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高效 tRNA:EF-Tu FRET 系统的设计与性质及其在核糖体翻译研究中的应用。

Design and properties of efficient tRNA:EF-Tu FRET system for studies of ribosomal translation.

机构信息

Department of Microbiology and Molecular Genetics, UMDNJ - New Jersey Medical School, Newark, NJ 07101, USA.

出版信息

Protein Eng Des Sel. 2013 May;26(5):347-57. doi: 10.1093/protein/gzt006. Epub 2013 Feb 26.

Abstract

Formation of the ternary complex between GTP-bound form of elongation factor Tu (EF-Tu) and aminoacylated transfer RNA (aa-tRNA) is a key event in protein biosynthesis. Here we show that fluorescently modified Escherichia coli EF-Tu carrying three mutations, C137A, C255V and E348C, and fluorescently modified Phe-tRNA(Phe) form functionally active ternary complex that has properties similar to those of the naturally occurring (unmodified) complex. Similarities include the binding and binding rate constants, behavior in gel retardation assay, as well as activities in tRNA protection and in vitro translation assays. Proper labeling of EF-Tu was demonstrated in MALDI mass spectroscopy experiments. To generate the mutant EF-Tu, a series of genetic constructions were performed. Two native cysteine residues in the wild-type EF-Tu at positions 137 and 255 were replaced by Ala and Val, respectively, and an additional cysteine was introduced either in position 324 or 348. The assembly FRET assay showed a 5- to 7-fold increase of Cy5-labeled EF-Tu E348C mutant fluorescence upon formation of ternary complex with charged tRNA(Phe)(Cy3-labeled) when the complex was excited at 532 nm and monitored at 665 nm. In a control experiment, we did not observe FRET using uncharged tRNA(Phe)(Cy3), nor with wild-type EF-Tu preparation that was allowed to react with Cy5 maleimide, nor in the absence of GTP. The results obtained demonstrate that the EF-Tu:tRNA FRET system described can be used for investigations of ribosomal translation in many types of experiments.

摘要

三磷酸鸟苷(GTP)结合形式的延伸因子 Tu(EF-Tu)与氨酰化转移 RNA(aa-tRNA)形成三元复合物是蛋白质生物合成的关键事件。在这里,我们展示了携带三个突变(C137A、C255V 和 E348C)的荧光修饰大肠杆菌 EF-Tu 与荧光修饰的 Phe-tRNA(Phe)形成功能活性的三元复合物,其性质与天然存在的(未修饰的)复合物相似。相似之处包括结合和结合速率常数、凝胶阻滞试验中的行为,以及 tRNA 保护和体外翻译试验中的活性。MALDI 质谱实验证明了 EF-Tu 的正确标记。为了产生突变型 EF-Tu,进行了一系列基因构建。野生型 EF-Tu 中的两个天然半胱氨酸残基在位置 137 和 255 分别被 Ala 和 Val 取代,并在位置 324 或 348 引入了另一个半胱氨酸。组装 FRET 测定表明,当三元复合物在 532nm 激发并在 665nm 监测时,带电荷的 tRNA(Phe)(Cy3 标记)与 Cy5 标记的 EF-Tu E348C 突变体形成三元复合物时,EF-Tu E348C 突变体的荧光增加了 5-7 倍。在对照实验中,我们没有观察到未带电荷的 tRNA(Phe)(Cy3)或野生型 EF-Tu 制剂与 Cy5 马来酰亚胺反应时发生 FRET,也没有在没有 GTP 的情况下发生 FRET。所得结果表明,所描述的 EF-Tu:tRNA FRET 系统可用于许多类型实验中的核糖体翻译研究。

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