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大肠杆菌谷氨酰胺基转移核糖核酸合成酶。纯化、结构与功能关系

The glutaminyl-transfer RNA synthetase of Escherichia coli. Purification, structure and function relationship.

作者信息

Kern D, Potier S, Lapointe J, Boulanger Y

出版信息

Biochim Biophys Acta. 1980 Mar 28;607(1):65-80. doi: 10.1016/0005-2787(80)90221-x.

Abstract

Glutaminyl-tRNA synthetase from Escherichia coli has been purified to homogeneity with a yield of about 50%. It is a monomer of about 69 000 daltons. Arginyl and glutamyl-tRNA synthetases are also monomeric synthetases of molecular weight significantly lower than 100 000. In addition it is well known that these three synthetases require their cognate tRNA to catalyze the [32P]PPi-ATP exchange. Like arginyl-tRNA synthetase, but unlike glutamyl-tRNA synthetase, glutaminyl-tRNA synthetase seems to contain some repeated sequences. Therefore no correlation can be established between the tRNA requirement of these synthetases for the catalysis of the isotope-exchange and the presence or the absence of sequence duplication. In the native enzyme four sulfhydryl groups react with dithiobisnitrobenzoic acid causing a loss of both the aminoacylation and the [32P]PPi-ATP exchange activities. The rate-limiting steps of the overall aminoacylation and its reverse reaction correspond, respectively, to the catalysis of the aminoacylation of tRNA Gln and of the the deacylation of glutaminyl-tRNA Gln. At acidic pH, glutaminyl-tRNA synthetase catalyzes the synthesis of the glutaminyl-tRNA Gln and its deacylation at significantly lower rates than the [32P]PPi-ATP exchange, indicating than glutaminyl-tRNA Gln cannot be an obligatory intermediate in this isotope exchange. These results suggest the existence of a two-step aminoacylation mechanism catalyzed by this enzyme.

摘要

来自大肠杆菌的谷氨酰胺-tRNA合成酶已被纯化至同质,产率约为50%。它是一种分子量约为69000道尔顿的单体。精氨酰和谷氨酰-tRNA合成酶也是分子量明显低于100000的单体合成酶。此外,众所周知,这三种合成酶需要其对应的tRNA来催化[32P]PPi-ATP交换。与精氨酰-tRNA合成酶一样,但与谷氨酰-tRNA合成酶不同,谷氨酰胺-tRNA合成酶似乎包含一些重复序列。因此,这些合成酶催化同位素交换所需的tRNA与序列重复的有无之间无法建立相关性。在天然酶中,四个巯基与二硫代双硝基苯甲酸反应,导致氨酰化和[32P]PPi-ATP交换活性丧失。整体氨酰化及其逆反应的限速步骤分别对应于tRNA Gln的氨酰化催化和谷氨酰胺-tRNA Gln的脱酰化催化。在酸性pH下,谷氨酰胺-tRNA合成酶催化谷氨酰胺-tRNA Gln的合成及其脱酰化的速率明显低于[32P]PPi-ATP交换,表明谷氨酰胺-tRNA Gln不是这种同位素交换中的必需中间体。这些结果表明该酶催化的氨酰化机制存在两步反应。

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