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泉古菌中用于tRNA苏氨酰化的两种互补酶:缺乏顺式编辑结构域的嗜热栖热放线菌苏氨酰-tRNA合成酶的晶体结构

Two complementary enzymes for threonylation of tRNA in crenarchaeota: crystal structure of Aeropyrum pernix threonyl-tRNA synthetase lacking a cis-editing domain.

作者信息

Shimizu Satoru, Juan Ella Czarina Magat, Sato Yoshiteru, Miyashita Yu-Ichiro, Hoque Md Mominul, Suzuki Kaoru, Sagara Tsubasa, Tsunoda Masaru, Sekiguchi Takeshi, Dock-Bregeon Anne-Catherine, Moras Dino, Takénaka Akio

机构信息

Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, Nagatsuda, Midori-ku, Yokohama 226-8501, Japan.

出版信息

J Mol Biol. 2009 Nov 27;394(2):286-96. doi: 10.1016/j.jmb.2009.09.018. Epub 2009 Sep 15.

Abstract

In protein synthesis, threonyl-tRNA synthetase (ThrRS) must recognize threonine (Thr) from the 20 kinds of amino acids and the cognate tRNA(Thr) from different tRNAs in order to generate Thr-tRNA(Thr). In general, an organism possesses one kind of gene corresponding to ThrRS. However, it has been recently found that some organisms have two different genes for ThrRS in the genome, suggesting that their proteins ThrRS-1 and ThrRS-2 function separately and complement each other in the threonylation of tRNA(Thr), one for catalysis and the other for trans-editing of misacylated Ser-tRNA(Thr). In order to clarify their three-dimensional structures, we performed X-ray analyses of two putatively assigned ThrRSs from Aeropyrum pernix (ApThrRS-1 and ApThrRS-2). These proteins were overexpressed in Escherichia coli, purified, and crystallized. The crystal structure of ApThrRS-1 has been successfully determined at 2.3 A resolution. ApThrRS-1 is a dimeric enzyme composed of two identical subunits, each containing two domains for the catalytic reaction and for anticodon binding. The essential editing domain is completely missing as expected. These structural features reveal that ThrRS-1 catalyzes only the aminoacylation of the cognate tRNA, suggesting the necessity of the second enzyme ThrRS-2 for trans-editing. Since the N-terminal sequence of ApThrRS-2 is similar to the sequence of the editing domain of ThrRS from Pyrococcus abyssi, ApThrRS-2 has been expected to catalyze deaminoacylation of a misacylated serine moiety at the CCA terminus.

摘要

在蛋白质合成过程中,苏氨酰 - tRNA合成酶(ThrRS)必须从20种氨基酸中识别苏氨酸(Thr),并从不同的tRNA中识别同源tRNA(Thr),以生成Thr - tRNA(Thr)。一般来说,一种生物体拥有一种与ThrRS对应的基因。然而,最近发现一些生物体的基因组中有两种不同的ThrRS基因,这表明它们的蛋白质ThrRS - 1和ThrRS - 2在tRNA(Thr)的苏氨酰化过程中分别发挥作用并相互补充,一个用于催化,另一个用于对错误酰化的Ser - tRNA(Thr)进行反式编辑。为了阐明它们的三维结构,我们对来自嗜热栖热菌的两种推定的ThrRS(ApThrRS - 1和ApThrRS - 2)进行了X射线分析。这些蛋白质在大肠杆菌中过量表达、纯化并结晶。ApThrRS - 1的晶体结构已成功以2.3埃的分辨率确定。ApThrRS - 1是一种二聚体酶,由两个相同的亚基组成,每个亚基包含两个用于催化反应和反密码子结合的结构域。正如预期的那样,基本的编辑结构域完全缺失。这些结构特征表明ThrRS - 1仅催化同源tRNA的氨酰化反应,这表明需要第二种酶ThrRS - 2进行反式编辑。由于ApThrRS - 2的N端序列与深渊嗜热栖热菌ThrRS的编辑结构域序列相似,因此预计ApThrRS - 2可催化CCA末端错误酰化的丝氨酸部分的脱氨酰化反应。

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