Hori H, Yamazaki N, Matsumoto T, Watanabe Y, Ueda T, Nishikawa K, Kumagai I, Watanabe K
Department of Chemistry and Biotechnology, Graduate School of Engineering, University of Tokyo, Bunkyo-ku, Tokyo 113-8656, Japan.
J Biol Chem. 1998 Oct 2;273(40):25721-7. doi: 10.1074/jbc.273.40.25721.
Transfer RNA (guanosine-2'-)-methyltransferase (Gm-methylase, EC 2.1. 1.32) from Thermus thermophilus HB27 is one of the tRNA ribose modification enzymes. The broad substrate specificity of Gm-methylase has so far been elucidated using various species of tRNAs from native sources, suggesting that the common structures in tRNAs are recognized by the enzyme. In this study, by using 28 yeast tRNAPhe variants obtained by transcription with T7 RNA polymerase, it was revealed that the nucleotide residues G18 and G19 and the D-stem structure are essentially required for Gm-methylase recognition, and that the key sequence for the substrate is pyrimidine (Py)17G18G19. The other conserved sequences were found not to be essential, but U8, G15, G26, G46, U54, U55, and C56 considerably affected the methylation efficiency. These residues are located within a limited space embedded in the L-shaped three-dimensional structure of tRNA. Therefore, disruption of the three-dimensional structure of the substrate tRNA is necessary for the catalytic center of Gm-methylase to be able to access the target site in the tRNA, suggesting that the interaction of Gm-methylase with tRNA consists of multiple steps. This postulation was confirmed by inhibition experiments using nonsubstrate tRNA variants which functioned as competitive inhibitors against usual substrate tRNAs.
嗜热栖热菌HB27的转移RNA(鸟苷-2'-)-甲基转移酶(Gm-甲基化酶,EC 2.1.1.32)是tRNA核糖修饰酶之一。迄今为止,已使用来自天然来源的各种tRNA物种阐明了Gm-甲基化酶广泛的底物特异性,这表明tRNA中的共同结构可被该酶识别。在本研究中,通过使用通过T7 RNA聚合酶转录获得的28种酵母tRNAPhe变体,发现核苷酸残基G18和G19以及D-茎结构是Gm-甲基化酶识别所必需的,并且底物的关键序列是嘧啶(Py)17G18G19。发现其他保守序列并非必需,但U8、G15、G26、G46、U54、U55和C56对甲基化效率有相当大的影响。这些残基位于tRNA的L形三维结构中嵌入的有限空间内。因此,底物tRNA三维结构的破坏对于Gm-甲基化酶的催化中心能够进入tRNA中的靶位点是必要的,这表明Gm-甲基化酶与tRNA的相互作用由多个步骤组成。使用作为普通底物tRNA的竞争性抑制剂的非底物tRNA变体进行的抑制实验证实了这一假设。