Department of Biophysics and Biochemistry, Graduate School of Science, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Nucleic Acids Res. 2013 Jul;41(13):6729-38. doi: 10.1093/nar/gkt321. Epub 2013 May 6.
Selenocysteine (Sec) is translationally incorporated into proteins in response to the UGA codon. The tRNA specific to Sec (tRNA(Sec)) is first ligated with serine by seryl-tRNA synthetase (SerRS). In the present study, we determined the 3.1 Å crystal structure of the tRNA(Sec) from the bacterium Aquifex aeolicus, in complex with the heterologous SerRS from the archaeon Methanopyrus kandleri. The bacterial tRNA(Sec) assumes the L-shaped structure, from which the long extra arm protrudes. Although the D-arm conformation and the extra-arm orientation are similar to those of eukaryal/archaeal tRNA(Sec)s, A. aeolicus tRNA(Sec) has unique base triples, G14:C21:U8 and C15:G20a:G48, which occupy the positions corresponding to the U8:A14 and R15:Y48 tertiary base pairs of canonical tRNAs. Methanopyrus kandleri SerRS exhibited serine ligation activity toward A. aeolicus tRNA(Sec) in vitro. The SerRS N-terminal domain interacts with the extra-arm stem and the outer corner of tRNA(Sec). Similar interactions exist in the reported tRNA(Ser) and SerRS complex structure from the bacterium Thermus thermophilus. Although the catalytic C-terminal domain of M. kandleri SerRS lacks interactions with A. aeolicus tRNA(Sec) in the present complex structure, the conformational flexibility of SerRS is likely to allow the CCA terminal region of tRNA(Sec) to enter the SerRS catalytic site.
硒代半胱氨酸(Sec)是在响应 UGA 密码子的情况下被翻译到蛋白质中的。Sec 特异的 tRNA(tRNA(Sec))首先由丝氨酰-tRNA 合成酶(SerRS)与丝氨酸连接。在本研究中,我们确定了来自细菌 Aquifex aeolicus 的 tRNA(Sec)与来自古菌 Methanopyrus kandleri 的异源 SerRS 的复合物的 3.1Å 晶体结构。细菌 tRNA(Sec)呈 L 形结构,其中长的额外臂突出。尽管 D 臂构象和额外臂取向与真核/古菌 tRNA(Sec)相似,但 A. aeolicus tRNA(Sec)具有独特的碱基三对 G14:C21:U8 和 C15:G20a:G48,它们占据了对应于 U8:A14 和 R15:Y48 的位置典型 tRNA 的三级碱基对。Methanopyrus kandleri SerRS 在体外对 A. aeolicus tRNA(Sec)表现出丝氨酸连接活性。SerRS N 端结构域与额外臂茎和 tRNA(Sec)的外角相互作用。在报道的来自细菌 Thermus thermophilus 的 tRNA(Ser)和 SerRS 复合物结构中也存在类似的相互作用。尽管 M. kandleri SerRS 的催化 C 端结构域在当前复合物结构中与 A. aeolicus tRNA(Sec)没有相互作用,但 SerRS 的构象灵活性可能允许 tRNA(Sec)的 CCA 末端区域进入 SerRS 的催化位点。