Department of Biological Science and Technology, Tokyo University of Science, 6-3-1 Niijuku, Katsushika-ku, Tokyo 125-8585, Japan.
Department of Applied Electronics, Tokyo University of Science, Katsushika-ku, Tokyo 125-8585, Japan; Research Institute for Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan.
Biochem Biophys Res Commun. 2019 Apr 2;511(2):228-233. doi: 10.1016/j.bbrc.2019.01.142. Epub 2019 Feb 13.
This study reports the X-ray crystallographic structure of the glycyl-tRNA synthetase (GlyRS) of Nanoarchaeum equitans - a hyperthermophilic archaeal species. This is the first archaeal GlyRS crystal structure elucidated. The GlyRS comprises an N-terminal catalytic domain and a C-terminal anticodon-binding domain with a long β-sheet inserted between these domains. An unmodified transcript of the wild-type N. equitans tRNA was successfully glycylated using GlyRS. Substitution of the discriminator base A73 of tRNA with any other nucleotide caused a significant decrease in glycylation activity. Mutational analysis of the second base-pair C2G71 of the acceptor stem of tRNA elucidated the importance of the base-pair, especially G71, as an identity element for recognition by GlyRS. Glycylation assays using tRNA G71 substitution mutants and a GlyRS mutant where Arg223 is mutated to alanine strengthen the possibility that the carbonyl oxygen at position 6 of G71 would hydrogen-bond with the guanidine nitrogen of Arg223 in N. equitans GlyRS.
本研究报告了超嗜热古菌 Nanoarchaeum equitans 的甘氨酰-tRNA 合成酶 (GlyRS) 的 X 射线晶体结构。这是第一个解析的古菌 GlyRS 晶体结构。GlyRS 由 N 端催化结构域和 C 端反密码子结合结构域组成,这两个结构域之间插入了一个长的β-折叠。使用 GlyRS 成功地对野生型 N. equitans tRNA 的未修饰转录本进行了甘氨酰化。tRNA 的判别碱基 A73 被任何其他核苷酸取代都会导致甘氨酰化活性显著降低。对 tRNA 接受茎上的第二个碱基对 C2G71 的突变分析阐明了碱基对的重要性,特别是 G71,它是 GlyRS 识别的一个身份元素。使用 tRNA G71 取代突变体和 GlyRS 突变体(Arg223 突变为丙氨酸)进行的甘氨酰化实验加强了这样一种可能性,即 G71 的位置 6 的羰基氧与 N. equitans GlyRS 中的 Arg223 的胍基氮形成氢键。