Shimada N, Suzuki T, Watanabe K
Department of Chemistry and Biotechnology, Graduate School of Engineering, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
J Biol Chem. 2001 Dec 14;276(50):46770-8. doi: 10.1074/jbc.M105150200. Epub 2001 Sep 27.
Animal mitochondrial translation systems contain two serine tRNAs, corresponding to the codons AGY (Y = U and C) and UCN (N = U, C, A, and G), each possessing an unusual secondary structure; tRNA(GCU)(Ser) (for AGY) lacks the entire D arm, whereas tRNA(UGA)(Ser) (for UCN) has an unusual cloverleaf configuration. We previously demonstrated that a single bovine mitochondrial seryl-tRNA synthetase (mt SerRS) recognizes these topologically distinct isoacceptors having no common sequence or structure. Recombinant mt SerRS clearly footprinted at the TPsiC loop of each isoacceptor, and kinetic studies revealed that mt SerRS specifically recognized the TPsiC loop sequence in each isoacceptor. However, in the case of tRNA(UGA)(Ser), TPsiC loop-D loop interaction was further required for recognition, suggesting that mt SerRS recognizes the two substrates by distinct mechanisms. mt SerRS could slightly but significantly misacylate mitochondrial tRNA(Gln), which has the same TPsiC loop sequence as tRNA(UGA)(Ser), implying that the fidelity of mitochondrial translation is maintained by kinetic discrimination of tRNAs in the network of aminoacyl-tRNA synthetases.
动物线粒体翻译系统包含两种丝氨酸tRNA,分别对应密码子AGY(Y = U和C)和UCN(N = U、C、A和G),每种都具有不寻常的二级结构;tRNA(GCU)(Ser)(对应AGY)缺少整个D臂,而tRNA(UGA)(Ser)(对应UCN)具有不寻常的三叶草结构。我们之前证明,单一的牛线粒体丝氨酰-tRNA合成酶(mt SerRS)可识别这些拓扑结构不同的同工受体,它们没有共同的序列或结构。重组mt SerRS在每个同工受体的TPsiC环上有明显的足迹,动力学研究表明,mt SerRS能特异性识别每个同工受体中的TPsiC环序列。然而,对于tRNA(UGA)(Ser),识别还需要TPsiC环-D环相互作用,这表明mt SerRS通过不同机制识别这两种底物。mt SerRS会使线粒体tRNA(Gln)发生轻微但显著的错酰化,它与tRNA(UGA)(Ser)具有相同的TPsiC环序列,这意味着线粒体翻译的保真度是通过氨酰-tRNA合成酶网络中对tRNA的动力学识别来维持的。