Ohtsuki Takashi, Kawai Gota, Watanabe Kimitsuna
Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, 113-8656, Tokyo, Japan.
FEBS Lett. 2002 Mar 6;514(1):37-43. doi: 10.1016/s0014-5793(02)02328-1.
The tertiary structure of Ascaris suum mitochondrial tRNA(Ser)(UCU) was examined by nuclear magnetic resonance analysis using its transcript, since tRNA(Ser)(UCU), lacking the D arm and possessing a truncated T arm, is the shortest of all the known tRNAs. Most basepairs in the proposed secondary structure of tRNA(Ser)(UCU) were shown to exist, but the connector region comprising the truncated D loop and the extra loop was flexible. This flexibility, would enable adjustment of the mutual distance between the 3'-terminus and the anticodon consistent with that of usual tRNAs. Thus, tRNA(Ser)UCU appears to function in a similar way to that of usual tRNAs in the ribosome.
利用转录本通过核磁共振分析对猪蛔虫线粒体tRNA(Ser)(UCU)的三级结构进行了研究,因为tRNA(Ser)(UCU)缺少D臂且T臂截短,是所有已知tRNA中最短的。tRNA(Ser)(UCU)二级结构中提出的大多数碱基对都被证明存在,但由截短的D环和额外环组成的连接区是灵活的。这种灵活性能够使3'-末端与反密码子之间的相互距离与普通tRNA的距离一致。因此,tRNA(Ser)UCU在核糖体中的功能似乎与普通tRNA类似。