Tapio S, Bilgin N, Ehrenberg M
Department of Microbiology, University of Uppsala, Sweden.
Eur J Biochem. 1990 Mar 10;188(2):347-54. doi: 10.1111/j.1432-1033.1990.tb15410.x.
The kirromycin-resistant EF-Tu mutant Aa, previously shown to be an antisuppressor for nonsense and missense suppressor tRNAs, has been characterised in a poly(U)-primed translation system in vitro. Two major defects were found in the function of the mutant. First, the dissociation constant for Aa binding to Phe-tRNA(Phe) was increased tenfold compared to wild-type EF-Tu. Second, kcat/Km for the interaction between the EF-Tu.GTP.aa-tRNA complex and the ribosome was decreased by the mutation to one third of its wild-type value. No differences were observed between mutant and wild-type factor in the regeneration of EF-Tu.GTP from EF-Tu.GDP via EF-Ts or in the mistranslation frequency by Leu-tRNA(4Leu). The relation between the in vitro results and the mutant phenotype in vivo is discussed.
之前已证明对奇霉素耐药的EF-Tu突变体Aa是无义及错义抑制tRNA的反抑制子,现已在体外聚(U)引发的翻译系统中对其进行了表征。发现该突变体的功能存在两个主要缺陷。第一,与野生型EF-Tu相比,Aa与苯丙氨酰-tRNA(Phe)结合的解离常数增加了10倍。第二,EF-Tu·GTP·氨酰-tRNA复合物与核糖体之间相互作用的催化常数与米氏常数之比因突变而降至野生型值的三分之一。在通过EF-Ts从EF-Tu·GDP再生EF-Tu·GTP的过程中,以及在亮氨酰-tRNA(4Leu)导致的错译频率方面,未观察到突变体与野生型因子之间存在差异。文中讨论了体外结果与体内突变体表型之间的关系。