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来自大肠杆菌的甲硫氨酸特异性转运RNA与固定化延伸因子Tu的相互作用。

Interaction of methionine-specific tRNAs from Escherichia coli with immobilized elongation factor Tu.

作者信息

Fischer W, Doi T, Ikehara M, Ohtsuka E, Sprinzl M

出版信息

FEBS Lett. 1985 Nov 11;192(1):151-4. doi: 10.1016/0014-5793(85)80062-4.

Abstract

The interaction of three different Met-tRNAsMet from E. coli with bacterial elongation factor (EF) Tu X GTP was investigated by affinity chromatography. Met-tRNAfMet which lacks the base pair at the end of the acceptor stem binds only weakly to EF-Tu X GTP, while Met-tRNAmMet has a high affinity for the elongation factor. A modified Met-tRNAfMet which has a C1-G72 base pair binds much more strongly to immobilized EF-Tu X GTP than the native aminoacyl(aa)-tRNA with non-base-paired C1A72 at this position, demonstrating that the base pair including the first nucleotide in the tRNA is one of the essential structural requirements for the aa-tRNA X EF-Tu X GTP ternary complex formation.

摘要

通过亲和色谱法研究了来自大肠杆菌的三种不同的甲硫氨酸-tRNA(Met-tRNA)与细菌延伸因子(EF)Tu·GTP的相互作用。在受体茎末端缺乏碱基对的甲硫氨酸起始tRNA(Met-tRNAfMet)与EF-Tu·GTP的结合较弱,而甲硫氨酸中间tRNA(Met-tRNAmMet)对延伸因子具有高亲和力。在此位置具有C1-G72碱基对的修饰型Met-tRNAfMet比在此位置具有非碱基配对C1A72的天然氨酰基(aa)-tRNA与固定化的EF-Tu·GTP结合得更强,这表明tRNA中包含第一个核苷酸的碱基对是aa-tRNA·EF-Tu·GTP三元复合物形成的基本结构要求之一。

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