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关于IF-3和EF-T在维持原核起始复合物形成特异性方面的一个推测作用。

A proposed role for IF-3 and EF-T in maintaining the specificity of prokaryotic initiation complex formation.

作者信息

Ganoza M C, Cunningham C, Chung D G, Neilson T

机构信息

Banting and Best Department of Medical Research, University of Toronto, Ontario Canada.

出版信息

Mol Biol Rep. 1991 Feb;15(1):33-8. doi: 10.1007/BF00369898.

Abstract

Initiation factor-free 30S subunits of E. coli ribosomes bind aminoacyl-tRNAs more efficiently than fMet-tRNA(fMet). Elongator-tRNA binding was unaffected by IF-1 or IF-2 but was inhibited by IF-3. Their combination reduced this binding up to 40% and stimulated that of fMet-tRNA(fMet). Unexpectedly, EF-T also prevented elongator-tRNA binding by complexing both to the 30S and to the aminoacyl-tRNAs. Using AUGU3 as mRNA, elongator-tRNAs competed with fMet-fRNA(fMet) and with tRNA(fMet), fMet-tRNA(fMet) reacted with puromycin after addition of 50S subunits suggesting that it occupied the P site. EF-T directed binding of phe-tRNA to the 30S.AUGU3 complex at the A site only if fMet-tRNA(fMet) or tRNA(fMet) filled the P/E site. We propose that one function of EF-T may be to prevent the entry of aminoacyl-tRNAs into the 30S particle during initiation. The possibility that a special site for fMet-tRNA resides on 16S rRNA is also discussed.

摘要

大肠杆菌核糖体不含起始因子的30S亚基比fMet - tRNA(fMet)更有效地结合氨酰 - tRNA。延伸因子 - tRNA的结合不受IF - 1或IF - 2的影响,但受到IF - 3的抑制。它们的组合使这种结合减少高达40%,并刺激了fMet - tRNA(fMet)的结合。出乎意料的是,EF - T也通过与30S和氨酰 - tRNA都形成复合物来阻止延伸因子 - tRNA的结合。以AUGU3作为mRNA,延伸因子 - tRNA与fMet - fRNA(fMet)和tRNA(fMet)竞争,在加入50S亚基后fMet - tRNA(fMet)与嘌呤霉素反应,表明它占据了P位点。只有当fMet - tRNA(fMet)或tRNA(fMet)占据P/E位点时,EF - T才会将苯丙氨酰 - tRNA引导至30S.AUGU3复合物的A位点结合。我们提出EF - T的一个功能可能是在起始过程中阻止氨酰 - tRNA进入30S颗粒。还讨论了fMet - tRNA在16S rRNA上存在特殊位点的可能性。

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