Complete kinetic mechanism of elongation factor Tu-dependent binding of aminoacyl-tRNA to the A site of the E-coli ribosome

被引:326
作者
Pape, T [1 ]
Wintermeyer, W [1 ]
Rodnina, MV [1 ]
机构
[1] Univ Witten Herdecke, Inst Mol Biol, D-58448 Witten, Germany
关键词
codon recognition; conformational change; EF-Tu function; GTP hydrolysis; protein synthesis;
D O I
10.1093/emboj/17.24.7490
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The kinetic mechanism of elongation factor Tu (EF-Tu)-dependent binding of Phe-tRNA(Phe) to the A site of poly(U)-programed Escherichia coli ribosomes has been established by pre-steady-state kinetic experiments. Six steps were distinguished kinetically, and their elemental rate constants were determined either by global fitting, or directly by dissociation experiments. Initial binding to the ribosome of the ternary complex EF-Tu . GTP . Phe-tRNA(Phe) is rapid (k(1) = 110 and 60/mu M/s at 10 and 5 mM Mg2+, 20 degrees C) and readily reversible (k(-1) = 25 and 30/s). Subsequent codon recognition (k(2) = 100 and 80/s) stabilizes the complex in an Mg2+-dependent manner (k(-2) = 0.2 and 2/s), It induces the GTPase conformation of EF-Tu (k(3) = 500 and 55/s), instantaneously followed by GTP hydrolysis. Subsequent steps are independent of Mg2+. The EF-Tu conformation switches from the GTP- to the GDP-bound form (k(4) = 60/s), and Phe-tRNAPhe is released from EF-Tu GDP. The accommodation of Phe-tRNAPhe in the A site (k(5) = 8/s) takes place independently of EF-Tu and is followed instantaneously by peptide bond formation. The slowest step is dissociation of EF-Tu GDP from the ribosome (k(6) = 4/s), A characteristic feature of the mechanism is the existence of two conformational rearrangements which limit the rates of the subsequent chemical steps of A-site binding.
引用
收藏
页码:7490 / 7497
页数:8
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