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依赖延伸因子G的GTP酶活性与多肽合成的偶联。

The coupling with polypeptide synthesis of the GTPase activity dependent on elongation factor G.

作者信息

Chinali G, Parmeggiani A

出版信息

J Biol Chem. 1980 Aug 10;255(15):7455-9.

PMID:6104671
Abstract

The coupling with polypeptide synthesis of the ribosome-elongation factor G (EF-G)-dependent GTPase activity was studied in a highly purified system with well characterized NH4Cl-washed ribosomes which were from 55 to 67% active in poly(U)-directed polyphenylalanine synthesis. The lowest stoichiometries of total GTP hydrolysis to polyphenylalanine incorporation (2.4 to 2.8) were observed at concentrations of MgCl2 (4 to 6.5 mM) slightly lower than the Mg2+ optimum for polyphenylalanine synthesis (7 to 8 mM), in a system containing 80 mM NH4Cl or KCl. For minimal stoichiometry, the concentration of EF-G should be rate-limiting, whereas that of EF-T (EF-Tu.EF-Ts) and aminoacyl-tRNA should be in excess, since the coupling of the EF-G GTPase activity depends on ribosomes in pretranslocative state. Under this condition, the apparent Km values for GTP of GTPase activity and polyphenylalanine synthesis are identical, and they are about an order of magnitude lower than the Km of the ribosome-EF-G-dependent GTPase activity uncoupled from polypeptide synthesis. The stoichiometry was calculated without the usual correction fro GTP hydrolysis obtained in the same system lacking elongation factor T or aminoacyl-tRNA. Such a correction causes overestimation of the uncoupled EF-G GTPase activity still present in the complete system, leading to artificially low stoichiometric values.

摘要

在一个高度纯化的系统中,研究了核糖体延伸因子G(EF-G)依赖性GTP酶活性与多肽合成的偶联情况。该系统使用了经过充分表征的经NH4Cl洗涤的核糖体,这些核糖体在聚(U)指导的聚苯丙氨酸合成中活性为55%至67%。在含有80 mM NH4Cl或KCl的系统中,当MgCl2浓度(4至6.5 mM)略低于聚苯丙氨酸合成的最佳Mg2+浓度(7至8 mM)时,观察到总GTP水解与聚苯丙氨酸掺入的最低化学计量比(2.4至2.8)。对于最小化学计量比,EF-G的浓度应是限速的,而EF-T(EF-Tu.EF-Ts)和氨酰-tRNA的浓度应过量,因为EF-G GTP酶活性的偶联取决于转位前状态的核糖体。在这种条件下,GTP酶活性和聚苯丙氨酸合成的GTP表观Km值相同,并且它们比与多肽合成解偶联的核糖体-EF-G依赖性GTP酶活性的Km值低约一个数量级。化学计量比的计算没有对在缺乏延伸因子T或氨酰-tRNA的相同系统中获得的GTP水解进行通常的校正。这种校正会高估完整系统中仍然存在的解偶联EF-G GTP酶活性,导致人为地得到低化学计量值。

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