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G13A替换影响延伸因子1α的生化和物理性质。奇霉素可部分恢复降低的内在GTP酶活性。

G13A substitution affects the biochemical and physical properties of the elongation factor 1 alpha. A reduced intrinsic GTPase activity is partially restored by kirromycin.

作者信息

Masullo Mariorosario, Cantiello Piergiuseppe, de Paola Barbara, Catanzano Francesca, Arcari Paolo, Bocchini Vincenzo

机构信息

Dipartimento di Scienze Farmacobiologiche, Università degli Studi di Catanzaro Magna Graecia, Complesso Ninì Barbieri, Roccelletta di Borgia, I-88021 Catanzaro, Italy.

出版信息

Biochemistry. 2002 Jan 15;41(2):628-33. doi: 10.1021/bi015598h.

Abstract

The G13A substitution in the G13XXXXGK[T,S] consensus sequence of the elongation factor 1 alpha from the archaeon Sulfolobus solfataricus (SsEF-1 alpha) was introduced in order to study the reasons for selective differences found in the homologous consensus element AXXXXGK[T,S] of the other elongation factor EF-2 or EF-G. In a previous work, it was shown that the main effect of the A26G mutation was the activation of the intrinsic GTPase of SsEF-2 [De Vendittis, E., Adinolfi, B. S., Amatruda, M. R., Raimo, G., Masullo, M., and Bocchini, V. (1994) Eur. J. Biochem. 262, 600-605]. In this work, we found that, compared to the wild-type factor (SsEF-1 alpha wt), G13ASsEF-1 alpha shows (i) a reduced rate of [(3)H]Phe polymerization that was probably due to its reduced ability to form a ternary complex with heterologous aa-tRNA and (ii) a reduced intrinsic GTPase activity that was stimulated by high concentrations of NaCl (GTPase(Na)) [Masullo, M., De Vendittis, E., and Bocchini, V. (1994) J. Biol. Chem. 269, 20376-20379]. In addition, G13ASsEF-1 alpha showed an increased affinity for GDP and GTP. Surprisingly, the decreased intrinsic GTPase(Na) of G13ASsEF-1 alpha can be partially restored by kirromycin, an effect not found for SsEF-1 alpha wt. The temperature inducing a 50% denaturation of G13ASsEF-1 alpha was somewhat lower (-5 degrees C) than that of SsEF-1 alpha wt, and the decrease in its thermophilicity was slightly more accentuated (-10 degrees C). These results indicate that the nature of the residue in position 13 is important for the functional and physical properties of SsEF-1 alpha.

摘要

为了研究在另一种延伸因子EF - 2或EF - G的同源共有元件AXXXXGK[T,S]中发现的选择性差异的原因,在嗜热栖热菌(Sulfolobus solfataricus)的延伸因子1α(SsEF - 1α)的G13XXXXGK[T,S]共有序列中引入了G13A替换。在之前的一项工作中,已表明A26G突变的主要效应是激活了SsEF - 2的内在GTP酶[德文迪蒂斯,E.,阿迪诺菲,B. S.,阿马图达,M. R.,拉伊莫,G.,马苏洛,M.,和博基尼,V.(1994年)《欧洲生物化学杂志》262,600 - 605]。在这项工作中,我们发现,与野生型因子(SsEF - 1α wt)相比,G13ASsEF - 1α表现出:(i)[(3)H]苯丙氨酸聚合速率降低,这可能是由于其与异源氨酰 - tRNA形成三元复合物的能力降低;(ii)内在GTP酶活性降低,该活性受到高浓度NaCl(GTPase(Na))的刺激[马苏洛,M.,德文迪蒂斯,E.,和博基尼,V.(1994年)《生物化学杂志》269,20376 - 20379]。此外G13ASsEF - 1α对GDP和GTP的亲和力增加。令人惊讶的是,G13ASsEF - 1α降低的内在GTPase(Na)可被奇霉素部分恢复,而SsEF - 1α wt未发现这种效应。诱导G13ASsEF - 1α 50%变性的温度比SsEF - 1α wt略低(-5℃),并且其嗜热性的降低更为明显(-10℃)。这些结果表明,第13位残基的性质对SsEF - 1α的功能和物理性质很重要。

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