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延伸因子EF-Tu在赖氨酸-56处的体内甲基化降低了tRNA依赖的GTP水解速率。

Methylation in vivo of elongation factor EF-Tu at lysine-56 decreases the rate of tRNA-dependent GTP hydrolysis.

作者信息

Van Noort J M, Kraal B, Sinjorgo K M, Persoon N L, Johanns E S, Bosch L

出版信息

Eur J Biochem. 1986 Nov 3;160(3):557-61. doi: 10.1111/j.1432-1033.1986.tb10074.x.

Abstract

In this paper we show, that the in vivo methylation of the elongation factor Tu from Escherichia coli is correlated with the growth phase of the bacterium. Methylation occurs at one position only, i.e. Lys-56, and initially results in monomethylation during logarithmic growth. Upon entering the stationary phase of E. coli, monomethyllysine is gradually converted into dimethyllysine. We have undertaken an extensive comparison between the properties of the highly methylated EF-Tu and unmodified EF-Tu. No gross conformational differences, as measured by the rate of mild tryptic cleavage, were observed. The dissociation rates of the nucleotides GDP and GTP appear likewise to be unaffected by the methylation, just as is the stimulatory effect of the elongation factor Ts upon these rates. Whereas tRNA binding at the classical binding site of EF-Tu (site I) also appears not to be affected by the methylation of the protein, tRNA binding at site II is. Although the apparent affinity of tRNA for site II remains unaltered upon methylation of EF-Tu, the conformational effects of tRNA binding at this site become different. Both the GTPase activity of the protein and the reactivity of Cys-81 are significantly less stimulated by the tRNA when EF-Tu is methylated. A possible physiological implication of this phenomenon is discussed.

摘要

在本文中,我们表明,大肠杆菌延伸因子Tu的体内甲基化与细菌的生长阶段相关。甲基化仅发生在一个位置,即赖氨酸-56,并且在对数生长期最初导致单甲基化。进入大肠杆菌的稳定期后,单甲基赖氨酸逐渐转化为二甲基赖氨酸。我们对高度甲基化的EF-Tu和未修饰的EF-Tu的性质进行了广泛比较。通过温和胰蛋白酶切割速率测量,未观察到明显的构象差异。核苷酸GDP和GTP的解离速率同样似乎不受甲基化的影响,延伸因子Ts对这些速率的刺激作用也是如此。虽然tRNA在EF-Tu的经典结合位点(位点I)的结合似乎也不受蛋白质甲基化的影响,但在位点II的tRNA结合却受到影响。尽管EF-Tu甲基化后tRNA对位点II的表观亲和力保持不变,但tRNA在此位点结合的构象效应却有所不同。当EF-Tu甲基化时,tRNA对蛋白质GTPase活性和半胱氨酸-81反应性的刺激作用均显著降低。本文讨论了这一现象可能的生理学意义。

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