Asahara Haruichi, Uhlenbeck Olke C
Department of Chemistry and Biochemistry, University of Colorado, 215 UCB, Boulder, CO 80309-0215, USA.
Proc Natl Acad Sci U S A. 2002 Mar 19;99(6):3499-504. doi: 10.1073/pnas.052028599. Epub 2002 Mar 12.
By introducing a GAC anticodon, 21 different Escherichia coli tRNAs were misacylated with either phenylalanine or valine and assayed for their affinity to Thermus thermophilus elongation factor Tu (EF-Tu)GTP by using a ribonuclease protection assay. The presence of a common esterified amino acid permits the thermodynamic contribution of each tRNA body to the overall affinity to be evaluated. The E. coli elongator tRNAs exhibit a wide range of binding affinities that varied from -11.7 kcal/mol for Val-tRNA(Glu) to -8.1 kcal/mol for Val-tRNA(Tyr), clearly establishing EF-TuGTP as a sequence-specific RNA-binding protein. Because the ionic strength dependence of k(off) varied among tRNAs, some of the affinity differences are the results of a different number of phosphate contacts formed between tRNA and protein. Because EF-Tu is known to contact only the phosphodiester backbone of tRNA, the observed specificity must be a consequence of an indirect readout mechanism.
通过引入一个GAC反密码子,21种不同的大肠杆菌tRNA被苯丙氨酸或缬氨酸错误酰化,并使用核糖核酸酶保护试验检测它们对嗜热栖热菌延伸因子Tu(EF-Tu)GTP的亲和力。共同酯化氨基酸的存在使得能够评估每个tRNA主体对整体亲和力的热力学贡献。大肠杆菌延伸tRNA表现出广泛的结合亲和力,从Val-tRNA(Glu)的-11.7千卡/摩尔到Val-tRNA(Tyr)的-8.1千卡/摩尔不等,这清楚地表明EF-TuGTP是一种序列特异性RNA结合蛋白。由于不同tRNA的k(off)对离子强度的依赖性不同,一些亲和力差异是tRNA与蛋白质之间形成的磷酸接触数量不同的结果。由于已知EF-Tu仅与tRNA的磷酸二酯骨架接触,观察到的特异性必定是间接读出机制的结果。