Department of Chemistry, Faculty of Science University of Zagreb, Zagreb, Croatia.
European Molecular Biology Laboratory, Grenoble Outstation and Unit of Virus Host-Cell Interactions, University of Grenoble Alpes-EMBL-CNRS UMI 3265, France.
EMBO J. 2014 Aug 1;33(15):1639-53. doi: 10.15252/embj.201488199. Epub 2014 Jun 16.
The fidelity of protein synthesis depends on the capacity of aminoacyl-tRNA synthetases (AARSs) to couple only cognate amino acid-tRNA pairs. If amino acid selectivity is compromised, fidelity can be ensured by an inherent AARS editing activity that hydrolyses mischarged tRNAs. Here, we show that the editing activity of Escherichia coli leucyl-tRNA synthetase (EcLeuRS) is not required to prevent incorrect isoleucine incorporation. Rather, as shown by kinetic, structural and in vivo approaches, the prime biological function of LeuRS editing is to prevent mis-incorporation of the non-standard amino acid norvaline. This conclusion follows from a reassessment of the discriminatory power of LeuRS against isoleucine and the demonstration that a LeuRS editing-deficient E. coli strain grows normally in high concentrations of isoleucine but not under oxygen deprivation conditions when norvaline accumulates to substantial levels. Thus, AARS-based translational quality control is a key feature for bacterial adaptive response to oxygen deprivation. The non-essential role for editing under normal bacterial growth has important implications for the development of resistance to antimicrobial agents targeting the LeuRS editing site.
蛋白质合成的忠实性取决于氨酰-tRNA 合成酶 (AARSs) 将仅识别的氨基酸-tRNA 对连接的能力。如果氨基酸选择性受到损害,则可以通过内在的 AARS 编辑活性来确保忠实性,该活性可水解错误负载的 tRNA。在这里,我们表明,大肠杆菌亮氨酰-tRNA 合成酶 (EcLeuRS) 的编辑活性对于防止不正确的异亮氨酸掺入并非必需。相反,正如通过动力学、结构和体内方法所表明的,LeuRS 编辑的主要生物学功能是防止非标准氨基酸正缬氨酸的错误掺入。这一结论源于对 LeuRS 对异亮氨酸的区分能力的重新评估,并证明 LeuRS 编辑缺陷的大肠杆菌菌株在高浓度异亮氨酸下正常生长,但在氧剥夺条件下(当正缬氨酸积累到相当水平时)不能正常生长。因此,基于 AARS 的翻译质量控制是细菌对氧剥夺适应反应的关键特征。在正常细菌生长下编辑的非必需作用对开发针对 LeuRS 编辑位点的抗菌药物的耐药性具有重要意义。