Chongdar Nipa, Dasgupta Saumya, Datta Ajit Bikram, Basu Gautam
Department of Biophysics, Bose Institute, P-1/12 CIT Scheme VII M, Kolkata 700 054, India.
Department of Biochemistry, Bose Institute, P-1/12 CIT Scheme VII M, Kolkata 700 054, India.
Acta Crystallogr F Struct Biol Commun. 2014 Jul;70(Pt 7):922-7. doi: 10.1107/S2053230X14010723. Epub 2014 Jun 18.
The nature of interaction between glutamyl-tRNA synthetase (GluRS) and its tRNA substrate is unique in bacteria in that many bacterial GluRS are capable of recognizing two tRNA substrates: tRNAGlu and tRNAGln. To properly understand this distinctive GluRS-tRNA interaction it is important to pursue detailed structure-function studies; however, because of the fact that tRNA-GluRS interaction in bacteria is also associated with phylum-specific idiosyncrasies, the structure-function correlation studies must also be phylum-specific. GluRS from Thermus thermophilus and Escherichia coli, which belong to evolutionarily distant phyla, are the biochemically best characterized. Of these, only the structure of T. thermophilus GluRS is available. To fully unravel the subtleties of tRNAGlu-GluRS interaction in E. coli, a model bacterium that can also be pathogenic, determination of the E. coli GluRS structure is essential. However, previous attempts have failed to crystallize E. coli GluRS. By mapping crystal contacts of a homologous GluRS onto the E. coli GluRS sequence, two surface residues were identified that might have been hindering crystallization attempts. Accordingly, these two residues were mutated and crystallization of the double mutant was attempted. Here, the design, expression, purification and crystallization of an engineered E. coli GluRS in which two surface residues were mutated to optimize crystal contacts are reported.
谷氨酰胺-tRNA合成酶(GluRS)与其tRNA底物之间的相互作用性质在细菌中是独特的,因为许多细菌GluRS能够识别两种tRNA底物:tRNAGlu和tRNAGln。为了正确理解这种独特的GluRS-tRNA相互作用,进行详细的结构-功能研究很重要;然而,由于细菌中tRNA-GluRS相互作用也与特定门的特性相关,结构-功能相关性研究也必须是特定门的。嗜热栖热菌和大肠杆菌的GluRS属于进化上距离较远的门,是生物化学特征最明确的。其中,只有嗜热栖热菌GluRS的结构是已知的。为了全面揭示大肠杆菌(一种也可能致病的模式细菌)中tRNAGlu-GluRS相互作用的微妙之处,确定大肠杆菌GluRS的结构至关重要。然而,以前的尝试未能使大肠杆菌GluRS结晶。通过将同源GluRS的晶体接触位点映射到大肠杆菌GluRS序列上,鉴定出两个可能阻碍结晶尝试的表面残基。因此,对这两个残基进行了突变,并尝试使双突变体结晶。在此,报道了一种经过工程改造的大肠杆菌GluRS的设计、表达、纯化和结晶,其中两个表面残基被突变以优化晶体接触。