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摘要

In the course of a structural genomics program aiming at solving the structures of Escherichia coli open reading frame products of unknown function, we have determined the structure of YadB at 1.5A using molecular replacement. The YadB protein is 298 amino acid residues long and displays 34% sequence identity with E.coli glutamyl-tRNA synthetase (GluRS). It is much shorter than GluRS, which contains 468 residues, and lacks the complete domain interacting with the tRNA anticodon loop. As E.coli GluRS, YadB possesses a Zn(2+) located in the putative tRNA acceptor stem-binding domain. The YadB cluster uses cysteine residues as the first three zinc ligands, but has a weaker tyrosine ligand at the fourth position. It shares with canonical amino acid RNA synthetases a major functional feature, namely activation of the amino acid (here glutamate). It differs, however, from GluRSs by the fact that the activation step is tRNA-independent and that it does not catalyze attachment of the activated glutamate to E.coli tRNA(Glu), but to another, as yet unknown tRNA. These results suggest thus a novel function, distinct from that of GluRSs, for the yadB gene family.
机译:在旨在解决功能未知的大肠杆菌开放阅读框产物结构的结构基因组学计划中,我们已经使用分子替代技术确定了1.5A下YadB的结构。 YadB蛋白长298个氨基酸残基,并且与大肠杆菌谷氨酰tRNA合成酶(GluRS)表现出34%的序列同一性。它比含有468个残基的GluRS短得多,并且缺少与tRNA反密码子环相互作用的完整域。作为大肠杆菌GluRS,YadB具有位于假定的tRNA受体茎结合域中的Zn(2+)。 YadB簇使用半胱氨酸残基作为前三个锌配体,但在第四个位置具有较弱的酪氨酸配体。它与标准氨基酸RNA共有一个主要的功能特征,即氨基酸(此处为谷氨酸)的激活。但是,它与GluRSs的不同之处在于,激活步骤不依赖tRNA,并且它不催化激活的谷氨酸与大肠杆菌tRNA(Glu)的结合,但不催化与另一个tRNA(至今未知的tRNA)的结合。因此,这些结果表明了针对yadB基因家族的不同于GluRS的新颖功能。

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