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ATP binding by glutamyl-tRNA synthetase is switched to the productive mode by tRNA binding

机译:谷氨酰-tRNA合成酶与ATP的结合通过tRNA结合转变为生产方式

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摘要

Aminoacyl-tRNA synthetases catalyze the formation of an aminoacyl-AMP from an amino acid and ATP, prior to the aminoacyl transfer to tRNA. A subset of aminoacyl-tRNA synthetases, including glutamyl-tRNA synthetase (GluRS), have a regulation mechanism to avoid aminoacyl-AMP formation in the absence of tRNA. In this study, we determined the crystal structure of the ‘non-productive’ complex of Thermus thermophilus GluRS, ATP and l-glutamate, together with those of the GluRS·ATP, GluRS·tRNA·ATP and GluRS·tRNA·GoA (a glutamyl-AMP analog) complexes. In the absence of tRNAGlu, ATP is accommodated in a ‘non-productive’ subsite within the ATP-binding site, so that the ATP α-phosphate and the glutamate α-carboxyl groups in GluRS· ATP·Glu are too far from each other (6.2 Å) to react. In contrast, the ATP-binding mode in GluRS·tRNA· ATP is dramatically different from those in GluRS·ATP·Glu and GluRS·ATP, but corresponds to the AMP moiety binding mode in GluRS·tRNA·GoA (the ‘productive’ subsite). Therefore, tRNA binding to GluRS switches the ATP-binding mode. The interactions of the three tRNAGlu regions with GluRS cause conformational changes around the ATP-binding site, and allow ATP to bind to the ‘productive’ subsite.
机译:在将氨酰基转移到tRNA之前,氨酰基-tRNA合成酶催化从氨基酸和ATP形成氨酰基-AMP。包括谷氨酰-tRNA合成酶(GluRS)在内的一部分氨酰-tRNA合成酶具有调节机制,可避免在不存在tRNA的情况下形成氨酰-AMP。在这项研究中,我们确定了嗜热栖热菌GluRS,ATP和l-谷氨酸的'非生产性'复合物的晶体结构,以及GluRS·ATP,GluRS·tRNA·ATP和GluRS·tRNA·GoA的晶体结构(a谷氨酰胺-AMP类似物)复合物。在不存在tRNA Glu 的情况下,ATP被容纳在ATP结合位点的“非生产性”亚位点中,因此GluRS·ATP中的ATPα-磷酸和谷氨酸α-羧基·Glu彼此相距太远(6.2Å)无法反应。相比之下,GluRS·tRNA·ATP中的ATP结合模式与GluRS·ATP·Glu和GluRS·ATP中的ATP模式显着不同,但与GluRS·tRNA·GoA中的AMP部分结合模式相对应(“生产性”亚位点)。因此,tRNA与GluRS的结合可切换ATP结合模式。三个tRNA Glu 区域与GluRS的相互作用引起ATP结合位点周围的构象变化,并使ATP结合到“生产性”亚位点。

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