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首页> 外文期刊>RNA >Structural and functional studies of the Thermus thermophilus 16S rRNA methyltransferase RsmG.
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Structural and functional studies of the Thermus thermophilus 16S rRNA methyltransferase RsmG.

机译:嗜热栖热菌16S rRNA甲基转移酶RsmG的结构和功能研究。

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摘要

The RsmG methyltransferase is responsible for N(7) methylation of G527 of 16S rRNA in bacteria. Here, we report the identification of the Thermus thermophilus rsmG gene, the isolation of rsmG mutants, and the solution of RsmG X-ray crystal structures at up to 1.5 A resolution. Like their counterparts in other species, T. thermophilus rsmG mutants are weakly resistant to the aminoglycoside antibiotic streptomycin. Growth competition experiments indicate a physiological cost to loss of RsmG activity, consistent with the conservation of the modification site in the decoding region of the ribosome. In contrast to Escherichia coli RsmG, which has been reported to recognize only intact 30S subunits, T. thermophilus RsmG shows no in vitro methylation activity against native 30S subunits, only low activity with 30S subunits at low magnesium concentration, and maximum activity with deproteinized 16S rRNA. Cofactor-bound crystal structures of RsmG reveal a positively charged surface area remote from the active site that binds an adenosine monophosphate molecule. We conclude that an early assembly intermediate is the most likely candidate for the biological substrate of RsmG.
机译:RsmG甲基转移酶负责细菌中16S rRNA的G527的N(7)甲基化。在这里,我们报告了Thermus thermophilus rsmG基因的鉴定,rsmG突变体的分离以及分辨率高达1.5 A的RsmG X射线晶体结构的溶液。像其他物种中的同类细菌一样,嗜热链球菌rsmG突变体对氨基糖苷类抗生素链霉素的抵抗力较弱。生长竞争实验表明,RsmG活性丧失的生理代价与核糖体解码区域中修饰位点的保守性相符。与据报道只能识别完整的30S亚基的大肠杆菌RsmG相比,嗜热链球菌RsmG没有针对天然30S亚基的体外甲基化活性,只有在低镁浓度下具有30S亚基的低甲基化活性,而具有去蛋白16S的最大活性rRNA。 RsmG的辅因子结合的晶体结构揭示了远离结合单磷酸腺苷分子的活性位点的带正电的表面积。我们得出的结论是,早期装配中间体是RsmG生物学底物的最可能候选者。

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