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Regulation of expression and catalytic activity of Escherichia coli RsmG methyltransferase

机译:大肠杆菌RsmG甲基转移酶的表达和催化活性的调节

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RsmG is an AdoMet-dependent methyltransferase responsible for the synthesis of m 7G527 in the 530 loop of bacterial 16S rRNA. This loop is universally conserved, plays a key role in ribosomal accuracy, and is a target for streptomycin binding. Loss of the m 7G527 modification confers low-level streptomycin resistance and may affect ribosomal functioning. Here, we explore the mechanisms controlling RsmG expression and activity, which may somehow respond to the demand set by the amount of rRNA. We confirm that rsmG is the second member in a bicistronic operon and demonstrate that rsmG also has its own promoter, which appears, in actively growing cells, as a control device to offset both the relatively low stability of RsmG and inhibition of the operon promoter. RsmG levels decrease under conditions that down-regulate rRNA synthesis. However, coordination between rRNA and RsmG expression does not seem to occur at the level of transcription initiation. Instead, it might depend on the activity of an inverted repeated region, located between the rsmG promoter and ribosome binding site, which we show to work as a weak transcriptional terminator. To gain insights into the enzymatic mechanism of RsmG, highly conserved residues were mutated and the abilities of the resulting proteins to confer streptomycin resistance, to modify rRNA, and to bind AdoMet were explored. Our data demonstrate for the first time the critical importance of some residues located in the active site of Escherichia coli RsmG for the m 7G modification process and suggest a role for them in rRNA binding and catalysis. Published by Cold Spring Harbor Laboratory Press.
机译:RsmG是一种AdoMet依赖性甲基转移酶,负责细菌16S rRNA 530环中m 7G527的合成。该环被普遍保守,在核糖体准确性中起关键作用,并且是链霉素结合的靶标。 m 7G527修饰的缺失赋予低水平的链霉素抗性,并可能影响核糖体功能。在这里,我们探讨了控制RsmG表达和活性的机制,这些机制可能以某种方式响应rRNA数量所设置的需求。我们确认rsmG是双顺反子操纵子中的第二个成员,并证明rsmG也具有其自身的启动子,在活跃生长的细胞中作为控制装置出现,以抵消RsmG相对较低的稳定性和操纵子启动子的抑制。在下调rRNA合成的条件下,RsmG水平降低。但是,rRNA和RsmG表达之间的协调似乎并未发生在转录起始水平。相反,它可能取决于位于rsmG启动子和核糖体结合位点之间的反向重复区域的活性,我们证明该区域可作为弱转录终止子起作用。为了深入了解RsmG的酶促机制,突变了高度保守的残基,并研究了所得蛋白质赋予链霉素抗性,修饰rRNA和结合AdoMet的能力。我们的数据首次证明了位于大肠杆菌RsmG活性位点中的一些残基对于m 7G修饰过程至关重要,并暗示了它们在rRNA结合和催化中的作用。由冷泉港实验室出版社出版。

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