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Structural and Functional Characterization of Rv2966c Protein Reveals an RsmD-like Methyltransferase from Mycobacterium tuberculosis and the Role of Its N-terminal Domain in Target Recognition*

机译:Rv2966c蛋白的结构和功能表征揭示了结核分枝杆菌的RsmD样甲基转移酶及其在靶标识别中的N末端结构域的作用*

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摘要

Nine of ten methylated nucleotides of Escherichia coli 16 S rRNA are conserved in Mycobacterium tuberculosis. All the 10 different methyltransferases are known in E. coli, whereas only TlyA and GidB have been identified in mycobacteria. Here we have identified Rv2966c of M. tuberculosis as an ortholog of RsmD protein of E. coli. We have shown that rv2966c can complement rsmD-deleted E. coli cells. Recombinant Rv2966c can use 30 S ribosomes purified from rsmD-deleted E. coli as substrate and methylate G966 of 16 S rRNA in vitro. Structure determination of the protein shows the protein to be a two-domain structure with a short hairpin domain at the N terminus and a C-terminal domain with the S-adenosylmethionine-MT-fold. We show that the N-terminal hairpin is a minimalist functional domain that helps Rv2966c in target recognition. Deletion of the N-terminal domain prevents binding to nucleic acid substrates, and the truncated protein fails to carry out the m2G966 methylation on 16 S rRNA. The N-terminal domain also binds DNA efficiently, a property that may be utilized under specific conditions of cellular growth.
机译:大肠杆菌16 S rRNA的十个甲基化核苷酸中有九个在结核分枝杆菌中保守。在大肠杆菌中,所有10种不同的甲基转移酶都是已知的,而在分枝杆菌中仅鉴定出TlyA和GidB。在这里,我们已经鉴定出结核分枝杆菌的Rv2966c是大肠杆菌RsmD蛋白的直系同源物。我们已经表明rv2966c可以补充rsmD缺失的大肠杆菌细胞。重组Rv2966c可以使用从rsmD缺失的大肠杆菌中纯化的30 S核糖体作为底物,并在体外使用16 S rRNA的甲基化G966。蛋白质的结构确定显示该蛋白质为两结构域结构,在N末端具有短的发夹结构域,在C末端具有S-腺苷甲硫氨酸-MT折叠结构域。我们显示N末端发夹是一个极简的功能域,可帮助Rv2966c进行目标识别。 N末端结构域的缺失阻止了与核酸底物的结合,并且截短的蛋白质无法在16 S rRNA上进行m2G966甲基化。 N末端结构域还可以有效地结合DNA,这种特性可以在特定的细胞生长条件下使用。

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