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Structural and functional insights into the molecular mechanism of rRNA m6A methyltransferase RlmJ

机译:rRNA m6A甲基转移酶RlmJ分子机制的结构和功能见解

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RlmJ catalyzes the m6A2030 methylation of 23S rRNA during ribosome biogenesis in Escherichia coli. Here, we present crystal structures of RlmJ in apo form, in complex with the cofactor S-adenosyl-methionine and in complex with S-adenosyl-homocysteine plus the substrate analogue adenosine monophosphate (AMP). RlmJ displays a variant of the Rossmann-like methyltransferase (MTase) fold with an inserted helical subdomain. Binding of cofactor and substrate induces a large shift of the N-terminal motif X tail to make it cover the cofactor binding site and trigger active-site changes in motifs IV and VIII. Adenosine monophosphate binds in a partly accommodated state with the target N6 atom 7 ? away from the sulphur of AdoHcy. The active site of RlmJ with motif IV sequence 164DPPY167 is more similar to DNA m6A MTases than to RNA m62A MTases, and structural comparison suggests that RlmJ binds its substrate base similarly to DNA MTases T4Dam and M.TaqI. RlmJ methylates in vitro transcribed 23S rRNA, as well as a minimal substrate corresponding to helix 72, demonstrating independence of previous modifications and tertiary interactions in the RNA substrate. RlmJ displays specificity for adenosine, and mutagenesis experiments demonstrate the critical roles of residues Y4, H6, K18 and D164 in methyl transfer.
机译:RlmJ在大肠杆菌核糖体生物发生过程中催化23S rRNA的m 6 A2030甲基化。在这里,我们介绍载脂蛋白形式的RlmJ的晶体结构,与辅因子S-腺苷-蛋氨酸复合,与S-腺苷-高半胱氨酸复合,再加上底物类似物单磷酸腺苷(AMP)。 RlmJ显示罗斯曼样甲基转移酶(MTase)折叠的变体,带有插入的螺旋亚结构域。辅因子与底物的结合诱导N末端基序X尾部发生大位移,使其覆盖辅因子结合位点并触发基序IV和VIII中的活性位点变化。单磷酸腺苷与目标N 6原子7′以部分容纳的状态结合。远离AdoHcy的硫磺。具有IV序列 164 DPPY 167 序列的RlmJ的活性位点与RNA m 6的DNA m 6 A MTases更相似 2 A MTases,结构比较表明,RlmJ与DNA MTases T4Dam和M.TaqI类似地结合其底物碱基。 RlmJ甲基化的体外转录的23S rRNA,以及对应于螺旋72的最小底物,证明了RNA底物中先前修饰和三级相互作用的独立性。 RlmJ显示对腺苷的特异性,诱变实验证明了残基Y4,H6,K18和D164在甲基转移中的关键作用。

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