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YibK is the 2'-O-methyltransferase TrmL that modifies the wobble nucleotide in Escherichia coli tRNA(Leu) isoacceptors

机译:YibK是2'-O-甲基转移酶TrmL,可修饰大肠杆菌tRNA(Leu)同型受体的摆动核苷酸

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摘要

Transfer RNAs are the most densely modified nucleic acid molecules in living cells. In Escherichia coli, more than 30 nucleoside modifications have been characterized, ranging from methylations and pseudouridylations to more complex additions that require multiple enzymatic steps. Most of the modifying enzymes have been identified, although a few notable exceptions include the 2'-O-methyltransferase(s) that methylate the ribose at the nucleotide 34 wobble position in the two leucyl isoacceptors tRNA(Leu)(CmAA) and tRNA(Leu)(cmnm5UmAA). Here, we have used a comparative genomics approach to uncover candidate E. coli genes for the missing enzyme(s). Transfer RNAs from null mutants for candidate genes were analyzed by mass spectrometry and revealed that inactivation of yibK leads to loss of 2'-O-methylation at position 34 in both tRNA(Leu)(CmAA) and tRNA(Leu)(cmnm5UmAA). Loss of YibK methylation reduces the efficiency of codon-wobble base interaction, as demonstrated in an amber suppressor supP system. Inactivation of yibK had no detectable effect on steady-state growth rate, although a distinct disadvantage was noted in multiple-round, mixed-population growth experiments, suggesting that the ability to recover from the stationary phase was impaired. Methylation is restored in vivo by complementing with a recombinant copy of yibK. Despite being one of the smallest characterized α/β knot proteins, YibK independently catalyzes the methyl transfer from S-adenosyl-L-methionine to the 2'-OH of the wobble nucleotide; YibK recognition of this target requires a pyridine at position 34 and N⁶-(isopentenyl)-2-methylthioadenosine at position 37. YibK is one of the last remaining E. coli tRNA modification enzymes to be identified and is now renamed TrmL.
机译:转移RNA是活细胞中修饰最紧密的核酸分子。在大肠杆菌中,已鉴定出30多种核苷修饰,其范围从甲基化和伪尿苷化到需要多个酶促步骤的更复杂的添加。大多数修饰酶已被鉴定,尽管少数值得注意的例外包括2'-O-甲基转移酶,该酶使两个亮氨酰异受体tRNA(Leu)(CmAA)和tRNA( Leu)(cmnm5UmAA)。在这里,我们使用了比较基因组学方法来发现缺失酶的候选大肠杆菌基因。通过质谱分析了来自无效突变体的候选基因的转移RNA,并发现yibK的失活导致tRNA(Leu)(CmAA)和tRNA(Leu)(cmnm5UmAA)中第34位的2'-O-甲基化损失。 YibK甲基化的损失降低了密码子摆动碱基相互作用的效率,这在琥珀色抑制剂supP系统中得到证明。 yibK的失活对稳态生长速度没有可检测到的影响,尽管在多轮混合种群生长实验中注意到了明显的缺点,这表明从固定相恢复的能力受到了损害。通过与yibK的重组拷贝互补来在体内恢复甲基化。尽管YibK是特征最小的α/β结蛋白之一,但它独立地催化甲基从S-腺苷-L-蛋氨酸转移到摆动核苷酸的2'-OH。对该靶标的Yibb识别需要在34位有吡啶,在37位需要N 1-(异戊烯基)-2-甲基硫代腺苷。YibK是尚待鉴定的剩余的大肠杆菌tRNA修饰酶之一,现改名为TrmL。

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