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Evolution of tRNA(Phe):imG2 methyltransferases involved in the biosynthesis of wyosine derivatives in Archaea

机译:tRNA(Phe):imG2甲基转移酶的进化与古生菌中肌苷衍生物的生物合成有关

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摘要

Tricyclic wyosine derivatives are found at position 37 of eukaryotic and archaeal tRNAPhe. In Archaea, the intermediate imG-14 is targeted by three different enzymes that catalyze the formation of yW-86, imG, and imG2. We have suggested previously that a peculiar methyltransferase (aTrm5a/Taw22) likely catalyzes two distinct reactions: N-1-methylation of guanosine to yield m(1)G; and e-methylation of imG-14 to yield imG2. Here we show that the recombinant aTrm5a/Taw22-like enzymes from both Pyrococcus abyssi and Nanoarchaeum equitans indeed possess such dual specificity. We also show that substitutions of individual conservative amino acids of P. abyssi Taw22 (P260N, E173A, and R174A) have a differential effect on the formation of m(1)G/imG2, while replacement of R134, F165, E213, and P262 with alanine abolishes the formation of both derivatives of G37. We further demonstrate that aTrm5a-type enzyme SSO2439 from Sulfolobus solfataricus, which has no N-1-methyltransferase activity, exhibits C-7-methyltransferase activity, thereby producing imG2 from imG-14. We thus suggest renaming such aTrm5a methyltransferases as Taw21 to distinguish between monofunctional and bifunctional aTrm5a enzymes.
机译:在真核和古细菌tRNAPhe的37位发现了三环酪氨酸衍生物。在古细菌中,中间的imG-14被三种不同的酶靶向,这些酶催化yW-86,imG和imG2的形成。我们以前曾提出过一种特殊的甲基转移酶(aTrm5a / Taw22)可能催化两个不同的反应:鸟苷的N-1-甲基化产生m(1)G;和imG-14的甲基化生成imG2。在这里,我们显示了来自深红热球菌和马纳诺氏菌的重组aTrm5a / Taw22样酶确实具有这种双重特异性。我们还显示,替代的深黑假单胞菌Taw22(P260N,E173A和R174A)的单个保守氨基酸对m(1)G / imG2的形成具有不同的影响,同时替换R134,F165,E213和P262用丙氨酸消除G37的两个衍生物的形成。我们进一步证明,来自Sulfolobus solfataricus的aTrm5a型酶SSO2439不具有N-1-甲基转移酶活性,表现出C-7-甲基转移酶活性,从而从imG-14产生imG2。因此,我们建议将aTrm5a甲基转移酶更名为Taw21,以区分单功能和双功能aTrm5a酶。

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