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Structural and mutational studies of the amino acid-editing domain from archaeal/eukaryal phenylalanyl-tRNA synthetase

机译:来自古细菌/真核生物苯丙氨酰-tRNA合成酶的氨基酸编辑域的结构和突变研究

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摘要

To achieve accurate aminoacylation of tRNAs with their cognate amino acids, errors in aminoacylation are corrected by the "editing" mechanism in several aminoacyl-tRNA synthetases. Phenylalanyl-tRNA synthetase (PheRS) hydrolyzes, or edits, misformed tyrosyl-tRNA with its editing domain in the β subunit. We report the crystal structure of an N-terminal fragment of the PheRS β subunit (PheRS-β~N) from the archaeon, Pyrococcus horikoshii, at 1.94-A resolution. PheRS-β~N includes the editing domain B3/4, which has archaea/eukarya-specific insertions/deletions and adopts a different orientation relative to other domains, as compared with that of bacterial PheRS. Surprisingly, most residues constituting the editing active-site pocket were substituted between the archaeal/eukaryal and bacterial PheRSs. We prepared Ala-substituted mutants of P. horikoshii PheRS for 16 editing-pocket residues, of which 12 are archaea/eukarya-specific and four are more widely conserved. On the basis of their activities, Tyr-adenosine was modeled on the B3/4-domain structure. First, the mutations of Leu-202, Ser-211, Asp-234, and Thr-236 made the PheRS incorrectly hydrolyze the cognate Phe-tRNA~(Phe), indicating that these residues participate in the Tyr hydroxy group recognition and are responsible for discrimination against Phe. Second, the mutations of Leu-168 and Arg-223, which could interact with the tRNA 3'-terminal adenosine, reduced Tyr-tRNA~(Phe) deacylation activity. Third, the mutations of archaea/eukarya-specific Gln-126, Glu-127, Arg-137, and Asn-217, which are proximal to the ester bond to be cleaved, also reduced Tyr-tRNA~(Phe) deacylation activity. In particular, the replacement of Asn-217 abolished the activity, revealing its absolute requirement for the catalysis.
机译:为了实现tRNA及其相关氨基酸的准确氨酰化,氨基酰化中的错误通过几种氨酰基-tRNA合成酶中的“编辑”机制得以纠正。苯丙氨酰-tRNA合成酶(PheRS)水解或编辑变形的酪氨酸-tRNA,其编辑结构域位于β亚基中。我们报道了古细菌Pyrococcus horikoshii的PheRSβ亚基(PheRS-β〜N)N末端片段的晶体结构,分辨率为1.94-A。 PheRS-β〜N包含编辑域B3 / 4,与细菌PheRS相比,该编辑域具有古细菌/真核生物特定的插入/缺失,并且相对于其他域具有不同的方向。令人惊讶的是,构成编辑活性位点口袋的大多数残基在古细菌/真核和细菌PheRS之间被取代。我们为P. horikoshii PheRS的Ala取代突变体准备了16个编辑位残基,其中12个是古细菌/真核生物特异的,而4个则更为保守。基于它们的活性,在B3 / 4-结构域结构上模拟了Tyr-腺苷。首先,Leu-202,Ser-211,Asp-234和Thr-236的突变使PheRS错误地水解了相关的Phe-tRNA〜(Phe),表明这些残基参与了Tyr羟基的识别并负责歧视菲。其次,可以与tRNA 3'-末端腺苷相互作用的Leu-168和Arg-223突变降低了Tyr-tRNA〜(Phe)脱酰活性。第三,古细菌/真核生物特异的Gln-126,Glu-127,Arg-137和Asn-217的突变,靠近要裂解的酯键,也降低了Tyr-tRNA〜(Phe)脱酰活性。特别是,Asn-217的取代取消了该活性,表明了其对催化作用的绝对要求。

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