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古细菌的蛋白质合成质量控制需要一个独立的校对结构域。

A freestanding proofreading domain is required for protein synthesis quality control in Archaea.

作者信息

Korencic Dragana, Ahel Ivan, Schelert James, Sacher Meik, Ruan Benfang, Stathopoulos Constantinos, Blum Paul, Ibba Michael, Söll Dieter

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520-8114, USA.

出版信息

Proc Natl Acad Sci U S A. 2004 Jul 13;101(28):10260-5. doi: 10.1073/pnas.0403926101. Epub 2004 Jul 6.

Abstract

Threonyl-tRNA synthetase (ThrRS) participates in protein synthesis quality control by selectively editing the misacylated species Ser-tRNA(Thr). In bacteria and eukaryotes the editing function of ThrRS resides in a highly conserved N-terminal domain distant from the active site. Most archaeal ThrRS proteins are devoid of this editing domain, suggesting evolutionary divergence of quality-control mechanisms. Here we show that archaeal editing of Ser-tRNAThr is catalyzed by a domain unrelated to, and absent from, bacterial and eukaryotic ThrRSs. Despite the lack of sequence homology, the archaeal and bacterial editing domains are both reliant on a pair of essential histidine residues suggestive of a common catalytic mechanism. Whereas the archaeal editing module is most commonly part of full-length ThrRS, several crenarchaeal species contain individual genes encoding the catalytic (ThrRS-cat) and editing domains (ThrRS-ed). Sulfolobus solfataricus ThrRS-cat was shown to synthesize both Thr-tRNAThr and Ser-tRNAThr and to lack editing activity against Ser-tRNAThr. In contrast, ThrRS-ed lacks aminoacylation activity but can act as an autonomous protein in trans to hydrolyze specifically Ser-tRNAThr, or it can be fused to ThrRS-cat to provide the same function in cis. Deletion analyses indicate that ThrRS-ed is dispensable for growth of S. solfataricus under standard conditions but is required for normal growth in media with elevated serine levels. The growth phenotype of the ThrRS-ed deletion strain suggests that retention of the discontinuous ThrRS quaternary structure relates to specific physiological requirements still evident in certain Archaea.

摘要

苏氨酰 - tRNA合成酶(ThrRS)通过选择性地编辑错误酰化的丝氨酸 - tRNA(Thr)来参与蛋白质合成质量控制。在细菌和真核生物中,ThrRS的编辑功能位于远离活性位点的高度保守的N端结构域。大多数古菌的ThrRS蛋白缺乏这种编辑结构域,这表明质量控制机制在进化上存在差异。在这里,我们表明古菌对丝氨酸 - tRNAThr的编辑是由一个与细菌和真核生物ThrRS无关且不存在于其中的结构域催化的。尽管缺乏序列同源性,但古菌和细菌的编辑结构域都依赖于一对必需的组氨酸残基,这暗示了一种共同的催化机制。虽然古菌编辑模块最常见的是全长ThrRS的一部分,但一些泉古菌物种含有单独编码催化(ThrRS - cat)和编辑结构域(ThrRS - ed)的基因。嗜热栖热菌的ThrRS - cat被证明既能合成苏氨酸 - tRNAThr又能合成丝氨酸 - tRNAThr,并且对丝氨酸 - tRNAThr缺乏编辑活性。相反,ThrRS - ed缺乏氨酰化活性,但可以作为一种反式自主蛋白特异性地水解丝氨酸 - tRNAThr,或者它可以与ThrRS - cat融合以在顺式中提供相同的功能。缺失分析表明,在标准条件下,ThrRS - ed对嗜热栖热菌的生长不是必需的,但在丝氨酸水平升高的培养基中正常生长是必需的。ThrRS - ed缺失菌株的生长表型表明,不连续的ThrRS四级结构的保留与某些古菌中仍然明显的特定生理需求有关。

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