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首页> 外文期刊>Nucleic Acids Research >C-terminal domain of archaeal O-phosphoseryl-tRNA kinase displays large-scale motion to bind the 7-bp D-stem of archaeal tRNA(Sec)
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C-terminal domain of archaeal O-phosphoseryl-tRNA kinase displays large-scale motion to bind the 7-bp D-stem of archaeal tRNA(Sec)

机译:古细菌O-磷酸甘油基-tRNA激酶的C端结构域显示出大规模运动,以结合古细菌tRNA的7 bp D-茎(Sec)

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摘要

O-Phosphoseryl-tRNA kinase (PSTK) is the key enzyme in recruiting selenocysteine (Sec) to the genetic code of archaea and eukaryotes. The enzyme phosphorylates Ser-tRNA(Sec) to produce O-phosphoseryl-tRNA(Sec) (Sep-tRNA(Sec)) that is then converted to Sec-tRNA(Sec) by Sep-tRNA:Sec-tRNA synthase. Earlier we reported the structure of the Methanocaldococcus jannaschii PSTK (MjPSTK) complexed with AMPPNP. This study presents the crystal structure (at 2.4-A resolution) of MjPSTK complexed with an anticodon-stem/loop truncated tRNA(Sec) (Mj*tRNA(Sec)), a good enzyme substrate. Mj*tRNA(Sec) is bound between the enzyme's C-terminal domain (CTD) and N-terminal kinase domain (NTD) that are connected by a flexible 11 amino acid linker. Upon Mj*tRNA(Sec) recognition the CTD undergoes a 62-A movement to allow proper binding of the 7-bp D-stem. This large reorganization of the PSTK quaternary structure likely provides a means by which the unique tRNA(Sec) species can be accurately recognized with high affinity by the translation machinery. However, while the NTD recognizes the tRNA acceptor helix, shortened versions of MjPSTK (representing only 60% of the original size, in which the entire CTD, linker loop and an adjacent NTD helix are missing) are still active in vivo and in vitro, albeit with reduced activity compared to the full-length enzyme.
机译:O-磷酸丝氨酰-tRNA激酶(PSTK)是招募硒代半胱氨酸(Sec)到古细菌和真核生物遗传密码的关键酶。该酶将Ser-tRNA(Sec)磷酸化以产生O-磷酸甘油基tRNA(Sec)(Sep-tRNA(Sec)),然后通过Sep-tRNA:Sec-tRNA合酶将其转化为Sec-tRNA(Sec)。早些时候,我们报道了与AMPPNP复合的詹氏甲烷球菌PSTK(MjPSTK)的结构。这项研究提出了MjPSTK的晶体结构(以2.4-A的分辨率)与反密码子-茎/环截短的tRNA(Sec)(Mj * tRNA(Sec))复合的良好酶底物。 Mj * tRNA(Sec)结合在酶的C末端结构域(CTD)和N末端激酶结构域(NTD)之间,该结构域通过11个氨基酸的柔性接头连接。在Mj * tRNA(Sec)识别后,CTD经历62-A运动,以允许7 bp D-茎的正确结合。 PSTK四级结构的这种巨大重组可能提供了一种手段,通过该手段,翻译机可以以高亲和力准确识别独特的tRNA(Sec)物种。但是,尽管NTD可以识别tRNA受体螺旋,但MjPSTK的缩短版本(仅占原始大小的60%,其中缺少完整的CTD,接头环和相邻的NTD螺旋),在体内和体外仍然有效,尽管与全长酶相比活性降低。

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