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Characterization and evolutionary history of an archaeal kinase involved in selenocysteinyl-tRNA formation

机译:硒代半胱氨酰-tRNA形成的古细菌激酶的表征和进化史。

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Selenocysteine (Sec)-decoding archaea and eukaryotes employ a unique route of Sec-tRNA(Sec) synthesis in which O-phosphoseryl-tRNA(Sec) kinase (PSTK) phosphorylates Ser-tRNA(Sec) to produce the O-phosphoseryl-tRNA(Sec) (Sep-tRNA(Sec)) substrate that Sep-tRNA:Sec-tRNA synthase (SepSecS) converts to Sec-tRNA(Sec). This study presents a biochemical characterization of Methanocaldococcus jannaschii PSTK, including kinetics of Sep-tRNA(Sec) formation (K-m for Ser-tRNA(Sec) of 40 nM and ATP of 2.6 mM). PSTK binds both Ser-tRNA(Sec) and tRNA(Sec) with high affinity (K-d values of 53 nM and 39 nM, respectively). The ATPase activity of PSTK may be activated via an induced fit mechanism in which binding of tRNA(Sec) specifically stimulates hydrolysis. Albeit with lower activity than ATP, PSTK utilizes GTP, CTP, UTP and dATP as phosphate-donors. Homology with related kinases allowed prediction of the ATPase active site, comprised of phosphate-binding loop (P-loop), Walker B and RxxxR motifs. Gly14, Lys17, Ser18, Asp41, Arg116 and Arg120 mutations resulted in enzymes with decreased activity highlighting the importance of these conserved motifs in PSTK catalysis both in vivo and in vitro. Phylogenetic analysis of PSTK in the context of its DxTN kinase family shows that PSTK co-evolved precisely with SepSecS and indicates the presence of a previously unidentified PSTK in Plasmodium species.
机译:硒代半胱氨酸(Sec)编码古细菌和真核生物采用独特的Sec-tRNA(Sec)合成途径,其中O-磷酸核糖基tRNA(Sec)激酶(PSTK)磷酸化Ser-tRNA(Sec)以产生O-磷酸核糖基tRNA Sep-tRNA:Sec-tRNA合酶(SepSecS)转换为Sec-tRNA(Sec)的(Sec)(Sep-tRNA(Sec))底物。这项研究提出了詹氏甲烷球菌PSTK的生化特征,包括Sep-tRNA(Sec)形成的动力学(Ser-tRNA(Sec)的K-m为40 nM,ATP为2.6 mM)。 PSTK以高亲和力(分别为53 nM和39 nM的K-d值)结合Ser-tRNA(Sec)和tRNA(Sec)。 PSTK的ATPase活性可以通过诱导拟合机制激活,其中tRNA(Sec)的结合特异性刺激水解。尽管PSTK的活性比ATP低,但PSTK利用GTP,CTP,UTP和dATP作为磷酸盐供体。与相关激酶的同源性可以预测ATPase活性位点,该位点由磷酸结合环(P环),Walker B和RxxxR基序组成。 Gly14,Lys17,Ser18,Asp41,Arg116和Arg120突变导致酶活性降低,突出了这些保守基序在体内和体外PSTK催化中的重要性。在其DxTN激酶家族的背景下,对PSTK的系统进化分析表明,PSTK与SepSecS精确地共同进化,并表明疟原虫物种中存在以前未鉴定的PSTK。

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