首页> 外文期刊>Journal of Molecular Biology >Structure of selenophosphate synthetase essential for selenium incorporation into proteins and RNAs.
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Structure of selenophosphate synthetase essential for selenium incorporation into proteins and RNAs.

机译:硒掺入蛋白质和RNA中必不可少的硒磷酸合成酶的结构。

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Selenophosphate synthetase (SPS) catalyzes the activation of selenide with adenosine 5'-triphosphate (ATP) to generate selenophosphate, the essential reactive selenium donor for the formation of selenocysteine (Sec) and 2-selenouridine residues in proteins and RNAs, respectively. Many SPS are themselves Sec-containing proteins, in which Sec replaces Cys in the catalytically essential position (Sec/Cys). We solved the crystal structures of Aquifex aeolicus SPS and its complex with adenosine 5'-(alpha,beta-methylene) triphosphate (AMPCPP). The ATP-binding site is formed at the subunit interface of the homodimer. Four Asp residues coordinate four metal ions to bind the phosphate groups of AMPCPP. In the free SPS structure, the two loop regions in the ATP-binding site are not ordered, and no enzyme-associated metal is observed. This suggests that ATP binding, metal binding, and the formation of their binding sites are interdependent. To identify the amino-acid residues that contribute to SPS activity, we prepared six mutants of SPS and examined their selenide-dependent ATP consumption. Mutational analyses revealed that Sec/Cys13 and Lys16 are essential. In SPS.AMPCPP, the N-terminal loop, including the two residues, assumes different conformations ("open" and "closed") between the two subunits. The AMPCPP gamma-phosphate group is solvent-accessible, suggesting that a putative nucleophile could attack the ATP gamma-phosphate group to generate selenophosphate and adenosine 5'-diphosphate (ADP). Selenide attached to Sec/Cys13 as -Se-Se(-)/-S-Se(-) could serve as the nucleophile in the "closed" conformation. A water molecule, fixed close to the beta-phosphate group, could function as the nucleophile in subsequent ADP hydrolysis to orthophosphate and adenosine 5'-monophosphate.
机译:硒磷酸合成酶(SPS)催化硒酸与5'-三磷酸腺苷(ATP)活化,生成硒代磷酸,硒代磷酸是硒化半胱氨酸(Sec)和2-硒代尿苷残基分别在蛋白质和RNA中形成的重要反应性硒供体。许多SPS本身就是含有Sec的蛋白质,其中Sec在催化必不可少的位置(Sec / Cys)取代了Cys。我们解决了Aquifex aeolicus SPS的晶体结构及其与5'-(α,β-亚甲基)三磷酸腺苷(AMPCPP)形成的复合物的问题。 ATP结合位点在同型二聚体的亚基界面处形成。四个Asp残基配位四个金属离子以结合AMPCPP的磷酸基团。在自由的SPS结构中,ATP结合位点中的两个环区域是不规则的,并且未观察到与酶相关的金属。这表明ATP结合,金属结合及其结合位点的形成是相互依赖的。为了鉴定有助于SPS活性的氨基酸残基,我们准备了6个SPS突变体,并检查了它们依赖硒化物的ATP消耗量。突变分析显示,Sec / Cys13和Lys16是必不可少的。在SPS.AMPCPP中,包括两个残基的N末端环在两个亚基之间呈现不同的构象(“开放”和“封闭”)。 AMPCPPγ-磷酸基团可通过溶剂接近,这表明推定的亲核试剂可攻击ATPγ-磷酸基团,从而生成硒代磷酸酯和5'-二磷酸腺苷(ADP)。以-Se-Se(-)/-S-Se(-)形式连接到Sec / Cys13上的硒化物可以充当“封闭”构象的亲核试剂。固定在β-磷酸酯基团附近的水分子可以在随后的ADP水解为正磷酸酯和5'-单磷酸腺苷的过程中充当亲核试剂。

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