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首页> 外文期刊>Chemistry: A European journal >The Crystal Structure of a Homodimeric Pseudomonas Glyoxalase I Enzyme Reveals Asymmetric Metallation Commensurate with Half-of-Sites Activity
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The Crystal Structure of a Homodimeric Pseudomonas Glyoxalase I Enzyme Reveals Asymmetric Metallation Commensurate with Half-of-Sites Activity

机译:同源二聚假单胞菌乙二醛酶I的晶体结构揭示了不对称的金属化与站点的一半活动相称。

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The Zn inactive class of glyoxalase I (Glo1) metalloenzymes are typically homodimeric with two metal-dependent active sites. While the two active sites share identical amino acid composition, this class of enzyme is optimally active with only one metal per homodimer. We have determined the X-ray crystal structure of GloA2, a Zn inactive Glo1 enzyme from Pseudomonas aeruginosa. The presented structures exhibit an unprecedented metal-binding arrangement consistent with half-of-sites activity: one active site contains a single activating Ni2+ ion, whereas the other contains two inactivating Zn2+ ions. Enzymological experiments prompted by the binuclear Zn2+ site identified a novel catalytic property of GloA2. The enzyme can function as a Zn2+/Co2+-dependent hydrolase, in addition to its previously determined glyoxalase I activity. The presented findings demonstrate that GloA2 can accommodate two distinct metal-binding arrangements simultaneously, each of which catalyzes a different reaction.
机译:乙二酸乙二醛酶I(Glo1)金属酶的Zn失活类型通常是具有两个金属依赖性活性位点的同型二聚体。虽然两个活性位点具有相同的氨基酸组成,但这类酶在每个同二聚体中仅含一种金属时具有最佳活性。我们已经确定了GloA2的X射线晶体结构,GloA2是一种来自铜绿假单胞菌的Zn失活的Glo1酶。呈现的结构展现出前所未有的金属结合排列,与位点一半的活性一致:一个活性位点包含一个活化的Ni2 +离子,而另一个活性位点包含两个失活的Zn2 +离子。由双核Zn2 +位点推动的酶学实验确定了GloA2的新型催化性能。该酶除先前确定的乙二醛酶I活性外,还可以充当Zn2 + / Co2 +依赖性水解酶。提出的发现表明,GloA2可以同时容纳两种不同的金属结合结构,每种催化不同的反应。

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