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Common basis for the mechanism of metallo and non-metallo KDO8P synthases

机译:金属和非金属KDO8P合成酶机理的共同基础

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The three-dimensional structures of metal and non-metal enzymes that catalyze the same reaction are often quite different, a clear indication of convergent evolution. However, there are interesting cases in which the same scaffold supports both a metal and a non-metal catalyzed reaction. One of these is 3-deoxy-D-manno-octulosonate 8-phosphate (KDO8P) synthase (KDO8PS), a bacterial enzyme that catalyzes the synthesis of KDO8P and inorganic phosphate (P_i) from phosphoenolpyruvate (PEP), arabinose 5-phosphate (A5P), and water. This reaction is one of the key steps in the biosynthesis of bacterial endotoxins. The evolutionary tree of KDO8PS is evenly divided between metal and non-metal forms, both having essentially identical structures. Mutagenesis and crystallographic studies suggest that one or two residues at most determine whether or not KDO8PS requires a metal for function, a clear example of "minimalist evolution". Quantum mechanical/molecular mechanical (QM/MM) simulations of both the enzymatic and non-enzymatic synthesis of KDO8P have revealed the mechanism underlying the switch between metal and non-metal dependent catalysis. The principle emerging from these studies is that this conversion is possible in KDO8PS because the metal is not involved in an activation process, but primarily contributes to orienting properly the reactants to lower the activation energy, an action easily mimicked by amino acid side-chains.
机译:催化相同反应的金属和非金属酶的三维结构通常是完全不同的,这清楚地表明了聚合的发展。然而,在有趣的情况下,同一支架同时支持金属和非金属催化的反应。其中一种是3-脱氧-D-甘露糖八酸8磷酸酯(KDO8P)合酶(KDO8PS),这是一种细菌酶,可催化磷酸烯醇丙酮酸(PEP),阿拉伯糖5-磷酸(KP)合成KDO8P和无机磷酸(P_i)( A5P)和水。该反应是细菌内毒素生物合成中的关键步骤之一。 KDO8PS的进化树在金属和非金属形式之间均等地划分,两者都具有基本相同的结构。诱变和晶体学研究表明,至多一个或两个残基决定KDO8PS是否需要金属来发挥功能,这是“极简主义进化论”的一个明显例子。酶促和非酶促合成KDO8P的量子力学/分子力学(QM / MM)模拟已经揭示了金属和非金属依赖性催化之间转换的机理。这些研究得出的原理是,这种转化在KDO8PS中是可能的,因为该金属不参与活化过程,但主要有助于正确定向反应物以降低活化能,这种作用很容易被氨基酸侧链模仿。

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