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Structure and Mechanism of the Diiron Benzoyl-Coenzyme A Epoxidase BoxB

机译:二铁苯甲酰辅酶A环氧化酶BoxB的结构与机理

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摘要

The coenzyme A (CoA)-dependent aerobic benzoate metabolic pathway uses an unprecedented chemical strategy to overcome the high aromatic resonance energy by forming the non-aromatic 2,3-epoxybenzoyl-CoA. The crucial dearomatizing reaction is catalyzed by three enzymes, BoxABC, where BoxA is an NADPH-dependent reductase, BoxB is a benzoyl-CoA 2,3-epoxidase, and BoxC is an epoxide ring hydrolase. We characterized the key enzyme BoxB from Azoarcus evansii by structural and Mössbauer spectroscopic methods as a new member of class I diiron enzymes. Several family members were structurally studied with respect to the diiron center architecture, but no structure of an intact diiron enzyme with its natural substrate has been reported. X-ray structures between 1.9 and 2.5 Å resolution were determined for BoxB in the diferric state and with bound substrate benzoyl-CoA in the reduced state. The substrate-bound reduced state is distinguished from the diferric state by increased iron-ligand distances and the absence of directly bridging groups between them. The position of benzoyl-CoA inside a 20 Å long channel and the position of the phenyl ring relative to the diiron center are accurately defined. The C2 and C3 atoms of the phenyl ring are closer to one of the irons. Therefore, one oxygen of activated O2 must be ligated predominantly to this proximate iron to be in a geometrically suitable position to attack the phenyl ring. Consistent with the observed iron/phenyl geometry, BoxB stereoselectively should form the 2S,3R-epoxide. We postulate a reaction cycle that allows a charge delocalization because of the phenyl ring and the electron-withdrawing CoA thioester.
机译:辅酶A(CoA)依赖的好氧苯甲酸酯代谢途径使用了前所未有的化学策略,通过形成非芳香族的2,3-环氧苯甲酰基-CoA来克服高芳香族共振能。关键的脱芳香化反应由三种酶BoxABC催化,其中BoxA是依赖NADPH的还原酶,BoxB是苯甲酰-CoA 2,3-环氧化酶,BoxC是环氧化物水解酶。我们通过结构和Mössbauer光谱学方法将来自伊兹海豹的关键酶BoxB表征为I类二价铁的新成员。关于二铁中心构型对几个家族成员进行了结构研究,但是没有报道完整的二铁酶及其天然底物的结构。对于处于二铁状态的BoxB和处于还原状态的结合底物苯甲酰辅酶A,确定了1.9至2.5Å分辨率的X射线结构。底物结合的还原态与二铁态的区别在于增加的铁-配体距离以及它们之间不存在直接桥联基团。精确定义了20Å长的通道内苯甲酰辅酶A的位置以及相对于二铁中心的苯环位置。苯环的C2和C3原子更靠近其中一个铁。因此,必须将活化的O2的一个氧主要连接到该邻近的铁上,以使其处于几何上合适的位置以攻击苯环。与观察到的铁/苯基几何形状一致,BoxB立体选择性地应形成2S,3R-环氧化物。我们假定由于苯环和吸电子的CoA硫酯而使电荷离域的反应循环。

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