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LigJ水合酶的结构与反应机制:一种在原儿茶酸4,5-裂解途径中对木质素细菌降解至关重要的酶。

Structure and Reaction Mechanism of the LigJ Hydratase: An Enzyme Critical for the Bacterial Degradation of Lignin in the Protocatechuate 4,5-Cleavage Pathway.

作者信息

Hogancamp Tessily N, Mabanglo Mark F, Raushel Frank M

机构信息

Department of Chemistry , Texas A&M University , College Station , Texas 77843 , United States.

出版信息

Biochemistry. 2018 Oct 9;57(40):5841-5850. doi: 10.1021/acs.biochem.8b00713. Epub 2018 Sep 27.

Abstract

LigJ from the soil bacterium Sphingobium sp. SYK-6 catalyzes the reversible hydration of (3 Z)-2-keto-4-carboxy-3-hexenedioate (KCH) to 4-carboxy-4-hydroxy-2-oxoadipate (CHA) in the degradation of lignin in the protocatechuate 4,5-cleavage pathway. LigJ is a member of the amidohydrolase superfamily and an enzyme in cog2159. The three-dimensional crystal structure of wild-type LigJ was determined in the presence [Protein Data Bank (PDB) entry 6DXQ ] and absence of the product CHA (PDB entry 6DWV ). The protein folds as a distorted (β/α)-barrel, and a single zinc ion is bound in the active site at the C-terminal end of the central β-barrel. The product CHA is ligated to the zinc ion in the active site via the displacement of a single water molecule from the coordination shell of the metal center in LigJ. The product-bound structure reveals that the enzyme catalyzes the hydration of KCH with the formation of a chiral center at C4 with S stereochemistry. The E284Q mutant was unable to catalyze the hydration of KCH to CHA, and the structure of this mutant was determined in the presence of the substrate KCH (PDB entry 6DXS ). On the basis of the structure of LigJ in the presence of KCH and CHA, it is proposed that the side chain carboxylate of Glu-284 functions as a general base in the abstraction of a proton from a bound water molecule for nucleophilic attack at C4 of the substrate. The reaction is facilitated by the delocalization of the negative charge to the metal center via the carbonyl group at C2 of the substrate. C3 of the substrate is subsequently protonated by Glu-284 functioning as a general acid. The overall reaction occurs by the syn addition of water to the double bond between C4 and C3 of the substrate KCH. The kinetic constants for the hydration of KCH to CHA by LigJ at pH 8.0 are 25 s ( k) and 2.6 × 10 M s ( k/ K).

摘要

来自土壤细菌鞘氨醇单胞菌属Sphingobium sp. SYK-6的LigJ在原儿茶酸4,5-裂解途径的木质素降解过程中,催化(3Z)-2-酮基-4-羧基-3-己烯二酸(KCH)可逆水合生成4-羧基-4-羟基-2-氧代己二酸(CHA)。LigJ是酰胺水解酶超家族的成员,也是cog2159中的一种酶。在有产物CHA存在时(蛋白质数据库(PDB)条目6DXQ)和无产物CHA存在时(PDB条目6DWV)测定了野生型LigJ的三维晶体结构。该蛋白质折叠成扭曲的(β/α)-桶状结构,单个锌离子结合在中央β-桶C末端的活性位点。产物CHA通过取代LigJ中金属中心配位壳中的单个水分子,与活性位点的锌离子连接。产物结合结构表明,该酶催化KCH水合反应,在C4处形成具有S立体化学的手性中心。E284Q突变体无法催化KCH水合生成CHA,并在底物KCH存在的情况下测定了该突变体的结构(PDB条目6DXS)。基于KCH和CHA存在时LigJ的结构,有人提出Glu-284的侧链羧酸盐在从结合的水分子中夺取质子以对底物的C4进行亲核攻击时起通用碱的作用。底物C2处的羰基将负电荷离域到金属中心,促进了该反应。底物的C3随后被起通用酸作用的Glu-284质子化。整个反应通过水顺式加成到底物KCH的C4和C3之间的双键上发生。LigJ在pH 8.0时将KCH水合生成CHA的动力学常数为25 s⁻¹(kcat)和2.6×10⁻³ M⁻¹ s⁻¹( kcat/Km)。

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