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木质素芳基醚键在 LigF 和 LigG 作用下的断裂催化机制。

Catalytic Mechanism of Aryl-Ether Bond Cleavage in Lignin by LigF and LigG.

机构信息

National Bioenergy Center , National Renewable Energy Laboratory , Golden , Colorado 80403 , United States.

Institute of Chemistry and Center for Computing in Engineering and Sciences , University of Campinas , Campinas , São Paulo 13084-862 , Brazil.

出版信息

J Phys Chem B. 2019 Dec 5;123(48):10142-10151. doi: 10.1021/acs.jpcb.9b06243. Epub 2019 Nov 19.

Abstract

Given the abundance of lignin in nature, multiple enzyme systems have been discovered to cleave the β-O-4 bonds, the most prevalent intermonomer linkage. In particular, stereospecific cleavage of lignin oligomers by glutathione -transferases (GSTs) has been reported in several sphingomonads. Here, we apply quantum mechanics/molecular mechanics simulations to study the mechanism of two glutathione-dependent enzymes in the β-aryl ether catabolic pathway of sp. SYK-6, namely, LigF, a β-etherase, and LigG, a lyase. For LigF, the free-energy landscape supports a S2 reaction mechanism, with the monoaromatic leaving group being promptly neutralized upon release. Specific interactions with conserved residues are responsible for stereoselectivity and for activation of the cofactor as a nucleophile. A glutathione conjugate is also released by LigF and serves the substrate of LigG, undergoing a S2-like reaction, in which Cys15 acts as the nucleophile, to yield the second monoaromatic product. The simulations suggest that the electron-donating substituent at the para-position found in lignin-derived aromatics and the interaction with Tyr217 are essential for reactivity in LigG. Overall, this work deepens the understanding of the stereospecific enzymatic mechanisms in the β-aryl ether cleavage pathway and reveals key structural features underpinning the ligninolytic activity detected in several sphingomonad GSTs.

摘要

鉴于自然界中木质素的丰富性,已经发现了多种酶系统来裂解β-O-4 键,这是最常见的单体间键。特别是,几种鞘氨醇单胞菌中报道了谷胱甘肽转移酶 (GSTs) 对木质素低聚物的立体特异性裂解。在这里,我们应用量子力学/分子力学模拟来研究 sp 的 β-芳基醚代谢途径中的两种谷胱甘肽依赖酶的机制。SYK-6,即 LigF,一种β-醚酶和 LigG,一种裂合酶。对于 LigF,自由能景观支持 S2 反应机制,单芳基离去基团在释放后立即被中和。与保守残基的特异性相互作用负责立体选择性和辅酶的活化作为亲核试剂。LigF 还释放出谷胱甘肽缀合物,并作为 LigG 的底物,经历类似于 S2 的反应,其中 Cys15 作为亲核试剂,生成第二个单芳基产物。模拟表明,木质素衍生芳烃中对位的供电子取代基和与 Tyr217 的相互作用对于 LigG 的反应性至关重要。总的来说,这项工作加深了对β-芳基醚裂解途径中立体特异性酶促机制的理解,并揭示了在几种鞘氨醇单胞菌 GST 中检测到的木质素裂解活性的关键结构特征。

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