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量子力学研究氧配体质子化对漆酶活性部位稳定态的影响。

Quantum Mechanical Study of Oxygen Ligands Protonation for the Stable States of the Laccase Active Site.

机构信息

Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilova Str. 32, 119334 Moscow, Russia.

Institute for Translational Medicine and Biotechnology, Sechenov First Moscow State Medical University, 2-4 Bolshaya Pirogovskaya Str., 119991 Moscow, Russia.

出版信息

Int J Mol Sci. 2023 Feb 3;24(3):2990. doi: 10.3390/ijms24032990.

Abstract

Laccases are enzymes catalyzing the oxidation of a wide range of organic and inorganic substrates accompanied by molecular oxygen reduction to water. Recently, oxygen reduction by laccases has been studied by single-crystal serial X-ray crystallography with increasing absorption doses at subatomic resolution. There were two determined structures corresponding to the reduced and oxidized stable states of the laccase active site. However, the protonation of the oxygen ligands involved cannot be determined even at subatomic resolution. In the present work, the protonation of oxygen ligands in the active site of laccase for the two stable states determined in the X-ray study was explored using quantum mechanical and continuum-electrostatics calculations. This is important for understanding the reaction of the oxygen reduction mechanism in laccases. The high precision of X-ray data at subatomic resolutions allowed us to optimize the quantum mechanical calculations.

摘要

漆酶是一种能够催化氧化广泛的有机和无机底物的酶,同时伴随着分子氧还原为水。最近,通过使用单晶连续 X 射线晶体学技术,在亚原子分辨率下增加吸收剂量,对漆酶的氧还原进行了研究。有两个确定的结构对应于漆酶活性位点的还原和氧化稳定状态。然而,即使在亚原子分辨率下,也无法确定氧配体的质子化。在本工作中,使用量子力学和连续静电计算方法探索了 X 射线研究中确定的两种稳定状态下漆酶活性位点中氧配体的质子化。这对于理解漆酶中氧还原机制的反应很重要。亚原子分辨率的 X 射线数据的高精度使我们能够优化量子力学计算。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6953/9917769/488233031df7/ijms-24-02990-g001.jpg

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