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通过计算研究使环状芽孢杆菌木聚糖酶的pK位移合理化。

Rationalising pK shifts in Bacillus circulans xylanase with computational studies.

作者信息

Xiao Kela, Yu Haibo

机构信息

School of Chemistry, University of Wollongong, NSW 2522, Australia.

出版信息

Phys Chem Chem Phys. 2016 Nov 9;18(44):30305-30312. doi: 10.1039/c6cp02526a.

Abstract

Bacillus circulans xylanase (BcX), a family 11 glycoside hydrolase, catalyses the hydrolysis of xylose polymers with a net retention of stereochemistry. Glu172 in BcX is believed to act as a general acid by protonating the aglycone during glycosylation, and then as a general base to facilitate the deglycosylation step. The key to the dual role of this general acid/base lies in its protonation states, which depend on its intrinsic pK value and the specific environment which it resides within. To fully understand the detailed molecular features in BcX to establish the dual role of Glu172, we present a combined study based on both atomistic simulations and empirical models to calculate pK shifts for the general acid/base Glu172 in BcX at different functional states. Its pK values and those of nearby residues, obtained based on QM/MM free energy calculations, MCCE and PROPKA, show a good agreement with available experimental data. Additionally, our study provides additional insights into the effects of structural and electrostatic perturbations caused by mutations and chemical modifications, suggesting that the local solvation environment and mutagenesis of the residues adjacent to Glu172 establish its dual role during hydrolysis. The strengths and limitations of various methods for calculating pKs and pK shifts have also been discussed.

摘要

环状芽孢杆菌木聚糖酶(BcX)是一种11家族糖苷水解酶,催化木糖聚合物的水解,立体化学净保留。BcX中的Glu172被认为在糖基化过程中通过使糖苷配基质子化而充当广义酸,然后作为广义碱促进去糖基化步骤。这种广义酸/碱双重作用的关键在于其质子化状态,这取决于其固有pK值及其所处的特定环境。为了全面了解BcX中建立Glu172双重作用的详细分子特征,我们提出了一项基于原子模拟和经验模型的联合研究,以计算BcX中处于不同功能状态的广义酸/碱Glu172的pK位移。基于QM/MM自由能计算、MCCE和PROPKA获得的其pK值以及附近残基的pK值与现有实验数据显示出良好的一致性。此外,我们的研究提供了关于突变和化学修饰引起的结构和静电扰动影响的更多见解,表明Glu172附近残基的局部溶剂化环境和诱变在水解过程中确立了其双重作用。还讨论了各种计算pK和pK位移方法的优缺点。

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