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助溶剂-水相互作用在介质对酶功能影响中的作用:以荧光素酶为例

The Role of Cosolvent-Water Interactions in Effects of the Media on Functionality of Enzymes: A Case Study of Luciferase.

作者信息

Lisitsa Albert E, Sukovatyi Lev A, Deeva Anna A, Gulnov Dmitry V, Esimbekova Elena N, Kratasyuk Valentina A, Nemtseva Elena V

机构信息

Biophysics Department, Siberian Federal University, 660041 Krasnoyarsk, Russia.

Institute of Biophysics, Siberian Branch of Russian Academy of Sciences, 660036 Krasnoyarsk, Russia.

出版信息

Life (Basel). 2023 Jun 13;13(6):1384. doi: 10.3390/life13061384.

Abstract

A complex heterogeneous intracellular environment seems to affect enzymatic catalysis by changing the mobility of biomolecules, their stability, and their conformational states, as well as by facilitating or hindering continuously occurring interactions. The evaluation and description of the influence of the cytoplasmic matrix components on enzymatic activity are problems that remain unsolved. In this work, we aimed to determine the mechanisms of action of two-component media with cosolvents of various molecular sizes on the complex multi-stage bioluminescent reaction catalyzed by bacterial luciferase. Kinetic and structural effects of ethylene glycol, glycerol, sorbitol, glucose, sucrose, dextran, and polyethylene glycol on bacterial luciferase were studied using stopped-flow and fluorescence spectroscopy techniques and molecular dynamics simulations. We have found that diffusion limitations in the presence of cosolvents promote the stabilization of flavin substrate and peroxyflavin intermediate of the reaction, but do not provide any advantages in bioluminescence quantum yield, because substrate binding is slowed down as well. The catalytic constant of bacterial luciferase has been found to be viscosity-independent and correlated with parameters of water-cosolvent interactions (Norrish constant, van der Waals interaction energies). Crowding agents, in contrast to low-molecular-weight cosolvents, had little effect on peroxyflavin intermediate decay and enzyme catalytic constant. We attributed specific kinetic effects to the preferential interaction of the cosolvents with enzyme surface and their penetration into the active site.

摘要

复杂的异质细胞内环境似乎通过改变生物分子的流动性、稳定性和构象状态,以及促进或阻碍持续发生的相互作用来影响酶催化。细胞质基质成分对酶活性影响的评估和描述仍然是未解决的问题。在这项工作中,我们旨在确定含有各种分子大小共溶剂的双组分介质对细菌荧光素酶催化的复杂多阶段生物发光反应的作用机制。使用停流和荧光光谱技术以及分子动力学模拟研究了乙二醇、甘油、山梨醇、葡萄糖、蔗糖、右旋糖酐和聚乙二醇对细菌荧光素酶的动力学和结构影响。我们发现,在共溶剂存在下的扩散限制促进了反应中黄素底物和过氧黄素中间体的稳定,但在生物发光量子产率方面没有提供任何优势,因为底物结合也减慢了。已发现细菌荧光素酶的催化常数与粘度无关,并且与水 - 共溶剂相互作用的参数(诺里什常数、范德华相互作用能)相关。与低分子量共溶剂相比,拥挤剂对过氧黄素中间体的衰变和酶催化常数影响很小。我们将特定的动力学效应归因于共溶剂与酶表面的优先相互作用及其渗透到活性位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1e7/10301326/e867f89281bc/life-13-01384-g001.jpg

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