Suppr超能文献

辣根过氧化物酶中精氨酸38的作用再探讨:一项计算研究。

The role of arginine 38 in horseradish peroxidase enzyme revisited: a computational investigation.

作者信息

Tatoli Simone, Zazza Costantino, Sanna Nico, Palma Amedeo, Aschi Massimiliano

机构信息

CASPUR, Rome, Italy.

出版信息

Biophys Chem. 2009 Apr;141(1):87-93. doi: 10.1016/j.bpc.2008.12.015. Epub 2009 Jan 15.

Abstract

Molecular dynamics simulations on hydrogen peroxide complex with wild-type (WT) and Arg38Leu mutated (R38L) Horseradish Peroxidase (HRP) were carried out over nanoseconds timescale in water solution at 300 K. Comparison of the results provides interesting insights about the role of highly conserved Arg38 and His42 residues in the chemical features of HRP, underlying its biological activity which initiates with Compound0 (Cpd0). In the WT-HRP enzyme current molecular dynamics simulations show, for the first time, that Arg38 residue: i) prevents the entrance of water inside the reaction cavity, hence providing a hydrophobic reactive scenario, ii) it maintains the distance between His42 and heme-H(2)O(2) complex suitable for the occurrence of proton transfer reaction leading, thereafter, to heme-H(2)O(2) disruption according to Poulos-Kraut mechanism. On the other hand, R38L mutant can be considered as a "wet enzyme" where the presence of water solvent molecules in the heme reaction pocket, unfavoring the initial heme-H(2)O(2) complex formation, decreases the catalytic efficiency in agreement with experimental kinetics measurements. Furthermore, we note that Arg38Leu mutation pushes the His42 residue far from the heme-H(2)O(2) complex, making unlikely a direct proton transfer and suggesting that, in the mutant, a solvent water molecule could be involved in the first step of the Poulos-Kraut mechanism.

摘要

在300K的水溶液中,对过氧化氢与野生型(WT)和精氨酸38突变为亮氨酸(R38L)的辣根过氧化物酶(HRP)的复合物进行了纳秒级的分子动力学模拟。结果比较为高度保守的精氨酸38和组氨酸42残基在HRP化学特性中的作用提供了有趣的见解,这是其以化合物0(Cpd0)起始的生物活性的基础。在WT-HRP酶中,当前的分子动力学模拟首次表明,精氨酸38残基:i)阻止水进入反应腔,从而提供疏水的反应环境;ii)保持组氨酸42与血红素-H₂O₂复合物之间的距离,适合质子转移反应的发生,进而根据普oulos-Kraut机制导致血红素-H₂O₂的破坏。另一方面,R38L突变体可被视为一种“湿酶”,其中血红素反应口袋中存在水溶剂分子,不利于最初的血红素-H₂O₂复合物形成,与实验动力学测量结果一致,降低了催化效率。此外,我们注意到精氨酸38突变为亮氨酸使组氨酸42残基远离血红素-H₂O₂复合物,使得直接质子转移不太可能发生,并表明在突变体中,溶剂水分子可能参与了普oulos-Kraut机制的第一步。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验