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揭示一种进化出的多功能过氧化物酶的碱稳定性基础。

Unveiling the basis of alkaline stability of an evolved versatile peroxidase.

作者信息

Sáez-Jiménez Verónica, Acebes Sandra, Garcia-Ruiz Eva, Romero Antonio, Guallar Victor, Alcalde Miguel, Medrano Francisco J, Martínez Angel T, Ruiz-Dueñas Francisco J

机构信息

Centro de Investigaciones Biológicas, CSIC, Ramiro de Maeztu 9, E-28040 Madrid, Spain.

Joint BSC-CRG-IRB Research Program in Computational Biology, Barcelona Supercomputing Center, Jordi Girona 29, E-08034 Barcelona, Spain Anaxomics Biotech, Balmes 89, E-08008 Barcelona, Spain.

出版信息

Biochem J. 2016 Jul 1;473(13):1917-28. doi: 10.1042/BCJ20160248. Epub 2016 Apr 26.

Abstract

A variant of high biotechnological interest (called 2-1B) was obtained by directed evolution of the Pleurotus eryngii VP (versatile peroxidase) expressed in Saccharomyces cerevisiae [García-Ruiz, González-Pérez, Ruiz-Dueñas, Martínez and Alcalde (2012) Biochem. J. 441: , 487-498]. 2-1B shows seven mutations in the mature protein that resulted in improved functional expression, activity and thermostability, along with a remarkable stronger alkaline stability (it retains 60% of the initial activity after 120 h of incubation at pH 9 compared with complete inactivation of the native enzyme after only 1 h). The latter is highly demanded for biorefinery applications. In the present study we investigate the structural basis behind the enhanced alkaline stabilization of this evolved enzyme. In order to do this, several VP variants containing one or several of the mutations present in 2-1B were expressed in Escherichia coli, and their alkaline stability and biochemical properties were determined. In addition, the crystal structures of 2-1B and one of the intermediate variants were solved and carefully analysed, and molecular dynamics simulations were carried out. We concluded that the introduction of three basic residues in VP (Lys-37, Arg-39 and Arg-330) led to new connections between haem and helix B (where the distal histidine residue is located), and formation of new electrostatic interactions, that avoided the hexa-co-ordination of the haem iron. These new structural determinants stabilized the haem and its environment, helping to maintain the structural enzyme integrity (with penta-co-ordinated haem iron) under alkaline conditions. Moreover, the reinforcement of the solvent-exposed area around Gln-305 in the proximal side, prompted by the Q202L mutation, further enhanced the stability.

摘要

通过对在酿酒酵母中表达的杏鲍菇多功能过氧化物酶(VP)进行定向进化,获得了一种具有高生物技术价值的变体(称为2-1B)[加西亚 - 鲁伊斯、冈萨雷斯 - 佩雷斯、鲁伊斯 - 杜埃尼亚斯、马丁内斯和阿尔卡德(2012年)《生物化学杂志》441卷:,487 - 498页]。2-1B在成熟蛋白中显示出七个突变,这些突变导致功能表达、活性和热稳定性得到改善,同时具有显著更强的碱性稳定性(在pH 9下孵育120小时后保留60%的初始活性,而天然酶仅1小时后就完全失活)。后者在生物炼制应用中具有很高的需求。在本研究中,我们探究了这种进化酶增强碱性稳定性背后的结构基础。为此,在大肠杆菌中表达了含有2-1B中一个或几个突变的几种VP变体,并测定了它们的碱性稳定性和生化特性。此外,解析并仔细分析了2-1B和一种中间变体的晶体结构,并进行了分子动力学模拟。我们得出结论,在VP中引入三个碱性残基(赖氨酸-37、精氨酸-39和精氨酸-330)导致了血红素与螺旋B(远端组氨酸残基所在处)之间形成新的连接,并形成了新的静电相互作用,避免了血红素铁的六配位。这些新的结构决定因素稳定了血红素及其环境,有助于在碱性条件下维持酶的结构完整性(血红素铁为五配位)。此外,由Q202L突变引发的近端侧谷氨酰胺-305周围溶剂暴露区域的增强,进一步提高了稳定性。

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