Ike Priscila Tomie Leme, Moreira Ariele C, de Almeida Fernando G, Ferreira Douglas, Birolli Willian Garcia, Porto Andre Luiz Meleiro, Souza Dulce Helena F
Departamento de Química, Universidade Federal de São Carlos, São Carlos, SP Brazil.
Instituto de Química de São Carlos, Universidade de São Paulo, São Carlos, Brazil.
Springerplus. 2015 Oct 30;4:654. doi: 10.1186/s40064-015-1464-y. eCollection 2015.
In this work we have identified, using mass spectrometry, two laccases produced by Leucoagaricus gongylophorus. One of them, Lac1Lg, was isolated, purified and characterized. Lac1Lg, a monomeric enzyme, was studied using ABTS and syringaldazine substrates. Lac1Lg presented kcat/Km almost threefold higher for syringaldazine than for ABTS, showing a higher catalytic efficiency of Lac1Lg for syringaldazine. The interference of several metal ions and substances in the laccase activity were evaluated. Lac1Lg did not absorb at 600 nm, which is a characteristic of so-called yellow laccases. Lac1Lg also was able to oxidize non-phenolic substrate (anthracene) in the absence of an exogenous mediator, showing that the enzyme has potential to explore in biotechnological processes. Our Lac1Lg three-dimensional molecular model, constructed using homology modeling, showed that the Lac1Lg catalytic site is very closed to blue laccases.
在这项工作中,我们通过质谱法鉴定了由球盖菇产生的两种漆酶。其中一种,即Lac1Lg,被分离、纯化并进行了表征。Lac1Lg是一种单体酶,使用ABTS和丁香醛连氮底物进行了研究。Lac1Lg对丁香醛连氮的kcat/Km几乎比对ABTS高两倍,表明Lac1Lg对丁香醛连氮具有更高的催化效率。评估了几种金属离子和物质对漆酶活性的干扰。Lac1Lg在600nm处不吸收,这是所谓黄色漆酶的一个特征。Lac1Lg在没有外源介体的情况下也能够氧化非酚类底物(蒽),表明该酶在生物技术过程中有探索潜力。我们使用同源建模构建的Lac1Lg三维分子模型表明,Lac1Lg催化位点与蓝色漆酶非常接近。