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黄曲霉中铜诱导及漆酶的差异表达

Copper induction and differential expression of laccase in Aspergillus flavus.

作者信息

Gomaa Ola M, Momtaz Osama A

机构信息

Microbiology Department, National Center for Radiation Research and Technology, Cairo, Egypt.

Agriculture Genetic Engineering Research Institute, Agriculture Research Center, Giza, Egypt.

出版信息

Braz J Microbiol. 2015 Mar 1;46(1):285-92. doi: 10.1590/S1517-838246120120118. eCollection 2015 Mar.

Abstract

Aspergillus flavus was isolated from soil and exhibited laccase activity under both constitutive and copper induced conditions. Spiking the medium with 1 mM copper sulfate resulted in an increase in the activity which reached 51.84 U/mL, a distinctive protein band was detected at 60 kDa. The extracellular enzyme was purified 81 fold using gel filtration chromatography and resulted in two different laccase fractions L1 and L2, the latter had a higher enzymatic activity which reached 79.57 U/mL and specific activity of 64.17 U/μg protein. The analysis of the spectrum of the L2 fraction showed a shoulder at 330 nm which is characteristic for T2/T3 copper centers; both copper and zinc were detected suggesting that this is an unconventional white laccase. Primers of laccase gene were designed and synthesized to recover specific gene from A. flavus . Sequence analysis indicated putative laccase (Genbank ID: JF683612) at the amino acid level suggesting a close identity to laccases from other genera containing the copper binding site. Decolorization of textile waste water under different conditions showed possible application in bioremediation within a short period of time. The effect of copper on A. flavus was concentration dependent.

摘要

从土壤中分离出黄曲霉,该菌在组成型和铜诱导条件下均表现出漆酶活性。向培养基中添加1 mM硫酸铜会导致活性增加,达到51.84 U/mL,在60 kDa处检测到一条明显的蛋白带。使用凝胶过滤色谱法将细胞外酶纯化了81倍,得到了两种不同的漆酶组分L1和L2,后者具有更高的酶活性,达到79.57 U/mL,比活性为64.17 U/μg蛋白。L2组分的光谱分析显示在330 nm处有一个肩峰,这是T2/T3铜中心的特征;检测到了铜和锌,表明这是一种非常规的白色漆酶。设计并合成了漆酶基因的引物,以从黄曲霉中回收特定基因。序列分析表明,在氨基酸水平上存在推定的漆酶(Genbank ID:JF683612),表明与其他含有铜结合位点的属的漆酶具有密切的同源性。在不同条件下对纺织废水进行脱色表明,在短时间内可能应用于生物修复。铜对黄曲霉的影响具有浓度依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3578/4512072/838d3d2996d8/1517-8382-bjm-46-01-0285-gf01.jpg

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