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布勒地星马勃漆酶:结构、催化特性及在大肠杆菌中的表达

Laccase of Cyathus bulleri: structural, catalytic characterization and expression in Escherichia coli.

作者信息

Garg N, Baranwal R, Chhabra M, Mishra S, Chaudhuri T K, Bisaria V S

机构信息

Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi, Hauz-Khas, New-Delhi 110016, India.

出版信息

Biochim Biophys Acta. 2008 Feb;1784(2):259-68. doi: 10.1016/j.bbapap.2007.11.006. Epub 2007 Nov 22.

Abstract

Cyathus bulleri, a ligninolytic fungus, produces a single laccase the internal peptides (3) of which bear similarity to laccases of several white rot fungi. Comparison of the total amino acid composition of this laccase with several fungal laccases indicated dissimilarity in the proportion of some basic and hydrophobic amino acids. Analysis of the circular dichroism spectrum of the protein indicated 37% alpha-helical, 26% beta-sheet and 38% random coil content which differed significantly from that in the solved structures of other laccases, which contain higher beta-sheet structures. The critical role of the carboxylic group containing amino acids was demonstrated by determining the kinetic parameters at different pH and this was confirmed by the observation that a critical Asp is strongly conserved in both Ascomycete and Basidiomycete laccases. The enzyme was denatured in the presence of a number of denaturing agents and refolded back to functional state with copper. In the folding experiments under alkaline conditions, zinc could replace copper in restoring 100% of laccase activity indicating the non-essential role of copper in this laccase. The laccase was expressed in Escherichia coli by a modification of the ligation-anchored PCR approach making it the first fungal laccase to be expressed in a bacterial host. The laccase sequence was confirmed by way of analysis of a 435 bp sequence of the insert.

摘要

牛氏杯伞(Cyathus bulleri)是一种木质素分解真菌,可产生一种单一漆酶,其内部肽段与几种白腐真菌的漆酶具有相似性。将这种漆酶的总氨基酸组成与几种真菌漆酶进行比较,结果表明某些碱性和疏水性氨基酸的比例存在差异。对该蛋白质的圆二色光谱分析表明,其α-螺旋含量为37%,β-折叠含量为26%,无规卷曲含量为38%,这与其他已解析结构的漆酶有显著不同,其他漆酶含有更高比例的β-折叠结构。通过测定不同pH值下的动力学参数,证明了含羧基氨基酸的关键作用,并且观察到一个关键的天冬氨酸在子囊菌和担子菌漆酶中都高度保守,这进一步证实了这一点。该酶在多种变性剂存在下会变性,并在铜的作用下重新折叠恢复到功能状态。在碱性条件下的折叠实验中,锌可以替代铜,使漆酶活性恢复100%,这表明铜在这种漆酶中并非必不可少。通过对连接锚定PCR方法进行改进,该漆酶在大肠杆菌中得以表达,这使其成为首个在细菌宿主中表达的真菌漆酶。通过对插入片段的435 bp序列进行分析,确认了漆酶序列。

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