Wu Jiayao, Choi Jaeyoung, Asiegbu Fred O, Lee Yong-Hwan
Department of Forest Sciences, University of Helsinki, Helsinki, Finland.
Smart Farm Research Center, Korea Institute of Science and Technology, Gangneung, Republic of Korea.
Mycobiology. 2020 Sep 11;48(5):373-382. doi: 10.1080/12298093.2020.1816151.
Laccases (EC 1.10.3.2), a group of multi-copper oxidases (MCOs), play multiple biological functions and widely exist in many species. Fungal laccases have been extensively studied for their industrial applications, however, there was no database specially focused on fungal laccases. To provide a comparative genomics platform for fungal laccases, we have developed a comparative genomics platform for laccases and MCOs (http://laccase.riceblast.snu.ac.kr/). Based on protein domain profiles of characterized sequences, 3,571 laccases were predicted from 690 genomes including 253 fungi. The number of putative laccases and their properties exhibited dynamic distribution across the taxonomy. A total of 505 laccases from 68 genomes were selected and subjected to phylogenetic analysis. As a result, four clades comprised of nine subclades were phylogenetically grouped by their putative functions and analyzed at the sequence level. Our work would provide a workbench for putative laccases mainly focused on the fungal kingdom as well as a new perspective in the identification and classification of putative laccases and MCOs.
漆酶(EC 1.10.3.2)是一类多铜氧化酶(MCOs),具有多种生物学功能,广泛存在于许多物种中。真菌漆酶因其工业应用而受到广泛研究,然而,目前尚无专门针对真菌漆酶的数据库。为了提供一个真菌漆酶的比较基因组学平台,我们开发了一个漆酶和MCOs的比较基因组学平台(http://laccase.riceblast.snu.ac.kr/)。基于已表征序列的蛋白质结构域图谱,从包括253种真菌在内的690个基因组中预测出3571个漆酶。推定漆酶的数量及其特性在分类学上呈现动态分布。从68个基因组中总共挑选出505个漆酶,并进行系统发育分析。结果,由九个亚分支组成的四个分支根据其推定功能进行了系统发育分组,并在序列水平上进行了分析。我们的工作将为主要关注真菌界的推定漆酶提供一个工作平台,并为推定漆酶和MCOs的鉴定和分类提供一个新视角。