Crystal structure of a feruloyl esterase belonging to the tannase family: A disulfide bond near a catalytic triad

被引:69
作者
Suzuki, Kentaro [1 ]
Hori, Akane [2 ]
Kawamoto, Kazusa [2 ]
Thangudu, Ratna Rajesh [3 ]
Ishida, Takuya [4 ]
Igarashi, Kiyohiko [4 ]
Samejima, Masahiro [4 ]
Yamada, Chihaya [1 ]
Arakawa, Takatoshi [1 ]
Wakagi, Takayoshi [1 ]
Koseki, Takuya [2 ]
Fushinobu, Shinya [1 ]
机构
[1] Univ Tokyo, Dept Biotechnol, Tokyo 1138657, Japan
[2] Yamagata Univ, Fac Agr, Tsuruoka, Yamagata, Japan
[3] NIH, Natl Ctr Biotechnol Informat, Bethesda, MD 20892 USA
[4] Univ Tokyo, Dept Biomat Sci, Tokyo 1138657, Japan
关键词
carboxylesterase; disulfide; enzyme structure; X-ray crystallography; lipase; alpha/beta-hydrolase fold; catalytic triad; ESTHER database; Aspergillus oryzae; ASPERGILLUS-ORYZAE; LACTOBACILLUS-PLANTARUM; TALAROMYCES-STIPITATUS; LIPOLYTIC ENZYME; CLASSIFICATION; DIVERSITY; DATABASE; SERINE; NIGER; REFINEMENT;
D O I
10.1002/prot.24649
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Feruloyl esterase (FAE) catalyzes the hydrolysis of the ferulic and diferulic acids present in plant cell wall polysaccharides, and tannase catalyzes the hydrolysis of tannins to release gallic acid. The fungal tannase family in the ESTHER database contains various enzymes, including FAEs and tannases. Despite the importance of FAEs and tannases in bioindustrial applications, three-dimensional structures of the fungal tannase family members have been unknown. Here, we determined the crystal structure of FAE B from Aspergillus oryzae (AoFaeB), which belongs to the fungal tannase family, at 1.5 angstrom resolution. AoFaeB consists of a catalytic a/b-hydrolase fold domain and a large lid domain, and the latter has a novel fold. To estimate probable binding models of substrates in AoFaeB, an automated docking analysis was performed. In the active site pocket of AoFaeB, residues responsible for the substrate specificity of the FAE activity were identified. The catalytic triad of AoFaeB comprises Ser203, Asp417, and His457, and the serine and histidine residues are directly connected by a disulfide bond of the neighboring cysteine residues, Cys202 and Cys458. This structural feature, the "CS-D-HC motif," is unprecedented in serine hydrolases. A mutational analysis indicated that the novel structural motif plays essential roles in the function of the active site. (C) 2014 Wiley Periodicals, Inc.
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收藏
页码:2857 / 2867
页数:11
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