Akagi Ken-ichi, Watanabe Jun, Hara Masashi, Kezuka Yuichiro, Chikaishi Eriko, Yamaguchi Tohru, Akutsu Hideo, Nonaka Takamasa, Watanabe Takeshi, Ikegami Takahisa
Laboratory of Structural Proteomics, Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita, Osaka 565-0871.
J Biochem. 2006 Mar;139(3):483-93. doi: 10.1093/jb/mvj062.
Chitinase C from Streptomyces griseus HUT6037 was discovered as the first bacterial chitinase in family 19 other than chitinases found in higher plants. Chitinase C comprises two domains: a chitin-binding domain (ChBD(ChiC)) for attachment to chitin and a chitin-catalytic domain for digesting chitin. The structure of ChBD(ChiC) was determined by means of 13C-, 15N-, and 1H-resonance nuclear magnetic resonance (NMR) spectroscopy. The conformation of its backbone comprised two beta-sheets composed of two and three antiparallel beta-strands, respectively, this being very similar to the backbone conformations of the cellulose-binding domain of endoglucanase Z from Erwinia chrysanthemi (CBD(EGZ)) and the chitin-binding domain of chitinase A1 from Bacillus circulans WL-12 (ChBD(ChiA1)). The interaction between ChBD(ChiC) and hexa-N-acetyl-chitohexaose was monitored through chemical shift perturbations, which showed that ChBD(ChiC) interacted with the substrate through two aromatic rings exposed to the solvent as CBD(EGZ) interacts with cellulose through three characteristic aromatic rings. Comparison of the conformations of ChBD(ChiA1), ChBD(ChiC), and other typical chitin- and cellulose-binding domains, which have three solvent-exposed aromatic residues responsible for binding to polysaccharides, has suggested that they have adopted versatile binding site conformations depending on the substrates, with almost the same backbone conformations being retained.
来自灰色链霉菌HUT6037的几丁质酶C是在第19家族中发现的首个细菌几丁质酶,不同于在高等植物中发现的几丁质酶。几丁质酶C包含两个结构域:一个用于附着几丁质的几丁质结合结构域(ChBD(ChiC))和一个用于消化几丁质的几丁质催化结构域。ChBD(ChiC)的结构通过13C-、15N-和1H-共振核磁共振(NMR)光谱法确定。其主链构象由分别由两条和三条反平行β链组成的两个β折叠片组成,这与来自菊欧文氏菌的内切葡聚糖酶Z的纤维素结合结构域(CBD(EGZ))和来自环状芽孢杆菌WL-12的几丁质酶A1的几丁质结合结构域(ChBD(ChiA1))的主链构象非常相似。通过化学位移扰动监测ChBD(ChiC)与六-N-乙酰-壳六糖之间的相互作用,结果表明ChBD(ChiC)通过暴露于溶剂的两个芳香环与底物相互作用,就像CBD(EGZ)通过三个特征芳香环与纤维素相互作用一样。对ChBD(ChiA1)、ChBD(ChiC)以及其他典型的几丁质和纤维素结合结构域的构象进行比较,这些结构域有三个暴露于溶剂的芳香残基负责与多糖结合,结果表明它们根据底物采用了通用的结合位点构象,同时保留了几乎相同的主链构象。