Institute of Life Sciences, Ajinomoto Co., Inc., Kawasaki-ku, Kawasaki-shi 210-8681, Japan.
Proteins. 2009 Nov 15;77(3):710-7. doi: 10.1002/prot.22484.
The structural and enzymatic characteristics of a cutinase-like enzyme (CLE) from Cryptococcus sp. strain S-2, which exhibits remote homology to a lipolytic enzyme and a cutinase from the fungus Fusarium solani (FS cutinase), were compared to investigate the unique substrate specificity of CLE. The crystal structure of CLE was solved to a 1.05 A resolution. Moreover, hydrolysis assays demonstrated the broad specificity of CLE for short and long-chain substrates, as well as the preferred specificity of FS cutinase for short-chain substrates. In addition, site-directed mutagenesis was performed to increase the hydrolysis activity on long-chain substrates, indicating that the hydrophobic aromatic residues are important for the specificity to the long-chain substrate. These results indicate that hydrophobic residues, especially the aromatic ones exposed to solvent, are important for retaining lipase activity.
从 Cryptococcus sp. 菌株 S-2 中分离到的一种角质酶样酶(CLE)的结构和酶学特性与真菌 Fusarium solani 的脂肪酶和角质酶(FS 角质酶)具有远程同源性,我们比较了它们的特性,以研究 CLE 的独特的底物特异性。我们解析了 CLE 的晶体结构,分辨率达到 1.05 A。此外,水解实验表明 CLE 对短链和长链底物具有广泛的特异性,而 FS 角质酶则更倾向于短链底物。此外,通过定点突变提高了对长链底物的水解活性,表明疏水性芳香残基对长链底物的特异性很重要。这些结果表明,疏水性残基,特别是暴露在溶剂中的芳香族残基,对于保持脂肪酶活性很重要。