Watanabe T, Kobori K, Miyashita K, Fujii T, Sakai H, Uchida M, Tanaka H
Department of Applied Biological Chemistry, Faculty of Agriculture, Niigata University, Japan.
J Biol Chem. 1993 Sep 5;268(25):18567-72.
Prokaryotic chitinases, class III plant chitinases, yeast chitinases, and endo-beta-N-acetylglucosaminidases share weak amino acid sequence similarities at the certain region of each enzyme. These regions have been assumed to be important for catalytic activities of the enzymes. To verify this assumption, three amino acid residues (Ser-160, Asp-200, Glu-204) in chitinase A1 of Bacillus circulans WL-12 were chosen, based on the amino acid sequence alignment of the regions sharing sequence similarity, and were replaced by site-directed mutagenesis. Kinetic parameters for 4-methylumbelliferyl-N,N',N"-triacetylchitotriose hydrolysis were determined with wild-type and seven mutant chitinases. Chitinases with Glu-204-->Gln mutation and Glu-204-->Asp mutation were essentially inactive and kcat values of these chitinases were approximately 1/5,000 and 1/17,000 of that of wild-type chitinase, respectively. Asp-200-->Asn mutation decreased the kcat value to approximately 1/350 of that of the wild-type enzyme, while the Km value decreased only slightly. On the other hand, neither the kcat value nor the Km value was affected by Asp-200-->Glu mutation. Thus, it appeared that Glu-204 and Asp-200 are directly involved in the catalytic events of chitinase A1. The role of the carboxyl group of Asp-200 can be fully substituted by that of Glu residue. The Ser-160-->Ala mutant retained 10% activity of the wild-type chitinase indicating that the hydroxyl group of Ser-160 is not absolutely required for the catalytic activity. These results indicate a lysozyme-type catalytic mechanism of the chitinase.
原核几丁质酶、III类植物几丁质酶、酵母几丁质酶和内切β-N-乙酰氨基葡萄糖苷酶在每种酶的特定区域具有较弱的氨基酸序列相似性。这些区域被认为对酶的催化活性很重要。为了验证这一假设,基于具有序列相似性区域的氨基酸序列比对,选择了环状芽孢杆菌WL-12几丁质酶A1中的三个氨基酸残基(Ser-160、Asp-200、Glu-204),并通过定点诱变进行替换。用野生型和七种突变几丁质酶测定了4-甲基伞形酮基-N,N',N"-三乙酰壳三糖水解的动力学参数。具有Glu-204→Gln突变和Glu-204→Asp突变的几丁质酶基本无活性,这些几丁质酶的kcat值分别约为野生型几丁质酶的1/5000和1/17000。Asp-200→Asn突变使kcat值降至野生型酶的约1/350,而Km值仅略有下降。另一方面,Asp-200→Glu突变对kcat值和Km值均无影响。因此,似乎Glu-204和Asp-200直接参与几丁质酶A1的催化过程。Asp-200羧基的作用可被Glu残基的羧基完全替代。Ser-160→Ala突变体保留了野生型几丁质酶10%的活性,表明Ser-160的羟基对于催化活性不是绝对必需的。这些结果表明了几丁质酶的溶菌酶型催化机制。