Fukamizo Tamo, Amano Satoko, Yamaguchi Kei, Yoshikawa Tomoye, Katsumi Tomomi, Saito Jun-ichi, Suzuki Michihiko, Miki Kunio, Nagata Yoshiho, Ando Akikazu
Department of Advanced Bioscience, Kinki University, 3327-204 Nakamachi, Nara 631-8505.
J Biochem. 2005 Nov;138(5):563-9. doi: 10.1093/jb/mvi156.
To identify the amino acids responsible for the substrate binding of chitosanase from Bacillus circulans MH-K1 (MH-K1 chitosanase), Tyr148 and Lys218 of the chitosanase were mutated to serine and proline, respectively, and the mutated chitosanases were characterized. The enzymatic activities of Y148S and K218P were found to be 12.5% and 0.16% of the wild type, respectively. When the (GlcN)3 binding ability to the chitosanase was evaluated by fluorescence spectroscopy and thermal unfolding experiments, the binding abilities of both mutant enzymes were markedly reduced as compared with the wild type enzyme. The affinity of the enzyme for the trisaccharide decreased by 1.0 kcal/mol of binding free energy for Y148S, and 3.7 kcal/mol for K218P. The crystal structure of K218P revealed that Pro218 forms a cis-peptide bond and that the state of the flexible loop containing the 218th residue is considerably affected by the mutation. Thus, we conclude that the flexible loop containing Lys218 plays an important role in substrate binding, and that the role of Tyr148 is less critical, but still important, due to a stacking interaction or hydrogen bond.
为了鉴定环状芽孢杆菌MH-K1壳聚糖酶(MH-K1壳聚糖酶)底物结合的关键氨基酸,分别将壳聚糖酶的Tyr148和Lys218突变为丝氨酸和脯氨酸,并对突变后的壳聚糖酶进行了表征。发现Y148S和K218P的酶活性分别为野生型的12.5%和0.16%。通过荧光光谱和热变性实验评估壳聚糖酶对(GlcN)3的结合能力时,与野生型酶相比,两种突变酶的结合能力均显著降低。Y148S使酶对三糖的亲和力降低了1.0 kcal/mol的结合自由能,K218P降低了3.7 kcal/mol。K218P的晶体结构表明,Pro218形成了一个顺式肽键,并且含有第218位残基的柔性环的状态受到该突变的显著影响。因此,我们得出结论,含有Lys218的柔性环在底物结合中起重要作用,而Tyr148的作用虽不那么关键,但由于存在堆积相互作用或氢键,仍然很重要。