Gohi Bi Foua Claude Alain, Zeng Hong-Yan, Pan A Dan, Han Jing, Yuan Jian
Biotechnology Institute, College of Chemical Engineering, Xiangtan University, Xiangtan 411105, Hunan, China.
Polymers (Basel). 2017 May 13;9(5):174. doi: 10.3390/polym9050174.
As a means of making chitosan more useful in biotechnological applications, it was hydrolyzed using pepsin, chitosanase and α-amylase. The enzymolysis behavior of these enzymes was further systematically studied for its effectiveness in the production of low-molecular-weight chitosans (LMWCs) and other derivatives. The study showed that these enzymes depend on ion hydronium (H3O+), thus on pH with a pH dependence fitting R2 value of 0.99. In y = 1.484[H^+] + 0.114, the equation of pH dependence, when [H^+] increases by one, y (k_0/k_m) increases by 1.484. From the temperature dependence study, the activation energy (Ea) and pre-exponential factor (A) were almost identical for two of the enzymes, but a considerable difference was observed in comparison with the third enzyme. Chitosanase and pepsin had nearly identical Ea, but α-amylase was significantly lower. This serves as evidence that the hydrolysis reaction of α-amylase relies on low-barrier hydrogen bonds (LBHBs), which explains its low Ea in actual conditions. The confirmation of this phenomenon was further derived from a similarly considerable difference in the order magnitudes of A between α-amylase and the other two enzymes, which was more than five. Variation of the rate constants of the enzymatic hydrolysis of chitosan with temperature follows the Arrhenius equation.
作为一种使壳聚糖在生物技术应用中更有用的方法,使用胃蛋白酶、壳聚糖酶和α-淀粉酶对其进行水解。进一步系统研究了这些酶的酶解行为,以考察其在生产低分子量壳聚糖(LMWC)和其他衍生物方面的有效性。研究表明,这些酶依赖于水合氢离子(H3O+),因此依赖于pH值,其pH依赖性拟合R2值为0.99。在pH依赖性方程y = 1.484[H^+] + 0.114中,当[H^+]增加1时,y(k_0/k_m)增加1.484。从温度依赖性研究来看,其中两种酶的活化能(Ea)和指前因子(A)几乎相同,但与第三种酶相比存在显著差异。壳聚糖酶和胃蛋白酶的Ea几乎相同,但α-淀粉酶的Ea明显较低。这证明α-淀粉酶的水解反应依赖于低势垒氢键(LBHB),这解释了其在实际条件下较低的Ea。这一现象的证实还源于α-淀粉酶与其他两种酶之间A的数量级存在类似的显著差异,相差超过5。壳聚糖酶解反应速率常数随温度的变化遵循阿伦尼乌斯方程。