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Enhancing the Secretion Efficiency and Thermostability of a Bacillusderamificans Pullulanase Mutant (D437H/D503Y) by N-Terminal Domain Truncation

机译:通过N末端域截短增强细菌芽孢杆菌支链淀粉酶突变体(D437H / D503Y)的分泌效率和热稳定性

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Pullulanase (EC 3.2.1.41), an important enzyme in the production of starch syrup, catalyzes the hydrolysis of α-1,6 glycosidic bonds in complex carbohydrates. A double mutant (DM; D437H/D503Y) form of Bacillus deramificans pullulanase was recently constructed to enhance the thermostability and catalytic efficiency of the enzyme (X. Duan, J. Chen, and J. Wu, Appl Environ Microbiol 79:4072–4077, 2013, http://dx.doi.org/10.1128/AEM.00457-13). In the present study, three N-terminally truncated variants of this DM that lack the CBM41 domain (DM-T1), the CBM41 and X25 domains (DM-T2), or the CBM41, X25, and X45 domains (DM-T3) were constructed. Upon expression, DM-T3 existed as inclusion bodies, while 72.8 and 74.8% of the total pullulanase activities of DM-T1 and DM-T2, respectively, were secreted into the medium. These activities are 2.8- and 2.9-fold that of the DM enzyme, respectively. The specific activities of DM-T1 and DM-T2 were 380.0 × 10~(8) and 449.3 × 10~(8) U · mol~(?1), respectively, which are 0.94- and 1.11-fold that of the DM enzyme. DM-T1 and DM-T2 retained 50% of their activity after incubation at 60°C for 203 and 160 h, respectively, which are 1.7- and 1.3-fold that of the DM enzyme. Kinetic studies showed that the K_(m) values of DM-T1 and DM-T2 were 1.5- and 2.7-fold higher and the K _(cat)/ K_(m) values were 11 and 50% lower, respectively, than those of the DM enzyme. Furthermore, DM-T1 and DM-T2 produced d-glucose contents of 95.0 and 94.1%, respectively, in a starch saccharification reaction, which are essentially identical to that produced by the DM enzyme (95%). The enhanced secretion and improved thermostability of the truncation mutant enzymes make them more suitable than the DM enzyme for industrial processes.
机译:支链淀粉酶(EC 3.2.1.41)是淀粉糖浆生产中的重要酶,可催化复杂碳水化合物中α-1,6糖苷键的水解。最近构建了一种双突变体(DM; D437H / D503Y)形式的德拉姆芽孢杆菌支链淀粉酶,以增强该酶的热稳定性和催化效率(X. Duan,J. Chen和J. Wu,Appl Environ Microbiol 79:4072–4077 ,2013年,http://dx.doi.org/10.1128/AEM.00457-13)。在本研究中,该DM的三个N末端截短变体缺少CBM41域(DM-T1),CBM41和X25域(DM-T2)或CBM41,X25和X45域(DM-T3)被建造。表达后,DM-T3作为包涵体存在,而DM-T1和DM-T2的总支链淀粉酶活性分别分泌72.8和74.8%。这些活性分别是DM酶的2.8倍和2.9倍。 DM-T1和DM-T2的比活分别为380.0×10〜(8)和449.3×10〜(8)U·mol〜(?1),是DM的0.94和1.11倍酶。 DM-T1和DM-T2在60°C孵育203和160 h后分别保留其活性的50%,是DM酶的1.7和1.3倍。动力学研究表明,DM-T1和DM-T2的K_(m)值分别比DM-T1和DM-T2的K_(m)值高1.5到2.7倍,K _(cat)/ K_(m)值分别低11和50%。 DM酶。此外,DM-T1和DM-T2在淀粉糖化反应中分别产生95.0%和94.1%的d-葡萄糖含量,与DM酶产生的d-葡萄糖含量基本相同(95%)。截短突变酶的分泌增强和热稳定性提高,使其比DM酶更适合工业生产。

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