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通过合理设计同时提高 α-淀粉酶 BLA 的比活和热稳定性。

Simultaneously improving the specific activity and thermostability of α-amylase BLA by rational design.

机构信息

College of Life Science and Technology, Beijing University of Chemical Technology, Beijing, 100029, China.

State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan, 430062, Hubei, China.

出版信息

Bioprocess Biosyst Eng. 2022 Nov;45(11):1839-1848. doi: 10.1007/s00449-022-02790-0. Epub 2022 Sep 22.

Abstract

Higher activity and alkaline α-amylases are desired for textile desizing and detergent additive. Here, rational design was used to improve the specific activity and thermostability of the α-amylase BLA from Bacillus licheniformis. Seventeen mutants of BLA were designed based on sequence consensus analysis and folding free energy calculation, and characterized by measuring their respective activity and thermostability at pH 8.5. Among them, mutant Q360C exhibited nearly threefold improved activity than that of wild-type and retained a higher residual activity (75% vs 59% for wild-type) after preincubation at 70 ℃ for 30 min. The modeled structures and molecular dynamics simulations analysis demonstrated that the enhanced hydrophobic interaction near residue 360 and reduced disturbance to the conformation of catalytic residues are the possible reasons for the improved thermostability and activity of Q360C. The results suggest that 360th of BLA may act as a hotspot for engineering other enzymes in the GH13 superfamily.

摘要

较高的活性和碱性α-淀粉酶是用于纺织退浆和洗涤剂添加剂的理想选择。在这里,我们采用合理的设计方法来提高地衣芽孢杆菌α-淀粉酶 BLA 的比活性和热稳定性。基于序列一致性分析和折叠自由能计算,设计了 17 个 BLA 突变体,并在 pH8.5 下测量了它们各自的活性和热稳定性。其中,突变体 Q360C 的活性比野生型提高了近三倍,在 70℃预孵育 30 分钟后仍保持较高的残余活性(野生型为 59%,Q360C 为 75%)。建模结构和分子动力学模拟分析表明,残基 360 附近增强的疏水性相互作用和减少对催化残基构象的干扰可能是 Q360C 热稳定性和活性提高的原因。这些结果表明,BLA 的 360 位可能是工程 GH13 超家族中其他酶的热点。

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