Key Laboratory for Molecular Enzymology and Engineering, The Ministry of Education, School of Life Sciences, Jilin University, No. 2699, Qianjin Street, Changchun, 130012, P. R. China.
Department of Biological and Chemical Engineering, Aarhus University, Gustav Wieds Vej 10, Aarhus, 8000, Denmark.
Adv Sci (Weinh). 2022 Nov;9(32):e2202359. doi: 10.1002/advs.202202359. Epub 2022 Aug 21.
The surface of a carboxylate-enriched octuple mutant of Bacillus subtilis lipase A (8M) is chemically anionized to produce core (8M)-shell (cationic polymer surfactants) bionanoconjugates in protein liquid form, which are termed anion-type biofluids. The resultant lipase biofluids exhibit a 2.5-fold increase in hydrolytic activity when compared with analogous lipase biofluids based on anionic polymer surfactants. In addition, the applicability of the anion-type biofluid using Myoglobin (Mb) that is well studied in anion-type solvent-free liquid proteins is evaluated. Although anionization resulted in the complete unfolding of Mb, the active α-helix level is partially recovered in the anion-type biofluids, and the effect is accentuated in the cation-type Mb biofluids. These highly active anion-type solvent-free liquid enzymes exhibit increased thermal stability and provide a new direction in solvent-free liquid protein research.
表面羧酸盐富集的枯草芽孢杆菌脂肪酶 A 的八重突变体(8M)化学阴离子化产生核心(8M)-壳(阳离子聚合物表面活性剂)仿生纳米复合物在蛋白质液体形式,被称为阴离子型生物流体。与基于阴离子聚合物表面活性剂的类似脂肪酶生物流体相比,所得脂肪酶生物流体的水解活性增加了 2.5 倍。此外,还评估了在阴离子型溶剂自由液体蛋白质中研究得很好的肌红蛋白(Mb)中使用阴离子型生物流体的适用性。尽管阴离子化导致 Mb 完全展开,但在阴离子型生物流体中部分恢复了活性α-螺旋水平,并且在阳离子型 Mb 生物流体中效果更加明显。这些高活性的阴离子型无溶剂液体酶表现出增强的热稳定性,并为无溶剂液体蛋白质研究提供了新的方向。