Department of Chemistry, College of Natural Science, Sookmyung Women's University, Seoul 04310, Republic of Korea.
Department of Chemistry, College of Natural Science, Sookmyung Women's University, Seoul 04310, Republic of Korea; Department of Molecular Cell Biology, Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Suwon 16419, Republic of Korea.
Biochim Biophys Acta Gen Subj. 2018 Jan;1862(1):197-210. doi: 10.1016/j.bbagen.2017.10.008. Epub 2017 Oct 16.
Lactic acid bacteria, which are involved in the fermentation of vegetables, meats, and dairy products, are widely used for the productions of small organic molecules and bioactive peptides. Here, a novel acetylesterase (LaAcE) from Lactobacillus acidophilus NCFM was identified, functionally characterized, immobilized, and subjected to site-directed mutagenesis for biotechnological applications. The enzymatic properties of LaAcE were investigated using biochemical and biophysical methods including native polyacrylamide gel electrophoresis, acetic acid release, biochemical assays, enzyme kinetics, and spectroscopic methods. Interestingly, LaAcE exhibited the ability to act on a broad range of substrates including glucose pentaacetate, glyceryl tributyrate, fish oil, and fermentation-related compounds. Furthermore, immobilization of LaAcE showed good recycling ability and high thermal stability compared with free LaAcE. A structural model of LaAcE was used to guide mutational analysis of hydrophobic substrate-binding region, which was composed of Leu, Phe, and Val. Five mutants (L156A, F164A, V204A, L156A/F164A, and L156A/V204A) were generated and investigated to elucidate the roles of these hydrophobic residues in substrate specificity. This work provided valuable insights into the properties of LaAcE, and demonstrated that LaAcE could be used as a model enzyme of acetylesterase in lactic acid bacteria, making LaAcE a great candidate for industrial applications.
参与蔬菜、肉类和乳制品发酵的乳酸菌广泛用于生产小分子有机化合物和生物活性肽。在这里,从嗜酸乳杆菌 NCFM 中鉴定出一种新型乙酰酯酶(LaAcE),对其进行了功能表征、固定化和定点突变,以用于生物技术应用。使用生化和生物物理方法包括天然聚丙烯酰胺凝胶电泳、乙酸释放、生化测定、酶动力学和光谱方法研究了 LaAcE 的酶学性质。有趣的是,LaAcE 表现出能够作用于广泛的底物的能力,包括葡萄糖五乙酸酯、甘油三丁酸酯、鱼油和发酵相关化合物。此外,与游离 LaAcE 相比,LaAcE 的固定化显示出良好的循环能力和高热稳定性。使用 LaAcE 的结构模型来指导疏水性底物结合区域的突变分析,该区域由亮氨酸、苯丙氨酸和缬氨酸组成。生成了五个突变体(L156A、F164A、V204A、L156A/F164A 和 L156A/V204A)并对其进行了研究,以阐明这些疏水性残基在底物特异性中的作用。这项工作深入了解了 LaAcE 的性质,并证明了 LaAcE 可以用作乳酸菌乙酰酯酶的模型酶,使 LaAcE 成为工业应用的理想候选酶。