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 440-746, Republic of Korea.
Department of Chemistry, College of Natural Science, Sookmyung Women's University, Seoul 04310, Republic of Korea.
Biochim Biophys Acta Mol Cell Biol Lipids. 2019 Oct;1864(10):1438-1448. doi: 10.1016/j.bbalip.2019.07.007. Epub 2019 Jul 17.
In Neisseria sp., SGNH family esterases are involved in bacterial pathogenesis as well as cell wall peptidoglycan maturation. Here, a novel enantioselective SGNH family esterase (NmSGNH1) from Neisseria meningitidis, which has sequence similarity to carbohydrate esterase (CE3) family, was catalytically characterized and functionally explored. NmSGNH1 exhibited a wide range of substrate specificities including naproxol acetate, tert-butyl acetate, glucose pentaacetate as well as p-nitrophenyl esters. Deletion of C-terminal residues (NmSGNH1Δ11) led to the altered substrate specificity, reduced catalytic activity, and increased thermostability. Furthermore, a hydrophobic residue of Leu in the substrate-binding pocket was identified to be critical in catalytic activity, thermostability, kinetics, and enantioselectivity. Interestingly, immobilization of NmSGNH1 by hybrid nanoflowers (hNFs) and crosslinked enzyme aggregates (CLEAs) showed increased level of activity, recycling property, and enhanced stability. Finally, synthesis of butyl acetate, oleic acid esters, and fatty acid methyl esters (FAMEs) were verified. In summary, this work provides a molecular understanding of substrate specificities, catalytic regulation, immobilization, and industrial applications of a novel SGNH family esterase from Neisseria meningitidis.
在淋病奈瑟氏球菌属中,SGNH 家族酯酶参与细菌发病机制以及细胞壁肽聚糖成熟。在这里,我们从脑膜炎奈瑟氏球菌中鉴定出一种新型的对映选择性 SGNH 家族酯酶(NmSGNH1),它与碳水化合物酯酶(CE3)家族具有序列相似性,对其进行了催化特性和功能探索。NmSGNH1 表现出广泛的底物特异性,包括萘普生乙酸酯、叔丁基乙酸酯、葡萄糖五乙酸酯以及对硝基苯酯。C 端残基缺失(NmSGNH1Δ11)导致底物特异性改变、催化活性降低、热稳定性增加。此外,鉴定出在底物结合口袋中的疏水性残基亮氨酸对于催化活性、热稳定性、动力学和对映选择性至关重要。有趣的是,通过杂化纳米花(hNFs)和交联酶聚集体(CLEAs)固定化 NmSGNH1 可提高酶的活性、可回收性和稳定性。最后,验证了丁酯、油酸酯和脂肪酸甲酯(FAMEs)的合成。总之,这项工作为脑膜炎奈瑟氏球菌新型 SGNH 家族酯酶的底物特异性、催化调控、固定化和工业应用提供了分子理解。