College of Food Science and Light Industry, Nanjing Tech University, Nanjing 211816, Jiangsu, China.
College of Medicine and Life Science, Nanjing University of Chinese Medicine, Nanjing 210023, Jiangsu, China.
Mar Drugs. 2018 Jul 31;16(8):258. doi: 10.3390/md16080258.
Alginate lyases are important tools to prepare oligosaccharides with various physiological activities by degrading alginate. Particularly, the bifunctional alginate lyase can efficiently hydrolyze the polysaccharide into oligosaccharides. Herein, we cloned and identified a novel bifunctional alginate lyase, AlyA, with a high activity and broad substrate specificity from bacterium NJ-05 for oligosaccharides preparation. For further applications in industry, the enzyme has been characterized and its action mode has been also elucidated. It exhibited the highest activity (7984.82 U/mg) at pH 7.5 and 55 °C. Additionally, it possessed a broad substrate specificity, showing high activities towards not only polyM (polyβ-d-mannuronate) (7658.63 U/mg), but also polyG (poly α-l-guluronate) (8643.29 U/mg). Furthermore, the value of AlyA towards polyG (3.2 mM) was lower than that towards sodium alginate (5.6 mM) and polyM (6.7 mM). TLC (Thin Layer Chromatography) and ESI-MS (Electrospray Ionization Mass Spectrometry) were used to study the action mode of the enzyme, showing that it can hydrolyze the substrates in an endolytic manner to release a series of oligosaccharides such as disaccharide, trisaccharide, and tetrasaccharide. This study provided extended insights into the substrate recognition and degrading pattern of the alginate lyases, with a broad substrate specificity.
海藻酸盐裂解酶是通过降解海藻酸盐来制备具有各种生理活性的寡糖的重要工具。特别是,双功能海藻酸盐裂解酶可以有效地将多糖水解成寡糖。在此,我们从细菌 NJ-05 中克隆并鉴定了一种新型的具有高活性和广泛底物特异性的双功能海藻酸盐裂解酶 AlyA,用于寡糖的制备。为了进一步在工业中应用,我们对该酶进行了表征,并阐明了其作用模式。它在 pH7.5 和 55°C 时表现出最高的活性(7984.82 U/mg)。此外,它具有广泛的底物特异性,不仅对聚 M(聚 β-d-甘露糖酸盐)(7658.63 U/mg)表现出高活性,而且对聚 G(聚 α-l-古洛糖酸盐)(8643.29 U/mg)也表现出高活性。此外,AlyA 对聚 G(3.2 mM)的亲和力值低于对海藻酸钠(5.6 mM)和聚 M(6.7 mM)的亲和力值。TLC(薄层层析)和 ESI-MS(电喷雾电离质谱)用于研究酶的作用模式,表明它可以以内切方式水解底物,释放一系列寡糖,如二糖、三糖和四糖。本研究为海藻酸盐裂解酶的底物识别和降解模式提供了更广泛的见解,具有广泛的底物特异性。