College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao 266510, China.
Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao 266101, China.
Mar Drugs. 2021 Oct 21;19(11):596. doi: 10.3390/md19110596.
(1) Background: Chitooligosaccharides (COS) have numerous applications due to their excellent properties. Chitosan hydrolysis using chitosanases has been proposed as an advisable method for COS preparation. Although many chitosanases from various sources have been identified, the cold-adapted ones with high stability are still rather rare but required. (2) Methods: A novel chitosanase named CsnY from marine bacterium sp. Y82 was expressed in , following sequence analysis. Then, the characterizations of recombinant CsnY purified through Ni-NTA affinity chromatography were conducted, including effects of pH and temperature, effects of metal ions and chemicals, and final product analysis. (3) Results: The GH46 family chitosanase CsnY possessed promising thermostability at broad temperature range (0-50 °C), and with optimal activity at 40 °C and pH 6.0, especially showing relatively high activity (over 80% of its maximum activity) at low temperatures (20-30 °C), which demonstrated the cold-adapted property. Common metal ions or chemicals had no obvious effect on CsnY except Mn and Co. Finally, CsnY was determined to be an endo-type chitosanase generating chitodisaccharides and -trisaccharides as main products, whose total concentration reached 56.74 mM within 2 h against 2% (/) initial chitosan substrate. (4) Conclusions: The results suggest the cold-adapted CsnY with favorable stability has desirable potential for the industrial production of COS.
(1) 背景:壳寡糖(COS)具有许多优异的性能,因此有广泛的应用。壳聚糖酶水解壳聚糖被认为是制备 COS 的一种可行方法。尽管已经鉴定出许多来自不同来源的壳聚糖酶,但具有高稳定性的冷适应壳聚糖酶仍然相当罕见,但却是需要的。
(2) 方法:从海洋细菌 sp. Y82 中表达了一种新型的壳聚糖酶 CsnY,并进行了序列分析。然后,通过 Ni-NTA 亲和层析纯化重组 CsnY,并对其进行了特性研究,包括 pH 值和温度的影响、金属离子和化学物质的影响以及最终产物分析。
(3) 结果:GH46 家族的壳聚糖酶 CsnY 在较宽的温度范围内(0-50°C)具有良好的热稳定性,在 40°C 和 pH6.0 时具有最佳活性,尤其是在低温(20-30°C)下具有相对较高的活性(超过其最大活性的 80%),表现出冷适应特性。常见的金属离子或化学物质对 CsnY 没有明显影响,除了 Mn 和 Co。最后,确定 CsnY 是一种内切型壳聚糖酶,其主要产物为壳二糖和壳三糖,在 2 h 内,2%(/)初始壳聚糖底物可产生 56.74 mM 的总浓度。
(4) 结论:结果表明,具有良好稳定性的冷适应 CsnY 具有 COS 工业生产的良好应用潜力。