Zhang Chao, Chen Jing, Zhang Peixun, Zong Jinnan, Geng Mingyu, Yao Xuying, Sun Jinxu
College of Life Science, Hengshui University, Hengshui 053000, China.
Hebei Technology Innovation Centre of Fruit and Vegetable Fermentation, Hengshui 053000, China.
Lett Appl Microbiol. 2025 Aug 4;78(8). doi: 10.1093/lambio/ovaf102.
Cold-active cellulases attract significant attention for their potential in energy-efficient bioprocesses under low-temperature conditions. In this study, a psychrotolerant bacterial strain, Pseudomonas fragi HsL3-1, was isolated from Hengshui Lake sediments and found to produce a novel endoglucanase, EG-22SJ. The enzyme demonstrated optimal activity at pH 5.0 and 25°C, retaining over 80% and 60% of peak activity at 15°C and 5°C, respectively, and exhibited exceptional tolerance to 20% organic solvents (e.g. n-hexane enhanced activity by 29.8%) and 1% surfactants (e.g. Tween 80). Kinetic analysis revealed high substrate affinity for CMC-Na with a Km of 0.583 mg·ml-1 and Vmax of 401 μmol·l-1·min-1. Activity was significantly activated by Ca²⁺ and Mg²⁺ but inhibited by Cu²⁺ and Hg²⁺. Culture optimization via response surface methodology increased cellulase production to 8.71 U·ml-1 under conditions of 15.24 g·l-1 CMC-Na, 20.54°C, pH 6.85, and 1.95% inoculation, yielding a 1.24-fold improvement. These integrated properties position EG-22SJ as a robust biocatalyst for sustainable low-temperature applications such as biofuel production, food processing, and detergent formulation, highlighting the potential of nonextreme environments for enzyme discovery.
低温活性纤维素酶因其在低温条件下实现节能生物过程的潜力而备受关注。在本研究中,从衡水湖沉积物中分离出一株耐冷细菌菌株——脆弱假单胞菌HsL3-1,并发现其能产生一种新型内切葡聚糖酶EG-22SJ。该酶在pH 5.0和25°C时表现出最佳活性,在15°C和5°C时分别保留超过80%和60%的峰值活性,并且对20%的有机溶剂(如正己烷可使活性提高29.8%)和1%的表面活性剂(如吐温80)具有出色的耐受性。动力学分析表明,该酶对羧甲基纤维素钠(CMC-Na)具有高底物亲和力,Km为0.583 mg·ml-1,Vmax为401 μmol·l-1·min-1。Ca²⁺和Mg²⁺可显著激活其活性,而Cu²⁺和Hg²⁺则对其有抑制作用。通过响应面法进行培养优化,在15.24 g·l-1 CMC-Na、20.54°C、pH 6.85和1.95%接种量的条件下,纤维素酶产量提高到8.71 U·ml-1,提高了1.24倍。这些综合特性使EG-22SJ成为用于生物燃料生产、食品加工和洗涤剂配方等可持续低温应用的强大生物催化剂,突出了非极端环境在酶发现方面的潜力。