Key Laboratory of Animal Nutrition of Jiangxi Province, Nutritional Feed Development Engineering Research Center, Jiangxi Agricultural University, Nanchang, Jiangxi 330045, P.R. China.
College of Land Resources and Environment, Jiangxi Agricultural University, Nanchang, Jiangxi 330045, P.R. China.
J Microbiol Biotechnol. 2021 Oct 28;31(10):1446-1454. doi: 10.4014/jmb.2105.05026.
Herein, we cloned and expressed an endo-β-1,4-glucanase gene () from B111 in . The recombinant celA1805 contains a glycosyl hydrolase (GH) family 8 domain and shared 76.8% identity with endo-1,4-β-glucanase from sp. KSM-330. Results showed that the optimal pH and temperature of celA1805 were 6.0 and 50°C, respectively, and it was stable at pH 3-9 and temperature ≤50°C. Metal ions slightly affected enzyme activity, but chemical agents generally inhibited enzyme activity. Moreover, celA1805 showed a wide substrate specificity to CMC, barley β-glucan, lichenin, chitosan, PASC and avicel. The and values of celA1805 were 1.78 mg/ml and 50.09 μmol/min/mg. When incubated with cellooligosaccharides ranging from cellotriose to cellopentose, celA1805 mainly hydrolyzed cellotetrose (G4) and cellopentose (G5) to cellose (G2) and cellotriose (G3), but hardly hydrolyzed cellotriose. The concentrations of reducing sugars saccharified by celA1805 from wheat straw, rape straw, rice straw, peanut straw, and corn straw were increased by 0.21, 0.51, 0.26, 0.36, and 0.66 mg/ml, respectively. The results obtained in this study suggest potential applications of celA1805 in biomass saccharification.
本文从 B111 中克隆并表达了内切-β-1,4-葡聚糖酶基因 ()。重组 celA1805 含有糖苷水解酶 (GH)家族 8 结构域,与来自 sp. KSM-330 的内切-1,4-β-葡聚糖酶具有 76.8%的同源性。结果表明,celA1805 的最适 pH 和温度分别为 6.0 和 50°C,在 pH 3-9 和温度≤50°C 下稳定。金属离子对酶活性略有影响,但化学试剂通常抑制酶活性。此外,celA1805 对 CMC、大麦β-葡聚糖、地衣素、壳聚糖、PASC 和微晶纤维素表现出广泛的底物特异性。celA1805 的 和 值分别为 1.78mg/ml 和 50.09μmol/min/mg。当与从纤维三糖到纤维五糖的纤维寡糖孵育时,celA1805 主要将纤维四糖 (G4)和纤维五糖 (G5)水解为纤维二糖 (G2)和纤维三糖 (G3),但几乎不水解纤维三糖。celA1805 从小麦秸秆、油菜秸秆、水稻秸秆、花生秸秆和玉米秸秆中糖化产生的还原糖浓度分别增加了 0.21、0.51、0.26、0.36 和 0.66mg/ml。本研究结果表明 celA1805 在生物质糖化方面具有潜在的应用前景。