Olajuyigbe Folasade M, Nlekerem Chidinma M, Ogunyewo Olusola A
Enzyme Biotechnology and Environmental Health Unit, Department of Biochemistry, Federal University of Technology, Akure 340001, Nigeria.
Biochem Res Int. 2016;2016:3978124. doi: 10.1155/2016/3978124. Epub 2016 Feb 8.
Production of β-glucosidase from Fusarium oxysporum was investigated during degradation of some cellulosic substrates (Avicel, α-cellulose, carboxymethyl cellulose (CMC), and methylcellulose). Optimized production of β-glucosidase using the cellulosic substrate that supported highest yield of enzyme was examined over 192 h fermentation period and varied pH of 3.0-11.0. The β-glucosidase produced was characterized for its suitability for industrial application. Methyl cellulose supported the highest yield of β-glucosidase (177.5 U/mg) at pH 6.0 and 30°C at 96 h of fermentation with liberation of 2.121 μmol/mL glucose. The crude enzyme had optimum activity at pH 5.0 and 70°C. The enzyme was stable over broad pH range of 4.0-7.0 with relative residual activity above 60% after 180 min of incubation. β-glucosidase demonstrated high thermostability with 83% of its original activity retained at 70°C after 180 min of incubation. The activity of β-glucosidase was enhanced by Mn(2+) and Fe(2+) with relative activities of 167.67% and 205.56%, respectively, at 5 mM and 360% and 315%, respectively, at 10 mM. The properties shown by β-glucosidase suggest suitability of the enzyme for industrial applications in the improvement of hydrolysis of cellulosic compounds into fermentable sugars that can be used in energy generation and biofuel production.
在一些纤维素底物(微晶纤维素、α-纤维素、羧甲基纤维素(CMC)和甲基纤维素)降解过程中,对尖孢镰刀菌产生β-葡萄糖苷酶的情况进行了研究。使用支持最高酶产量的纤维素底物,在192小时的发酵期和3.0 - 11.0的不同pH值下,对β-葡萄糖苷酶的优化生产进行了检测。对所产生的β-葡萄糖苷酶进行了表征,以确定其在工业应用中的适用性。在pH 6.0、30°C和96小时发酵时,甲基纤维素支持最高的β-葡萄糖苷酶产量(177.5 U/mg),同时释放出2.121 μmol/mL葡萄糖。粗酶在pH 5.0和70°C时具有最佳活性。该酶在4.0 - 7.0的较宽pH范围内稳定,孵育180分钟后相对残余活性高于60%。β-葡萄糖苷酶表现出高耐热性,孵育180分钟后在70°C仍保留其原始活性的83%。β-葡萄糖苷酶的活性在5 mM时被Mn(2+)和Fe(2+)增强,相对活性分别为167.67%和205.56%,在10 mM时分别为360%和315%。β-葡萄糖苷酶所显示的特性表明该酶适用于工业应用,可用于将纤维素化合物水解为可用于能源生产和生物燃料生产的可发酵糖。