Gupta Gupteshwar, Gangwar Rishabh, Gautam Ashwani, Kumar Lalit, Dhariwal Anuj, Sahai Vikram, Mishra Saroj
Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi, New Delhi, 110016, India.
Appl Biochem Biotechnol. 2014 Aug;173(8):2099-115. doi: 10.1007/s12010-014-1010-3. Epub 2014 Jun 15.
Class I cellobiose dehydrogenases (CDHs) are extracellular hemoflavo enzymes produced at low levels by the Basidiomycetes (white rot fungi). In presence of suitable electron acceptors, e.g., cytochrome c, 2,6-dichlorophenol-indophenol, or metal ions, it oxidizes cellobiose to cellobionolactone. A stringent requirement for disaccharides makes CDH also useful for conversion of lactose to lactobionic acid, an important ingredient in pharma and detergent industry. In this work, class I CDH was produced using a newly identified white rot fungus Termitomyces sp. OE147. Four media were evaluated for CDH production, and maximum enzyme activity of 0.92 international unit (IU)/ml was obtained on Ludwig medium under submerged conditions. Statistical optimization of N source, which had significant effect on CDH production, using Box-Behnken design followed by optimization of inoculum size and age resulted in an increase in activity to 2.9 IU/ml and a productivity of ~25 IU/l/h. The nearly purified CDH exhibited high activity of 26.4 IU/mg protein on lactose indicating this enzyme to be useful for lactobionic acid synthesis. Some of the internal peptide sequences bore 100 % homology to the CDH produced in Myceliophthora thermophila. The fungal isolate was amenable to scale up, and an overall productivity of ~18 IU/l/h was obtained at 14-l level.
I类纤维二糖脱氢酶(CDHs)是担子菌(白腐真菌)产生的细胞外血红素黄素酶,产量较低。在合适的电子受体(如细胞色素c、2,6-二氯酚靛酚或金属离子)存在下,它将纤维二糖氧化为纤维二糖酸内酯。对二糖的严格要求使得CDH也可用于将乳糖转化为乳糖酸,乳糖酸是制药和洗涤剂行业的重要成分。在这项工作中,使用新鉴定的白腐真菌白蚁伞属OE147生产I类CDH。评估了四种培养基用于CDH的生产,在深层培养条件下,在路德维希培养基上获得了最高酶活性0.92国际单位(IU)/毫升。使用Box-Behnken设计对显著影响CDH生产的氮源进行统计优化,随后优化接种量和菌龄,酶活性提高到2.9 IU/毫升,生产率约为25 IU/升/小时。近乎纯化的CDH对乳糖表现出26.4 IU/毫克蛋白质的高活性,表明该酶可用于乳糖酸合成。一些内部肽序列与嗜热毁丝霉产生的CDH具有100%的同源性。该真菌分离株易于放大培养,在14升规模下获得了约18 IU/升/小时的总生产率。