Lee Meng-Hwan, Lai Wen-Lin, Lin Shuen-Fuh, Hsu Cheng-Sheng, Liaw Shwu-Huey, Tsai Ying-Chieh
Institute of Biochemistry, National Yang-Ming University, 155, Sec. 2, Li-Nong St., Pei-Tou, Taipei 11221, Taiwan.
Appl Environ Microbiol. 2005 Dec;71(12):8881-7. doi: 10.1128/AEM.71.12.8881-8887.2005.
Glucooligosaccharide oxidase from Acremonium strictum was screened for potential applications in oligosaccharide acid production and carbohydrate detection. This protein is a unique covalent flavoenzyme which catalyzes the oxidation of a variety of carbohydrates with high selectivity for cello- and maltooligosaccharides. Kinetic measurements suggested that this enzyme possesses an open carbohydrate-binding groove, which is mainly composed of two glucosyl-binding subsites. The encoding gene was subsequently cloned, and one intron was detected in the genomic DNA. Large amounts of active enzymes were expressed in Pichia pastoris, with a yield of 300 mg per liter medium. The protein was predicted to share structural homology with plant cytokinin dehydrogenase and related flavoproteins that share a conserved flavin adenine dinucleotide (FAD)-binding domain. The closest sequence matches are those of plant berberine bridge enzyme-like proteins, particularly the characteristic flavinylation site. Unexpectedly, mutation of the putative FAD-attaching residue, H70, to alanine, serine, cysteine, and tyrosine did not abolish the covalent FAD linkage and had little effect on the Km. Instead, the variants displayed kcat values that were 50- to 600-fold lower, indicating that H70 is crucial for efficient redox catalysis, perhaps through modulation of the oxidative power of the flavin.
对来自紧束顶孢霉的低聚葡萄糖氧化酶在低聚糖酸生产和碳水化合物检测方面的潜在应用进行了筛选。这种蛋白质是一种独特的共价黄素酶,它能催化多种碳水化合物的氧化,对纤维寡糖和麦芽寡糖具有高选择性。动力学测量表明,这种酶具有一个开放的碳水化合物结合槽,主要由两个葡萄糖基结合亚位点组成。随后克隆了编码基因,并在基因组DNA中检测到一个内含子。大量的活性酶在毕赤酵母中表达,每升培养基产量为300毫克。预测该蛋白质与植物细胞分裂素脱氢酶和相关黄素蛋白具有结构同源性,这些蛋白共享一个保守的黄素腺嘌呤二核苷酸(FAD)结合结构域。最接近的序列匹配是植物小檗碱桥酶样蛋白的序列,特别是特征性的黄素化位点。出乎意料的是,将假定的FAD连接残基H70突变为丙氨酸、丝氨酸、半胱氨酸和酪氨酸并没有消除共价FAD连接,并且对Km影响很小。相反,这些变体的kcat值降低了50至600倍,表明H70对于有效的氧化还原催化至关重要,可能是通过调节黄素的氧化能力来实现的。