Ohta Takeshi, Kawabata Takeshi, Nishikawa Ken, Tani Akio, Kimbara Kazuhide, Kawai Fusako
Research Institute for Bioresources, Okayama University, 2-20-1 Chuo, Kurashiki, Okayama 710-0046, Japan.
Appl Environ Microbiol. 2006 Jun;72(6):4388-96. doi: 10.1128/AEM.02174-05.
Polyethylene glycol dehydrogenase (PEGDH) from Sphingopyxis terrae (formerly Sphingomonas terrae) is composed of 535 amino acid residues and one flavin adenine dinucleotide per monomer protein in a homodimeric structure. Its amino acid sequence shows 28.5 to 30.5% identity with glucose oxidases from Aspergillus niger and Penicillium amagasakiense. The ADP-binding site and the signature 1 and 2 consensus sequences of glucose-methanol-choline oxidoreductases are present in PEGDH. Based on three-dimensional molecular modeling and kinetic characterization of wild-type PEGDH and mutant PEGDHs constructed by site-directed mutagenesis, residues potentially involved in catalysis and substrate binding were found in the vicinity of the flavin ring. The catalytically important active sites were assigned to His-467 and Asn-511. One disulfide bridge between Cys-379 and Cys-382 existed in PEGDH and seemed to play roles in both substrate binding and electron mediation. The Cys-297 mutant showed decreased activity, suggesting the residue's importance in both substrate binding and electron mediation, as well as Cys-379 and Cys-382. PEGDH also contains a motif of a ubiquinone-binding site, and coenzyme Q10 was utilized as an electron acceptor. Thus, we propose several important amino acid residues involved in the electron transfer pathway from the substrate to ubiquinone.
来自土壤鞘氨醇单胞菌(以前称为土壤鞘氨醇菌)的聚乙二醇脱氢酶(PEGDH)由535个氨基酸残基组成,每个单体蛋白含有一个黄素腺嘌呤二核苷酸,呈同二聚体结构。其氨基酸序列与黑曲霉和尼崎青霉的葡萄糖氧化酶具有28.5%至30.5%的同一性。PEGDH中存在葡萄糖-甲醇-胆碱氧化还原酶的ADP结合位点以及特征1和特征2共有序列。基于野生型PEGDH和通过定点诱变构建的突变型PEGDH的三维分子建模和动力学表征,发现黄素环附近存在可能参与催化和底物结合的残基。催化重要的活性位点被确定为His-467和Asn-511。PEGDH中存在Cys-379和Cys-382之间的一个二硫键,似乎在底物结合和电子介导中都起作用。Cys-297突变体的活性降低,表明该残基以及Cys-379和Cys-382在底物结合和电子介导中都很重要。PEGDH还包含一个泛醌结合位点基序,辅酶Q10被用作电子受体。因此,我们提出了几个参与从底物到泛醌电子传递途径的重要氨基酸残基。