Huang D Y, Furukawa A, Ichikawa Y
Department of Biochemistry, Faculty of Medicine, Kagawa Medical University, Japan.
Arch Biochem Biophys. 1999 Apr 15;364(2):264-72. doi: 10.1006/abbi.1999.1129.
Retinal oxidase (EC 1.2.3.11) is a molybdenum-containing flavoenzyme with high enzymatic activity as to retinoic acid synthesis. In this study, we provide direct evidence that retinal oxidase is identical to aldehyde oxidase (EC 1.2.3.1) by cDNA cloning. Retinal oxidase and aldehyde oxidase, purified from rabbit liver cytosol using the original methods, showed completely identical HPLC patterns and amino acid sequences for three corresponding polypeptides (103 amino residues). The primary structural information obtained from the cleaved polypeptides permitted molecular cloning of the full-length cDNA of rabbit liver retinal oxidase (aldehyde oxidase). We also cloned and sequenced the full-length cDNA of mouse retinal oxidase. The cDNAs of rabbit and mouse retinal oxidase have a common sequence approximately 4.6 kb long, comprising 4-kb coding regions. The open reading frames of the cDNAs predict single polypeptides of 1334 and 1333 amino acids; the calculated minimum molecular mass of each is approximately 147,000. Northern blot analysis showed that the rabbit retinal oxidase mRNA was widely expressed in tissues. Finally, we successfully constructed a prokaryotic expression system for mouse retinal oxidase. The purified recombinant retinal oxidase from Escherichia coli showed a typical spectrum of aldehyde oxidases and a lower Km (3.8 microM) for retinal and a higher Vmax (807 nmol/min/mg protein) for retinoic acid synthesis than those of rabbit retinal oxidase (8 microM and 496 nmol/min/mg protein). This represents the first eukaryotic molybdenum-containing flavoprotein to be expressed in an active form in a prokaryotic system.
视网膜氧化酶(EC 1.2.3.11)是一种含钼的黄素酶,对视黄酸合成具有高酶活性。在本研究中,我们通过cDNA克隆提供了直接证据,证明视网膜氧化酶与醛氧化酶(EC 1.2.3.1)相同。使用原始方法从兔肝细胞溶胶中纯化的视网膜氧化酶和醛氧化酶,对于三种相应的多肽(103个氨基酸残基)显示出完全相同的HPLC图谱和氨基酸序列。从切割的多肽获得的一级结构信息允许对兔肝视网膜氧化酶(醛氧化酶)的全长cDNA进行分子克隆。我们还克隆并测序了小鼠视网膜氧化酶的全长cDNA。兔和小鼠视网膜氧化酶的cDNA具有约4.6 kb长的共同序列,包括4 kb的编码区。cDNA的开放阅读框预测有1334和1333个氨基酸的单一多肽;每个的计算最小分子量约为147,000。Northern印迹分析表明兔视网膜氧化酶mRNA在组织中广泛表达。最后,我们成功构建了小鼠视网膜氧化酶的原核表达系统。从大肠杆菌中纯化的重组视网膜氧化酶显示出醛氧化酶的典型光谱,并且与兔视网膜氧化酶(8 microM和496 nmol/min/mg蛋白质)相比,对视网膜的Km较低(3.8 microM),对视黄酸合成的Vmax较高(807 nmol/min/mg蛋白质)。这代表了第一个在原核系统中以活性形式表达的真核含钼黄素蛋白。