Bognar A L, Meighen E A
J Biol Chem. 1978 Jan 25;253(2):446-50.
A NAD+-dependent aldehyde dehydrogenase, the activity of which induces at the same time as luceriferase, has been purified from the bioluminescent bacterium Beneckea harveyi, and its chemical and physical properties have been investigated. The purification is accomplished in three steps resulting in an enzyme preparation that gives a single protein band on three different gel electrophoresis systems. The molecular weight of the purified enzyme was estimated to be 120,000 by gel filtration. Sodium dodecyl sulfate-gel electrophoresis gave a molecular weight of 59,000 indicating that aldehyde dehydrogenase has a dimeric structure with subunits of similar molecular weight. The purified enzyme has a high specificity for long chain aliphatic aldehydes; the Michaelis constants for aldehydes decrease with increasing chain length as also observed for bacterial aldehyde dehydrogenases involved in the metabolism of hydrocarbons. The aldehyde specificity of the aldehyde dehydrogenase is similar to that of luciferase indicating that the functional role of the enzyme may be linked with the bioluminescent system.
已从发光细菌哈氏贝内克氏菌中纯化出一种NAD⁺依赖性醛脱氢酶,其活性与荧光素酶同时诱导产生,并对其化学和物理性质进行了研究。纯化过程分三步完成,得到的酶制剂在三种不同的凝胶电泳系统上均呈现单一蛋白条带。通过凝胶过滤法估计纯化酶的分子量为120,000。十二烷基硫酸钠 - 凝胶电泳给出的分子量为59,000,表明醛脱氢酶具有二聚体结构,亚基分子量相似。纯化酶对长链脂肪醛具有高度特异性;醛的米氏常数随链长增加而降低,这与参与碳氢化合物代谢的细菌醛脱氢酶情况相同。醛脱氢酶的醛特异性与荧光素酶相似,表明该酶的功能作用可能与生物发光系统有关。