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克勒克酵母属菌株和多形汉逊酵母的乙醇氧化酶。催化特性和亚基结构。

Alcohol oxidases of Kloeckera sp. and Hansenula polymorpha. Catalytic properties and subunit structures.

作者信息

Kato N, Omori Y, Tani Y, Ogata K

出版信息

Eur J Biochem. 1976 May 1;64(2):341-50. doi: 10.1111/j.1432-1033.1976.tb10307.x.

Abstract
  1. Alcohol oxidase (alcohol: oxygen oxidoreductase) of a thermophilic methanol-utilizing yeast, Hansenula polymorpha DL-1, was isolated in crystalline form. 2. This alcohol oxidase of H. polymorpha was more stable to heat than was the enzyme of Kloeckera sp. This difference in heat stability is compatible with the difference in growth temperatures for both yeasts. 3. The crystalline alcohol oxidases of both yeast oxidized the lower primary alcohols (C-2 to C-4) as well as methanol. The apparent Km values for the methanol of Kloeckera and H. polymorpha enzymes were 0.44 and 0.23 mM, respectively. The enzymes could also oxidize formaldehyde to formate, and were inactivated by relatively low concentrations of hydrogen peroxide. 4. The molecular weight for both enzymes was calculated to be about 670000. Each enzyme is composed of eight identical subunits (molecular weight 83000) and contains eight moles of FAD as the prosthetic group. The NH2-terminal and COOH-terminal amino acids of H. polymorpha enzyme were identified as alanine and phenylalanine, respectively. The octameric subunits model of each enzyme was confirmed by electron micrographs, which showed an octad aggregate, composed of two tetragons face to face.
摘要
  1. 从嗜热甲醇利用酵母多形汉逊酵母DL-1中分离出了结晶形式的乙醇氧化酶(乙醇:氧氧化还原酶)。2. 多形汉逊酵母的这种乙醇氧化酶比克鲁维酵母属的该酶对热更稳定。这种热稳定性的差异与两种酵母生长温度的差异相一致。3. 两种酵母的结晶乙醇氧化酶都能氧化低级伯醇(C-2至C-4)以及甲醇。克鲁维酵母和多形汉逊酵母酶对甲醇的表观Km值分别为0.44和0.23 mM。这些酶还能将甲醛氧化为甲酸,并被相对低浓度的过氧化氢灭活。4. 两种酶的分子量经计算约为670000。每种酶由八个相同的亚基(分子量83000)组成,并含有八摩尔FAD作为辅基。多形汉逊酵母酶的NH2末端和COOH末端氨基酸分别被鉴定为丙氨酸和苯丙氨酸。每种酶的八聚体亚基模型通过电子显微镜照片得到证实,照片显示了由两个四边形面对面组成的八聚体聚集体。

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