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犬肾中三种依赖NADPH的醛还原酶的定位、分离及性质

Localization, isolation and properties of three NADPH-dependent aldehyde reducing enzymes from dog kidney.

作者信息

Ohta M, Tanimoto T, Tanaka A

机构信息

Division of Biological Chemistry and Biologicals, National Institute of Hygienic Sciences, Tokyo, Japan.

出版信息

Biochim Biophys Acta. 1991 Jul 12;1078(3):395-403. doi: 10.1016/0167-4838(91)90162-s.

Abstract

Three kinds of NADPH-dependent aldehyde reducing enzymes were present in the dog kidney. Aldose reductase was located in the inner medulla region and aldehyde reductase in all regions of the renal cortex, outer medulla and inner medulla. In addition, a new reductase designated tentatively as high-Km aldose reductase, which was converted into an aldose reductase-like enzyme, was present in the inner medulla region of the kidney. Aldose reductase, aldehyde reductase and high-Km aldose reductase were purified to homogeneity from each region of the dog kidney. The molecular weight of aldose reductase was estimated to be 38,500 by SDS-polyacrylamide gel electrophoresis and the isoelectric point was found to be 5.7 by chromatofocusing. Aldose reductase had activity for aldo-sugars such as D-xylose, D-glucose and D-galactose as substrates and utilized both NADPH and NADH as coenzymes. Sulfate ions resulted in over 2-fold activation of aldose reductase. All aldehyde reductases from the three regions had the same properties. The molecular weights and isoelectric points of aldehyde reductases were 40,000 and 6.1, respectively. The aldehyde reductases were inactive for D-hexose, utilized only NADPH as coenzyme and were not affected by sulfate ions. High-Km aldose reductase had a molecular weight of 38,500 and an isoelectric point of 5.4. It had activity for aldo-sugars, but showed much higher Km and lower kcat/Km values than aldose reductase. Sulfate ions inhibited high-Km aldose reductase. It was converted into an aldose reductase-like enzyme by incubation in phosphate buffer at pH 7.0. The three kinds of enzymes were strongly inhibited by the known aldose reductase inhibitors. However, aldehyde reductase and high-Km aldose reductase were, in general, less susceptible than aldose reductase.

摘要

犬肾中存在三种依赖烟酰胺腺嘌呤二核苷酸磷酸(NADPH)的醛还原酶。醛糖还原酶位于内髓质区域,而醛还原酶存在于肾皮质、外髓质和内髓质的所有区域。此外,在肾内髓质区域还存在一种暂定为高Km醛糖还原酶的新还原酶,它可转化为一种类似醛糖还原酶的酶。醛糖还原酶、醛还原酶和高Km醛糖还原酶从犬肾的各个区域纯化至均一。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)估计醛糖还原酶的分子量为38,500,通过层析聚焦法发现其等电点为5.7。醛糖还原酶以D-木糖、D-葡萄糖和D-半乳糖等醛糖为底物具有活性,并利用NADPH和NADH作为辅酶。硫酸根离子使醛糖还原酶的活性激活超过2倍。来自三个区域的所有醛还原酶具有相同的性质。醛还原酶的分子量和等电点分别为40,000和6.1。醛还原酶对D-己糖无活性,仅利用NADPH作为辅酶,且不受硫酸根离子影响。高Km醛糖还原酶的分子量为38,500,等电点为5.4。它对醛糖具有活性,但与醛糖还原酶相比,表现出更高的Km值和更低的催化常数/米氏常数(kcat/Km)值。硫酸根离子抑制高Km醛糖还原酶。通过在pH 7.0的磷酸盐缓冲液中孵育,它可转化为一种类似醛糖还原酶的酶。这三种酶均受到已知醛糖还原酶抑制剂的强烈抑制。然而,醛还原酶和高Km醛糖还原酶总体上比醛糖还原酶更不易受抑制。

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