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Human aldose reductase and human small intestine aldose reductase are efficient retinal reductases: consequences for retinoid metabolism.

机译:人醛糖还原酶和人小肠醛糖还原酶是有效的视网膜还原酶:类维生素A代谢的后果。

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摘要

Aldo-keto reductases (AKRs) are NAD(P)H-dependent oxidoreductases that catalyse the reduction of a variety of carbonyl compounds, such as carbohydrates, aliphatic and aromatic aldehydes and steroids. We have studied the retinal reductase activity of human aldose reductase (AR), human small-intestine (HSI) AR and pig aldehyde reductase. Human AR and HSI AR were very efficient in the reduction of all- trans -, 9- cis - and 13- cis -retinal ( k (cat)/ K (m)=1100-10300 mM(-1).min(-1)), constituting the first cytosolic NADP(H)-dependent retinal reductases described in humans. Aldehyde reductase showed no activity with these retinal isomers. Glucose was a poor inhibitor ( K (i)=80 mM) of retinal reductase activity of human AR, whereas tolrestat, a classical AKR inhibitor used pharmacologically to treat diabetes, inhibited retinal reduction by human AR and HSI AR. All- trans -retinoic acid failed to inhibit both enzymes. In this paper we present the AKRs as an emergent superfamily of retinal-active enzymes, putatively involved in the regulation of retinoid biological activity through the assimilation of retinoids from beta-carotene and the control of retinal bioavailability.
机译:醛基酮还原酶(AKR)是NAD(P)H依赖的氧化还原酶,可催化各种羰基化合物(如碳水化合物,脂肪族和芳香族醛类和类固醇)的还原。我们已经研究了人醛糖还原酶(AR),人小肠(HSI)AR和猪醛还原酶的视网膜还原酶活性。人类AR和HSI AR在减少全反式,9-顺式和13-顺式视网膜(k(cat)/ K(m)= 1100-10300 mM(-1)。 1)),构成人类中描述的首个胞质NADP(H)依赖性视网膜还原酶。醛还原酶对这些视网膜异构体没有活性。葡萄糖是人AR的视网膜还原酶活性的弱抑制剂(K(i)= 80 mM),而tolrestat是一种药理学用于治疗糖尿病的经典AKR抑制剂,抑制人AR和HSI AR的视网膜减少。全反式视黄酸不能抑制两种酶。在本文中,我们将AKRs作为视网膜活性酶的新兴超家族,通过与β-胡萝卜素的类维生素A的同化和视网膜生物利用度的控制,推测参与了类维生素A生物活性的调节。

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