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Low apparent aldose reductase activity produced by monosaccharide autoxidation.

机译:单糖自氧化产生的表观醛糖还原酶活性低。

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摘要

Low apparent aldose reductase activity, as measured by NADPH oxidation, can be produced by the spontaneous autoxidation of monosaccharides. NADPH is oxidized to metabolically active NADP+ in a solution of autoxidizing DL-glyceraldehyde at rates of up to 15 X 10(-4) A340/min. The close parallelism between the effects of buffer salt type and concentration, monosaccharide structure and temperature activation on autoxidation and NADPH oxidation imply that autoxidation is a prerequisite for the NADPH oxidation, probably via the hydroperoxy radical. Nucleotide-binding proteins enhanced NADPH oxidation induced by DL-glyceraldehyde, up to 10.6-fold with glucose-6-phosphate dehydrogenase. Glutathione reductase-catalysed NADPH oxidation in the presence of autoxidizing monosaccharide showed many characteristics of the aldose reductase reaction. Aldose reductase inhibitors acted as antioxidants in inhibiting this NADPH oxidation. These results indicate that low apparent aldose reductase activities may be due to artifacts of monosaccharide autoxidation, and could provide an explanation for the non-linear steady-state kinetics observed with DL-glyceraldehyde and aldose reductase.
机译:通过NADPH氧化测定的低表观醛糖还原酶活性可通过单糖的自发自氧化产生。在自氧化DL-甘油醛的溶液中,NADPH以最高15 X 10(-4)A340 / min的速度被氧化成具有代谢活性的NADP +。缓冲盐类型和浓度,单糖结构和温度活化对自氧化和NADPH氧化的影响之间存在密切的平行关系,这意味着自氧化是NADPH氧化的先决条件,可能是通过氢过氧自由基。核苷酸结合蛋白增强了DL-甘油醛诱导的NADPH氧化,用葡萄糖-6-磷酸脱氢酶提高了10.6倍。在自氧化单糖存在下,谷胱甘肽还原酶催化的NADPH氧化显示出醛糖还原酶反应的许多特征。醛糖还原酶抑制剂在抑制这种NADPH氧化中起抗氧化剂的作用。这些结果表明,低表观醛糖还原酶活性可能是由于单糖自氧化产物造成的,并且可以为用DL-甘油醛和醛糖还原酶观察到的非线性稳态动力学提供解释。

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