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The binding of NADH to cytoplasmic aldehyde dehydrogenase after modification with p-nitrophenyl dimethylcarbamate

机译:对硝基苯基二甲基氨基甲酸酯修饰后NADH与细胞质醛脱氢酶的结合

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pCytoplasmic aldehyde dehydrogenase may be modified by reaction with p-nitrophenyl dimethylcarbamate to give a stable E-X-CO-NMe2 species that is an analogue of the usual labile acyl-enzyme involved in the enzyme9s reactions. [X is derived from an enzymic nucleophilic group.] This species still contains the tightly bound NADH that is present in the native enzyme. When further NADH binds to E-X-CO-NMe2 its fluorescence is enhanced over 4 times more than when it binds to unmodified enzyme; this fluorescence is completely unaffected by high propionaldehyde concentration and only slightly affected by p-nitrobenzaldehyde. The modified species has 1.0 NADH binding site in the absence of Mg2+ and 1.67 sites in its presence. The rate of dissociation of E-X-CO-NMe2.NADH is biphasic (k 3.4 and 1.8 min-1) and is considerably lower than that of E.NADH; the presence of Mg2+ slows the process even more (k 0.47 and 0.37 min-1). The implications of these studies towards a greater understanding of the nature of aldehyde dehydrogenase-catalysed reactions are discussed./p
机译:细胞质醛脱氢酶可通过与对硝基苯基二甲基氨基甲酸酯反应而修饰,得到稳定的E-X-CO-NMe2物种,该E-X-CO-NMe2物种是与酶反应中涉及的通常不稳定的酰基酶的类似物。 [X源自酶亲核基团。]该物种仍然包含天然酶中存在的紧密结合的NADH。当NADH与E-X-CO-NMe2进一步结合时,其荧光强度将比未修饰的酶增强4倍以上。这种荧光完全不受高丙醛浓度的影响,而仅受对硝基苯甲醛的影响很小。所述修饰的物种在不存在Mg 2+的情况下具有1.0 NADH结合位点,在其存在下具有1.67的位点。 E-X-CO-NMe2.NADH的解离速率是双相的(k 3.4和1.8 min-1),并且大大低于E.NADH; Mg2 +的存在会进一步减慢该过程(k 0.47和0.37 min-1)。讨论了这些研究对进一步了解醛脱氢酶催化反应的性质的意义。

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