Istituto Botanico, Universita' di Bologna, Italy.
Plant Physiol. 1986 Feb;80(2):384-9. doi: 10.1104/pp.80.2.384.
Some properties of microsomal electron transfer chains, dependent for oxidase activity on addition of NADH or NADPH, duroquinone, and oxygen (L. De Luca et al., 1984, Plant Sci Lett 36: 93-98) are described. Activity is characterized by negatively cooperative kinetics toward reduced pyridine nucleotides, with limiting K(m) of 10 to 50 micromolar at pH 7.0 (increasing at lower pH), as well as toward duroquinone with limiting K(m) of 100 to 400 micromolar regardless of pH. Molecular oxygen is reduced by the enzyme complex with S(0.5) of about 30 micromolar and production of H(2)O and H(2)O(2), without superoxide involvement. The ratio NAD(P)H:O(2) averages 1.35 in the presence of KCN and 1.85 in its absence. The pyridine nucleotide specificity of the dehydrogenases has been investigated by kinetic competition experiments. Some enzyme heterogeneity was established for all preparations. At least two enzymes are detectable in plasma membrane-enriched fractions: a major NAD(P)H dehydrogenase having an acid pH optimum, and an NADPH dehydrogenase active around neutrality. Addition of Triton X-100 strongly enhances the activity over most of the pH scale, but depresses it increasingly at pH values higher than 8.0, to the effect that pH profile shows, under these conditions, a major peak at about pH 5.8 for both NADH and NADPH oxidase. Results with endoplasmic reticulum preparations are similar, except that they suggest the presence of still more activities at and above pH 7. The results are interpreted in terms of different complexes catalyzing electron transfer from NAD(P)H to O(2) without release of intermediates.
描述了一些依赖于氧化酶活性的微粒体电子传递链的性质,这些性质需要添加 NADH 或 NADPH、二氢奎尼定和氧气(L. De Luca 等人,1984 年,植物科学快报 36:93-98)。该活性的特点是对还原型吡啶核苷酸具有负协同动力学特性,在 pH7.0 时,其最低 Km 值为 10 到 50 微摩尔(在较低 pH 值时增加),对二氢奎尼定的最低 Km 值为 100 到 400 微摩尔,与 pH 值无关。该酶复合物以约 30 微摩尔的 S(0.5)还原分子氧,并产生 H(2)O 和 H(2)O(2),不涉及超氧化物。在存在 KCN 的情况下,NAD(P)H:O(2)的比值平均为 1.35,在不存在 KCN 的情况下为 1.85。通过动力学竞争实验研究了脱氢酶的吡啶核苷酸特异性。所有制剂都确定存在一些酶异质性。在富含质膜的部分中可以检测到至少两种酶:一种主要的 NAD(P)H 脱氢酶具有酸性 pH 最佳值,另一种 NADPH 脱氢酶在中性附近活跃。添加 Triton X-100 可在大多数 pH 范围内强烈增强活性,但在 pH 值高于 8.0 时,活性逐渐降低,以至于在这些条件下,pH 曲线显示 NADH 和 NADPH 氧化酶的主要峰约为 pH5.8。内质网制剂的结果相似,只是在 pH 值为 7 及以上时,存在更多的活性。结果以不同的复合物为解释,这些复合物催化从 NAD(P)H 向 O(2)的电子转移,而不释放中间产物。