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Oxygen activation at the plasma membrane: relation between superoxide and hydroxyl radical production by isolated membranes

机译:质膜上的氧气活化:超氧化物和离体膜产生羟基自由基之间的关系

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Production of reactive oxygen species (hydroxyl radicals, superoxide radicals and hydrogen peroxide) was studied using EPR spin-trapping techniques and specific dyes in isolated plasma membranes from the growing and the non-growing zones of hypocotyls and roots of etiolated soybean seedlings as well as coleoptiles and roots of etiolated maize seedlings. NAD(P)H mediated the production of superoxide in all plasma membrane samples. Hydroxyl radicals were only produced by the membranes of the hypocotyl growing zone when a Fenton catalyst (FeEDTA) was present. By contrast, in membranes from other parts of the seedlings a low rate of spontaneous hydroxyl radical formation was observed due to the presence of small amounts of tightly bound peroxidase. It is concluded that apoplastic hydroxyl radical generation depends fully, or for the most part, on peroxidase localized in the cell wall. In soybean plasma membranes from the growing zone of the hypocotyl pharmacological tests showed that the superoxide production could potentially be attributed to the action of at least two enzymes, an NADPH oxidase and, in the presence of menadione, a quinone reductase.
机译:使用EPR旋转捕集技术和特定染料在离生胚轴和下胚轴和黄化大豆幼苗根部的生长和非生长区域分离的质膜中研究了活性氧(羟基自由基,超氧化物自由基和过氧化氢)的产生胚芽鞘和黄化玉米幼苗的根。 NAD(P)H介导所有质膜样品中超氧化物的产生。当存在Fenton催化剂(FeEDTA)时,羟基仅由下胚轴生长区的膜产生。相比之下,由于存在少量紧密结合的过氧化物酶,在幼苗其他部位的膜中观察到自发羟基自由基形成的速率较低。可以得出结论,质外生羟基自由基的产生完全或大部分取决于细胞壁中的过氧化物酶。在来自胚轴的生长区的大豆质膜中,药理试验表明,超氧化物的产生可能归因于至少两种酶(NADPH氧化酶)的作用,以及在甲萘醌存在下的醌还原酶的作用。

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