首页> 外文OA文献 >NADH-Ferricyanide Reductase of Leaf Plasma Membranes : Partial Purification and Immunological Relation to Potato Tuber Microsomal NADH-Ferricyanide Reductase and Spinach Leaf NADH-Nitrate Reductase
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NADH-Ferricyanide Reductase of Leaf Plasma Membranes : Partial Purification and Immunological Relation to Potato Tuber Microsomal NADH-Ferricyanide Reductase and Spinach Leaf NADH-Nitrate Reductase

机译:叶质膜NADH-铁氰化物还原酶:马铃薯块茎微粒体NADH-铁氰化物还原酶和菠菜叶NADH-硝酸盐还原酶的部分纯化和免疫学关系

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摘要

Plasma membranes obtained by two-phase partitioning of microsomal fractions from spinach (Spinacea oleracea L. cv Medania) and sugar beet leaves (Beta vulgaris L.) contained relatively high NADH-ferricyanide reductase and NADH-nitrate reductase (NR; EC 1.6.6.1) activities. Both of these activities were latent. To investigate whether these activities were due to the same enzyme, plasma membrane polypeptides were separated with SDS-PAGE and analyzed with immunoblotting methods. Antibodies raised against microsomal NADH-ferricyanide reductase (tentatively identified as NADH-cytochrome b5 reductase, EC 1.6.2.2), purified from potato (Solanum tuberosum L. cv Bintje) tuber microsomes, displayed one single band at 43 kilodaltons when reacted with spinach plasma membranes, whereas lgG produced against NR from spinach leaves gave a major band at 110 kilodaltons together with a few fainter bands of lower molecular mass. Immunoblotting analysis using inside-out and right-side-out plasma membrane vesicles strongly indicated that NR was not an integral protein but probably trapped inside the plasma membrane vesicles during homogenization. Proteins from spinach plasma membranes were solubilized with the zwitterionic detergent 3-[(3-cholamidopropyl) dimethylammonio] 1-propane-sulfonate and separated on a Mono Q anion exchange column at pH 5.6 with fast protein liquid chromatography. One major peak of NADH-ferricyanide reductase activity was found after separation. The peak fraction was enriched about 70-fold in this activity compared to the plasma membrane. When the peak fractions were analyzed with SDS-PAGE the NADH-ferricyanide reductase activity strongly correlated with a 43 kilodalton polypeptide which reacted with the antibodies against potato microsomal NADH-ferricyanide reductase. Thus, our data indicate that most, if not all, of the truly membrane-bound NADH-ferricyanide reductase activity of leaf plasma membranes is due to an enzyme very similar to potato tuber microsomal NADH-ferricyanide reductase (NADH-cytochrome b5 reductase).
机译:通过将菠菜(Spinacea oleracea L.cv Medania)和甜菜叶(Beta vulgaris L.)的微粒体组分两相分配而获得的质膜包含相对较高的NADH-铁氰化物还原酶和NADH-硝酸盐还原酶(NR; EC 1.6.6.1) )活动。这些活动都是潜在的。为了研究这些活性是否是由于相同的酶引起的,用SDS-PAGE分离质膜多肽并用免疫印迹法进行分析。从马铃薯(Solanum tuberosum L.cv Bintje)块茎微粒体纯化的针对微粒体NADH-铁氰化物还原酶(暂定为NADH-细胞色素b5还原酶,EC 1.6.2.2)的抗体与菠菜血浆反应时,在43道尔顿处显示一个单条带膜,而菠菜叶产生的抗NR的lgG在110道尔顿处有一个主要带,同时还带有一些较低分子量的微弱带。使用由内而外和从右至外的质膜囊泡进行的免疫印迹分析强烈表明,NR不是完整蛋白,而是在均质化过程中可能被困在质膜囊泡内部。用两性离子去污剂3-[((3-胆酰胺基丙基)二甲基铵] -1-丙烷-磺酸盐]溶解菠菜质膜上的蛋白质,并用快速蛋白质液相色谱法在pH 5.6的Mono Q阴离子交换柱上分离。分离后发现NADH-铁氰化物还原酶活性的一个主要峰。与质膜相比,该活性的峰部分富集了约70倍。当用SDS-PAGE分析峰级分时,NADH-铁氰化物还原酶活性与43千道尔顿多肽强烈相关,该多肽与针对马铃薯微粒体NADH-铁氰化物还原酶的抗体反应。因此,我们的数据表明,大多数,即使不是全部,叶质膜真正与膜结合的NADH-铁氰化物还原酶活性是由于与马铃薯块茎微粒体NADH-铁氰化物还原酶(NADH-细胞色素b5还原酶)非常相似的酶引起的。

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