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电子跨嗜铬粒细胞膜的转移。利用电子顺磁共振波谱法证明细胞外线粒体烟酰胺腺嘌呤二核苷酸(NADH):抗坏血酸自由基氧化还原酶对囊泡内抗坏血酸自由基的还原作用。

Electron transfer across the chromaffin granule membrane. Use of EPR to demonstrate reduction of intravesicular ascorbate radical by the extravesicular mitochondrial NADH:ascorbate radical oxidoreductase.

作者信息

Wakefield L M, Cass A E, Radda G K

出版信息

J Biol Chem. 1986 Jul 25;261(21):9746-52.

PMID:3015905
Abstract

A two-compartment electron paramagnetic resonance system has been developed in which the membrane-impermeable spin probe Ni(en)2+3 is used to selectively eliminate the EPR signal from extravesicular ascorbate radical, such that radicals in intra- and extravesicular compartments can be distinguished. Using this system, we have shown that an increase in ascorbate radical in the extravesicular medium is reflected by an increase in ascorbate radical within resealed chromaffin granule ghosts containing trapped ascorbate but has no effect on radical concentrations inside liposomes containing ascorbate. This indicates that the chromaffin granule membrane contains a component, not present in liposomes, that allows equilibration between the intra- and extravesicular ascorbate/ascorbate radical couples. This component is probably cytochrome b561. We further show that activation of the mitochondrial NADH:ascorbate radical oxidoreductase in the extravesicular medium causes a decrease in intravesicular ascorbate radical in chromaffin granule ghosts but not in liposomes. These data provide direct experimental evidence for the hypothesis that the adrenal medullary mitochondrial NADH:ascorbate radical oxidoreductase could drive the re-reduction of ascorbate free radical generated inside the chromaffin granule by the turnover of dopamine beta-hydroxylase, without the ascorbate radical ever having to leave the granule.

摘要

已开发出一种双室电子顺磁共振系统,其中使用膜不可渗透的自旋探针Ni(en)2+3来选择性消除细胞外抗坏血酸自由基的电子顺磁共振信号,从而能够区分细胞内和细胞外隔室中的自由基。利用该系统,我们发现细胞外介质中抗坏血酸自由基的增加反映在含有捕获抗坏血酸的重封嗜铬粒蛋白颗粒空泡内抗坏血酸自由基的增加上,但对含有抗坏血酸的脂质体内的自由基浓度没有影响。这表明嗜铬粒蛋白颗粒膜含有脂质体中不存在的一种成分,该成分允许细胞内和细胞外抗坏血酸/抗坏血酸自由基对之间达到平衡。该成分可能是细胞色素b561。我们进一步表明,细胞外介质中线粒体NADH:抗坏血酸自由基氧化还原酶的激活会导致嗜铬粒蛋白颗粒空泡内细胞内抗坏血酸自由基减少,但脂质体内不会减少。这些数据为以下假设提供了直接的实验证据:肾上腺髓质线粒体NADH:抗坏血酸自由基氧化还原酶可以通过多巴胺β-羟化酶的周转驱动嗜铬粒蛋白颗粒内产生的抗坏血酸自由基的再还原,而抗坏血酸自由基无需离开颗粒。

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