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铜可提高大鼠肝脏中超氧化物歧化酶的活性。

Copper increases superoxide dismutase activity in rat liver.

作者信息

Ljutakova S G, Russanov E M, Liochev S I

出版信息

Arch Biochem Biophys. 1984 Dec;235(2):636-43. doi: 10.1016/0003-9861(84)90238-8.

Abstract

Superoxide dismutase (SOD) activity in rat liver cytosol and submitochondrial fractions was characterized as enzymatic and nonenzymatic (due to the SOD-like activity of copper) by four approaches: (i) aerobic NBT2+ (nitroblue tetrazolium) photoreduction in the absence of EDTA; (ii) aerobic NBT2+ photoreduction in the presence of 10(-4)M EDTA; (iii) anaerobic NBT2+ photoreduction; and (iv) o-dianisidine photooxidation. Under normal conditions nonenzymatic SOD activity has been observed only in the intermembrane space. The single subcutaneous injection of rats with CuSO4 solution (5 mg Cu/kg body wt) led to (i) an elevation of the copper level in all submitochondrial fractions; (ii) an increase in enzymatic SOD activity in only cytosol and intermembrane spaces; (iii) the appearance of a new electrophoretic SOD activity band in the intermembrane space preparations; and (iv) the appearance of nonenzymatic SOD-like activity in the outer and inner mitochondrial membranes, and a twofold increase in lipid hydroperoxides. This suggests that the increased nonenzymatic copper in vivo has a prooxidant effect, and does not catalyze the dismutation of O2- as it has been shown in in vitro experiments [E. M. Russanov, S. G. Ljutakova, and S. I. Leutcher (1982) Arch. Biochem. Biophys. 215, 220-229]. The peculiarities of the SOD activity in the intermembrane space are explained by the lysosomal localization of the granular CuZnSOD.

摘要

通过以下四种方法对大鼠肝细胞溶质和亚线粒体组分中的超氧化物歧化酶(SOD)活性进行了酶活性和非酶活性(由于铜具有类似SOD的活性)的表征:(i)在不存在乙二胺四乙酸(EDTA)的情况下进行需氧的NBT²⁺(硝基蓝四唑)光还原;(ii)在存在10⁻⁴M EDTA的情况下进行需氧的NBT²⁺光还原;(iii)厌氧的NBT²⁺光还原;以及(iv)邻联茴香胺光氧化。在正常条件下,仅在线粒体膜间隙中观察到非酶SOD活性。给大鼠单次皮下注射硫酸铜溶液(5毫克铜/千克体重)导致:(i)所有亚线粒体组分中的铜水平升高;(ii)仅在细胞溶质和线粒体膜间隙中的酶促SOD活性增加;(iii)在线粒体膜间隙制剂中出现一条新的电泳SOD活性带;以及(iv)在外膜和内膜线粒体膜中出现非酶SOD样活性,脂质氢过氧化物增加两倍。这表明体内增加的非酶铜具有促氧化作用,并且不像体外实验所显示的那样催化超氧阴离子的歧化反应[E.M.鲁萨诺夫、S.G.柳塔科娃和S.I.勒彻(1982年)《生物化学与生物物理学档案》215卷,2第20 - 229页]。线粒体膜间隙中SOD活性的特点是由颗粒状铜锌超氧化物歧化酶的溶酶体定位所解释的。

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