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Human extracellular superoxide dismutase is a tetramer composed of two disulphide-linked dimers: a simplified, high-yield purification of extracellular superoxide dismutase

机译:人细胞外超氧化物歧化酶是由两个二硫键连接的二聚体组成的四聚体:细胞外超氧化物歧化酶的简化,高产纯化

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pStudies examining the biochemical characteristics and pharmacological properties of extracellular superoxide dismutase (EC SOD) have been severely limited because of difficulties in purifying the enzyme. Recently EC SOD was found to exist in high concentrations in the arteries of most mammals examined and it is the predominant form of SOD activity in many arteries. We now describe a three-step, high-yield protocol for the purification of EC SOD from human aorta. In the first step, the high affinity of EC SOD for heparin is utilized to obtain a fraction in which EC SOD constitutes roughly 13% of the total protein compared with only 0.3% of that of the starting material. In addition, over 80% of the original EC SOD activity present in the aortic homogenate was retained after the first step of purification. EC SOD was further purified using a combination of cation- and anion-exchange chromatography. The overall yield of EC SOD from this purification procedure was 46%, with over 4 mg of EC SOD obtained from 230 g of aorta. Purified EC SOD was found to exist predominantly as a homotetramer composed of two disulphide-linked dimers. However, EC SOD was also found to form larger multimers when analysed by native PAGE. It was shown by urea denaturation that the formation of multimers increased the thermodynamic stability of the protein. Limited proteolysis of EC SOD suggested that there is one interchain disulphide bond covalently linking two subunits. This disulphide bond involves cysteine-219 and appears to link the heparin-binding domains of the two subunits./p
机译:>由于难以纯化细胞外超氧化物歧化酶(EC SOD)的生化特性和药理特性,因此研究受到严格限制。最近,发现大多数哺乳动物的动脉中都存在高浓度的EC SOD,它是许多动脉中SOD活性的主要形式。现在,我们描述了从人主动脉中纯化EC SOD的三步法,高产率方案。在第一步中,利用EC SOD对肝素的高亲和力获得了这样一种馏分,其中EC SOD约占总蛋白质的13%,而起始原料仅占0.3%。此外,在第一步纯化后,保留在主动脉匀浆中的原始EC SOD活性超过80%。 EC SOD使用阳离子交换和阴离子交换色谱法进一步纯化。从该纯化程序中获得的EC SOD的总产率为46%,从230克主动脉中获得超过4毫克的EC SOD。发现纯化的EC SOD主要以由两个二硫键连接的二聚体组成的同型四聚体形式存在。但是,当通过天然PAGE分析时,还发现EC SOD可形成更大的多聚体。尿素变性表明,多聚体的形成增加了蛋白质的热力学稳定性。 EC SOD的有限蛋白水解表明,存在一个共价连接两个亚基的链间二硫键。该二硫键涉及半胱氨酸-219,似乎连接了两个亚基的肝素结合域。

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