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首页> 外文期刊>The biochemical journal >Site-specific modification of albumin by free radicals. Reaction with copper(II) and ascorbate
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Site-specific modification of albumin by free radicals. Reaction with copper(II) and ascorbate

机译:通过自由基进行特异性白蛋白的白蛋白。与铜(II)的反应和抗坏血酸盐

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摘要

pExposure of albumin to Cu(II) (10-100 microM) and ascorbate (0.1-2 mM) results in extensive molecular modifications, indicated by decreased fluorescence and chain breaks. The rate of utilization of molecular oxygen and ascorbate as a function of Cu(II) concentration is non-linear at copper/albumin ratios of greater than 1. It appears that Cu(II) bound to the tightest albumin-binding site is less available to the ascorbate than the more loosely bound cation. SDS/polyacrylamide-gel electrophoresis reveals new protein bands corresponding to 50, 47, 22, 18 and 3 kDa. For such a cleavage pattern, relatively few (approximately 3) and rather specific chain breaks occurred. Repeated addition of portions of ascorbate to the albumin/Cu(II) mixture results in increased intensity of the new bands. The absence of Cu(II) or the presence of metal chelating agents is inhibitory. There was no evidence of intermolecular cross-linking or of the formation of insoluble, albumin-derived, material. A mechanism is proposed wherein the loosely bound Cu(II) participates in a Fenton-type reaction. This generates OH. radicals, which rapidly inter-react with the protein and modify it in a ‘site-specific’ manner./p
机译:>白蛋白暴露于Cu(II)(10-100微米)和抗坏血酸(0.1-2mm)导致广泛的分子修饰,通过降低的荧光和链断突破表明。作为Cu(II)浓度的函数的分子氧和抗坏血酸盐的利用率在大于1的铜/白蛋白比中是非线性的。它似乎与最紧密的白蛋白结合位点结合的Cu(II)可用抗坏血酸率比更松散的阳离子更松散。 SDS /聚丙烯酰胺 - 凝胶电泳揭示了对应于50,47,22,18和3kDa的新的蛋白质带。对于这种裂解图案,相对较少(约3)和相当特异性的链断断裂。重复加入抗坏血酸部分的抗坏血酸盐(II)混合物导致新带的强度增加。不存在Cu(II)或金属螯合剂的存在是抑制性的。没有证据表明分子间交联或不溶性白蛋白衍生的材料的形成。提出了一种机理,其中松散结合的Cu(II)参与Fenton型反应。这产生了哦。基团,其与蛋白质迅速反应并以“特异性特异性”方式修改。

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