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通过疏水相互作用色谱法和制备性等电聚焦从人血浆中纯化血清淀粉样蛋白A及其异构体。

Purification of serum amyloid A and its isoforms from human plasma by hydrophobic interaction chromatography and preparative isoelectric focusing.

作者信息

Malle E, Hess H, Münscher G, Knipping G, Steinmetz A

机构信息

Department of Internal Medicine, Philipps University, Marburg/Lahn.

出版信息

Electrophoresis. 1992 Jul;13(7):422-8. doi: 10.1002/elps.1150130189.

Abstract

The present work was aimed at isolating human serum amyloid A, (SAA), an acute-phase protein mainly complexed to high density lipoproteins, directly from human plasma without sequential ultracentrifugation of lipoproteins and subsequent delipidation of the apolipoprotein moiety. Hydrophobic-interaction fast-protein liquid chromatography on Octylsepharose, using stepwise gradient elution profiles under dissociating conditions, followed by fast-protein liquid-gel permeation chromatography on a Superdex TM75 column revealed a higher than 95% purity of isolated SAA. Further purification of SAA from coeluting apolipoproteins C and A-II was achieved by preparative isoelectric focusing between pH5-7 using a Rotofor apparatus. Separation of the main SAA isoforms, SAA1 (pI 6.5) and SAA1 des-Arg (pI 6.0, lacking the N-terminal arginine), was achieved by anion-exchange fast-protein liquid chromatography on a Fractogel EMD DEAE 650-S column. The purity of the SAA1 and SAA1 des-Arg isoforms, thus isolated, was checked by immunochemical techniques and amino acid analysis. With the described method various SAA isoforms can be isolated, purified and separated directly from human plasma/serum without prior ultracentrifugation.

摘要

本研究旨在直接从人血浆中分离人血清淀粉样蛋白A(SAA),这是一种主要与高密度脂蛋白结合的急性期蛋白,无需对脂蛋白进行连续超速离心以及随后对载脂蛋白部分进行脱脂处理。在辛基琼脂糖上进行疏水相互作用快速蛋白液相色谱,在解离条件下使用逐步梯度洗脱图谱,随后在Superdex TM75柱上进行快速蛋白液-凝胶渗透色谱,结果显示分离出的SAA纯度高于95%。使用Rotofor仪器通过在pH5-7之间进行制备性等电聚焦,从共洗脱的载脂蛋白C和A-II中进一步纯化SAA。通过在Fractogel EMD DEAE 650-S柱上进行阴离子交换快速蛋白液相色谱,分离出主要的SAA异构体SAA1(pI 6.5)和SAA1 des-Arg(pI 6.0,缺少N端精氨酸)。通过免疫化学技术和氨基酸分析检查如此分离出的SAA1和SAA1 des-Arg异构体的纯度。使用所述方法,可以直接从人血浆/血清中分离、纯化和分离各种SAA异构体,而无需事先进行超速离心。

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