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采用双盐系统通过疏水相互作用色谱法分离不同形式的蛋白胨3

Separation of different forms of proteose peptone 3 by hydrophobic interaction chromatography with a dual salt system.

作者信息

Sousa A, Passarinha L A, Rodrigues L R, Teixeira J A, Mendonça A, Queiroz J A

机构信息

CICS, Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, 6201-001 Covilhã, Portugal.

出版信息

Biomed Chromatogr. 2008 May;22(5):447-9. doi: 10.1002/bmc.961.

Abstract

A panel of four hydrophobic adsorbents (butyl-, octyl-, phenyl- and epoxy-Sepharose) was used to examine the selectivity and fractionation of several proteose peptone 3 (PP3) forms from a freeze-dried extract of whey bovine milk. In particular, the effects of altering the ligand type and salt were investigated. The chromatographic studies suggest that PP3 strongly interacts among the three commercial hydrophobic resins leading to a drop off in selectivity, while a complete binding was achieved at low salt concentrations (below 0.5 m) and total elution only with phosphate buffer and/or water stepwise conditions. Only in epoxy-Sepharose was an appreciably selectivity of the several fractions of PP3 present in the initial feedstock attained. Despite the high salt concentration for a complete binding of PP3 (above 1.5 m ammonium sulfate) onto this support, the dual salt system (ammonium sulfate 1 m and sodium citrate 0.8 m) led to a high separation degree of high and low molecular weight forms of PP3.

摘要

使用一组四种疏水吸附剂(丁基琼脂糖、辛基琼脂糖、苯基琼脂糖和环氧琼脂糖)来研究从牛初乳冻干粉提取物中分离几种蛋白胨3(PP3)形式的选择性和分级情况。特别研究了改变配体类型和盐的影响。色谱研究表明,PP3在三种商业疏水树脂之间有强烈相互作用,导致选择性下降,而在低盐浓度(低于0.5 m)下能实现完全结合,且仅在磷酸盐缓冲液和/或水的逐步洗脱条件下才能完全洗脱。只有在环氧琼脂糖上,初始原料中存在的几种PP3组分才获得了明显的选择性。尽管要使PP3完全结合到这种载体上需要高盐浓度(高于1.5 m硫酸铵),但双盐系统(1 m硫酸铵和0.8 m柠檬酸钠)导致了PP3高分子量和低分子量形式的高分离度。

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