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Ultrafiltration to fractionate wheat polypeptides

机译:超滤分离小麦多肽

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An ultrafiltration process allowing the fractionation of two kinds of polypeptides issued from limited chymotryptic hydrolysis of wheat gliadins was applied to wheat gluteI'! hydrolysates. Hydrophilic and poorly charged polypeptides were well transmitted through an inorganic ZrO2-based membrane at acidic pH. whereas hydrophobic and positively charged polypeptides were highly retained. By combining reversed-phase and cation-exchange chromatography (CEC). it was proved that the fractionation of the polypeptides was based on electrostatic repulsion of the charged polypeptides by the positively charged membrane. After a continuous diafiltration process. retentates containing 75 to 88% of hydrophobic polypeptide and permeates containing 84 to 90% of hydrophilic polypeptides were recovered, depending on the size of membrane used. Even if the ultrafiltration fractions were less purified than fractions issued from CEC, it was shown that they exhibited very different foaming properties: permeate did not produce nor stabilize foams. whereas retentate was more efficient than the whole hydrolysates and BSA.
机译:将允许由小麦麦醇溶蛋白的有限胰凝乳蛋白酶水解产生的两种多肽分级分离的超滤方法应用于小麦谷蛋白。水解物。亲水性和电荷不足的多肽在酸性pH值下可以很好地透过基于ZrO2的无机膜。而疏水性和带正电荷的多肽高度保留。通过组合反相色谱和阳离子交换色谱(CEC)。证明了多肽的分级分离是基于带正电的膜对带电多肽的静电排斥。经过连续渗滤过程。根据所用膜的大小,可回收含有75%至88%疏水性多肽的渗余物和含有84%至90%的亲水性多肽的渗出物。即使超滤级分的纯化程度不及CEC发行的级分,也表明它们表现出非常不同的发泡性能:渗透液既不产生也不稳定泡沫。而截留液比全部水解产物和BSA更有效。

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