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有限酶解对β-乳球蛋白结合亚油酸性能的影响。

Effect of limited enzymatic hydrolysis on linoleic acid binding properties of β-lactoglobulin.

机构信息

Grupo de Biocoloides, Instituto de Tecnología de Alimentos, Universidad Nacional del Litoral, 1 de Mayo 3250 (3000), Santa Fe, Argentina.

出版信息

Food Chem. 2014 Mar 1;146:577-82. doi: 10.1016/j.foodchem.2013.09.089. Epub 2013 Sep 25.

Abstract

β-Lactoglobulin (BLG) is a member of lipocalin family, proteins with ability to bind small hydrophobic ligands, such as retinol, vitamins and fatty acids. Moreover, BLG is susceptible to protease action producing a wide range of polypeptides depending on the hydrolysis degree (HD). In the present work, the effect of limited enzymatic hydrolysis on fatty acid binding properties of BLG was studied. Linoleic acid (LA) was used as a model fatty acid. Limited enzymatic hydrolysis was performed using α-chymotrypsin immobilised on agarose microparticles. BLG hydrolysates were produced at HD: 1%, 3% and 5%. In order to determine the influence of HD on BLG molecular weight SDS-PAGE was used. BLG structural modification and LA binding properties were monitored by means of fluorescence spectroscopic techniques. The increase in HD produced: (i) a BLG degradation and a molecular weight distribution of BLG hydrolysates and (ii) an increased exposition of buried hydrophobic residues, however it was observed a decrease in surface hydrophobicity possibly due to a deterioration of hydrophobic protein domains. It was observed that enzymatic hydrolysis treatment produced a decrease in BLG ability for binding LA. It was concluded that limited enzymatic hydrolysis could deteriorate the specific site on BLG structure necessary for binding LA.

摘要

β-乳球蛋白(BLG)是亲脂素家族的成员,能够结合小疏水性配体,如视黄醇、维生素和脂肪酸。此外,BLG 易受蛋白酶作用的影响,根据水解度(HD)产生广泛的多肽。在本工作中,研究了有限酶解对 BLG 结合脂肪酸性质的影响。亚油酸(LA)被用作模型脂肪酸。使用琼脂糖微珠固定化的α-糜蛋白酶进行有限酶解。BLG 水解产物的 HD 值分别为 1%、3%和 5%。为了确定 HD 对 BLG 分子量的影响,使用 SDS-PAGE。通过荧光光谱技术监测 BLG 结构修饰和 LA 结合性质。HD 的增加产生了:(i)BLG 降解和 BLG 水解产物的分子量分布,以及(ii)埋藏疏水性残基的暴露增加,但表面疏水性降低,可能是由于疏水性蛋白质结构域的恶化。观察到酶解处理降低了 BLG 结合 LA 的能力。结论是,有限酶解可能会破坏 BLG 结构上结合 LA 的特定部位。

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