首页> 外文期刊>Journal of Agricultural and Food Chemistry >Grafting of aliphatic and aromatic probes on rapeseed 2S and 12S proteins: influence on their structural and physicochemical properties.
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Grafting of aliphatic and aromatic probes on rapeseed 2S and 12S proteins: influence on their structural and physicochemical properties.

机译:在油菜籽2S和12S蛋白上接枝脂肪族和芳香族探针:对其结构和物理化学性质的影响。

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摘要

Lysyl residues of rapeseed napin (2S) and cruciferin (12S) were acylated and sulfamidated by means of anhydrides and sulfonyl chlorides, respectively. The secondary and tertiary structures as well as the surface hydrophobicity of the modified proteins were studied using circular dichroism, intrinsic fluorescence, and binding of anilinonaphthalenesulfonic acid. The results showed clearly that grafting of hydrophobic chains induced different structural modifications and surface hydrophobicities on the monomeric (2S) and on the hexameric (12S) proteins. Thus, the original structure of the 2S modified protein seemed to be preserved. Therefore, the surface hydrophobicity increased proportionally with the number of groups grafted. Conversely, after modification, 12S was shown to be expanded. As a result, hydrophobic regions were exposed, leading to a much greater hydrophobization of the protein surface. Acylation and sulfamidation appeared, therefore, to be good methods to hydrophobize efficiently the surface of the two proteins and thus might probably induce new functional properties.
机译:分别通过酸酐和磺酰氯将油菜籽油菜籽(2S)和十字花科素(12S)的赖氨酸残基酰化和磺酰胺化。使用圆二色性,固有荧光和苯胺基萘磺酸的结合研究了修饰蛋白的二级和三级结构以及表面疏水性。结果清楚地表明,疏水链的接枝在单体(2S)和六聚体(12S)蛋白上诱导了不同的结构修饰和表面疏水性。因此,似乎保留了2S修饰蛋白的原始结构。因此,表面疏水性与接枝的基团数量成比例地增加。相反,修改后,显示12S被扩展。结果,暴露了疏水区域,导致蛋白质表面更大的疏水化。因此,酰化和磺酰胺化似乎是有效疏水化这两种蛋白质表面的良好方法,因此可能诱导出新的功能特性。

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