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Effects of protein engineering of canola procruciferin on its physicochemical and functional properties

机译:芥花油菜素蛋白工程改造对其理化和功能特性的影响

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The primary structure of Brassica napus procruciferin 2/3a was engineered to elucidate structure-function relationships and to improve the functionality of cruciferin. The following mutants were constructed: (1) C287T, (2) DeltaII, variable region II was deleted; (3) C287T/DeltaII, mutation involving (1) and (2); (4) DeltaIV + A1aIV; and (5) DeltaIV + A3IV, variable region IV was replaced with variable region IV containing many charged residues from soybean glycinin A1aB1b and A3B4 subunits. Differential scanning calorimetry analysis revealed that the A1aIV region has a more favorable interaction with the procruciferin molecule than does A3IV as well as the original regions. On the basis of heat-induced precipitation analysis, it was concluded that replacement of the free cysteine residue with threonine (C287T) and insertion of charged regions (DeltaIV + A1aIV and DeltaIV + A3IV) could lead procruciferin to form soluble aggregates after heating. Low solubility was observed in mutants DeltaIV + A3IV, DeltaII, and C287T/DeltaII, especially between pH 4 and 6 at mu = 0.08, but not in DeltaIV + A1aIV, indicating that the number of acidic amino acid residues and the high number of glutamine residues are important factors for solubility at mu = 0.08. None of the mutants showed any improvements in emulsifying ability, indicating that destabilization and addition of the hydrophilic region are not effective for emulsification. The insertion of the A1aIV region in procruciferin made the molecule more susceptible to alpha-chymotrypsin.
机译:甘蓝型油菜procruciferin 2 / 3a的一级结构经过工程设计,阐明了结构-功能关系并改善了cruciferin的功能。构建了以下突变体:(1)C287T,(2)DeltaII,可变区II被删除; (3)C287T / DeltaII,涉及(1)和(2)的突变; (4)DeltaIV + A1aIV; (5)DeltaIV + A3IV,可变区IV被含有大豆大豆球蛋白A1aB1b和A3B4亚基的许多带电荷残基的可变区IV代替。差示扫描量热分析表明,A1aIV区域与procruciferin分子的相互作用比A3IV以及原始区域更好。根据热诱导的沉淀分析,得出的结论是,用苏氨酸(C287T)取代游离的半胱氨酸残基并插入带电区域(DeltaIV + A1aIV和DeltaIV + A3IV)可能导致procruciferin加热后形成可溶性聚集体。在突变体DeltaIV + A3IV,DeltaII和C287T / DeltaII中观察到了低溶解度,尤其是在pH = 4和6之间,当mu = 0.08时,但在DeltaIV + A1aIV中却没有,这表明酸性氨基酸残基的数量和谷氨酰胺的高数量残基是在mu = 0.08时溶解度的重要因素。突变体均未显示出乳化能力的任何改善,表明去稳定化和添加亲水区域对于乳化不是有效的。 Procruciferin中A1aIV区的插入使该分子更容易受到α-胰凝乳蛋白酶的影响。

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