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Unravelling Conformational Aspects of Milk Protein Structure—Contributions from Nuclear Magnetic Resonance Studies

机译:从核磁共振研究中解开牛奶蛋白质结构贡献的构象方面

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摘要

Changes in the molecular structure and association of milk proteins lead to many desirable (under controlled conditions) or undesirable characteristics of dairy products. Several methods have been used to study the structure of milk proteins and changes therein in different environments. Whey proteins are an excellent model for secondary structure studies using circular dichroism (CD), Fourier-transform infrared spectroscopy (FTIR) and tertiary structure studies using X-ray crystallography and nuclear magnetic resonance (NMR). However, caseins, the most abundant protein class in milk, are far more difficult to characterize. The tertiary structure of caseins cannot be observed by X-ray crystallography due to the inability to crystallize caseins. However, NMR is an appropriate approach for structural elucidation. Thus far, NMR was applied on specific peptides of individual caseins of the molecules including phosphoserine centers and colloidal calcium phosphate. The literature focuses on these parts of the molecule due to its importance in building the sub-unit particles involving individual caseins and calcium phosphate nanoclusters. This review focuses on present structural studies of milk proteins using NMR and their importance in dairy processing.
机译:乳蛋白分子结构和乳蛋白结合的变化导致许多所需的(受控条件下)或乳制品的不希望的特征。已经使用了几种方法来研究乳蛋白的结构并在不同环境中的变化。乳清蛋白是使用圆形二色性(CD),傅里叶变换红外光谱(FTIR)和使用X射线晶体学和核磁共振(NMR)的傅里叶变换红外光谱(FTIR)和三级结构研究的优异模型。然而,酪蛋白是牛奶中最丰富的蛋白质类别更难以表征。由于无法结晶酪蛋白,X射线晶体学不能观察到酪蛋白的三级结构。然而,NMR是结构阐明的适当方法。到目前为止,NMR应用于分子的各个酪蛋白的特定肽,包括磷素中心和胶体磷酸钙。由于其重要性在建立涉及单个酪蛋白和磷酸钙纳米团簇的子单元颗粒方面,文献侧重于这些部分。本综述侧重于利用NMR的牛奶蛋白的目前结构研究及其在乳制品加工中的重要性。

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