首页> 外文期刊>Journal of Agricultural and Food Chemistry >Calcium- and magnesium-dependent aggregation of legume seed storage proteins.
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Calcium- and magnesium-dependent aggregation of legume seed storage proteins.

机译:钙和镁依赖的豆类种子贮藏蛋白的聚集。

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The solubility characteristics and sedimentation behavior of total or individual globulins from legume seeds [Lupinus albus L., Pisum sativum L., and Glycine max (L.) Merr.] were investigated. The typical insolubility of globulins detected during their extraction seems to be due to the presence of a low molecular weight factor(s) in the seed extract. The solubility of the purified globulins decreases with increasing concentrations of calcium and/or magnesium, but not of other cations, showing minimum values at concentrations that vary with the particular globulin considered. Ultracentrifugation analyses revealed that the Ca(2+)- and/or Mg(2+)-induced insolubilization of the globulins involves the formation of high-order aggregates of molecules of the same or of different globulins. These macromolecular structures are dissociated under conditions of high ionic strength, suggesting the involvement of electrostatic interactions in the aggregation process. The degree of association relies heavily on the amount of Ca(2+) and/or Mg(2+) available, on the presence of chelating agents for these divalent cations, and on the ionic strength of the surrounding medium. The possible physiological significance of the findings is discussed.
机译:研究了来自豆类种子的全部或单个球蛋白[羽扇豆(Lupinus albus L.),豌豆(Pisum sativum L.)和大豆(Glycine max(L.)Merr。]]的溶解度特征和沉降行为。在提取过程中检测到的球蛋白的典型不溶性似乎是由于种子提取物中存在低分子量因子所致。纯化的球蛋白的溶解度随钙和/或镁的浓度增加而降低,但不随其他阳离子的增加而降低,在随所考虑的特定球蛋白而变化的浓度下显示出最小值。超速离心分析显示,Ca(2 +)-和/或Mg(2+)诱导的球蛋白不溶化涉及相同或不同球蛋白分子的高阶聚集体的形成。这些大分子结构在高离子强度的条件下解离,表明静电作用参与了聚集过程。缔合度在很大程度上取决于可用的Ca(2+)和/或Mg(2+)的量,这些二价阳离子螯合剂的存在以及周围介质的离子强度。讨论可能的生理意义的发现。

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