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首页> 外文期刊>Bioscience Reports >Characterization of a High Affinity Folate Binding Protein in Porcine Serum: Ionic Charge, Concentration--Dependent Polymerization and Ligand Binding Mechanism
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Characterization of a High Affinity Folate Binding Protein in Porcine Serum: Ionic Charge, Concentration--Dependent Polymerization and Ligand Binding Mechanism

机译:猪血清中高亲和力叶酸结合蛋白的表征:离子电荷,浓度依赖性聚合和配体结合机理

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The folate binding piotein in porcine serum, present at concentrations of 50-100 nM, is cationic at near neutral pH as evidenced by ion exchange chromatography. The gel filtration profile of the protein isolated from porcine serum by methotrexate affinity chromatography exhibited one peak at 48 kDa and an additional peak of 91 kDa at higher protein concentrations. This could suggest the involvement of concentration-dependent polymerization phenomena. Binding of [~3H] fblate was of a high-affinity type with upward convex Scatchard plots and Hill coefficients > 1.0 indicative of apparent positive cooperativity. However, binding to protein isolated from porcine serum after affinity chromatography was biphasic (high/low-affinity) in the absence of Triton X-100, 1 g/l. These findings which are similar to those reported for purified milk folate binding proteins are consistent with a model predicting association between unliganded and liganded monomers to weak-ligand affinity heterodimers. Amphiphatic substances, e.g. Triton X-100, form micelles which could separate hydrophobic unliganded monomers from hydrophilic liganded monomers (monomers are hydrophilic in the liganded state) thereby preventing heterodimerization. The folate analogue N~(10) methyl folate was a potent and competitive inhibitor of [~3H] folate binding to the folate binding protein, and moreover changed the binding type to apparent negative cooperativity.
机译:如离子交换色谱法所证明,猪血清中叶酸结合蛋白的浓度为50-100 nM,在接近中性pH时为阳离子。通过甲氨蝶呤亲和层析从猪血清中分离出的蛋白质的凝胶过滤图谱在48 kDa处显示一个峰,在更高的蛋白质浓度下显示91 kDa的另一个峰。这可能暗示涉及浓度依赖性聚合现象。 [〜3H] fblate的结合是高亲和力类型,具有向上凸的Scatchard图,希尔系数> 1.0表示明显的正合作性。然而,在没有Triton X-100 1 g / l的情况下,亲和层析后与猪血清分离蛋白的结合是两相的(高/低亲和力)。这些发现与报道的关于纯化的叶酸乳结合蛋白的发现相似,这与预测未配体和配体单体与弱配体亲和性异二聚体之间缔合的模型相一致。两性物质,例如Triton X-100形成胶束,可将疏水性未配体单体与亲水性配体单体(单体在配体状态下为亲水性)分开,从而防止异二聚化。叶酸类似物N〜(10)叶酸甲酯是[〜3H]叶酸与叶酸结合蛋白结合的有效且竞争性抑制剂,而且将结合类型改变为明显的负协同作用。

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