(Na,K)- atp酶α和β亚基的连续洗脱电泳纯化。

M J Treuheit, A Ataei, E T Wallick, T L Kirley
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引用次数: 8

摘要

膜蛋白的共价结构信息不容易获得,因为很难获得足够数量的纯膜蛋白。因此,我们研究了Bio-Rad 491制备细胞连续洗脱电泳仪,作为提供这些研究所需的(Na,K)- atp酶纯化α和β亚基数量的方法。24毫克粗(Na,K)- atp酶制剂应用于制备细胞,该细胞由长度为4.5 cm的7% Laemmli分离凝胶组成。制备池在恒功率和连续冷却条件下运行。这些含有β亚基的组分经小麦胚芽凝集素亲和层析分离纯化。含有α亚基的馏分被合并,不需要进一步纯化。利用SDS-PAGE、氨基酸分析和n端测序对该方法获得的蛋白进行鉴定和纯度鉴定。这种简单快速的方法从24毫克相对粗糙的微粒体中提供大约1.8毫克的每个纯化亚基。从粗(Na,K)- atp酶制备中α亚基和β亚基的回收率估计分别为28%和81%。
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Purification of the alpha and beta subunits of (Na,K)-ATPase by continuous elution electrophoresis.

Covalent structural information on membrane proteins is not easily acquired since it is difficult to obtain pure membrane proteins in sufficient quantities. We have therefore examined the Bio-Rad 491 prep cell continuous elution electrophoresis apparatus as a method for providing the quantities of purified alpha and beta subunits from (Na,K)-ATPase required for these studies. Twenty-four milligrams of crude (Na,K)-ATPase preparation was applied to the prep cell which consisted of a 7% Laemmli separating gel 4.5 cm in length. The prep cell was run under constant power and continuous cooling conditions. Those fractions containing the beta subunit were combined and further purified by wheat germ agglutinin affinity chromatography. Fractions containing the alpha subunit were combined and did not require further purification. The identity and the degree of purity of the proteins obtained using this approach was assessed utilizing SDS-PAGE, amino acid analysis and N-terminal sequencing. This simple and fast method provides approximately 1.8 milligrams of each purified subunit from 24 milligrams of relatively crude microsomes. Recovery of the alpha and beta subunits from the crude (Na,K)-ATPase preparation was estimated to be 28% and 81%, respectively.

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