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人红细胞膜中与钙 -ATP 酶和钠钾 -ATP 酶相关的不同磷蛋白的电泳分离

Electrophoretic separation of different phophosproteins associated with Ca-ATPase and Na, K-ATPase in human red cell ghosts.

作者信息

Knauf P A, Proverbio F, Hoffman J F

出版信息

J Gen Physiol. 1974 Mar;63(3):324-36. doi: 10.1085/jgp.63.3.324.

Abstract

Ca has been found to increase the quantity of (32)P incorporated into red cell ghosts from [gamma-(32)P]ATP over the levels obtained by incubation with Mg alone or with Mg + Na, in correlation with the effect of Ca on the associated ATPase activities. When the (32)P-labeled ghosts were solubilized in sodium dodecyl sulfate (SDS) and electrophoresed on acrylamide gels only two bands could be detected either by autoradiography or by counting the sliced gels. The faster moving band (P-2) had the same mobility and the same molecular weight (103,000) as the phosphoprotein found either with Mg alone or with Mg + Na. The slower moving band (P-1) was not found in extensively washed ghosts labeled in the absence of Ca. The molecular weight of P-1 is approximately 150,000. P-1 like P-2 was not affected by pretreatment of intact cells with Pronase before labeling indicating that neither the phosphorylating mechanism nor the phosphoprotein are accessible to externally applied Pronase. The demonstration that a Ca-phosphoprotein is separable from the Na-stimulated phosphoprotein suggests that the Ca-ATPase is distinct from and independent of the Na,K-ATPase. The fact that Ca blocks the dephosphorylation by K of the Na-phosphoprotein indicates that caution is required in interpreting results when the activities of the different phosphoproteins have not been separately determined.

摘要

已发现,与钙对相关ATP酶活性的影响相关,相较于仅与镁或与镁+钠一起孵育所获得的水平,钙可增加[γ-(32)P]ATP掺入红细胞膜空壳中的(32)P量。当将(32)P标记的膜空壳用十二烷基硫酸钠(SDS)溶解并在丙烯酰胺凝胶上进行电泳时,通过放射自显影或对切片凝胶进行计数,仅能检测到两条带。移动较快的带(P-2)与仅与镁或与镁+钠一起孵育时发现的磷蛋白具有相同的迁移率和相同的分子量(103,000)。在无钙条件下标记的经过充分洗涤的膜空壳中未发现移动较慢的带(P-1)。P-1的分子量约为150,000。与P-2一样,P-1不受标记前用链霉蛋白酶对完整细胞进行预处理的影响,这表明外部施加的链霉蛋白酶无法作用于磷酸化机制或磷蛋白。钙磷蛋白与钠刺激的磷蛋白可分离这一事实表明,钙ATP酶与钠钾ATP酶不同且相互独立。钙会阻止钾对钠磷蛋白的去磷酸化,这一事实表明,在未分别测定不同磷蛋白活性时,在解释结果时需要谨慎。

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