首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Peripheral proteins and smooth membrane from erythrocyte ghosts. Segregation of ATP-utilizing enzymes into smooth membrane
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Peripheral proteins and smooth membrane from erythrocyte ghosts. Segregation of ATP-utilizing enzymes into smooth membrane

机译:红细胞鬼影的外周蛋白和平滑膜。利用ATP的酶分离到平滑膜中

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摘要

Erythrocytes and their isolated membranes display ATP-dependent endocytosis. To localize the enzymes responsible for this phenomenon, the erythrocyte membranes (ghosts) were fractionated under conditions which retained ATPase activity. Fractionation of the ghosts resulted in three fractions: spectrin-actin, the peripheral proteins soluble in high salt, and the smooth membrane containing integral proteins. On the average, 87% of the protein and 88% of the phosphorus of the original ghosts were recovered in these fractions, and all of the kinds of ATP- splitting activities of the membrane were recovered in the smooth membrane. A tiny ATPase activity, detectable by special methodology in spectrinactin, could have been due to contamination with membranous material. Although the purified spectrin-actin did not have a significant ATPase of its own, it stimulated the Ca2+, Mg2+-ATPase of the smooth membrane significantly, suggesting a cooperative interaction between these two fractions. This segregation of the ATPase activities into the smooth membrane, combined with the energy dependence of endocytosis, showed that the smooth membrane must be involved in the energy production for endocytosis. The possibility that the spectrin- actin filaments cooperate with a myosinlike ATPase in the membrane to generate membrane movements is discussed.
机译:红细胞及其分离的膜表现出ATP依赖的内吞作用。为了定位导致这种现象的酶,在保留ATPase活性的条件下分级分离红细胞膜(鬼影)。鬼影的分离产生三个部分:血影蛋白-肌动蛋白,可溶于高盐的外周蛋白和含有完整蛋白的平滑膜。在这些馏分中平均回收了原始鬼魂的87%的蛋白质和88%的磷,并且在平滑膜中回收了膜的所有ATP分裂活性。可以通过特殊的方法在血球菌素中检测到微小的ATPase活性,这可能是由于膜材料污染所致。尽管纯化的血影蛋白-肌动蛋白本身不具有显着的ATPase,但它显着刺激了平滑膜的Ca2 +,Mg2 + -ATPase,表明这两个部分之间存在协同相互作用。 ATP酶活性向平滑膜的分离,结合内吞作用的能量依赖性,表明平滑膜必须参与内吞作用的能量产生。讨论了血影蛋白肌动蛋白丝与膜中的肌球蛋白样ATPase协同作用以产生膜运动的可能性。

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