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Calcium movements across the membrane of human red cells

机译:钙穿过人类红细胞膜的运动

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摘要

1. A study has been made of the cellular content and movement of Ca across the membrane of human red blood cells.2. The [Ca] in the cellular contents of fresh red cells is 4·09 × 10-2 mM. The intracellular concentration of free ionic Ca ([Ca2+]) is considered to be less than this value and therefore less than extracellular [Ca2+] under normal conditions.3. Observation of unidirectional Ca fluxes with 45Ca confirms previous reports of low permeability of the red cell membrane for Ca. After nearly 1 week of loading in the cold, intracellular 45Ca content is 1·8% of extracellular 45Ca content. Appearance in extracellular fluid of 45Ca from coldloaded cells can be considered to arise from two compartments. Efflux of 45Ca from the `slower compartment' is accelerated by the addition of glucose.4. Starved red cells, incubated at 37° C, after reversible haemolysis for loading with Ca and Mg-ATP, exhibit an outward net transport of Ca against an electrochemical gradient. The transport is associated with the appearance of inorganic phosphate (Pi). Cells treated similarly, but without ATP show no transport and no appearance of Pi.5. During the initial phase of transport, 1·3 mole Pi appear per mole Ca transported.6. The transport of Ca from ATP-loaded cells is highly temperature-dependent, with a Q10 of 3·5.7. Cell membrane adenosine triphosphatase (ATPase) activity of reversibly haemolysed cells is stimulated only by intracellular, and not by extracellular Ca.8. Neither Ca transport in reversibly haemolysed cells, nor the Ca-Mg activated ATPase of isolated cell membranes is sensitive to Na, K, ouabain or oligomycin.9. Mg is not transported under the conditions which reveal Ca transport, but Mg appears to be necessary for Ca transport.10. Sr is transported from reversibly haemolysed Mg-ATP-loaded cells. Sr also can substitute for Ca, but not for Mg, in the activation of membrane ATPase.11. It is concluded that, in addition to a low passive permeability, an active extrusion mechanism for Ca exists in the human red cell membrane. This extrusion mechanism, in addition to a low passive membrane permeability for Ca, may represent the means by which intracellular Ca content is maintained at a low level. It is suggested that the Ca-Mg activated membrane ATPase and the active transport of Ca are two manifestations of the same process.
机译:1.已经研究了Ca的含量和Ca在人红细胞膜上的运动。2。新鲜红细胞的细胞内[Ca]为4·09×10 -2 mM。在正常条件下,细胞内游离离子Ca([Ca 2 + ])的浓度被认为小于该值,因此低于细胞外[Ca 2 + ]。 3。用 45 Ca观察单向Ca的通量证实了先前报道的红细胞膜对Ca的低渗透性。在寒冷中加载近1周后,细胞内 45 Ca含量是细胞外 45 Ca含量的1·8%。冷负荷细胞在 45 Ca细胞外液中的出现可以认为是由两个部分引起的。葡萄糖的加入促进了 45 Ca从“慢速隔室”流出。4。饥饿的红细胞在可逆的溶血作用下于37°C孵育以装载Ca和Mg-ATP后,显示出Ca对着电化学梯度的向外净转运。传输与无机磷酸盐(Pi)的出现有关。相似处理但没有ATP的细胞没有转运,也没有出现Pi.5。在运输的初始阶段,每运输1摩尔Ca会出现1·3摩尔Pi。6。 Ca从ATP加载细胞的转运高度依赖温度,Q10为3·5.7。可逆溶血细胞的细胞膜腺苷三磷酸酶(ATPase)活性仅受细胞内刺激,而不受细胞外Ca.8刺激。钙在可逆溶血细胞中的转运,或分离细胞膜的钙镁激活的ATPase都不对Na,K,哇巴因或寡霉素敏感。9。 Mg在显示Ca转运的条件下不被转运,但是M似乎是Ca转运所必需的。10。 Sr从可逆溶血的Mg-ATP加载细胞中转运。在膜ATPase的活化中,Sr还可以代替Ca,但不能代替Mg。11。结论是,除了低的被动渗透性之外,人红细胞膜中还存在钙的主动挤出机制。除了对Ca的低被动膜渗透性之外,这种挤出机制还可以代表将细胞内Ca含量保持在低水平的手段。提示Ca-Mg活化膜ATPase和Ca的主动转运是同一过程的两个表现。

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