首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Effects of deoxygenation on active and passive Ca2+ transport and on the cytoplasmic Ca2+ levels of sickle cell anemia red cells.
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Effects of deoxygenation on active and passive Ca2+ transport and on the cytoplasmic Ca2+ levels of sickle cell anemia red cells.

机译:脱氧对镰状细胞性贫血红细胞主动和被动Ca2 +转运以及细胞质Ca2 +水平的影响。

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摘要

Elevated [Ca2+]i in deoxygenated sickle cell anemia (SS) red cells (RBCs) could trigger a major dehydration pathway via the Ca(2+)-sensitive K+ channel. But apart from an increase in calcium permeability, the effects of deoxygenation on the Ca2+ metabolism of sickle cells have not been previously documented. With the application of 45Ca(2+)-tracer flux methods and the combined use of the ionophore A23187, Co2+ ions, and intracellular incorporation of the Ca2+ chelator benz-2, in density-fractionated SS RBCs, we show here for the first time that upon deoxygenation, the mean [Ca2+]i level of SS discocytes was significantly increased, two- to threefold, from a normal range of 9.4 to 11.4 nM in the oxygenated cells, to a range of 21.8 to 31.7 nM in the deoxygenated cells, closer to K+ channel activatory levels. Unlike normal RBCs, deoxygenated SS RBCs showed a two- to fourfold increase in pump-leak Ca2+ turnover. Deoxygenation of the SS RBCs reduced their Ca2+ pump Vmax, more so in reticulocyte- and discocyte-rich than in dense cell fractions, and decreased their cytoplasmic Ca2+ buffering. Analysis of these results suggests that both increased Ca2+ influx and reduced Ca2+ pump extrusion contribute to the [Ca2+]i elevation.
机译:缺氧的镰状细胞性贫血(SS)红细胞(RBCs)中的[Ca2 +] i升高可以通过Ca(2+)敏感的K +通道触发主要的脱水途径。但是除了钙渗透性增加外,脱氧对镰状细胞Ca 2+代谢的影响尚未见文献记载。随着45Ca(2 +)-示踪剂通量方法的应用以及离子载体A23187,Co2 +离子和Ca2 +螯合剂benz-2的细胞内掺入在密度分级的SS RBC中的结合,我们首次在这里展示脱氧后,SS盘状细胞的平均[Ca2 +] i水平显着增加了两倍至三倍,从正常范围内的9.4至11.4 nM(在加氧的细胞中)到21.8至31.7 nM的范围,接近K +通道激活水平。与正常的RBC不同,脱氧的SS RBC的泵泄漏Ca2 +转换量增加了2到4倍。 SS RBC的脱氧作用降低了Ca2 +泵的Vmax,在富含网状细胞和盘状细胞的细胞中比在致密细胞级分中更是如此,并且降低了它们的细胞质Ca2 +缓冲液。对这些结果的分析表明,增加的Ca2 +流入量和减少的Ca2 +泵挤压都有助于[Ca2 +] i升高。

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