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完整人类红细胞中高胞质钙离子对钙泵的抑制作用。

Inhibition of the calcium pump by high cytosolic Ca2+ in intact human red blood cells.

作者信息

Pereira A C, Samellas D, Tiffert T, Lew V L

机构信息

Physiological Laboratory, University of Cambridge.

出版信息

J Physiol. 1993 Feb;461:63-73. doi: 10.1113/jphysiol.1993.sp019501.

Abstract
  1. The inhibitory effect of high intracellular calcium on the saturated Ca2+ efflux through the Ca2+ pump (Vmax) was investigated in intact human red cells. Cells were loaded with Ca2+ by exposure to the calcium ionophore A23187, at different external Ca2+ concentrations ([Ca2+]o). Ca2+ extrusion by the pump was followed after either ionophore removal or Co2+ addition. 2. fifty per cent inhibition of Vmax was obtained with total intracellular calcium ([CaT]i) of approximately 3 mmol/l cells. For any given initial Ca2+ load, Vmax showed no tendency to increase as [CaT]i was progressively reduced during Ca2+ efflux. This suggests that the pump Vmax was determined by the magnitude of the initial [Ca2+]i. 3. To estimate [Ca2+]i from [CaT]i in Co(2+)-loaded cells, the possible competition between Co2+ and Ca2+ for the known cytoplasmic Ca2+ buffers (alpha-buffers) was investigated first. Comparison between Ca2+ efflux after either Co2+ exposure or ionophore wash-out showed that the efflux patterns were essentially identical, down to the lowest measurable [CaT]i. This indicates that Co2+ does not compete with Ca2+ for the alpha-buffers. Hence, since [Ca2+]i = alpha [CaT]i, and alpha approximately 0.15-0.35, the initial [Ca2+]i load for 50% Vmax inhibition was between 0.4 and 1.1 mM. 4. Ancillary new findings demonstrated that, unlike the situation with alpha-buffers, Co2+ displaced Ca2+ from the cell-incorporated calcium chelator benz-2, and that benz-2 incorporation had no effect on Co(2+)-exposed Ca2+ pump desaturation. This validates the use of benz-2 to study Ca2+ pump kinetics in intact cells.
摘要
  1. 在完整的人红细胞中研究了高细胞内钙对通过钙泵的饱和Ca2+外流(Vmax)的抑制作用。通过暴露于不同的细胞外Ca2+浓度([Ca2+]o)下的钙离子载体A23187使细胞加载Ca2+。在去除离子载体或添加Co2+后跟踪泵的Ca2+外排情况。2. 当细胞内总钙([CaT]i)约为3 mmol/l时,Vmax受到50%的抑制。对于任何给定的初始Ca2+负荷,在Ca2+外流过程中随着[CaT]i逐渐降低,Vmax没有增加的趋势。这表明泵的Vmax由初始[Ca2+]i的大小决定。3. 为了从加载Co(2+)的细胞中的[CaT]i估计[Ca2+]i,首先研究了Co2+和Ca2+对已知细胞质Ca2+缓冲剂(α-缓冲剂)的可能竞争。比较Co2+暴露或离子载体洗脱后的Ca2+外流表明,直至最低可测量的[CaT]i,外流模式基本相同。这表明Co2+不与Ca2+竞争α-缓冲剂。因此,由于[Ca2+]i = α[CaT]i,且α约为0.15 - 0.35,抑制50% Vmax的初始[Ca2+]i负荷在0.4至1.1 mM之间。4. 辅助性新发现表明,与α-缓冲剂的情况不同,Co2+从细胞内掺入的钙螯合剂苯并-2中取代了Ca2+,并且苯并-2的掺入对暴露于Co(2+)的Ca2+泵去饱和没有影响。这验证了使用苯并-2研究完整细胞中Ca2+泵动力学的可行性。

相似文献

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Cytoplasmic calcium buffers in intact human red cells.完整人类红细胞中的细胞质钙缓冲剂。
J Physiol. 1997 Apr 1;500 ( Pt 1)(Pt 1):139-54. doi: 10.1113/jphysiol.1997.sp022005.

本文引用的文献

5
Studies on the mechanism of regulation of the red-cell Ca2+ pump by calmodulin and ATP.
Biochim Biophys Acta. 1981 Sep 21;647(1):73-86. doi: 10.1016/0005-2736(81)90296-0.

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