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J Clin Invest. 1997 Jun 1;99(11):2727-35. doi: 10.1172/JCI119462.
2
Two distinct pathways mediate the formation of intermediate density cells and hyperdense cells from normal density sickle red blood cells.两条不同的途径介导了正常密度的镰状红细胞形成中间密度细胞和高密度细胞。
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Dehydration response of sickle cells to sickling-induced Ca(++) permeabilization.镰状细胞对镰变诱导的Ca(++)通透性增加的脱水反应。
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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.脱氧对镰状细胞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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本文引用的文献

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The effects of sickling on ion transport. II. The effect of sickling on sodium and cesium transport.镰状化对离子转运的影响。II. 镰状化对钠和铯转运的影响。
J Gen Physiol. 1955 Sep 20;39(1):55-67. doi: 10.1085/jgp.39.1.55.
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The effects of sickling on ion transport. I. Effect of sickling on potassium transport.镰状化对离子转运的影响。I. 镰状化对钾离子转运的影响。
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Distribution of chloride permeabilities in normal human red cells.正常人红细胞中氯离子通透性的分布
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A 50th order reaction predicted and observed for sickle hemoglobin nucleation.预测并观察到镰状血红蛋白成核为50级反应。
J Mol Biol. 1996 Feb 23;256(2):219-22. doi: 10.1006/jmbi.1996.0079.
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Effects of deoxygenation on active and passive Ca2+ transport and cytoplasmic Ca2+ buffering in normal human red cells.缺氧对正常人红细胞中主动和被动Ca2+转运及细胞质Ca2+缓冲的影响。
J Physiol. 1993 May;464:529-44. doi: 10.1113/jphysiol.1993.sp019649.
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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.脱氧对镰状细胞贫血红细胞主动和被动Ca2+转运以及细胞质Ca2+水平的影响。
J Clin Invest. 1993 Nov;92(5):2489-98. doi: 10.1172/JCI116857.
7
Expression of band 3 anion exchanger induces chloride current and taurine transport: structure-function analysis.带3阴离子交换蛋白的表达诱导氯离子电流和牛磺酸转运:结构-功能分析
EMBO J. 1995 Nov 1;14(21):5158-69. doi: 10.1002/j.1460-2075.1995.tb00200.x.
8
Release of spectrin-free spicules on reoxygenation of sickled erythrocytes.镰状红细胞复氧时无血影蛋白的棘状突起的释放。
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9
Influence of red cell water content on the morphology of sickling.红细胞含水量对镰变形态的影响。
Blood. 1980 May;55(5):823-30.
10
The interaction of hemoglobin with the cytoplasmic domain of band 3 of the human erythrocyte membrane.血红蛋白与人红细胞膜带3胞质结构域的相互作用。
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镰状化诱导的钙离子通透性的随机性质和红细胞群体分布

Stochastic nature and red cell population distribution of the sickling-induced Ca2+ permeability.

作者信息

Lew V L, Ortiz O E, Bookchin R M

机构信息

Physiological Laboratory, University of Cambridge, Cambridge CB2 EG, United Kingdom.

出版信息

J Clin Invest. 1997 Jun 1;99(11):2727-35. doi: 10.1172/JCI119462.

DOI:10.1172/JCI119462
PMID:9169503
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC508119/
Abstract

To explore basic properties of the sickling-induced cation permeability pathway, the Ca2+ component (Psickle-Ca) was studied in density-fractionated sickle cell anemia (SS) discocytes through its effects on the activity of the cells' Ca2+sensitive K+-channels (KCa). The instant state of KCa channel activation was monitored during continuous or cyclic deoxygenation of the cells using a novel thiocyanate-densecell formation method. Each deoxy pulse caused a reversible, sustained Psickle-Ca, which activated KCa channels in only 10-45% of cells at physiological [Ca2+]o ("activated cells"). After removal of cells activated by each previous deoxy pulse, subsequent pulses generated similar activated cell fractions, indicating a random determination rather than the response of a specific vulnerable subpopulation. The fraction of activated cells rose monotonically with [Ca2+]o along a curve reflecting the cells' distribution of Psickle-Ca, with values high enough in a small cell fraction to trigger near-maximal KCa channels. Consistent with the stochastic nature of Psickle-Ca, repeated deoxygenated-oxygenated pulsing led to progressive dense cell formation, whereas single long pulses caused one early density shift. Thus deoxygenation-induced Ca2+-permeabilization in SS cells is a probabilistic event with large cumulative dehydrating potential. The possible molecular nature of Psickle-Ca is discussed.

摘要

为了探究镰状化诱导的阳离子通透性途径的基本特性,通过其对细胞钙敏感钾通道(KCa)活性的影响,在密度分级的镰状细胞贫血(SS)碟形细胞中研究了钙离子成分(Psickle-Ca)。使用一种新型硫氰酸盐致密细胞形成方法,在细胞连续或循环脱氧过程中监测KCa通道激活的即时状态。每个脱氧脉冲都会引起可逆的、持续的Psickle-Ca,在生理细胞外钙浓度([Ca2+]o)下,仅10%-45%的细胞中的KCa通道被激活(“激活细胞”)。在去除由每个先前脱氧脉冲激活的细胞后,后续脉冲产生相似比例的激活细胞,这表明是随机决定而非特定易损亚群的反应。激活细胞的比例随[Ca2+]o沿着反映细胞Psickle-Ca分布的曲线单调上升,在一小部分细胞中该值足够高以触发近乎最大的KCa通道。与Psickle-Ca的随机性一致,重复的脱氧-充氧脉冲导致渐进性致密细胞形成,而单个长脉冲导致一次早期密度变化。因此,SS细胞中脱氧诱导的钙通透性是一个具有巨大累积脱水潜力的概率性事件。文中还讨论了Psickle-Ca可能的分子性质。