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首页> 外文期刊>The Journal of Physiology >The conductance of red blood cells from sickle cell patients: Ion selectivity and inhibitors
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The conductance of red blood cells from sickle cell patients: Ion selectivity and inhibitors

机译:镰状细胞患者红细胞的电导:离子选择性和抑制剂

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The abnormally high cation permeability in red blood cells (RBCs) from patients with sickle cell disease (SCD) occupies a central role in pathogenesis. Sickle RBC properties are notably heterogeneous, however, thus limiting conventional flux techniques that necessarily average out the behaviour of millions of cells. Here we use the whole-cell patch configuration to characterise the permeability of single RBCs from patients with SCD in more detail. A non-specific cation conductance was reversibly induced upon deoxygenation and was permeable to both univalent (Na +, K +, Rb +) and also divalent (Ca 2+, Mg 2+) cations. It was sensitive to the tarantula spider toxin GsMTx-4. Mn 2+ caused partial, reversible inhibition. The aromatic aldehyde o-vanillin also irreversibly inhibited the deoxygenation-induced conductance, partially at 1 mm and almost completely at 5 mm. Nifedipine, amiloride and ethylisopropylamiloride were ineffective. In oxygenated RBCs, the current was pH sensitive showing a marked increase as pH fell from 7.4 to 6, with no change apparent when pH was raised from 7.4 to 8. The effects of acidification and deoxygenation together were not additive. Many features of this deoxygenation-induced conductance (non-specificity for cations, permeability to Ca 2+ and Mg 2+, pH sensitivity, reversibility, partial inhibition by DIDS and Mn 2+) are shared with the flux pathway sometimes referred to as P sickle. Sensitivity to GsMTx-4 indicates its possible identity as a stretch-activated channel. Sensitivity to o-vanillin implies that activation requires HbS polymerisation but since the conductance was observed in whole-cell patches, results suggest that bulk intracellular Hb is not involved; rather a membrane-bound subfraction is responsible for channel activation. The ability to record P sickle-like activity in single RBCs will facilitate further studies and eventual molecular identification of the pathway involved.
机译:镰状细胞病(SCD)患者的红细胞(RBC)中异常高的阳离子渗透性在发病机理中起着核心作用。镰状红细胞的特性明显不同,因此限制了常规流量技术,该技术必须使数百万个细胞的行为平均化。在这里,我们使用全细胞膜片配置来更详细地描述来自SCD患者的单个RBC的渗透性。非特异性阳离子电导在脱氧时可逆地诱导,并且可渗透到一价(Na +,K +,Rb +)和二价(Ca 2 +,Mg 2+)阳离子。它对狼蛛蜘蛛毒素GsMTx-4敏感。 Mn 2+引起部分可逆的抑制。芳香醛邻香兰素还不可逆地抑制脱氧诱导的电导,部分在1毫米处,几乎在5毫米处完全抑制。硝苯地平,阿米洛利和乙基异丙基阿米洛利无效。在加氧的RBC中,电流对pH敏感,随着pH从7.4下降到6而显着增加,而当pH从7.4上升到8时没有明显变化。酸化和脱氧的作用并没有加和作用。该脱氧诱导的电导的许多特征(对阳离子的非特异性,对Ca 2+和Mg 2+的渗透性,pH敏感性,可逆性,DIDS和Mn 2+的部分抑制)与通量路径(有时称为P)共享。镰刀。对GsMTx-4的敏感性表明它可能是伸展激活通道。对邻香兰素的敏感性暗示激活需要HbS聚合,但是由于在全细胞膜片中观察到了电导,结果表明不涉及大量的细胞内Hb。而是膜结合的亚组分负责通道激活。在单个RBC中记录P镰刀样活性的能力将有助于进一步研究和最终对所涉及途径进行分子鉴定。

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