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内部与外部钠和钾对哇巴因结合重组人红细胞血影的侧依赖效应。

Side-dependent effects of internal versus external Na and K on ouabain binding to reconstituted human red blood cell ghosts.

作者信息

Bodemann H H, Hoffman J F

出版信息

J Gen Physiol. 1976 May;67(5):497-525. doi: 10.1085/jgp.67.5.497.

Abstract

The side-dependent effects of internal and external Na and K on the ouabain binding rate, as promoted by inside MgATP, has been evaluated utilizing reconstituted human red blood cell ghosts. Such ghost systems provide the situation where [Na]i, [K]i, [Na]o, and [K]o can each be varied under conditions in which the others are either absent or fixed at constant concentrations. It was found that, in the presence of Ko, increasing either [Na]i or [K]i resulted in decreasing the rate at which ouabain was bound. Changes in [Na]i or [K]i in the absence of Ko were without effect on the ouabain binding rate. Thus, the ouabain binding rate was found to vary inversely with the rate of Na:K and K:K exchange but was independent of the rate of Na:Na exchange. The effect of Ko in antagonizing ouabain binding, as well as the influence of Nao on this interaction, were found to require the presence of either Nai or Ki. The results are interpreted in terms of a model relating the availability of the ouabain binding site to different conformational states of the pump complex. Differences were observed in the ouabain binding properties of red cell ghosts compared to microsomal preparations but it is not known whether the basis for the differences resides in the different preparations studied or in the lack of control of sidedness in the microsomal systems.

摘要

利用重构的人红细胞血影,评估了细胞内和细胞外的钠和钾对哇巴因结合速率的侧依赖效应,这种效应由细胞内的MgATP所促进。这种血影系统提供了一种情形,即细胞内钠浓度([Na]i)、细胞内钾浓度([K]i)、细胞外钠浓度([Na]o)和细胞外钾浓度([K]o)在其他离子不存在或固定在恒定浓度的条件下均可各自发生变化。结果发现,在有细胞外钾(Ko)存在时,增加细胞内钠浓度([Na]i)或细胞内钾浓度([K]i)均会导致哇巴因结合速率降低。在没有细胞外钾(Ko)时,细胞内钠浓度([Na]i)或细胞内钾浓度([K]i)的变化对哇巴因结合速率没有影响。因此,发现哇巴因结合速率与钠钾交换速率和钾钾交换速率呈反比,但与钠钠交换速率无关。发现细胞外钾(Ko)拮抗哇巴因结合的效应以及细胞外钠(Nao)对这种相互作用的影响需要细胞内钠(Nai)或细胞内钾(Ki)的存在。这些结果根据一个将哇巴因结合位点的可用性与泵复合物的不同构象状态相关联的模型进行了解释。与微粒体制剂相比,在红细胞血影的哇巴因结合特性方面观察到了差异,但尚不清楚差异的基础是在于所研究的不同制剂,还是在于微粒体系统中缺乏对侧性的控制。

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