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人体红细胞中糖转运模型的动力学测试以及新鲜细胞与冷藏细胞的比较

Kinetic tests of models for sugar transport in human erythrocytes and a comparison of fresh and cold-stored cells.

作者信息

Weiser M B, Razin M, Stein W D

出版信息

Biochim Biophys Acta. 1983 Jan 19;727(2):379-88. doi: 10.1016/0005-2736(83)90423-6.

Abstract

We studied the time course of the entry of galactose into human erythrocytes from an external concentration of 500 mM, and analyzed the data by an integrated rate equation treatment. We found evidence for only a single, high-affinity site for sugar at the inner face of the membrane. We studied the effect of pre-loading cells with galactose at various concentrations on the entrance of galactose into the cell from 128 mM, and compared the result we found with a previous report of a similar experiment from 500 mM external sugar. We found no evidence of other than a high affinity for sugar at the inner face of the membrane. The data reject a model in which sugar transport occurs on two asymmetric, oppositely directed carriers. We studied exchange of glucose into and out of the cells as a function of sugar concentration, taking care to minimize metabolism of sugar. We found no evidence for other than a single component for glucose exchange. Our data reject the 'allosteric pore' model for sugar transport. The explanation of the high-affinity site for sugar at the inner membrane face thus remains enigmatic. We find a very significant difference in the kinetics of glucose exchange when we compare freshly drawn and long cold-stored blood. The Km for exchange was almost twice as large for cold-stored as for fresh blood.

摘要

我们研究了半乳糖从500 mM的外部浓度进入人红细胞的时间进程,并通过积分速率方程处理对数据进行了分析。我们发现,在膜的内表面仅存在一个单一的、高亲和力的糖位点。我们研究了用不同浓度的半乳糖预加载细胞对其从128 mM进入细胞的影响,并将我们的结果与之前一篇关于500 mM外部糖的类似实验报告进行了比较。我们没有发现膜内表面除了对糖具有高亲和力之外的其他证据。这些数据否定了糖转运发生在两个不对称、方向相反的载体上的模型。我们研究了葡萄糖进出细胞的交换情况与糖浓度的关系,同时注意尽量减少糖的代谢。我们没有发现除了单一成分的葡萄糖交换之外的其他证据。我们的数据否定了糖转运的“变构孔”模型。因此,膜内表面糖的高亲和力位点的解释仍然是个谜。当我们比较新鲜抽取的血液和长时间冷藏的血液时,我们发现葡萄糖交换动力学存在非常显著的差异。冷藏血液的交换Km值几乎是新鲜血液的两倍。

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