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硫脲与人红细胞膜中带3蛋白的相互作用。

Interaction of thiourea with band 3 in human red cell membranes.

作者信息

Dorogi P L, Solomon A K

出版信息

J Membr Biol. 1985;85(1):37-48. doi: 10.1007/BF01872004.

Abstract

Although urea transport across the human red cell membrane has been studied extensively, there is disagreement as to whether urea and water permeate the red cell by the same channel. We have suggested that the red cell anion transport protein, band 3, is responsible for both water and urea transport. Thiourea inhibits urea transport and also modulates the normal inhibition of water transport produced by the sulfhydryl reagent, pCMBS. In view of these interactions, we have looked for independent evidence of interaction between thiourea and band 3. Since the fluorescent stilbene anion transport inhibitor, DBDS, increases its fluorescence by two orders of magnitude when bound to band 3 we have used this fluorescence enhancement to study thiourea/band 3 interactions. Our experiments have shown that there is a thiourea binding site on band 3 and we have determined the kinetic and equilibrium constants describing this interaction. Furthermore, pCMBS has been found to modulate the thiourea/band 3 interaction and we have determined the kinetic and equilibrium constants of the interaction in the presence of pCMBS. These experiments indicate that there is an operational complex which transmits conformational signals among the thiourea, pCMBS and DBDS sites. This finding is consistent with the view that a single protein or protein complex is responsible for all the red cell transport functions in which urea is involved.

摘要

尽管对尿素跨人类红细胞膜的转运已进行了广泛研究,但对于尿素和水是否通过同一通道渗透红细胞仍存在分歧。我们曾提出红细胞阴离子转运蛋白带3负责水和尿素的转运。硫脲可抑制尿素转运,还能调节巯基试剂对氯汞苯甲酸(pCMBS)所产生的对水转运的正常抑制作用。鉴于这些相互作用,我们一直在寻找硫脲与带3之间相互作用的独立证据。由于荧光芪类阴离子转运抑制剂二丁二磺酸钠(DBDS)与带3结合时其荧光增强两个数量级,我们利用这种荧光增强来研究硫脲与带3的相互作用。我们的实验表明带3上存在一个硫脲结合位点,并且我们已经确定了描述这种相互作用的动力学和平衡常数。此外,已发现pCMBS可调节硫脲与带3的相互作用,我们也确定了在pCMBS存在下这种相互作用的动力学和平衡常数。这些实验表明存在一种功能性复合物,它在硫脲、pCMBS和DBDS位点之间传递构象信号。这一发现与单一蛋白质或蛋白质复合物负责涉及尿素的所有红细胞转运功能这一观点一致。

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