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Band 3 protein function in teleost fish erythrocytes: Effect of oxygenation-deoxygenation

机译:鱼硬骨鱼红细胞带3蛋白的功能:氧合-脱氧作用

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摘要

During vertebrate evolution, structural changes in red blood cells (RBC) and hemoglobin (Hb), have probably resulted in the importance of blood carbon dioxide transport. The chloride/bicarbonate exchange across the RBC membrane, which is an integral part of the blood CO2 transport process in vertebrates, has been examined on two different species of teleost fish, Euthynnus alletteratus and Thunnus thynnus, at several oxygenation states of erythrocyte HOS (high-oxygenation state, about 90 % of saturation) and LOS (low-oxygenation state, about 15 % of saturation). The results were compared with those observed in human RBC under the same experimental conditions and with the chicken (Gallus gallus) erythrocytes, which have particular modifications at the N-terminus of the band 3 protein (B3). In fish the kinetic measurements have shown a different anion transport in several oxygenation states of erythrocytes, indicating that also at lower levels of vertebrate evolution there exists a modulation of the anionic flow affected by oxygen. The functional correlation of anion transport to changes of parts of the hemoglobin sequence responsible for alterations in the interactions with the cytoplasmic domain of band 3 protein (cdb3) allowed us to suggest a hypothesis about fish physiology. The highest values of kinetic measurements observed in fish have been attributed to the metabolic need of the RBC in response to the removal of CO2 that in teleosts is also of endogenous origin.
机译:在脊椎动物进化过程中,红细胞(RBC)和血红蛋白(Hb)的结构变化可能已导致血液二氧化碳转运的重要性。整个RBC膜上的氯离子/碳酸氢根交换是脊椎动物血液中CO2传输过程不可或缺的一部分,已经在两种不同的硬骨鱼类Euthynnus alletteratus和Thunnus thynnus上进行了检查,它们处于红细胞HOS的几种氧合状态(高-氧合状态,约90%的饱和度)和LOS(低氧合状态,约15%的饱和度)。将结果与在相同实验条件下在人RBC中观察到的结果以及在带3蛋白(B3)N端具有特殊修饰的鸡(鸡)红细胞进行了比较。在鱼类中,动力学测量结果显示,在几种红细胞充氧状态下,阴离子的转运方式不同,这表明在脊椎动物进化水平较低的情况下,也存在着受氧影响的阴离子流的调节。阴离子转运与负责与带3蛋白(cdb3)的胞质域相互作用的血红蛋白序列部分变化的功能相关性,使我们能够提出关于鱼类生理学的假设。在鱼类中观察到的最高动力学测量值归因于响应于硬骨鱼也是内源性起源的CO2去除而对RBC的代谢需求。

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