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Characterization of Na+ uptake in the endangered desert pupfish Cyprinodon macularius (Baird and Girard)

机译:濒临灭绝的沙漠p鱼中的Na +吸收特性(Baird和Girard)

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摘要

This study provided an initial characterization of Na+ uptake in saline freshwater by the endangered pupfish, Cyprinodon macularius. This species occurs only in several saline water systems in the southwestern USA and northern Mexico, where salinity is largely controlled by water-management practices. Consequently, understanding the osmoregulatory capacity of this species is important for their conservation. The lower acclimation limit of C. macularius in freshwater was found to be 2 mM Na+. Fish acclimated to 2 or 7 mM Na+ displayed similar Na+ uptake kinetics, with Km values of 4321 and 3672 μM and Vmax values of 4771 and 3602 nmol g−1 h−1, respectively. A series of experiments using pharmacological inhibitors indicated that Na+ uptake in C. macularius was not sensitive to bumetanide, metolazone, or phenamil. These results indicate the Na+–K+–2Cl cotransporter, Na+–Cl cotransporter, and the Na+ channel–H+-ATPase system are likely not to be involved in Na+ uptake at the apical membrane of fish gill ionocytes in fish acclimated to 2 or 7 mM Na+. However, Na+ uptake was sensitive to 1 × 10−3 M amiloride (not 1 × 10−4 or 1 × 10−5 M), 5-(N-ethyl-N-isopropyl)-amiloride (EIPA), and ethoxzolamide. These data suggest that C. macularius relies on a low-affinity Na+–H+ exchanger for apical Na+ uptake and that H+ ions generated via carbonic anhydrase-mediated CO2 hydration are important for the function of this protein.
机译:这项研究提供了对濒临灭绝的p鱼黄斑狼疮(Cyprinodon macularius)在盐水中吸收Na + 的初步表征。该物种仅出现在美国西南部和墨西哥北部的几个盐水系统中,那里的盐度在很大程度上由水管理实践控制。因此,了解该物种的渗透调节能力对其保护很重要。发现黄斑梭菌在淡水中的驯化下限为2 mM Na + 。适应2或7μmMNa + 的鱼表现出相似的Na + 吸收动力学,Km值为4321和3672μM,Vmax值为4771和3602 nmol g -1 h -1 。使用药理抑制剂进行的一系列实验表明,黄斑梭菌中Na + 的吸收对布美他尼,美托拉宗或苯那非不敏感。这些结果表明Na + –K + –2Cl -共转运蛋白,Na + –Cl - 共转运蛋白,Na + 通道–H + -ATPase系统很可能不参与Na + 的吸收。鱼类鱼ill离子细胞的顶膜适应了2或7μmMNa + 。但是,Na + 的摄取对1×10 −3 M阿米洛利敏感(不是1×10 −4 或1×10 -5 M),5-(N-乙基-N-异丙基)-阿米洛利(EIPA)和乙氧唑酰胺。这些数据表明黄斑梭菌依赖于低亲和力的Na + –H + 交换子来吸收顶端的Na + ,而H + 离子对该蛋白的功能很重要。

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