Baroin A, Garcia-Romeu F, Lamarre T, Motais R
J Physiol. 1984 May;350:137-57. doi: 10.1113/jphysiol.1984.sp015193.
On the addition of isoprenaline to an isotonic suspension of red blood cells of rainbow trout (Salmo gairdneri), the cell volume increases. This increase in volume is the result of net uptake of Na+ and osmotically obligated water. Two different pathways are involved in the salt uptake. The minor component of Na+ entry (about 20%) corresponds to a Na+ uptake independent of Cl- and is inhibited by amiloride, yet is insensitive to DIDS, furosemide and niflumic acid. It could result from Na+/H+ countertransport. The major component of salt uptake is due to Na+ entry which requires Cl- as anion, and is electroneutral, independent of extracellular K+, sensitive to amiloride, DIDS, niflumic acid and furosemide, but insensitive to other loop diuretics such as piretanide or bumetanide. These characteristics, as well as the response of valinomycin-treated cells to isoprenaline and some other properties (ionic selectivity, drug sensitivity) of the anion exchange system of volume-static trout red cells, permit the definition of the nature of this Cl--dependent pathway. The findings are inconsistent with the electrically silent double antiporter model (proposed in amphibian red cells by Cala, 1980) and with the co-migration of Cl- with Na+ through parallel conductive pathways, but strongly suggest a symport mechanism. Striking differences, mainly pharmacological, exist between this NaCl co-transport and the duck red blood cell Na+/K+/2Cl- co-transport (Kregenow, 1977, 1978; McManus & Schmidt, 1978).
在虹鳟鱼(Salmo gairdneri)红细胞的等渗悬浮液中加入异丙肾上腺素后,细胞体积会增加。这种体积增加是Na⁺和渗透性结合水净摄取的结果。盐摄取涉及两种不同途径。Na⁺进入的次要成分(约20%)对应于不依赖Cl⁻的Na⁺摄取,可被氨氯吡咪抑制,但对4,4'-二异硫氰酸二苯乙烯-2,2'-二磺酸(DIDS)、呋塞米和氟尼酸不敏感。它可能是由Na⁺/H⁺逆向转运导致的。盐摄取的主要成分是由于Na⁺进入,这需要Cl⁻作为阴离子,且是电中性的,不依赖细胞外K⁺,对氨氯吡咪、DIDS、氟尼酸和呋塞米敏感,但对其他髓袢利尿剂如吡咯他尼或布美他尼不敏感。这些特性,以及缬氨霉素处理的细胞对异丙肾上腺素的反应和体积静态虹鳟红细胞阴离子交换系统的其他一些特性(离子选择性、药物敏感性),有助于确定这种Cl⁻依赖性途径的性质。这些发现与电沉默双反向转运体模型(由Cala于1980年在两栖类红细胞中提出)以及Cl⁻与Na⁺通过平行传导途径的共同迁移不一致,但强烈提示存在同向转运机制。这种NaCl协同转运与鸭红细胞Na⁺/K⁺/2Cl⁻协同转运(Kregenow,1977年、1978年;McManus和Schmidt,1978年)之间存在显著差异,主要是药理学上的差异。