Palfrey H C, Rao M C
J Exp Biol. 1983 Sep;106:43-54. doi: 10.1242/jeb.106.1.43.
NaCl and Na/K/Cl co-transport systems in many cell types show a number of similarities, among which are sensitivity to 'loop' diuretic inhibition and extremely high anion selectivity. Avian erythrocytes possess a NA+K+2Cl co-transporter that is stimulated by agents raising intracellular cAMP. The system is also inhibited following ATP-depletion of the cells, in agreement with results in other tissues; this nucleotide may exert a regulatory role on the operation of the co-transporter. A Na/K/Cl co-transport system is also present in flounder intestine, where it plays a central role in salt absorption at the luminal border of the tissue. In contrast to the avian erythrocyte this system is inhibited by raising intracellular cyclic nucleotide content, cGMP being more effective than cAMP. From these results it is concluded that second messenger regulation of Na/K/Cl co-transport processes is heterogeneous and may exhibit some tissue specificity.
许多细胞类型中的氯化钠和钠/钾/氯共转运系统表现出一些相似之处,其中包括对“袢”利尿剂抑制的敏感性和极高的阴离子选择性。禽类红细胞拥有一种钠钾2氯共转运体,它受到提高细胞内cAMP的物质的刺激。该系统在细胞ATP耗竭后也会受到抑制,这与其他组织的结果一致;这种核苷酸可能对共转运体的运作发挥调节作用。比目鱼肠道中也存在钠/钾/氯共转运系统,它在该组织腔面边界的盐分吸收中起核心作用。与禽类红细胞不同的是,该系统会因细胞内环核苷酸含量升高而受到抑制,cGMP比cAMP更有效。从这些结果可以得出结论,钠/钾/氯共转运过程的第二信使调节是异质性的,可能表现出一些组织特异性。