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青蛙离体近端小管细胞的容积调节反应

Volume regulatory responses in frog isolated proximal cells.

作者信息

Robson L, Hunter M

机构信息

Department of Physiology, Medical School, Leeds University, UK.

出版信息

Pflugers Arch. 1994 Aug;428(1):60-8. doi: 10.1007/BF00374752.

Abstract

Cells respond to increase in volume by activating solute efflux pathways, resulting in water loss and restoration of the original cell volume. The solute efflux pathways underlying these volume regulatory decrease (VRD) responses have been relatively well studied. However, the transduction pathways whereby the change in cell volume is converted into an intracellular signal resulting in VRD are much less well understood. We have examined VRD in isolated proximal tubule cells from the frog, with particular attention to the roles of stretch-activated channels, Ca2+ and protein kinases. Cell length was taken as an index of cell volume, and was measured continuously using a photodiode array. VRD was observed in approximately 50% of cells, and was inhibited by Ba2+, Gd3+ and 4,4'-diisothiocyanatostilbene 2,2'-disulphonic acid (DIDS), and removal of extracellular Ca2+. VRD was accelerated by the active phorbol ester, phorbol 12-myristate 13-acetate (PMA), and the phosphatase inhibitor F-; on the other hand, VRD was prolonged by 4 alpha-phorbol 12,13-didecanoate (PDC), an inactive phorbol ester), and inhibited by PMA and Gd3+, PMA and 0 Ca2+, and staurosporine. Volume regulation was unaffected by di-butyryl cAMP and 3-isobutyl-1-methyl-xanthene (IBMX). These data suggest that Ca2+ and PKC, via protein phosphorylation, play a stimulatory role in VRD.

摘要

细胞通过激活溶质外流途径对体积增加做出反应,导致水分流失并恢复原始细胞体积。这些体积调节性减少(VRD)反应背后的溶质外流途径已得到相对充分的研究。然而,细胞体积变化转化为导致VRD的细胞内信号的转导途径却了解得少得多。我们研究了青蛙离体近端小管细胞中的VRD,特别关注牵张激活通道、Ca2+和蛋白激酶的作用。细胞长度被用作细胞体积的指标,并使用光电二极管阵列连续测量。在大约50%的细胞中观察到VRD,并且被Ba2+、Gd3+和4,4'-二异硫氰酸芪2,2'-二磺酸(DIDS)以及去除细胞外Ca2+所抑制。活性佛波酯佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)和磷酸酶抑制剂F可加速VRD;另一方面,无活性佛波酯4α-佛波醇12,13-十二烷酸酯(PDC)可延长VRD,PMA和Gd3+、PMA和无Ca2+以及星形孢菌素可抑制VRD。体积调节不受二丁酰cAMP和3-异丁基-1-甲基黄嘌呤(IBMX)的影响。这些数据表明,Ca2+和蛋白激酶C通过蛋白质磷酸化在VRD中起刺激作用。

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