DeCoy D L, Snapper J R, Breyer M D
Department of Medicine, Vanderbilt University, Nashville, Tennessee 37232, USA.
J Clin Invest. 1995 Jun;95(6):2749-56. doi: 10.1172/JCI117978.
Hormonal activation of protein kinase C (PKC) is a major signaling mechanism regulating salt and water transport in the distal nephron. We used antisense DNA to down-regulate a PKC isoform in the rabbit cortical collecting duct (CCD) and examined its role in mediating arginine vasopressin's (AVP) effect on salt transport in the CCD. Immunoblots demonstrate that PKC-epsilon (diacylglycerol sensitive) and PKC-zeta (diacylglycerol insensitive) are the major PKC isoforms in both freshly isolated and primary cultures of rabbit CCDs. Rabbit CCDs grown on semi-permeable supports, displayed a positive baseline short circuit current (Isc), which was abolished by amiloride, demonstrating active Na+ absorption. Both AVP and 8-chloro-phenylthio-cAMP (8CPTcAMP) transiently increased Isc, however, within 40 min Isc fell below baseline. Down-regulation of PKC-epsilon, as confirmed by immunoblot, was achieved either by treatment with a PKC-epsilon-specific antisense oligonucleotide or 48 h of 1 microM PMA. In PKC-epsilon down-regulated cells, 8CPTcAMP produced a sustained, rather than transient, increase in Isc. We suggest cAMP stimulates Na+ transport, but secondary activation of PKC-epsilon results in the sustained inhibition of Na+ transport seen in response to vasopressin in the CCD.
蛋白激酶C(PKC)的激素激活是调节远端肾单位盐和水转运的主要信号传导机制。我们使用反义DNA下调兔皮质集合管(CCD)中的一种PKC亚型,并研究其在介导精氨酸加压素(AVP)对CCD中盐转运作用方面的角色。免疫印迹表明,PKC-ε(对二酰基甘油敏感)和PKC-ζ(对二酰基甘油不敏感)是新鲜分离的和原代培养的兔CCD中的主要PKC亚型。在半透性支持物上生长的兔CCD显示出正的基线短路电流(Isc),该电流被氨氯吡咪消除,表明存在活跃的Na⁺吸收。AVP和8-氯-苯硫基-cAMP(8CPTcAMP)均使Isc短暂增加,然而,在40分钟内Isc降至基线以下。通过免疫印迹证实,用PKC-ε特异性反义寡核苷酸处理或1μM佛波酯处理48小时可实现PKC-ε的下调。在PKC-ε下调的细胞中,8CPTcAMP使Isc产生持续而非短暂的增加。我们认为,cAMP刺激Na⁺转运,但PKC-ε的继发性激活导致在CCD中对加压素反应时所见的Na⁺转运的持续抑制。