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内皮素A受体介导的对培养牛角膜上皮细胞内pH调节的抑制作用。

ETA receptor mediated inhibition of intracellular pH regulation in cultured bovine corneal epithelial cells.

作者信息

Wu X, Torres-zamorano V, Yang H, Reinach P S

机构信息

Department of Biological Sciences, College of Optometry, State University of New York, New York, NY, 10010, USA.

出版信息

Exp Eye Res. 1998 Jun;66(6):699-708. doi: 10.1006/exer.1997.0475.

Abstract

The contributions were determined in primary cultures of bovine corneal epithelial cells (BCEC) of Na:H exchange (NHE) and vacuolar H+-ATPase (i.e. V-type) activity to the regulation of intracellular pH (pHi). Furthermore, we characterized the effects on pHi regulation of exposure to 1 microM ET-1 under control and acid loaded conditions. With the pH sensitive dye, 2',7' Bis (carboxyethyl)-5,6-carboxyfluorescein acetoxymethyl ester (BCECF-AM), the control pHi was 7.1 in NaCl (nominally HCO3-free) Ringers. Inhibition of NHE with 100 microM dimethylamiloride (DMA) rapidly decreased pHi by 0.37 units. Similarly, selective inhibition of V-type H+-ATPase with 10 microM bafilomycin A1 decreased pHi by 0.22 units. Following acid loading in NaCl Ringers with a 20 mm NH4Cl prepulse, pHi recovery was partially inhibited by exposure to either Na-free (NMGCl) Ringers, 100 microM DMA or 20 microM bafilomycin A1. Based on decreases in H+ efflux resulting from selective inhibition of NHE and V-type H+ pump activity, NHE activity accounts for 76% of the pHi recovery following acid loading. Under control conditions, ET-1 (1 microM) had no effect on pHi whereas ET-1 completely suppressed pHi recovery following acid loading in NaCl or NMGCl Ringers. This inhibitory effect was largely due to stimulation of ETA because in the presence of BQ-123 (10 microM), a selective ETA receptor antagonist, pHi recovery was completely restored. Suppression of pHi recovery also occurred following stimulation of protein kinase C (PKC) with 10(-7) m phorbol myristate (PMA) whereas 10(-7) m 4 alpha phorbol 12,13 didecanoate (PDD) had no effect. ET-1 failed to suppress pHi recovery after inhibition of PKC with 0.5 microM calphostin C suggesting that the inhibition of pHi recovery by ET-1 is a consequence of PKC stimulation. Similarly, inhibition of Ca2+-dependent calmodulin stimulated CaM II kinase with KN-62 (10 microM) reversed the suppression of pHi recovery by ET-1. Preinhibition of either protein phosphatase (PP), PP-1, PP-2A or PP-2B activity with 1 microM phenylarsine oxide, 10 nm okadaic acid, 10 microM cyclosporin A1 or 20 microM BAPTA, also obviated the suppression of pHi recovery by ET-1. Therefore ETA receptor mediated inhibition of pHi regulation following acid loading could be a consequence of either PKC or CaMII kinase stimulation. Each one of these kinases may in turn phosphorylate and thereby stimulate the activities of PP-1, PP-2A or PP-2B. An increase in the activity of any one of these protein phosphatases could lead to dephosphorylation of the NHE and V-type H+ pump. This alteration may prevent them from becoming adequately stimulated to elicit pHi recovery in response to acid loading.

摘要

研究了牛角膜上皮细胞(BCEC)原代培养物中钠氢交换(NHE)和液泡型H⁺ -ATP酶(即V型)活性对细胞内pH(pHi)调节的贡献。此外,我们还表征了在对照和酸负荷条件下,暴露于1 μM内皮素-1(ET-1)对pHi调节的影响。使用pH敏感染料2',7'-双(羧乙基)-5,6-羧基荧光素乙酰氧基甲酯(BCECF-AM),在NaCl(名义上无HCO₃)林格氏液中对照pHi为7.1。用100 μM二甲基amiloride(DMA)抑制NHE可使pHi迅速降低0.37个单位。同样,用10 μM巴弗洛霉素A1选择性抑制V型H⁺ -ATP酶可使pHi降低0.22个单位。在NaCl林格氏液中用20 mM NH₄Cl预脉冲进行酸负荷后,暴露于无钠(NMGCl)林格氏液、100 μM DMA或20 μM巴弗洛霉素A1中,pHi恢复受到部分抑制。基于对NHE和V型H⁺泵活性选择性抑制导致的H⁺外流减少,NHE活性占酸负荷后pHi恢复的76%。在对照条件下,ET-1(1 μM)对pHi无影响,而在NaCl或NMGCl林格氏液中酸负荷后,ET-1完全抑制pHi恢复。这种抑制作用主要是由于ETA的刺激,因为在存在选择性ETA受体拮抗剂BQ-123(10 μM)时,pHi恢复完全恢复。用10⁻⁷ M佛波醇肉豆蔻酸酯(PMA)刺激蛋白激酶C(PKC)后,pHi恢复也受到抑制,而10⁻⁷ M 4α-佛波醇12,13-二癸酸酯(PDD)则无影响。用0.5 μM钙调蛋白抑制剂C抑制PKC后,ET-1未能抑制pHi恢复,这表明ET-1对pHi恢复的抑制是PKC刺激的结果。同样,用KN-62(10 μM)抑制Ca²⁺依赖性钙调蛋白刺激的CaM II激酶可逆转ET-1对pHi恢复的抑制。用1 μM苯胂氧化物、10 nM冈田酸、10 μM环孢素A1或20 μM BAPTA预抑制蛋白磷酸酶(PP)、PP-1、PP-2A或PP-2B的活性,也可消除ET-1对pHi恢复的抑制。因此,酸负荷后ETA受体介导的对pHi调节的抑制可能是PKC或CaMII激酶刺激的结果。这些激酶中的每一种反过来可能会磷酸化并因此刺激PP-1、PP-2A或PP-2B的活性。这些蛋白磷酸酶中任何一种活性的增加都可能导致NHE和V型H⁺泵的去磷酸化。这种改变可能会阻止它们在酸负荷时被充分刺激以引发pHi恢复。

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