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非色素睫状上皮细胞通过可溶性腺苷酸环化酶机制对乙酰唑胺产生反应。

Nonpigmented ciliary epithelial cells respond to acetazolamide by a soluble adenylyl cyclase mechanism.

机构信息

Department of Physiology, University of Arizona, Tucson, Arizona.

出版信息

Invest Ophthalmol Vis Sci. 2014 Jan 9;55(1):187-97. doi: 10.1167/iovs.13-12717.

Abstract

PURPOSE

The nonpigmented ciliary epithelium (NPE) is rich in soluble adenylyl cyclase (sAC), a proposed cytoplasmic bicarbonate sensor. Here, we examine the contribution of sAC to an increase in cyclic AMP (cAMP) and changes in a key ion transporter, H(+)-ATPase, in NPE exposed to acetazolamide, a carbonic anhydrase inhibitor (CAI).

METHODS

Cyclic AMP was measured by radioimmunoassay in primary cultured porcine NPE. The pH-sensitive dye BCECF was used to examine cytoplasmic pH regulation. Subcellular protein translocation was examined by Western blot.

RESULTS

A transient cAMP increase, detectable within minutes of acetazolamide treatment, was prevented by KH7, a specific sAC inhibitor. Following 10-minute exposure to acetazolamide, the abundance of H(+)-ATPase B1 subunit and sAC was doubled in a plasma membrane-rich fraction, suggesting subcellular translocation. Similar evidence of H(+)-ATPase translocation was observed in NPE exposed to 8-Bromoadenosine 3',5'-cyclic monophosphate (8-Br-cAMP). Consistent with increased capacity for proton export, acetazolamide increased the rate of pH recovery from acidification. KH7 and bafilomycin A1, an inhibitor of H(+)-ATPase, both prevented the stimulatory effect of acetazolamide on pH recovery. In a parallel study, H(+)-ATPase abundance was found to be higher in the plasma membrane of HEK293 cells that overexpress sAC compared to the normal HEK293 cells. HEK cells that overexpress sAC and had higher H(+)-ATPase abundance displayed a faster rate of pH recovery and greater sensitivity to KH7.

CONCLUSIONS

Acetazolamide increases cAMP in a response that involves activation of sAC. Subcellular translocation of H(+)-ATPase and an increase in the capacity for proton export by acetazolamide-treated NPE cells is a cAMP-dependent response.

摘要

目的

非色素睫状上皮 (NPE) 富含可溶性腺苷酸环化酶 (sAC),这是一种被提议的细胞质碳酸氢盐感受器。在这里,我们研究了 sAC 在暴露于乙酰唑胺(碳酸酐酶抑制剂 (CAI))的 NPE 中增加环 AMP (cAMP) 和关键离子转运体 H(+)-ATPase 变化中的作用。

方法

通过放射免疫测定法在原代培养的猪 NPE 中测量 cAMP。使用 pH 敏感染料 BCECF 检查细胞质 pH 调节。通过 Western blot 检查亚细胞蛋白易位。

结果

在乙酰唑胺处理后几分钟内即可检测到短暂的 cAMP 增加,该增加被特定的 sAC 抑制剂 KH7 所阻止。在暴露于乙酰唑胺 10 分钟后,H(+)-ATPase B1 亚基和 sAC 的丰度在富含质膜的部分增加了一倍,提示亚细胞易位。在暴露于 8-溴腺苷 3',5'-环单磷酸 (8-Br-cAMP) 的 NPE 中也观察到类似的 H(+)-ATPase 易位证据。与增加质子外排能力一致,乙酰唑胺增加了从酸化中恢复 pH 的速率。KH7 和巴弗洛霉素 A1(H(+)-ATPase 的抑制剂)均可阻止乙酰唑胺对 pH 恢复的刺激作用。在一项平行研究中,与正常 HEK293 细胞相比,过表达 sAC 的 HEK293 细胞质膜中的 H(+)-ATPase 丰度更高。过表达 sAC 且 H(+)-ATPase 丰度较高的 HEK 细胞恢复 pH 的速度更快,对 KH7 的敏感性更高。

结论

乙酰唑胺在涉及 sAC 激活的反应中增加 cAMP。用乙酰唑胺处理的 NPE 细胞中亚细胞 H(+)-ATPase 的易位和质子外排能力的增加是 cAMP 依赖性反应。

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