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气道上皮:鸟苷素的一个新作用位点。

The airway-epithelium: a novel site of action by guanylin.

作者信息

Zhang Z H, Jow F, Numann R, Hinson J

机构信息

Division of CNS, Wyeth-Ayerst Research, Princeton, New Jersey 08543, USA.

出版信息

Biochem Biophys Res Commun. 1998 Mar 6;244(1):50-6. doi: 10.1006/bbrc.1998.8136.

Abstract

UNLABELLED

We studied the activation of a chloride channel in normal human bronchial epithelial cells (NHBE) by guanylin. We have observed a background Cl current (ICl,background) and a guanylin-induced outward rectifying chloride currents (ORCC) in NHBE. ICl,background was present in 93% of cells (n = 114), was outwardly-rectifying, and could be completely blocked by 100 microM NPPB (5-Nitro-2(3-phenyl-propylamino)-benzoic acid. Activation of cAMP-activated Cl current with 200 microM CPT-cAMP (8-(4-Chlorophenylthio) adenosine-3',5'-monophosphate) occurred in only 35.3% of cells (n = 34). Gyanylin activated an ORCC in 78.6% (n = 11) of cells. Gyanylin also induced chloride currents in cells that had failed to respond to CPT-cAMP (n = 5). Both CPT-cAMP and the guanylin-induced chloride currents showed strong outward rectification. 500 microM DIDS (4,4'-diisothiocyanostibene-2,2'-disulfonic acid) blocked the guanylin-induced ORCC (n = 10).

CONCLUSION

Guanylin activates a DIDS-sensitive ORCC in the NHBE cell which is only modestly activated by cAMP. The guanylin receptor in the NHBE might be of major importance in the regulation of chloride channel activity and transepithelial fluid transport in normal and abnormal airways.

摘要

未标记

我们研究了鸟苷素对正常人支气管上皮细胞(NHBE)中氯离子通道的激活作用。我们在NHBE细胞中观察到了背景氯电流(ICl,background)和鸟苷素诱导的外向整流氯电流(ORCC)。93%的细胞(n = 114)存在ICl,background,该电流呈外向整流,并且可被100微摩尔/升的NPPB(5-硝基-2(3-苯基丙基氨基)苯甲酸)完全阻断。用200微摩尔/升的CPT-cAMP(8-(4-氯苯基硫代)腺苷-3',5'-单磷酸)激活cAMP激活的氯电流仅发生在35.3%的细胞中(n = 34)。鸟苷素在78.6%(n = 11)的细胞中激活了ORCC。鸟苷素还能在对CPT-cAMP无反应的细胞中诱导氯电流(n = 5)。CPT-cAMP和鸟苷素诱导的氯电流均表现出强烈的外向整流。500微摩尔/升的DIDS(4,4'-二异硫氰酸根合芪-2,2'-二磺酸)可阻断鸟苷素诱导的ORCC(n = 10)。

结论

鸟苷素在NHBE细胞中激活一种对DIDS敏感的ORCC,而该通道仅被cAMP适度激活。NHBE中的鸟苷素受体可能在正常和异常气道中氯离子通道活性及跨上皮液体转运的调节中起重要作用。

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