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环磷酸腺苷(cAMP)对大鼠下颌下腺腺泡细胞中钙依赖性钾离子电导的调节作用

cAMP modulation of a Ca2+-dependent K+ conductance in rat submandibular acinar cells.

作者信息

Ishikawa T

机构信息

Department of Molecular Physiology, National Institute for Physiological Sciences, Okazaki, Japan.

出版信息

Am J Physiol. 1997 Mar;272(3 Pt 1):G454-62. doi: 10.1152/ajpgi.1997.272.3.G454.

Abstract

Rat submandibular acinar cells exhibit a tetraethylammonium (TEA)-insensitive, Ca2+-activated K+ conductance, which may play an important role in Ca2+-dependent fluid secretion by this gland (T. Ishikawa, M. Murakami, and Y. Seo. Pfluegers Arch. 428: 516-525, 1994; T. Ishikawa and M. Murakami. Pfluegers Arch. 429: 748-750, 1995). We have now investigated whether this conductance would be modified during the potentiation of Ca2+-activated fluid secretion by an adenosine 3',5'-cyclic monophosphate (cAMP)-mediated mechanism in the rat submandibular gland. In isolated, vascularly perfused rat submandibular gland, we found that the adenylate cyclase activator forskolin (10 and 30 microM) enhanced a transient initial phase of a biphasic fluid secretion induced by the Ca2+ ionophore A-23187 (3 microM). We also unexpectedly found that forskolin reduced a smaller sustained phase of the secretion. The dual effects of forskolin were mimicked by the application of the cocktail of 3-isobutyl-1-methylxanthine (IBMX) (0.1 mM) and dibutyryl cAMP (DBcAMP) (0.1 and 0.5 mM). Basolateral K+ efflux studies showed that 1) forskolin significantly enhanced a large transient net K+ efflux induced by A-23187 in a dose-dependent manner; 2) the forskolin-induced enhancement was also mimicked by a cocktail of IBMX and DBcAMP; and 3) the A-23187-induced K+ efflux enhanced by these agents was not inhibited by TEA (5 or 10 mM), a concentration known to completely block Ca2+ voltage-dependent large-conductance K+ channels (maxi-K+ channels). With use of microspectrofluorometry with fura 2, we then showed that an increase in cytosolic Ca2+ concentration induced by the nonfluorescent, brominated derivative 4-bromo-A-23187 (3 microM) was not altered by forskolin (30 microM) in freshly isolated rat submandibular acinar cells. With use of whole cell patch-clamp techniques, we demonstrated that a TEA-insensitive K+ conductance induced by A-23187 in cells dialyzed with pipette solutions containing cAMP (0.1 mM) was significantly larger than that in cells treated with control pipette solutions. Taken together, these results indicate that potentiation of the Ca2+-activated fluid secretion by a cAMP-mediated mechanism is accompanied by potentiation of a TEA-insensitive, Ca2+-activated K+ conductance in this gland.

摘要

大鼠下颌下腺腺泡细胞表现出一种对四乙铵(TEA)不敏感的、Ca²⁺激活的K⁺电导,这可能在该腺体依赖Ca²⁺的液体分泌中起重要作用(T. 石川、M. 村上和Y. 背户。《普弗吕格尔斯 Archiv》428: 516 - 525, 1994;T. 石川和M. 村上。《普弗吕格尔斯 Archiv》429: 748 - 750, 1995)。我们现在研究了在大鼠下颌下腺中,通过腺苷3',5'-环磷酸(cAMP)介导的机制增强Ca²⁺激活的液体分泌过程中,这种电导是否会发生改变。在分离的、经血管灌注的大鼠下颌下腺中,我们发现腺苷酸环化酶激活剂福斯可林(10和30微摩尔)增强了由Ca²⁺离子载体A - 23187(3微摩尔)诱导的双相液体分泌的短暂初始阶段。我们还意外地发现福斯可林降低了分泌的较小的持续阶段。3 - 异丁基 - 1 - 甲基黄嘌呤(IBMX)(0.1毫摩尔)和二丁酰cAMP(DBcAMP)(0.1和0.5毫摩尔)的混合物模拟了福斯可林的双重作用。基底外侧K⁺外流研究表明:1)福斯可林以剂量依赖的方式显著增强了A - 23187诱导的大量短暂净K⁺外流;2)IBMX和DBcAMP的混合物也模拟了福斯可林诱导的增强作用;3)这些试剂增强的A - 23187诱导的K⁺外流不受TEA(5或10毫摩尔)的抑制,已知该浓度可完全阻断Ca²⁺电压依赖性大电导K⁺通道(大K⁺通道)。然后,通过使用fura 2进行显微分光荧光测定,我们表明在新鲜分离的大鼠下颌下腺腺泡细胞中,由非荧光的溴化衍生物4 - 溴 - A - 23187(3微摩尔)诱导的胞质Ca²⁺浓度增加不受福斯可林(30微摩尔)的影响。使用全细胞膜片钳技术,我们证明在用含有cAMP(0.1毫摩尔)的移液管溶液透析的细胞中,A - 23187诱导的对TEA不敏感的K⁺电导显著大于用对照移液管溶液处理的细胞。综上所述,这些结果表明,通过cAMP介导的机制增强Ca²⁺激活的液体分泌伴随着该腺体中对TEA不敏感的、Ca²⁺激活的K⁺电导的增强。

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