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促肾上腺皮质激素和环磷酸腺苷通过一种不依赖A激酶且需要ATP水解的机制抑制肾上腺皮质细胞中的非失活钾电流。

Adrenocorticotropic hormone and cAMP inhibit noninactivating K+ current in adrenocortical cells by an A-kinase-independent mechanism requiring ATP hydrolysis.

作者信息

Enyeart J J, Mlinar B, Enyeart J A

机构信息

Department of Pharmacology, Ohio State University, College of Medicine, Columbus 43210-1239, USA.

出版信息

J Gen Physiol. 1996 Oct;108(4):251-64. doi: 10.1085/jgp.108.4.251.

Abstract

Bovine adrenal zona fasciculata (AZF) cells express a noninactivating K+ current (IAC) that is inhibited by adrenocorticotropic hormone (ACTH) at picomolar concentrations. Inhibition of IAC may be a critical step in depolarization-dependent Ca2+ entry leading to cortisol secretion. In whole-cell patch clamp recordings from AZF cells, we have characterized properties of IAC and the signalling pathway by which ACTH inhibits this current. IAC was identified as a voltage-gated, outwardly rectifying, K(+)-selective current whose inhibition by ACTH required activation of a pertussis toxin-insensitive GTP binding protein. IAC was selectively inhibited by the cAMP analogue 8-(4-chlorophenylthio)-adenosine 3':5'-cyclic monophosphate (8-pcpt-cAMP) with an IC50 of 160 microM. The adenylate cyclase activator forskolin (2.5 microM) also reduced IAC by 92 +/- 4.7%. Inhibition of IAC by ACTH, 8-pcpt-cAMP and forskolin was not prevented by the cAMP-dependent protein kinase inhibitors H-89 (5 microM), cAMP-dependent protein kinase inhibitor peptide (PKI[5-24]) (2 microM), (Rp)-cAMPS (500 microM), or by the nonspecific protein kinase inhibitor staurosporine (100 nM) applied externally or intracellularly through the patch pipette. At the same concentrations, these kinase inhibitors abolished 8-pcpt-cAMP-stimulated A-kinase activity in AZF cell extracts. In intact AZF cells, 8-pcpt-cAMP activated A-kinase with an EC50 of 77 nM, a concentration 2,000-fold lower than that inhibiting IAC half maximally. The active catalytic subunit of A-kinase applied intracellularly through the recording pipette failed to alter functional expression of IAC. The inhibition of IAC by ACTH and 8-pcpt-cAMP was eliminated by substituting the nonhydrolyzable ATP analogue AMP-PNP for ATP in the pipette solution. Penfluridol, an antagonist of T-type Ca2+ channels inhibited 8-pcpt-cAMP-induced cortisol secretion with an IC50 of 0.33 microM, a concentration that effectively blocks Ca2+ channel in these cells. These results demonstrate that IAC is a K(+)-selective current whose gating is controlled by an unusual combination of metabolic factors and membrane voltage. IAC may be the first example of an ionic current that is inhibited by cAMP through an A-kinase-independent mechanism. The A-kinase-independent inhibition of IAC by ACTH and cAMP through a mechanism requiring ATP hydrolysis appears to be a unique form of channel modulation. These findings suggest a model for cortisol secretion wherein cAMP combines with two separate effectors to activate parallel steroidogenic signalling pathways. These include the traditional A-kinase-dependent signalling cascade and a novel pathway wherein cAMP binding to IAC K+ channels leads to membrane depolarization and Ca2+ entry. The simultaneous activation of A-kinase- and Ca(2+)-dependent pathways produces the full steroidogenic response.

摘要

牛肾上腺束状带(AZF)细胞表达一种非失活钾电流(IAC),该电流在皮摩尔浓度下受到促肾上腺皮质激素(ACTH)的抑制。IAC的抑制可能是导致皮质醇分泌的去极化依赖性Ca2+内流的关键步骤。在来自AZF细胞的全细胞膜片钳记录中,我们已经确定了IAC的特性以及ACTH抑制该电流的信号通路。IAC被鉴定为一种电压门控、外向整流、K(+)选择性电流,其被ACTH抑制需要激活一种对百日咳毒素不敏感的GTP结合蛋白。IAC被环磷酸腺苷(cAMP)类似物8-(4-氯苯硫基)-腺苷3':5'-环一磷酸(8-pcpt-cAMP)选择性抑制,IC50为160微摩尔。腺苷酸环化酶激活剂福斯可林(2.5微摩尔)也使IAC降低了92±4.7%。ACTH、8-pcpt-cAMP和福斯可林对IAC的抑制作用不受cAMP依赖性蛋白激酶抑制剂H-89(5微摩尔)、cAMP依赖性蛋白激酶抑制剂肽(PKI[5-24])(2微摩尔)、(Rp)-cAMPS(500微摩尔)的影响,也不受通过膜片吸管在细胞外或细胞内施加的非特异性蛋白激酶抑制剂星形孢菌素(100纳摩尔)的影响。在相同浓度下,这些激酶抑制剂消除了8-pcpt-cAMP刺激的AZF细胞提取物中的A激酶活性。在完整的AZF细胞中,8-pcpt-cAMP激活A激酶的EC50为77纳摩尔,该浓度比最大程度抑制IAC的浓度低2000倍。通过记录吸管在细胞内施加的A激酶活性催化亚基未能改变IAC的功能表达。通过在吸管溶液中用不可水解的ATP类似物AMP-PNP替代ATP,消除了ACTH和8-pcpt-cAMP对IAC的抑制作用。戊氟利多,一种T型Ca2+通道拮抗剂,抑制8-pcpt-cAMP诱导的皮质醇分泌,IC50为0.33微摩尔,该浓度有效地阻断了这些细胞中的Ca2+通道。这些结果表明,IAC是一种K(+)选择性电流,其门控由代谢因子和膜电压的异常组合控制。IAC可能是第一个通过不依赖A激酶的机制被cAMP抑制的离子电流的例子。ACTH和cAMP通过一种需要ATP水解的机制对IAC进行不依赖A激酶的抑制似乎是一种独特的通道调节形式。这些发现提出了一种皮质醇分泌模型,其中cAMP与两个独立的效应器结合以激活平行的类固醇生成信号通路。这些包括传统的A激酶依赖性信号级联反应和一条新的途径,其中cAMP与IAC K+通道结合导致膜去极化和Ca2+内流。A激酶依赖性和Ca(2+)依赖性途径的同时激活产生了完整的类固醇生成反应。

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