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蛋白激酶Cα和ε亚型对胃酸分泌的不同作用。

Different actions of protein kinase C isoforms alpha and epsilon on gastric acid secretion.

作者信息

Fährmann Michael, Kaufhold Marc, Rieg Timo, Seidler Ursula

机构信息

Institut für Zoophysiologie der Westfälischen Wilhelms-Universität Münster, Hindenburgplatz 55, D-48143 Münster, Germany.

出版信息

Br J Pharmacol. 2002 Jul;136(6):938-46. doi: 10.1038/sj.bjp.0704790.

Abstract
  1. The phorbol ester TPA, an activator of protein kinase C (PKC), inhibits cholinergic stimulation of gastric acid secretion but increases basal H(+) secretion. 2. Since these contradictory findings suggest the action of different PKC isozymes we analysed the role of calcium-dependent PKC-alpha, and calcium-independent PKC-epsilon in gastric acid secretion. 3. Inhibition of PKC-alpha by the indolocarbazole Gö 6976 revealed that about 28% of carbachol-induced acid secretion was inhibited by PKC-alpha. In the presence of Gö 6976 approximately 64% of the carbachol-induced signal transduction is mediated by Ca(2+)/calmodulin-dependent protein kinase II (CaMKII), and 14% is conveyed by PKC-epsilon as deduced from the inhibition with the bisindolylmaleimide Ro 31-8220. 4. Inhibition of carbachol-induced acid secretion by TPA was accompanied by a decrease in CaMKII activity. 5. The stimulation of basal acid secretion by TPA was biphasic with a peak at a very low concentration (10 pM), resulting in an activation of the calcium-sensor CaMKII. The activation was determined with a phosphospecific polyclonal antibody against active CaMKII. The TPA-induced increase of H(+) secretion was sensitive to the cell-permeable Ca(2+)-chelator BAPTA/AM, Ro 31-8220, and the CaMKII-inhibitor KN-62, but not to Gö 6976. 6. Since TPA induced the translocation of PKC-epsilon but not of PKC-alpha in resting parietal cells, PKC-epsilon seems to be at least responsible for an initial elevation of free intracellular calcium to initiate TPA-induced acid secretion. 7. Our data indicate the different roles of two PKC isoforms: PKC-epsilon activation appears to facilitate cholinergic stimulation of H(+)-secretion likely by increasing intracellular calcium. In contrast, PKC-alpha activation attenuates acid secretion accompanied by a down-regulation of CaMKII activity.
摘要
  1. 佛波酯TPA是蛋白激酶C(PKC)的激活剂,它能抑制胆碱能对胃酸分泌的刺激,但会增加基础H⁺分泌。2. 由于这些相互矛盾的发现提示了不同PKC同工酶的作用,我们分析了钙依赖性PKC-α和钙非依赖性PKC-ε在胃酸分泌中的作用。3. 吲哚咔唑Gö 6976对PKC-α的抑制作用表明,约28%的卡巴胆碱诱导的酸分泌被PKC-α抑制。在存在Gö 6976的情况下,约64%的卡巴胆碱诱导的信号转导由Ca²⁺/钙调蛋白依赖性蛋白激酶II(CaMKII)介导,根据双吲哚马来酰亚胺Ro 31-8220的抑制作用推断,14%由PKC-ε介导。4. TPA对卡巴胆碱诱导的酸分泌的抑制伴随着CaMKII活性的降低。5. TPA对基础酸分泌的刺激是双相的,在非常低的浓度(10 pM)时有一个峰值,导致钙传感器CaMKII的激活。这种激活是用针对活性CaMKII的磷酸特异性多克隆抗体测定的。TPA诱导的H⁺分泌增加对细胞可渗透的Ca²⁺螯合剂BAPTA/AM、Ro 31-8220和CaMKII抑制剂KN-62敏感,但对Gö 6976不敏感。6. 由于TPA在静息壁细胞中诱导PKC-ε的转位而不是PKC-α的转位,PKC-ε似乎至少负责细胞内游离钙的初始升高,以启动TPA诱导的酸分泌。7. 我们的数据表明两种PKC同工型的不同作用:PKC-ε的激活似乎通过增加细胞内钙来促进胆碱能对H⁺分泌的刺激。相反,PKC-α的激活减弱酸分泌并伴随着CaMKII活性的下调。

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