在胆结石形成过程中,蛋白激酶C-α对胆囊Na+转运的调节变得越来越不正常

Seth C. Narins , Ramugounder Ramakrishnan , Eun H. Park , Paul B. Bolno , David A. Haggerty , Peter R. Smith , William C. Meyers , Mohammad Z. Abedin
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引用次数: 11

摘要

胆囊Na+吸收和胆道Ca2+在胆结石形成过程中均增加,并可能促进胆固醇成核。Na+/H+交换(NHE)是胆囊Na+转运的主要途径。Ca2+依赖的第二信使,包括蛋白激酶C (PKC),抑制基底胆囊Na+运输。已经报道了多种具有物种和组织特异性表达的PKC亚型。在这项研究中,我们试图表征胆囊中Ca2+依赖的PKC亚型,并检查它们在胆结石形成过程中Na+运输中的作用。从草原土拨鼠中取出胆囊,喂食非致石性食物或富含1.2%胆固醇的食物,在不同时期诱导不同阶段的胆结石形成。PKC被磷酸二丁酸激活,我们通过测量单向Na+通量和二甲胺抑制的22Na+摄取来评估胆囊NHE调节。我们使用组蛋白III-S磷酸化来测量胆囊PKC活性,并使用Gö 6976来确定PKC-α的贡献。分别用Northern- blot和Western-blot检测胆囊PKC异构体信使RNA和蛋白的表达。土拨鼠和人类胆囊表达PKC-α、βII和δ亚型。PKC激活通过抑制NHE显著降低胆囊JNams和基线22Na+摄取。在基础条件下,PKC-α介导了大约42%的PKC总活性。PKC-α通过刺激NHE异构体NHE-2和抑制NHE-3调节基底胆囊Na+转运。PKC-α阻断逆转了PKC诱导的JNams和22Na+摄取抑制约45%,但在胆结石形成过程中效果逐渐减弱。PKC-α对总PKC活性的贡献逐渐降低,而PKC-α mRNA和蛋白的表达在胆结石形成过程中显著增加。我们得出结论,PKC-α对胆囊NHE的调节逐渐变得更加功能失调,这可能部分解释了胆石形成过程中观察到的Na+吸收增加。
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Protein kinase C-α regulation of gallbladder Na+ transport becomes progressively more dysfunctional during gallstone formation

Gallbladder Na+ absorption and biliary Ca2+ are both increased during gallstone formation and may promote cholesterol nucleation. Na+/H+exchange (NHE) is a major pathway for gallbladder Na+ transport. Ca2+-dependent second messengers, including protein kinase C (PKC), inhibit basal gallbladder Na+ transport. Multiple PKC isoforms with species- and tissue-specific expression have been reported. In this study we sought to characterize Ca2+-dependent PKC isoforms in gallbladder and to examine their roles in Na+ transport during gallstone formation. Gallbladders were harvested from prairie dogs fed either nonlithogenic chow or 1.2% cholesterol-enriched diet for varying periods to induce various stages of gallstone formation. PKC was activated with the use of phorboldibutyrate, and we assessed gallbladder NHE regulation by measuring unidirectional Na+ flux and dimethylamiloride-inhibitable 22Na+ uptake. We measured gallbladder PKC activity with the use of histone III-S phosphorylation and used Gö 6976 to determine PKC-α contributions. Gallbladder PKC isoform messenger RNA and protein expression were examined with the use of Northern- and Western-blot analysis, respectively. Prairie dog and human gallbladder expresses PKC-α, βII, and δ isoforms. The PKC activation significantly decreased gallbladder JNams and reduced baseline 22Na+ uptake by inhibiting NHE. PKC-α mediated roughly 42% of total PKC activity under basal conditions. PKC-α regulates basal gallbladder Na+ transport by way of stimulation of NHE isoform NHE-2 and inhibition of isoform NHE-3. PKC-α blockade reversed PKC-induced inhibition of JNams and 22Na+ uptake by about 45% in controls but was progressively less effective during gallstone formation. PKC-α contribution to total PKC activity is progressively reduced, whereas expression of PKC-α mRNA, and protein increases significantly during gallstone formation. We conclude that PKC-α regulation of gallbladder NHE becomes progressively more dysfunctional and may in part account for the increased Na+ absorption observed during gallstone formation.

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