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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Wortmannin inhibition of forskolin-stimulated chloride secretion by T84 cells
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Wortmannin inhibition of forskolin-stimulated chloride secretion by T84 cells

机译:渥曼青霉素抑制T84细胞对福司可林刺激的氯的分泌

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The time- and dose-dependent effects of wortmannin on transepithelial electrical resistance (R_(te)) and forskolin-stimulated chloride secretion in T84 monolayer cultures were studied. In both instances, maximal effects developed over 2 h and were stable thereafter. Inhibition of forskolin-stimulated chloride secretion, as measured by the short-circuit current (I_(sc)) technique, had an IC_(50) of 200-500 nM, which is 100-fold higher than for inhibition of phosphatidylinositol 3-kinase (PI3K), but similar to the IC_(50) for inhibition of myosin light chain kinase (MLCK) and mitogen-activated protein kinases (MAPK). Previous work demonstrated that 500 nM wortmannin did not inhibit the cAMP activation of apical membrane chloride channels. We show here that 500 nM wortmannin has no affect on basolateral Na/K/2Cl-cotransporter activity, but inhibits basolateral membrane Na/K-ATPase activity significantly. The MLCK inhibitors ML-7 and KT5926 were without affect on forskolin-stimulated I_(sc). Similarly, the p38- and MEK-specific MAPK inhibitors SB203580 and PD98059 did not reduce forskolin-stimulated I_(sc). In contrast, the non-specific MAPK inhibitor apigenin reduced forskolin-stimulated I_(sc) and basolateral membrane Na/K-ATPase activity similar to wortmannin. In isolated membranes from T84 cells, wortmannin did not inhibit Na/K-ATPase enzymatic activity directly. We conclude that one or more MAPK may regulate the functional expression of basolateral membrane Na/k-ATPase by controlling the abundance of enzyme molecules in the plasma membrane.
机译:研究了渥曼青霉素对T84单层培养物中经皮上皮电阻(R_(te))和福斯高林刺激的氯化物分泌的时间和剂量依赖性影响。在这两种情况下,最大的影响都在2小时内显现出来,此后保持稳定。通过短路电流(I_(sc))技术测得的抑制毛喉素刺激的氯化物分泌的IC_(50)为200-500 nM,比抑制磷脂酰肌醇3激酶高100倍。 (PI3K),但类似于抑制肌球蛋白轻链激酶(MLCK)和促分裂原激活蛋白激酶(MAPK)的IC_(50)。先前的工作表明500 nM渥曼青霉素不能抑制cAMP激活根尖膜氯化物通道。我们在这里显示500 nM渥曼青霉素对基底外侧Na / K / 2Cl-共转运蛋白活性没有影响,但是显着抑制基底外侧膜Na / K-ATPase活性。 MLCK抑制剂ML-7和KT5926对毛喉素刺激的I_(sc)没有影响。类似地,p38和MEK特异性MAPK抑制剂SB203580和PD98059不会减少受福斯高林刺激的I_(sc)。相反,非特异性MAPK抑制剂芹菜素降低了福司可林刺激的I_(sc)和基底外侧膜Na / K-ATPase活性,类似于渥曼青霉素。在从T84细胞分离的膜中,渥曼青霉素没有直接抑制Na / K-ATPase的酶活性。我们得出的结论是,一个或多个MAPK可能通过控制质膜中酶分子的丰度来调节基底外侧膜Na / k-ATPase的功能性表达。

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