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JNK mitogen-activated protein kinase limits calcium-dependent chloride secretion across colonic epithelial cells.

机译:JNK有丝分裂原激活的蛋白激酶限制了结肠上皮细胞中钙依赖性氯的分泌。

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摘要

Neuroimmune agonists induce epithelial Cl(-) secretion through elevations in intracellular Ca2+ or cAMP. Previously, we demonstrated that epidermal growth factor receptor (EGFR) transactivation and subsequent ERK MAPK activation limits secretory responses to Ca2+-dependent, but not cAMP-dependent, agonists. Although JNK MAPKs are also expressed in epithelial cells, their role in regulating transport function is unknown. Here, we investigated the potential role for JNK in regulating Cl(-) secretion in T(84) colonic epithelial cells. Western blot analysis revealed that a prototypical Ca2+-dependent secretagogue, carbachol (CCh; 100 microM), induced phosphorylation of both the 46-kDa and 54-kDa isoforms of JNK. This effect was mimicked by thapsigargin (TG), which specifically elevates intracellular Ca2+, but not by forskolin (FSK; 10 microM), which elevates cAMP. CCh-induced JNK phosphorylation was attenuated by the EGFR inhibitor, tyrphostin-AG1478 (1 microM). Pretreatment of voltage-clamped T(84) cells with SP600125 (2 microM), a specific JNK inhibitor, potentiated secretory responses to both CCh and TG but not to FSK. The effects of SP600125 on CCh-induced secretion were not additive with those of the ERK inhibitor, PD98059. Finally, in apically permeabilized T(84) cell monolayers, SP600125 potentiated CCh-induced K+ conductances but not Na+/K+ATPase activity. These data demonstrate a novel role for JNK MAPK in regulating Ca2+ but not cAMP-dependent epithelial Cl(-) secretion. JNK activation is mediated by EGFR transactivation and exerts its antisecretory effects through inhibition of basolateral K+ channels. These data further our understanding of mechanisms regulating epithelial secretion and underscore the potential for exploitation of MAPK-dependent signaling in treatment of intestinal transport disorders.
机译:神经免疫激动剂通过细胞内Ca2 +或cAMP升高诱导上皮Cl(-)分泌。以前,我们证明了表皮生长因子受体(EGFR)反式激活和随后的ERK MAPK激活限制了对Ca2 +依赖性而非cAMP依赖性激动剂的分泌反应。尽管JNK MAPKs也表达于上皮细胞中,但其在调节转运功能中的作用尚不清楚。在这里,我们调查了JNK在调节T(84)结肠上皮细胞Cl(-)分泌中的潜在作用。 Western印迹分析表明,一个典型的Ca2 +依赖性促分泌剂碳酰胆碱(CCh; 100 microM)诱导JNK的46 kDa和54 kDa亚型的磷酸化。毒胡萝卜素(TG)可以模仿这种效果,TG可以特异性地提高细胞内Ca2 +的水平,而福斯高林(FSK; 10 microM)则不能,后者可以提高cAMP的水平。 CCh诱导的JNK磷酸化被EGFR抑制剂tyrphostin-AG1478(1 microM)减弱。用SP600125(2 microM)(一种特定的JNK抑制剂)对电压钳位的T(84)细胞进行预处理,可增强对CCh和TG的分泌反应,但对FSK的分泌反应却没有。 SP600125对CCh诱导的分泌的影响与ERK抑制剂PD98059无关。最后,在顶端通透的T(84)细胞单层中,SP600125增强了CCh诱导的K +电导,但不增强Na + / K + ATPase活性。这些数据表明JNK MAPK在调节Ca2 +而不是cAMP依赖性上皮Cl(-)分泌中的新型作用。 JNK激活是由EGFR反式激活介导的,并通过抑制基底外侧K +通道发挥其抗分泌作用。这些数据进一步了解了调节上皮分泌的机制,并强调了利用MAPK依赖性信号传导治疗肠道运输障碍的潜力。

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