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细胞外锌通过锌敏感受体触发结肠细胞中由细胞外信号调节激酶依赖的钠/氢交换激活。

Extracellular zinc triggers ERK-dependent activation of Na+/H+ exchange in colonocytes mediated by the zinc-sensing receptor.

作者信息

Azriel-Tamir Hagit, Sharir Haleli, Schwartz Betty, Hershfinkel Michal

机构信息

Department of Morphology, Zlotowski Center for Neuroscience and the Cancer Research Center, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.

出版信息

J Biol Chem. 2004 Dec 10;279(50):51804-16. doi: 10.1074/jbc.M406581200. Epub 2004 Sep 7.

Abstract

Extracellular zinc promotes cell proliferation and its deficiency leads to impairment of this process, which is particularly important in epithelial cells. We have recently characterized a zinc-sensing receptor (ZnR) linking extracellular zinc to intracellular release of calcium. In the present study, we addressed the role of extracellular zinc, acting via the ZnR, in regulating the MAP kinase pathway and Na+/H+ exchange in colonocytes. We demonstrate that Ca2+ release, mediated by the ZnR, induces phosphorylation of ERK1/2, which is highly metal-specific, mediated by physiological concentrations of extracellular Zn2+ but not by Cd2+, Fe2+, Ni2+, or Mn2+. Desensitization of the ZnR by Zn2+, is followed by approximately 90% inhibition of the Zn2+ -dependent ERK1/2 phosphorylation, indicating that the ZnR is a principal link between extracellular Zn2+ and ERK1/2 activation. Application of both the IP3 pathway and PI 3-kinase antagonists largely inhibited Zn2+ -dependent ERK1/2 phosphorylation. The physiological significance of the Zn2+ -dependent activation of ERK1/2 was addressed by monitoring Na+/H+ exchanger activity in HT29 cells and in native colon epithelium. Preincubation of the cells with zinc was followed by robust activation of Na+/H+ exchange, which was eliminated by cariporide (0.5 microm); indicating that zinc enhances the activity of NHE1. Activation of NHE1 by zinc was totally blocked by the ERK1/2 inhibitor, U0126. Prolonged acidification, in contrast, stimulates NHE1 by a distinct pathway that is not affected by extracellular Zn2+ or inhibitors of the MAP kinase pathway. Desensitization of ZnR activity eliminates the Zn2+ -dependent, but not the prolonged acidification-dependent activation of NHE1, indicating that Zn2+ -dependent activation of H+ extrusion is specifically mediated by the ZnR. Our results support a role for extracellular zinc, acting through the ZnR, in regulating multiple signaling pathways that affect pH homeostasis in colonocytes. Furthermore activation of both, ERK and NHE1, by extracellular zinc may provide the mechanism linking zinc to enhanced cell proliferation.

摘要

细胞外锌促进细胞增殖,其缺乏会导致这一过程受损,这在上皮细胞中尤为重要。我们最近鉴定了一种锌感应受体(ZnR),它将细胞外锌与细胞内钙释放联系起来。在本研究中,我们探讨了通过ZnR起作用的细胞外锌在调节结肠细胞中MAP激酶途径和Na+/H+交换中的作用。我们证明,由ZnR介导的Ca2+释放诱导ERK1/2的磷酸化,这具有高度的金属特异性,由细胞外生理浓度的Zn2+介导,而不是由Cd2+、Fe2+、Ni2+或Mn2+介导。Zn2+使ZnR脱敏后,Zn2+依赖性ERK1/2磷酸化受到约90%的抑制,表明ZnR是细胞外Zn2+与ERK1/2激活之间的主要联系。IP3途径和PI 3激酶拮抗剂的应用在很大程度上抑制了Zn2+依赖性ERK1/2磷酸化。通过监测HT29细胞和天然结肠上皮中的Na+/H+交换体活性,探讨了Zn2+依赖性ERK1/2激活的生理意义。用锌预孵育细胞后,Na+/H+交换被强力激活,而卡立泊来德(0.5微摩尔)可消除这种激活;表明锌增强了NHE1的活性。锌对NHE1的激活被ERK1/2抑制剂U0126完全阻断。相比之下,长时间酸化通过一条不受细胞外Zn2+或MAP激酶途径抑制剂影响的独特途径刺激NHE1。ZnR活性的脱敏消除了Zn2+依赖性但不是长时间酸化依赖性的NHE1激活,表明Zn2+依赖性H+外排激活是由ZnR特异性介导的。我们的结果支持细胞外锌通过ZnR在调节影响结肠细胞pH稳态的多种信号通路中发挥作用。此外,细胞外锌对ERK和NHE1的激活可能提供了将锌与增强细胞增殖联系起来的机制。

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