首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >Lysophosphatidic acid stimulation of NHE3 exocytosis in polarized epithelial cells occurs with release from NHERF2 via ERK-PLC-PKCδ signaling
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Lysophosphatidic acid stimulation of NHE3 exocytosis in polarized epithelial cells occurs with release from NHERF2 via ERK-PLC-PKCδ signaling

机译:极化上皮细胞中NHE3胞吐作用的溶血磷脂酸刺激通过ERK-PLC-PKCδ信号从NHERF2释放

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摘要

The Na+/H+ exchanger 3 (NHE3) is a brush border (BB) Na+/H+ antiporter that accounts for the majority of physiologic small intestinal and renal Na+ absorption. It is regulated physiologically and in disease via changes in endocytosis/exocytosis. Paradoxically, NHE3 is fixed to the microvillar (MV) actin cytoskeleton and has little basal mobility. This fixation requires NHE3 binding to the multi-PDZ domain scaffold proteins Na+/H+ exchanger regulatory factor (NHERF)1 and NHERF2 and to ezrin. Coordinated release of NHE3 from the MV cytoskeleton has been demonstrated during both stimulation and inhibition of NHE3. However, the signaling molecules involved in coordinating NHE3 trafficking and cytoskeletal association have not been identified. This question was addressed by studying lysophosphatidic acid (LPA) stimulation of NHE3 in polarized renal proximal tubule opossum kidney (OK) cells that occurs via apical LPA5 receptors and is NHERF2 dependent and mediated by epidermal growth factor receptor (EGFR), Rho/Rho-associated kinase (ROCK), and ERK. NHE3 activity was determined by BCECF/fluorometry and NHE3 microvillar mobility by FRAP/confocal microscopy using NHE3-EGFP. Apical LPA (3 μM)/LPA5R stimulated NHE3 activity, increased NHE3 mobility, and decreased the NHE3/NHERF2 association. The LPA stimulation of NHE3 was also PKCδ dependent. PKCδ was necessary for LPA stimulation of NHE3 mobility and NHE3/NHERF2 association. Moreover, the LPA-induced translocation to the membrane of PKCδ was both ERK and phospholipase C dependent with ERK acting upstream of PLC. We conclude that LPA stimulation of NHE3 exocytosis includes a signaling pathway that regulates fixation of NHE3 to the MV cytoskeleton. This involves a signaling module consisting of ERK-PLC-PKCδ, which dynamically and reversibly releases NHE3 from NHERF2 to contribute to the changes in NHE3 MV mobility.
机译:Na + / H + 交换器3(NHE3)是笔刷边框(BB)Na + / H + 反向转运蛋白,占生理性小肠和肾脏Na + 吸收的大部分。它通过内吞/胞吐作用的变化在生理上和疾病上受到调节。矛盾的是,NHE3固定在微绒毛(MV)肌动蛋白细胞骨架上,几乎没有基础活动性。此固定需要NHE3绑定到多PDZ域支架蛋白Na + / H + 交换调节因子(NHERF)1和NHERF2以及ezrin。 NHE3从MV细胞骨架中的协同释放已在NHE3的刺激和抑制过程中得到证实。但是,尚未确定参与协调NHE3转运和细胞骨架结合的信号分子。通过研究溶血磷脂酸(LPA)对极化的肾近端小管负鼠肾(OK)细胞中NHE3的刺激来解决此问题,该细胞通过顶端LPA5受体发生并且是NHERF2依赖性的并由表皮生长因子受体(EGFR),Rho / Rho-介导相关激酶(ROCK)和ERK。通过BCECF /荧光法测定NHE3活性,并通过使用NHE3-EGFP的FRAP / Conconal显微镜术测定NHE3微绒毛的活动性。顶端LPA(3μM)/ LPA5R刺激NHE3活性,增加NHE3迁移性,并降低NHE3 / NHERF2关联。 NHE3的LPA刺激也是PKCδ依赖性的。 LPA刺激NHE3迁移和NHE3 / NHERF2缔合需要PKCδ。此外,LPA诱导的PKCδ膜易位是ERK和磷脂酶C依赖性的,ERK在PLC的上游起作用。我们得出结论,LPA刺激NHE3胞吐作用包括调节NHE3对MV细胞骨架固定的信号传导途径。这涉及一个由ERK-PLC-PKCδ组成的信号模块,该模块动态可逆地从NHERF2释放NHE3,以促进NHE3 MV迁移率的变化。

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