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首页> 外文期刊>American Journal of Physiology >Action of EGF and PGE2 on basolateral organic anion uptake in rabbit proximal renal tubules and hOAT1 expressed in human kidney epithelial cells.
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Action of EGF and PGE2 on basolateral organic anion uptake in rabbit proximal renal tubules and hOAT1 expressed in human kidney epithelial cells.

机译:EGF和PGE2对兔近端肾小管基底外侧有机阴离子摄取和人肾上皮细胞表达的hOAT1的作用。

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We recently showed that, in a proximal tubule cell line (opossum kidney cells), epithelial growth factor (EGF) stimulates basolateral organic anion transport (OAT) via ERK1/2, arachidonic acid, phospholipase A2, and generation of prostaglandins. PGE2 binds the prostanoid receptor and, thus, activates adenylate cyclase and PKA, which stimulate basolateral organic anion uptake. In the present study, we investigated whether this regulatory cascade is also true 1) for ex vivo conditions in isolated renal proximal (S2) tubules from rabbit and 2) in a human renal epithelial cell line stably expressing human OAT1 (IHKE-hOAT1). EGF activated ERK1/2 in S2 tubules and IHKE-hOAT1, and, in both cases, inhibition of ERK activation (by U-0126) abolished this stimulation. In S2 tubules and IHKE-hOAT1, EGF led to an increase of organic anion uptake, which again was inhibited by U-0126. PGE2 stimulated basolateral organic anion uptake in rabbit S2 tubules and IHKE-hOAT1. EGF- and PGE2-mediated stimulation of organic anion uptake was abolished by inhibition of PKA in rabbit S2 tubules and IHKE-hOAT1, respectively. We conclude that 1) stimulation of basolateral organic anion uptake by EGF or PGE2 is a widespread (if not general) regulatory mechanism, 2) the signal transduction pathway involved seems to be general, 3) stimulation of basolateral organic anion uptake by EGF or PGE2 is also present under ex vivo conditions and, thus, is not a cell culture artifact, 4) activation of OAT1 is sufficient to explain the stimulatory effects of EGF and PGE2 in opossum kidney cells and rabbit S2 segments, and 5) stimulation of basolateral OAT1 by EGF or PGE2 is also important in humans and, thus, may have clinical implications.
机译:我们最近发现,在近端肾小管细胞系(负鼠肾细胞)中,上皮生长因子(EGF)通过ERK1 / 2,花生四烯酸,磷脂酶A2和前列腺素的生成刺激基底外侧有机阴离子转运(OAT)。 PGE2结合类前列腺素受体,从而激活腺苷酸环化酶和PKA,从而刺激基底外侧有机阴离子的摄取。在本研究中,我们研究了这种调节级联是否也正确1)对于来自兔的分离的肾近端(S2)小管中的离体条件,以及2)在稳定表达人OAT1(IHKE-hOAT1)的人肾上皮细胞系中。 EGF激活了S2小管和IHKE-hOAT1中的ERK1 / 2,在这两种情况下,抑制ERK激活(通过U-0126)都消除了这种刺激。在S2小管和IHKE-hOAT1中,EGF导致有机阴离子摄取增加,这又被U-0126抑制。 PGE2刺激了兔S2小管和IHKE-hOAT1中基底外侧有机阴离子的摄取。分别通过抑制兔S2小管和IHKE-hOAT1中的PKA消除了EGF和PGE2介导的有机阴离子摄取刺激。我们得出的结论是:1)EGF或PGE2刺激基底外侧有机阴离子的摄取是一种广泛的(如果不是通用的)调节机制,2)涉及的信号转导途径似乎很普遍,3)EGF或PGE2刺激基底外侧有机阴离子的摄取在离体条件下也存在,因此不是细胞培养物,4)OAT1的激活足以解释EGF和PGE2对负鼠肾细胞和兔S2片段的刺激作用,以及5)刺激基底外侧OAT1 EGF或PGE2的作用在人类中也很重要,因此可能具有临床意义。

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