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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Bidirectional signalling between EphA2 and ephrinA1 increases tubular cell attachment, laminin secretion and modulates erythropoietin expression after renal hypoxic injury
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Bidirectional signalling between EphA2 and ephrinA1 increases tubular cell attachment, laminin secretion and modulates erythropoietin expression after renal hypoxic injury

机译:EphA2和ephrinA1之间的双向信号传导增加肾缺氧损伤后肾小管细胞的附着,层粘连蛋白分泌并调节促红细胞生成素的表达

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Acute kidney injury (AKI) is common in hospitalized patients and has a poor prognosis, the severity of AKI being linked to progression to chronic kidney disease. This stresses the need to search for protective mechanisms during the acute phase. We investigated kidney repair after hypoxic injury using a rat model of renal artery branch ligation, which led to an oxygen gradient vertical to the corticomedullary axis. Three distinct zones were observed: tubular necrosis, infarction border zone and preserved normal tissue. EphA2 is a receptor tyrosine kinase with pivotal roles in cell architecture, migration and survival, upon juxtacrine contact with its membrane-bound ligand EphrinA1. Following hypoxia, EphA2 was up-regulated in cortical and medullary tubular cells, while EphrinA1 was up-regulated in interstitial cells adjacent to peritubular capillaries. Moreover, erythropoietin (EPO) messenger RNA (mRNA) was strongly expressed in the border zone of infarcted kidney within the first 6 h. To gain more insight into the biological impact of EphA2 and EphrinA1 up-regulation, we activated the signalling pathways in vitro using recombinant EphrinA1/Fc or EphA2/Fc proteins. Stimulation of EphA2 forward signalling in the proximal tubular cell line HK2 increased cell attachment and laminin secretion at the baso-lateral side. Conversely, activation of reverse signalling through EphrinA1 expressed by Hep3B cells promoted EPO production at both the transcriptional and protein level. Strikingly, in co-culture experiments, juxtacrine contact between EphA2 expressing MDCK and EphrinA1 expressing Hep3B was sufficient to induce a significant up-regulation of EPO mRNA production in the latter cells, even in the absence of hypoxic conditions. The synergistic effects of EphA2 and hypoxia led to a 15-20-fold increase of EPO expression. Collectively, our results suggest an important role of EphA2/EphrinA1 signalling in kidney repair after hypoxic injury through stimulation of (i) tubular cell attachment, (ii) secretion of basal membrane proteins and (iii) EPO production. These findings could thus pave the way to new therapeutic approaches.
机译:急性肾损伤(AKI)在住院患者中很常见,预后较差,AKI的严重程度与慢性肾脏病的进展有关。这强调了在急性期寻找保护机制的需要。我们使用大鼠肾动脉分支结扎模型研究了缺氧损伤后的肾脏修复,这导致垂直于皮质髓质轴的氧梯度。观察到三个不同的区域:肾小管坏死,梗死边界区域和保留的正常组织。 EphA2是一种酪氨酸激酶受体,在水合膜上结合其配体EphrinA1时,在细胞结构,迁移和存活中起关键作用。缺氧后,皮质和髓质肾小管细胞中的EphA2上调,而肾小管周围毛细血管中的间质细胞中的EphrinA1上调。此外,促红细胞生成素(EPO)信使RNA(mRNA)在头6小时内在梗死肾脏的边界区域强烈表达。为了更深入地了解EphA2和EphrinA1上调的生物学影响,我们在体外使用重组EphrinA1 / Fc或EphA2 / Fc蛋白激活了信号通路。在近端肾小管细胞株HK2中刺激EphA2正向信号转导会增加基底外侧的细胞黏附和层粘连蛋白分泌。相反,Hep3B细胞通过EphrinA1激活的反向信号转导促进了EPO在转录和蛋白质水平上的产生。令人惊讶的是,在共培养实验中,即使在无缺氧条件下,表达EphA2的MDCK和表达EphrinA1的Hep3B之间的邻苯丙氨酸接触也足以诱导后者细胞中EPO mRNA生产的显着上调。 EphA2和缺氧的协同作用导致EPO表达增加15-20倍。总的来说,我们的结果表明,EphA2 / EphrinA1信号传导在低氧损伤后通过刺激(i)肾小管细胞附着,(ii)基底膜蛋白分泌和(iii)EPO产生而在肾脏修复中起重要作用。这些发现因此可以为新的治疗方法铺平道路。

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