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首页> 外文期刊>Cell Communication and Signaling >Tonicity inversely modulates lipocalin-2 (Lcn2/24p3/NGAL) receptor (SLC22A17) and Lcn2 expression via Wnt/β-catenin signaling in renal inner medullary collecting duct cells: implications for cell fate and bacterial infection
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Tonicity inversely modulates lipocalin-2 (Lcn2/24p3/NGAL) receptor (SLC22A17) and Lcn2 expression via Wnt/β-catenin signaling in renal inner medullary collecting duct cells: implications for cell fate and bacterial infection

机译:张力通过Wnt /β-catenin信号传导逆转调节肾内髓质收集管细胞中的lipocalin-2(Lcn2 / 24p3 / NGAL)受体(SLC22A17)和Lcn2表达:对细胞命运和细菌感染的影响

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We have previously evidenced apical expression of the 24p3/NGAL/lipocalin-2 receptor (Lcn2-R; SLC22A17) in inner medullary collecting duct (IMCD) cells, which are present in vivo in a hyperosmotic/-tonic environment that activates canonical Wnt/β-catenin signaling. The localization of Lcn2-R in the inner medulla is intriguing considering local bacterial infections trigger toll-like receptor-4 (TLR-4)-mediated secretion of the bacteriostatic Fe3+-free (apo-)Lcn2. To determine the effects of osmolarity/tonicity changes, Wnt/β-catenin and TLR-4 activation on Lcn2-R and Lcn2 expression and cell viability in rat primary IMCD and mouse (m)IMCD3 cells. Normosmolarity/-tonicity was 300 mosmol/l whereas hyperosmolarity/-tonicity was induced by adding 100 mmol/l NaCl + 100 mmol/l urea (600 mosmol/l, 1-7 days). Lcn2-R and Lcn2 expression were determined by qPCR, immunoblotting, flow cytometry and immunofluorescence microscopy. β-catenin was silenced by RNAi. Cell viability/death was determined with MTT and LDH release assays. TLR-4 was activated by bacterial lipopolysaccharides (LPS). Hyperosmotic/-tonic media upregulated Lcn2-R by ~4-fold and decreased Lcn2 expression/secretion, along with Wnt/β-catenin activation, in IMCD cells. These effects of hyperosmotic/-tonic media on Lcn2-R/Lcn2 expression were reverted by normosmolarity/-tonicity, β-catenin silencing and/or LPS. Exposure of cells with endogenous or stably overexpressing Lcn2-R to apo-Lcn2 or LPS decreased cell viability. Lcn2-R upregulation and Lcn2 downregulation via Wnt/β-catenin may promote adaptive osmotolerant survival of IMCD cells in response to hyperosmolarity/-tonicity whereas Lcn2 upregulation and Lcn2-R downregulation via TLR-4 and/or normosmolarity/-tonicity may protect IMCD cells against bacterial infections and prevent autocrine death induction by Lcn2.
机译:我们先前已经证明了24p3 / NGAL / lipocalin-2受体(Lcn2-R; SLC22A17)在内部髓质收集管(IMCD)细胞中的顶端表达,这些细胞在体内存在于高渗/高渗环境中,可以激活经典的Wnt / β-catenin信号传导。考虑到局部细菌感染会触发Toll样受体4(TLR-4)介导的无抑菌Fe3 +(apo-)Lcn2分泌,Lcn2-R在内髓质中的定位很有趣。为了确定渗透压/张力变化的影响,Wnt /β-catenin和TLR-4激活对大鼠原代IMCD和小鼠(m)IMCD3细胞中Lcn2-R和Lcn2表达以及细胞活力的影响。正摩尔/张力为300 mosmol / l,而高渗/张力通过加入100 mmol / l NaCl + 100 mmol / l尿素(600 mosmol / l,1-7天)诱导。通过qPCR,免疫印迹,流式细胞术和免疫荧光显微镜确定Lcn2-R和Lcn2的表达。 β-catenin被RNAi沉默。用MTT和LDH释放测定法测定细胞活力/死亡。 TLR-4被细菌脂多糖(LPS)激活。高渗/张力介质在IMCD细胞中将Lcn2-R上调约4倍,并降低Lcn2的表达/分泌以及Wnt /β-catenin的活化。高渗/张力介质对Lcn2-R / Lcn2表达的这些影响已通过等摩尔/张力,β-连环蛋白沉默和/或LPS恢复。将具有内源性或稳定表达Lcn2-R的细胞暴露于载脂蛋白Lcn2或LPS会降低细胞活力。通过Wnt /β-catenin的Lcn2-R上调和Lcn2下调可能促进IMCD细胞对高渗/渗透压的适应性渗透压存活,而通过TLR-4和/或等摩尔/张度的Lcn2上调和Lcn2-R下调可以保护IMCD细胞抵抗细菌感染并防止Lcn2诱导自分泌死亡。

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