首页> 外文期刊>Journal of the American Society of Nephrology: JASN >Cultured Podocytes Establish a Size-Selective Barrier Regulated by Specific Signaling Pathways and Demonstrate Synchronized Barrier Assembly in a Calcium Switch Model of Junction Formation
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Cultured Podocytes Establish a Size-Selective Barrier Regulated by Specific Signaling Pathways and Demonstrate Synchronized Barrier Assembly in a Calcium Switch Model of Junction Formation

机译:培养的足细胞建立由特定信号通路调节的大小选择障碍,并在结形成的钙转换模型中证明同步障碍组装。

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Podocytes form unique cella€“cell junctions (slit diaphragms) that are central to glomerular selectivity, although regulation and mechanisms of slit diaphragm assembly are poorly understood. With the use of cultured podocytes, a paracellular permeability flux assay was established to characterize properties of the size-selective barrier. Paracellular flux of differentiated podocytes was measured using anionic fluorescent dextrans of 3, 10, 40, and 70 kD. Podocytes form a highly selective barrier with a 160-fold difference in flux from the 3-kD dextran (11 pmol/min) to the 70-kD dextran (0.06 pmol/min). Barrier development was dependent on podocyte differentiation and not affected by dextran charge. Puromycin, a known podocyte toxin, increased flux 250% in a dose-dependent manner without affecting cell viability. Screening with modulators of specific signaling pathways identified reversible increases in flux with Src tyrosine and Rho kinase inhibition. The calcium switch model of epithelial junction assembly was modified to determine whether podocytes regulate barrier assembly. When cultured in low calcium for 90 min, flux increased by 300% and consistently returned to baseline 24 to 48 h after switching to normal calcium. Similar to classical epithelial junctions, barrier recovery occurred in the presence of cyclohexamide, an inhibitor of protein synthesis. During the calcium switch, there were reversible changes in localization and detergent solubility of the slit diaphragm protein ZO-1 and ?±-actinin-4, whereas nephrin and podocin solubility were unchanged. Taken together, these findings demonstrate that cultured podocytes develop a selective size barrier that is regulated by specific signaling pathways, and similar to classical epithelial junctions, podocytes demonstrate synchronized assembly of the barrier.
机译:足细胞形成独特的细胞连接(裂膜),这是肾小球选择性的关键,尽管对裂膜组装的调控和机理了解甚少。利用培养的足细胞,建立了细胞旁通量通量测定法,以表征尺寸选择屏障的性质。使用3、10、40和70 kD的阴离子荧光葡聚糖测量分化的足细胞的细胞旁通量。足细胞形成高度选择性的屏障,从3-kD葡聚糖(11 pmol / min)到70-kD葡聚糖(0.06 pmol / min)的通量相差160倍。屏障的形成取决于足细胞的分化,不受葡聚糖电荷的影响。嘌呤霉素是一种已知的足细胞毒素,以剂量依赖性方式增加了250%的通量,而不会影响细胞活力。用特定信号通路的调节剂进行筛选,可确定通过Src酪氨酸和Rho激酶抑制可逆地增加通量。修改上皮连接组件的钙转换模型,以确定足细胞是否调节屏障组件。在低钙中培养90分钟后,通量增加了300%,并在转换为正常钙后24至48小时始终返回基线。与经典的上皮连接类似,屏障恢复在存在环己酰胺(一种蛋白质合成抑制剂)的情况下发生。在钙转换过程中,缝隙隔膜蛋白ZO-1和α±-actinin-4的定位和去污剂溶解度发生可逆变化,而肾素和podocin溶解度未改变。综上所述,这些发现表明,培养的足细胞形成了选择性大小的屏障,该屏障受特定的信号传导途径调节,并且类似于经典的上皮连接,足细胞证明了屏障的同步组装。

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