首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Evidence for a causal link between adaptor protein PDZK1 downregulation and Na+/H+ exchanger NHE3 dysfunction in human and murine colitis
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Evidence for a causal link between adaptor protein PDZK1 downregulation and Na+/H+ exchanger NHE3 dysfunction in human and murine colitis

机译:在人和鼠类结肠炎中,衔接蛋白PDZK1下调与Na + / H +交换蛋白NHE3功能障碍之间存在因果关系的证据

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A dysfunction of the Na+/H+ exchanger isoform 3 (NHE3) significantly contributes to the reduced salt absorptive capacity of the inflamed intestine. We previously reported a strong decrease in the NHERF family member PDZK1 (NHERF3), which binds to NHE3 and regulates its function in a mouse model of colitis. The present study investigates whether a causal relationship exists between the decreased PDZK1 expression and the NHE3 dysfunction in human and murine intestinal inflammation. Biopsies from the colon of patients with ulcerative colitis, murine inflamed ileal and colonic mucosa, NHE3-transfected Caco-2BBe colonic cells with short hairpin RNA (shRNA) knockdown of PDZK1, and Pdzk1-gene-deleted mice were studied. PDZK1 mRNA and protein expression was strongly decreased in inflamed human and murine intestinal tissue as compared to inactive disease or control tissue, whereas that of NHE3 or NHERF1 was not. Inflamed human and murine intestinal tissues displayed correct brush border localization of NHE3 but reduced acid-activated NHE3 transport activity. A similar NHE3 transport defect was observed when PDZK1 protein content was decreased by shRNA knockdown in Caco-2BBe cells or when enterocyte PDZK1 protein content was decreased to similar levels as found in inflamed mucosa by heterozygote breeding of Pdzk1-gene-deleted and WT mice. We conclude that a decrease in PDZK1 expression, whether induced by inflammation, shRNA-mediated knockdown, or heterozygous breeding, is associated with a decreased NHE3 transport rate in human and murine enterocytes. We therefore hypothesize that inflammation-induced loss of PDZK1 expression may contribute to the NHE3 dysfunction observed in the inflamed intestine.
机译:Na + / H +交换异构体3(NHE3)的功能异常会导致发炎的肠盐吸收能力降低。我们先前报道了NHERF家族成员PDZK1(NHERF3)的强烈下降,该蛋白与NHE3结合并在结肠炎的小鼠模型中调节其功能。本研究调查在人类和鼠类肠道炎症中,PDZK1表达降低与NHE3功能障碍之间是否存在因果关系。研究对象是溃疡性结肠炎,小鼠发炎的回肠和结肠黏膜,NHE3转染的带有短发夹RNA(shRNA)PDZK1的Caco-2BBe结肠细胞和Pdzk1基因缺失的小鼠结肠。与非活动性疾病或对照组织相比,发炎的人和鼠肠组织中PDZK1 mRNA和蛋白表达显着降低,而NHE3或NHERF1则没有。发炎的人和鼠肠组织显示NHE3的正确刷状边界定位,但降低了酸激活的NHE3转运活性。在Caco-2BBe细胞中通过shRNA敲低降低PDZK1蛋白含量或在通过缺失Pdzk1基因和WT小鼠的杂合子繁殖使肠粘膜细胞PDZK1蛋白含量降低至发炎的粘膜中发现的水平时,观察到类似的NHE3转运缺陷。我们得出结论,PDZK1表达的降低,无论是通过炎症,shRNA介导的敲低还是杂合育种诱导,都与人和鼠肠上皮细胞中NHE3的运输速率降低有关。因此,我们假设炎症引起的PDZK1表达缺失可能会导致在发炎的肠道中观察到的NHE3功能障碍。

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