Cinar Ayhan, Chen Mingmin, Riederer Brigitte, Bachmann Oliver, Wiemann Martin, Manns Michael, Kocher Olivier, Seidler Ursula
Hannover Medical School, Department of Gastroenterology and Hepatology, Carl-Neuberg-Str. 1, 30625 Hannover, Germany.
J Physiol. 2007 Jun 15;581(Pt 3):1235-46. doi: 10.1113/jphysiol.2007.131722. Epub 2007 Mar 29.
The PDZ-binding protein PDZK1 (NHERF3/CAP70/PDZ-dc-1) in vitro binds to NHE3, but its role in the regulation of NHE3 activity in native enterocytes is unknown. This study was undertaken to understand the physiological role of PDZK1 in regulating NHE3 activity in native murine colonic enterocytes. NHE3 transport rates were assessed fluorometrically in BCECF-loaded colonic crypts in the NHE3-expressing cryptal openings by measuring acid-activated, Na+-dependent, Hoe 642-insensitive proton efflux rates. NHE3 mRNA expression levels and NHE3 total enterocyte and brush border membrane (BBM) protein abundance were determined by quantitative PCR and Western analysis and immunohistochemistry. In pdzk1-/- colonic surface cells, acid-activated NHE3 transport rates were strongly reduced, and the inhibitory effect of forskolin and ionomcyin was virtually abolished. Hyperosmolarity, on the other hand, still had an inhibitory effect. In addition, the NHE3-selective inhibitor S1611 inhibited acid-activated NHE3 activity in pdzk1-/- and +/+mice, suggesting that functional NHE3 is present in pdzk1-deficient colonocytes. NHE1 and NHE2 activity was not altered in pdzk1-/- colonic crypts. Immunohistochemistry revealed apical NHE3 staining in pdzk1-/- and +/+proximal colon, and Western blot analysis revealed no difference in NHE3 abundance in colonic enterocyte homogenate as well as brush border membrane. Lack of the PDZ-adaptor protein PDZK1 in murine proximal colonic enterocytes does not influence NHE3 abundance or targeting to the apical membrane, but abolishes NHE3 regulation by cAMPergic and Ca2+ -dependent pathways. It leaves NHE3 inhibition by hyperosmolarity intact, suggesting an important and selective role for PDZK1 in the agonist-mediated regulation of intestinal NHE3 activity.
PDZ结合蛋白PDZK1(NHERF3/CAP70/PDZ-dc-1)在体外可与NHE3结合,但其在天然肠上皮细胞中对NHE3活性的调节作用尚不清楚。本研究旨在了解PDZK1在调节天然小鼠结肠上皮细胞中NHE3活性的生理作用。通过测量酸激活的、Na⁺依赖性的、Hoe 642不敏感的质子外流速率,用荧光法评估了表达NHE3的隐窝开口处BCECF负载的结肠隐窝中的NHE3转运速率。通过定量PCR、蛋白质印迹分析和免疫组织化学确定了NHE3 mRNA表达水平以及NHE3在总肠上皮细胞和刷状缘膜(BBM)中的蛋白质丰度。在pdzk1⁻/⁻结肠表面细胞中,酸激活的NHE3转运速率大幅降低,并且福斯可林和离子霉素的抑制作用几乎完全消失。另一方面,高渗仍然具有抑制作用。此外,NHE3选择性抑制剂S1611在pdzk1⁻/⁻和+/+小鼠中均抑制酸激活的NHE3活性,这表明在pdzk1缺陷的结肠细胞中存在功能性NHE3。在pdzk1⁻/⁻结肠隐窝中,NHE1和NHE2活性未改变。免疫组织化学显示pdzk1⁻/⁻和+/+近端结肠中NHE3呈顶端染色,蛋白质印迹分析显示结肠肠上皮细胞匀浆以及刷状缘膜中NHE3丰度无差异。小鼠近端结肠肠上皮细胞中缺乏PDZ衔接蛋白PDZK1不会影响NHE3的丰度或向顶端膜的靶向,但会消除cAMP能和Ca²⁺依赖性途径对NHE3的调节。它使高渗对NHE3的抑制作用保持完整,这表明PDZK1在激动剂介导的肠道NHE3活性调节中具有重要的选择性作用。