Huaqing Zheng, My N Helms, Changjiang Zou, Elizabeth Zimmerman, Ye Feng, Tianxin Yang
{"title":"培养的集管细胞可溶性肾素受体的上皮钠通道激活活性需要furin介导的修饰。","authors":"Huaqing Zheng, My N Helms, Changjiang Zou, Elizabeth Zimmerman, Ye Feng, Tianxin Yang","doi":"10.1152/ajprenal.00087.2024","DOIUrl":null,"url":null,"abstract":"<p><p>(Pro)renin receptor (PRR) contains overlapping cleavage site for site-1 protease (S1P) and furin for generation of soluble PRR (sPRR). Although S1P-mediated cleavage mediates the release of sPRR, the functional implication of furin-mediated cleavage is unclear. Here we tested whether furin-mediated cleavage was required for the activity of sPRR in activating ENaC in cultured M-1 cells. M-1 cells were transfected with pcDNA3.4 containing full-length PRR with (Furin-site Mut) or without (WT) mutagenesis of the furin cleavage site. As compared with empty vector control (EM), Furin-site Mut showed the attenuation effect on WT-induced α-ENaC expression and amiloride-sensitive short circuit current. In a separate experiment, M-1 cells were transfected with pcDNA3.4 containing cDNA for sPRR with S1P cleavage (AA 1-282) (sPRR-S1P) or with furin cleavage (AA 1-279) (sPRR-furin), indicating overexpression of the two types of sPRR induced a significant and comparable increase in the release of sPRR, but only sPRR-furin showed an increase of ENaC activity. Single channel analysis of ENaC activity in Xenopus A6-2F3 cells confirms sPRR-furin activation of ENaC open probability. Lastly, HEK-293 cells were pretreated with furin inhibitor α1-antitrypsin Portland (α1-PDX) followed by transfection with EM, WT PRR. sPRR in the conditioned medium was enriched by using protein centrifugal filter devices and applied to M-1 cells followed by measurement of ENaC activity, demonstrating that pretreatment with α1-PDX attenuated ENaC-acting activity induced by overexpression of WT PRR. In summary, we conclude that furin-mediated modification is required for the activity of sPRR to increase ENaC-mediated Na<sup>+</sup> transport in the CD cells.</p>","PeriodicalId":93867,"journal":{"name":"American journal of physiology. Renal physiology","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2025-01-27","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Furin-Mediated Modification Is Required for Epithelial Sodium Channel-Activating Activity of Soluble (Pro)Renin Receptor in Cultured Collecting Duct Cells.\",\"authors\":\"Huaqing Zheng, My N Helms, Changjiang Zou, Elizabeth Zimmerman, Ye Feng, Tianxin Yang\",\"doi\":\"10.1152/ajprenal.00087.2024\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>(Pro)renin receptor (PRR) contains overlapping cleavage site for site-1 protease (S1P) and furin for generation of soluble PRR (sPRR). Although S1P-mediated cleavage mediates the release of sPRR, the functional implication of furin-mediated cleavage is unclear. Here we tested whether furin-mediated cleavage was required for the activity of sPRR in activating ENaC in cultured M-1 cells. M-1 cells were transfected with pcDNA3.4 containing full-length PRR with (Furin-site Mut) or without (WT) mutagenesis of the furin cleavage site. As compared with empty vector control (EM), Furin-site Mut showed the attenuation effect on WT-induced α-ENaC expression and amiloride-sensitive short circuit current. In a separate experiment, M-1 cells were transfected with pcDNA3.4 containing cDNA for sPRR with S1P cleavage (AA 1-282) (sPRR-S1P) or with furin cleavage (AA 1-279) (sPRR-furin), indicating overexpression of the two types of sPRR induced a significant and comparable increase in the release of sPRR, but only sPRR-furin showed an increase of ENaC activity. 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引用次数: 0
摘要
(Pro)肾素受体(PRR)含有位点1蛋白酶(S1P)的重叠切割位点和生成可溶性肾素受体(sPRR)的复蛋白。尽管s1p介导的裂解介导了sPRR的释放,但furin介导的裂解的功能含义尚不清楚。在这里,我们测试了在培养的M-1细胞中,sPRR激活ENaC的活性是否需要furin介导的裂解。用含有全长PRR的pcDNA3.4转染M-1细胞,对furin切割位点进行(furin site Mut)或不进行(WT)突变。与空载体对照(EM)相比,furin位点Mut对wt诱导的α-ENaC表达和amiloide敏感的短路电流有衰减作用。在另一个实验中,我们转染了含有S1P切割sPRR cDNA (AA 1-282) (sPRR-S1P)或furin切割(AA 1-279) (sPRR-furin)的pcDNA3.4细胞,结果表明,过表达这两种类型的sPRR诱导sPRR的释放显著增加,但只有sPRR-furin显示ENaC活性增加。单通道分析非洲爪蟾A6-2F3细胞ENaC活性,证实sPRR-furin激活ENaC的开放概率。最后,用呋喃抑制剂α1-抗胰蛋白酶波特兰(α1-PDX)预处理HEK-293细胞,然后用EM、WT、PRR转染。利用蛋白质离心过滤装置富集条件培养基中的sPRR,并将其作用于M-1细胞,测定ENaC活性,表明α1-PDX预处理可减弱WT PRR过表达诱导的ENaC作用活性。综上所述,我们得出结论,为了增加enact介导的Na+在CD细胞中的转运,sPRR的活性需要furin介导的修饰。
Furin-Mediated Modification Is Required for Epithelial Sodium Channel-Activating Activity of Soluble (Pro)Renin Receptor in Cultured Collecting Duct Cells.
(Pro)renin receptor (PRR) contains overlapping cleavage site for site-1 protease (S1P) and furin for generation of soluble PRR (sPRR). Although S1P-mediated cleavage mediates the release of sPRR, the functional implication of furin-mediated cleavage is unclear. Here we tested whether furin-mediated cleavage was required for the activity of sPRR in activating ENaC in cultured M-1 cells. M-1 cells were transfected with pcDNA3.4 containing full-length PRR with (Furin-site Mut) or without (WT) mutagenesis of the furin cleavage site. As compared with empty vector control (EM), Furin-site Mut showed the attenuation effect on WT-induced α-ENaC expression and amiloride-sensitive short circuit current. In a separate experiment, M-1 cells were transfected with pcDNA3.4 containing cDNA for sPRR with S1P cleavage (AA 1-282) (sPRR-S1P) or with furin cleavage (AA 1-279) (sPRR-furin), indicating overexpression of the two types of sPRR induced a significant and comparable increase in the release of sPRR, but only sPRR-furin showed an increase of ENaC activity. Single channel analysis of ENaC activity in Xenopus A6-2F3 cells confirms sPRR-furin activation of ENaC open probability. Lastly, HEK-293 cells were pretreated with furin inhibitor α1-antitrypsin Portland (α1-PDX) followed by transfection with EM, WT PRR. sPRR in the conditioned medium was enriched by using protein centrifugal filter devices and applied to M-1 cells followed by measurement of ENaC activity, demonstrating that pretreatment with α1-PDX attenuated ENaC-acting activity induced by overexpression of WT PRR. In summary, we conclude that furin-mediated modification is required for the activity of sPRR to increase ENaC-mediated Na+ transport in the CD cells.