Functional Role of the KCa3.1 Potassium Channel in Synovial Fibroblasts From Rheumatoid Arthritis Patients

被引:24
作者
Friebel, Kristin [1 ,2 ]
Schoenherr, Roland [1 ,2 ]
Kinne, Raimund W. [3 ]
Kunisch, Elke [3 ]
机构
[1] Univ Jena, Dept Biophys, Ctr Mol Biomed, Jena, Germany
[2] Jena Univ Hosp, Jena, Germany
[3] Jena Univ Hosp, Dept Orthoped, Expt Rheumatol Unit, Jena, Germany
关键词
CA2+-ACTIVATED K+ CHANNELS; INTERMEDIATE-CONDUCTANCE; CELL-PROLIFERATION; MEMBRANE-POTENTIALS; PRIMARY-CULTURE; TNF-ALPHA; SYNOVIOCYTES; CLOTRIMAZOLE; INHIBITORS; CANCER;
D O I
10.1002/jcp.24924
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Rheumatoid arthritis synovial fibroblasts (RA-SFs) show an aggressive phenotype and support joint inflammation and tissue destruction. New druggable targets in RA-SFs would therefore be of high therapeutic interest. The present study shows that the intermediate-conductance, calcium-activated potassium channel KCa3.1 (KCNN4) is expressed at the mRNA and protein level in RA-SFs, is functionally active, and has a regulatory impact on cell proliferation and secretion of pro-inflammatory and pro-destructive mediators. Whole-cell patch-clamp recordings identified KCa3.1 as the dominant potassium channel in the physiologically relevant membrane voltage range below 0mV. Stimulation with transforming growth factor 1 (TGF-1) significantly increased transcription, translation, and channel function of KCa3.1. Inhibition of KCa3.1 by the selective, pore-blocking inhibitor TRAM-34, (and, in part, by siRNA) significantly reduced cell proliferation, as well as expression and secretion of pro-inflammatory factors (IL-6, IL-8, and MCP1) and the tissue-destructive protease MMP3. These effects were observed in non-stimulated and/or TGF-1-stimulated RA-SFs. Since small molecule-based interference with KCa3.1 is principally well tolerated in clinical settings, further evaluation of channel blockers in models of rheumatoid arthritis may be a promising approach to identify new pharmacological targets and develop new therapeutic strategies for this debilitating disease. J. Cell. Physiol. 230: 1677-1688, 2015. (c) 2014 Wiley Periodicals, Inc., A Wiley Company
引用
收藏
页码:1677 / 1688
页数:12
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