Fischmeister Rodolphe, Hartzell H Criss
Department of Cell Biology, Emory University School of Medicine, 615 Michael Street, 535 Whitehead Biomedical Research Building, Atlanta, GA 30322-3030, USA.
J Physiol. 2005 Jan 15;562(Pt 2):477-91. doi: 10.1113/jphysiol.2004.075622. Epub 2004 Nov 25.
Bestrophins are a newly identified family of Cl(-) channels. Mutations in the founding member of the family, human bestrophin-1 (hBest1), are responsible for a form of early onset macular degeneration called Best vitelliform macular dystrophy. The link between dysfunction of hBest1 and macular degeneration remains unknown. Because retinal pigmented epithelium (RPE) cells may be subjected to varying osmotic pressure due to light-dependent changes in the ionic composition of the subretinal space and because RPE cells may undergo large volume changes during phagocytosis of shed photoreceptor discs, we investigated whether bestrophin currents were affected by cell volume. When hBest1 and mBest2 were overexpressed in HEK 293, HeLa, and ARPE-19 cells, a new Ca(2+)-activated Cl(-) current appeared. This current was very sensitive to cell volume. A 20% increase in extracellular osmolarity caused cell shrinkage and a approximately 70-80% reduction in bestrophin current. Decreases in extracellular osmolarity increased the bestrophin currents slightly, but this was difficult to quantify due to simultaneous activation of endogenous volume-regulated anion channel (VRAC) current. To determine whether a similar current was present in mouse RPE cells, the effect of hyperosmotic solutions on isolated mouse RPE cells was examined. Mouse RPE cells exhibited an endogenous Cl(-) current that resembled the expressed hBest1 in that it was decreased by hypertonic solution. We conclude that bestrophins are volume sensitive and that they could play a novel role in cell volume regulation of RPE cells.
贝斯特rophins是新发现的一类氯离子通道。该家族的首个成员——人类贝斯特rophin-1(hBest1)发生突变,会导致一种早发性黄斑变性,即贝斯特卵黄样黄斑营养不良。hBest1功能障碍与黄斑变性之间的联系尚不清楚。由于视网膜色素上皮(RPE)细胞可能因视网膜下间隙离子组成的光依赖性变化而受到不同的渗透压影响,且RPE细胞在吞噬脱落的光感受器盘时可能会发生较大的体积变化,因此我们研究了贝斯特rophin电流是否受细胞体积影响。当hBest1和mBest2在HEK 293、HeLa和ARPE-19细胞中过表达时,出现了一种新的钙激活氯离子电流。该电流对细胞体积非常敏感。细胞外渗透压增加20%会导致细胞收缩,贝斯特rophin电流降低约70 - 80%。细胞外渗透压降低会使贝斯特rophin电流略有增加,但由于同时激活了内源性容积调节性阴离子通道(VRAC)电流,难以进行量化。为了确定小鼠RPE细胞中是否存在类似电流,研究了高渗溶液对分离的小鼠RPE细胞的影响。小鼠RPE细胞表现出一种内源性氯离子电流,与表达的hBest1类似,即会因高渗溶液而降低。我们得出结论,贝斯特rophins对体积敏感,它们可能在RPE细胞的细胞体积调节中发挥新作用。