Müller Claudia, Más Gómez Néstor, Ruth Peter, Strauss Olaf
Experimental Ophthalmology, Eye Hospital, University Medical Center Regensburg, Franz-Josef-Strauß Allee 11, 93053 Regensburg, Germany.
Pharmacology, Toxicology and Clinical Pharmacy, Institute of Pharmacy, Eberhard Karls University Tübingen, Auf der Morgenstelle 8, 72076 Tübingen, Germany.
Cell Signal. 2014 May;26(5):968-78. doi: 10.1016/j.cellsig.2013.12.021. Epub 2014 Jan 7.
Phagocytosis of shed photoreceptor outer segments by the retinal pigment epithelium (RPE) is critical for maintenance of visual function. Because changes in intracellular Ca(2+) regulate phagocytosis, we studied in vitro the impact of different ion channels in addition to mice deficient for Cav1.3 L-type Ca(2+) channels (Ca1.3(-/-)) and maxiK Ca(2+)-dependent K(+) channels (BK(-/-)). The knockdown of Bestrophin-1 protein, a regulator of intracellular Ca(2+) homeostasis, affected phagocytosis in porcine RPE cultures. Blockage of voltage-gated L-type channels by (+)BayK8644 inhibitor reduced phagocytosis in vitro, in contrast L-type activation by (-)BayK8644 had no impact. The expression rate of Cav1.3, the predominant L-type Ca(2+) channel in RPE cells, varied at different times of day. CaV1.3(-/-) RPE lacked peak phagocytic activity following morning photoreceptor shedding in wild-type RPE and retained a higher number of phagosomes at a later time of day. The BK-channel blocker paxilline lowered phagocytosis in RPE cultures in a concentration-dependent manner. BK(-/-) RPE in vivo retained phagocytic capability but this activity, which is normally well synchronized with circadian photoreceptor shedding, shifted out of phase. Retinae of older BK(-/-) mice showed shortened photoreceptor outer segments and diminished rhodopsin content. Store-operated Ca(2+) channels Orai-1 did not affect phagocytosis in cultured RPE. TRPV channel inhibition by ruthenium-red reduced phagocytosis, whereas activation at high concentrations of 2-APB increased phagocytosis. Our data demonstrate essential roles for bestrophin-1, BK, TRPV and L-type channels in regulating retinal phagocytosis. These data indicate further the importance of BK and CaV1.3 for rhythmic phagocytic activity synchronized with photoreceptor shedding.
视网膜色素上皮(RPE)对脱落的光感受器外段的吞噬作用对于维持视觉功能至关重要。由于细胞内Ca(2+)的变化调节吞噬作用,我们除了研究缺乏Cav1.3 L型Ca(2+)通道(Ca1.3(-/-))和大电导Ca(2+)依赖性K(+)通道(BK(-/-))的小鼠外,还在体外研究了不同离子通道的影响。Bestrophin-1蛋白作为细胞内Ca(2+)稳态的调节因子,其敲低影响了猪RPE培养物中的吞噬作用。(+)BayK8644抑制剂对电压门控L型通道的阻断降低了体外吞噬作用,相反,(-)BayK8644对L型通道的激活没有影响。RPE细胞中主要的L型Ca(2+)通道Cav1.3的表达率在一天中的不同时间有所变化。CaV1.3(-/-) RPE在野生型RPE早晨光感受器脱落后缺乏峰值吞噬活性,并且在一天中的晚些时候保留了更多的吞噬体。BK通道阻滞剂紫杉醇以浓度依赖性方式降低了RPE培养物中的吞噬作用。BK(-/-) RPE在体内保留了吞噬能力,但这种通常与昼夜节律性光感受器脱落良好同步的活性发生了相位偏移。老年BK(-/-)小鼠的视网膜显示光感受器外段缩短,视紫红质含量减少。储存操纵性Ca(2+)通道Orai-1不影响培养的RPE中的吞噬作用。钌红对TRPV通道的抑制降低了吞噬作用,而高浓度2-APB的激活则增加了吞噬作用。我们的数据证明了Bestrophin-1、BK、TRPV和L型通道在调节视网膜吞噬作用中的重要作用。这些数据进一步表明了BK和CaV1.3对于与光感受器脱落同步的节律性吞噬活性的重要性。