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Suppression of Ca2+ signaling in a mouse model of Best disease

机译:最佳疾病小鼠模型中Ca 2 + 信号的抑制

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摘要

Mutations in BEST1, encoding bestrophin-1 (Best1), cause Best vitelliform macular dystrophy (BVMD), a dominantly inherited macular degeneration characterized by a diminished electrooculogram light peak (LP), lipofuscin in retinal pigment epithelial cells (RPE), and fluid- and debris-filled retinal detachments. To understand the pathogenesis of BVMD we generated knock-in mice carrying the BVMD-causing mutation W93C in Best1. Both Best1+/W93Cand Best1W93C/W93C mice had normal ERG a- and b-waves, but exhibited an altered LP luminance response reminiscent of that observed in BVMD patients. Morphological analysis identified fluid- and debris-filled retinal detachments in mice as young as 6 months of age. By 18–24 months of age Best1+/W93Cand Best1W93C/W93C mice exhibited enhanced accumulation of lipofuscin in the RPE, and a significant deposition of debris composed of unphagocytosed photoreceptor outer segments and lipofuscin granules in the subretinal space. Although Best1 is thought to function as a Ca2+-activated Cl− channel, RPE cells from Best1W93C mice exhibited normal Cl− conductances. We have previously shown that Best1−/− mice exhibit increased [Ca2+]i in response to ATP stimulation. However, ATP-stimulated changes in [Ca2+]i in RPE cells from Best1+/W93C and Best1W93C/W93C mice were suppressed relative to Best1+/+ littermates. Based on these data we conclude that mice carrying the Best1W93C mutation are a valid model for BVMD. Furthermore, these data suggest that BVMD is not because of Best1 deficiency, as the phenotypes of Best1+/W93C and Best1W93C/W93C mice are distinct from that of Best1−/− mice with regard to lipofuscin accumulation, and changes in the LP and ATP Ca2+ responses.
机译:编码Bestrophin-1(Best1)的BEST1中的突变会导致最佳黄体样黄斑营养不良(BVMD),这是一种遗传性黄斑变性,特征是眼电图光峰(LP)减少,视网膜色素上皮细胞(RPE)中的脂褐素和液体-和充满碎片的视网膜脱离。为了了解BVMD的发病机制,我们在Best1中生成了携带BVMD引起突变W93C的敲入小鼠。 Best1 + / W93C 和Best1 W93C / W93C 小鼠均具有正常的ERG a波和b波,但其LP亮度变化却与BVMD患者相似。形态学分析确定了6个月大的小鼠中充满液体和碎片的视网膜脱离。到18-24个月大时,Best1 + / W93C 和Best1 W93C / W93C 小鼠在RPE中表现出脂褐素的积累增强,并且由未吞噬的光感受器组成的碎片大量沉积。视网膜下间隙的外段和脂褐素颗粒。尽管认为Best1可以作为Ca 2 + 激活的Cl -通道发挥作用,但是Best1 W93C 小鼠的RPE细胞表现出正常的Cl − 电导。先前我们已经表明,Best1 -/-小鼠在响应ATP刺激后表现出增加的[Ca 2 + ] i 。但是,来自Best1 + / W93C 和Best1 W93C / W93C的RPE细胞中[Ca 2 + ] i 受ATP刺激的变化小鼠相对于Best1 + / + 同窝仔被抑制。根据这些数据,我们得出结论,携带Best1 W93C 突变的小鼠是BVMD的有效模型。此外,这些数据表明BVMD并非由于Best1缺乏,因为Best1 + / W93C 和Best1 W93C / W93C 小鼠的表型与Best1 -/-小鼠关于脂褐素积聚以及LP和ATP Ca 2 + 反应的变化。

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  • 来源
    《Human Molecular Genetics 》 |2010年第6期| p.1108-1118| 共11页
  • 作者单位

    Department of Ophthalmology and Vision Science,;

    Department of Ophthalmology and Vision Science,;

    Cole Eye Institute, Cleveland Clinic Foundation, Cleveland, OH, USA,;

    Department of Cell Biology, Emory University, Atlanta, GA, USA,;

    Department of Cell Biology, Emory University, Atlanta, GA, USA,;

    Cole Eye Institute, Cleveland Clinic Foundation, Cleveland, OH, USA,|Research Service, Cleveland VA Medical Center, Cleveland, OH, USA and|Department of Ophthalmology, Cleveland Clinic Lerner College of Medicine of Case Western Reserve University, Cleveland, OH, USA;

    Department of Ophthalmology and Vision Science,|Department of Physiology and;

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