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Regulation of ryanodine receptor-dependent calcium signaling by polycystin-2

机译:多囊藻毒素2对ryanodine受体依赖性钙信号的调节

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摘要

Mutations in polycystin-2 (PC2) cause autosomal dominant polycystic kidney disease. A function for PC2 in the heart has not been described. Here, we show that PC2 coimmunoprecipitates with the cardiac ryanodine receptor (RyR2) from mouse heart. Biochemical assays showed that the N terminus of PC2 binds the RyR2, whereas the C terminus only binds to RyR2 in its open state. Lipid bilayer electrophysiological experiments indicated that the C terminus of PC2 functionally inhibited RyR2 channel activity in the presence of calcium (Ca2+). Pkd2−/− cardiomyocytes had a higher frequency of spontaneous Ca2+ oscillations, reduced Ca2+ release from the sarcoplasmic reticulum stores, and reduced Ca2+ content compared with Pkd2+/+ cardiomyocytes. In the presence of caffeine, Pkd2−/− cardiomyocytes exhibited decreased peak fluorescence, a slower rate of rise, and a longer duration of Ca2+ transients compared with Pkd2+/+. These data suggest that PC2 is important for regulation of RyR2 function and that loss of this regulation of RyR2, as occurs when PC2 is mutated, results in altered Ca2+ signaling in the heart.
机译:polycystin-2(PC2)中的突变会导致常染色体显性遗传多囊肾。心脏中PC2的功能尚未描述。在这里,我们显示PC2与来自小鼠心脏的心脏ryanodine受体(RyR2)共免疫沉淀。生化分析表明,PC2的N末端与RyR2结合,而C末端仅在其开放状态下与RyR2结合。脂质双层电生理实验表明,在钙(Ca2 +)存在的情况下,PC2的C末端功能性抑制RyR2通道活性。与Pkd2 + / +心肌细胞相比,Pkd2-/-心肌细胞具有更高的自发Ca2 +振荡频率,减少了从肌浆网存储中释放的Ca2 +,并降低了Ca2 +含量。在咖啡因的存在下,与Pkd2 + / +相比,Pkd2-/-心肌细胞显示出峰值荧光减弱,上升速度较慢和Ca2 +瞬变的持续时间更长。这些数据表明,PC2对于调节RyR2的功能很重要,并且RyR2的这种调节的丧失(如PC2突变时发生的那样)会导致心脏中Ca2 +信号传导的改变。

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