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Dynamic inter-subunit interactions between the N-terminal and central mutation regions of cardiac ryanodine receptor

机译:心脏ryanodine受体的N末端和中央突变区之间的动态亚基间的相互作用

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摘要

Naturally occurring mutations in the cardiac ryanodine receptor (RyR2) have been linked to certain types of cardiac arrhythmias and sudden death. Two mutation hotspots that lie in the N-terminal and central regions of RyR2 are predicted to interact with one another and to form an important channel regulator switch. To monitor the conformational dynamics involving these regions, we generated a fluorescence resonance energy transfer (FRET) pair. A yellow fluorescent protein (YFP) was inserted into RyR2 after residue Ser437 in the N-terminal region, and a cyan fluorescent protein (CFP) was inserted after residue Ser2367 in the central region, to form a dual YFP- and CFP-labeled RyR2 (RyR2S437-YFP/S2367-CFP). We transfected HEK293 cells with RyR2S437-YFP/S2367-CFP cDNAs, and then examined them by using confocal microscopy and by measuring the FRET signal in live cells. The FRET signals are influenced by modulators of RyR2, by domain peptides that mimic the effects of disease causing RyR2 mutations, and by various drugs. Importantly, FRET signals were also readily detected in cells co-transfected with single CFP (RyR2S437-YFP) and single YFP (RyR2S2367-CFP) labeled RyR2, indicating that the interaction between the N-terminal and central mutation regions is an inter-subunit interaction. Our studies demonstrate that FRET analyses of this CFP- and YFP-labeled RyR2 can be used not only for investigating the conformational dynamics associated with RyR2 channel gating, but potentially, also for identifying drugs that are capable of stabilizing the conformations of RyR2.
机译:心脏ryanodine受体(RyR2)中自然发生的突变与某些类型的心律不齐和猝死有关。预测位于RyR2 N末端和中央区域的两个突变热点会彼此相互作用,并形成重要的通道调节器开关。为了监测涉及这些区域的构象动力学,我们生成了荧光共振能量转移(FRET)对。在N端区域的Ser437残基后,将黄色荧光蛋白(YFP)插入RyR2,在中央区域的残基Ser2367之后,将青色荧光蛋白(CFP)插入,形成YFP和CFP双重标记的RyR2 (RyR2S437-YFP / S2367-CFP)。我们用RyR2S437-YFP / S2367-CFP cDNA转染了HEK293细胞,然后通过共聚焦显微镜和测量活细胞中的FRET信号对其进行了检查。 FRET信号受RyR2调节剂,模拟引起RyR2突变的疾病影响的结构域肽以及各种药物的影响。重要的是,在用单个CFP(RyR2S437-YFP)和单个YFP(RyR2S2367-CFP)共标记的RyR2共转染的细胞中也很容易检测到FRET信号,这表明N末端和中央突变区之间的相互作用是一个亚单位相互作用。我们的研究表明,对该CFP和YFP标记的RyR2进行FRET分析不仅可以用于研究与RyR2通道门控相关的构象动力学,而且还可以用于鉴定能够稳定RyR2构象的药物。

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