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The Deletion of Exon 3 in the Cardiac Ryanodine Receptor Is Rescued by beta Strand Switching

机译:β链开关可挽救心脏Ryanodine受体中第3外显子的缺失

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摘要

Mutations in the cardiac Ryanodine Receptor (RYR2) are linked to triggered arrhythmias. Removal of exon 3 results in a severe form of catecholaminergic polymorphic ventricular tachycardia (CPVT). This exon encodes secondary structure elements that are crucial for folding of the N-terminal domain (NTD), raising the question of why the deletion is neither lethal nor confers a loss of function. We determined the 2.3 angstrom crystal structure of the NTD lacking exon 3. The removal causes a structural rescue whereby a flexible loop inserts itself into the 13 trefoil domain and increases thermal stability. The exon 3 deletion is not tolerated in the corresponding RYR1 domain. The rescue shows a novel mechanism by which RYR2 channels can adjust their Ca2+ release properties through altering the structure of the NTD. Despite the rescue, the deletion affects interfaces with other RYR2 domains. We propose that relative movement of the NTD is allosterically coupled to the pore region.
机译:心脏Ryanodine受体(RYR2)中的突变与触发性心律失常有关。外显子3的去除导致儿茶酚胺能性多形性室性心动过速(CPVT)的严重形式。该外显子编码对于折叠N末端域(NTD)至关重要的二级结构元件,引发了一个问题,即为什么该删除既不致命也不赋予功能丧失。我们确定了缺少外显子3的NTD的2.3埃晶体结构。该去除引起结构抢救,其中柔性环将自身插入13个三叶形结构域并提高了热稳定性。在相应的RYR1结构域中不容许外显子3的缺失。救援显示了一种新颖的机制,通过该机制,RYR2通道可以通过改变NTD的结构来调节其Ca2 +释放特性。尽管有所挽救,但删除仍会影响与其他RYR2域的接口。我们建议NTD的相对运动是变构耦合到孔隙区域。

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