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心脏兰尼碱受体孔形成区的功能特征。

Functional characterization of the cardiac ryanodine receptor pore-forming region.

机构信息

Institute of Molecular and Experimental Medicine, Cardiff University, Cardiff, United Kingdom.

出版信息

PLoS One. 2013 Jun 12;8(6):e66542. doi: 10.1371/journal.pone.0066542. Print 2013.

Abstract

Ryanodine receptors are homotetrameric intracellular calcium release channels. The efficiency of these channels is underpinned by exceptional rates of cation translocation through the open channel and this is achieved at the expense of the high degree of selectivity characteristic of many other types of channel. Crystallization of prokaryotic potassium channels has provided insights into the structures and mechanisms responsible for ion selection and movement in these channels, however no equivalent structural detail is currently available for ryanodine receptors. Nevertheless both molecular modeling and cryo-electron microscopy have identified the probable pore-forming region (PFR) of the ryanodine receptor (RyR) and suggest that this region contains structural elements equivalent to those of the PFRs of potassium-selective channels. The aim of the current study was to establish if the isolated putative cardiac RyR (RyR2) PFR could form a functional ion channel. We have expressed and purified the RyR2 PFR and shown that function is retained following reconstitution into planar phospholipid bilayers. Our data provide the first direct experimental evidence to support the proposal that the conduction pathway of RyR2 is formed by structural elements equivalent to those of the potassium channel PFR.

摘要

肌质网钙释放通道是同源四聚体的细胞内钙离子释放通道。这些通道的阳离子通过开放通道的转移效率非常高,这是以牺牲许多其他类型通道的高度选择性为代价实现的。原核钾通道的结晶为这些通道的离子选择和运动的结构和机制提供了深入的了解,然而,目前对于肌质网钙释放通道没有等效的结构细节。尽管如此,分子建模和冷冻电子显微镜已经确定了肌质网钙释放通道(RyR)的可能的孔形成区域(PFR),并表明该区域包含与钾选择性通道的 PFR 等效的结构元件。本研究的目的是确定分离的假定的心脏 RyR(RyR2)PFR 是否能够形成功能性离子通道。我们已经表达和纯化了 RyR2 PFR,并表明在重新组装到平面磷脂双层后保留了功能。我们的数据提供了第一个直接的实验证据,支持 RyR2 的传导途径是由与钾通道 PFR 等效的结构元件形成的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4266/3680380/eb05afe83512/pone.0066542.g001.jpg

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