School of Medical Sciences, University of New South Wales, Sydney, NSW 2052, Australia.
Neurochem Res. 2009 Oct;34(10):1805-15. doi: 10.1007/s11064-009-9971-2. Epub 2009 Apr 19.
The Cys-loop receptor family of ligand-gated ion channels (LGICs) play a key role in synaptic transmission in the central nervous system of animals. Recent advances have led to the elucidation of two crystal structures of related prokaryotic LGICs and the electron micrograph derived structure of the acetylcholine receptor from Torpedo marmorata. Here, we review the structural and biochemical data that form our understanding of the structure of the channel pore. We introduce original data from the glycine receptor using the substituted-cysteine accessibility technique and show that while the helical structure of the segment that surrounds the channel pore is generally agreed, the location of the channel gate, the pore diameter and the structure that forms the entry to the channel pore are likely to differ between receptors. The fundamental structural differences between anion and cation selective receptors and how these differences are related to the pore structure are also considered.
Cys 环受体家族的配体门控离子通道 (LGICs) 在动物中枢神经系统的突触传递中发挥着关键作用。最近的进展导致了两个相关原核 LGIC 的晶体结构的阐明,以及来自美洲电鳐的乙酰胆碱受体的电子显微镜衍生结构。在这里,我们回顾了形成我们对通道孔结构理解的结构和生化数据。我们介绍了使用取代半胱氨酸可及性技术的甘氨酸受体的原始数据,并表明虽然环绕通道孔的片段的螺旋结构通常是一致的,但通道门、孔径和形成通道孔入口的结构可能在不同的受体之间存在差异。还考虑了阴离子和阳离子选择性受体之间的基本结构差异,以及这些差异如何与孔结构相关。