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Cys 环受体脱敏的结构机制。

The structural mechanism of the Cys-loop receptor desensitization.

机构信息

Beijing Institute of Brain Disorders, Capital Medical University, Key Laboratory for Neurodegenerative Disease of the Ministry of Education, Beijing Center of Neural Regeneration and Repair, Beijing Key Laboratory of Brain Major Disorders-State Key Lab Incubation Base, Beijing Neuroscience Disciplines, #10 Xitoutiao, Youanmenwai, Beijing, 100069, China.

出版信息

Mol Neurobiol. 2013 Aug;48(1):97-108. doi: 10.1007/s12035-013-8420-z. Epub 2013 Feb 10.

Abstract

The cys-loop receptors are neurotransmitter-operated ion channels, which mediate fast synaptic transmission for communication between neurons. However, prolonged exposure to the neurotransmitter drives the receptor to a desensitization state, which plays an important role in shaping synaptic transmission. Much progress has been made through more than half a century's research since Katz and Thesleff first descried desensitization for muscle nicotinic acetylcholine receptor. In this review, we summarized recent research developments of receptor desensitization. Now, it has been identified that many parts of the receptor, such as the pore domain (including the hinge in the M2-M3 linker), the binding domain, the coupling region, and the intracellular domain, are all involved in the cys-loop receptor desensitization and that uncoupling between the amino-terminal domain and channel lining domain seems to play a central role in desensitization. This uncoupling is mainly governed by the balance between coupling strength and relative tightness of gating machinery and influenced by other parts of the receptor. Agonist binding induces conformational change to overcome the gating barrier to open the channel through the stressed coupling region, which is subsequently broken, causing receptor desensitization. With rapid advancement in structural biology of membrane receptors, final validation of this mechanism is expected to occur in the near future when the high-resolution structure of the desensitized state is available.

摘要

Cys-loop 受体是神经递质门控离子通道,介导神经元间的快速突触传递。然而,神经递质的长时间暴露会导致受体进入脱敏状态,这在调节突触传递中起着重要作用。自 Katz 和 Thesleff 首次描述肌肉烟碱型乙酰胆碱受体的脱敏作用以来,经过半个多世纪的研究已经取得了很大进展。在这篇综述中,我们总结了受体脱敏的最新研究进展。现在已经确定,受体的许多部分,如孔域(包括 M2-M3 连接环中的铰链)、结合域、偶联区域和细胞内域,都参与了 Cys-loop 受体脱敏,并且似乎在脱敏过程中,氨基末端域和通道衬里域之间的解偶联起着核心作用。这种解偶联主要由偶联强度和门控机制的相对紧密性之间的平衡控制,并受受体的其他部分影响。激动剂结合诱导构象变化,通过紧张的偶联区域克服门控屏障以打开通道,随后通道关闭,导致受体脱敏。随着膜受体结构生物学的快速发展,当可用到脱敏状态的高分辨率结构时,预计这一机制将很快得到最终验证。

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