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偶联界面和孔道结构域共同决定α7烟碱型受体的单通道活性。

The coupling interface and pore domain codetermine the single-channel activity of the α7 nicotinic receptor.

作者信息

Yan Hongxia, Pan Na, Xue Fenqin, Zheng Yan, Li Chaokun, Chang Yongchang, Xu Zhiqing, Yang Hui, Zhang Jianliang

机构信息

Department of Neurobiology, 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, Beijing 100069, China.

Medical Experiment and Test Center, Capital Medical University, Beijing 100069, China.

出版信息

Neuropharmacology. 2015 Aug;95:448-58. doi: 10.1016/j.neuropharm.2015.04.010. Epub 2015 Apr 20.

DOI:10.1016/j.neuropharm.2015.04.010
PMID:25908400
Abstract

Ligand-gated ion channels play a role in mediating fast synaptic transmission for communication between neurons. However, the structural basis for the functional coupling of the binding and pore domains, resulting in channel opening, remains a topic of intense investigation. Here, a series of α7 nicotinic receptor mutants were constructed for expression in cultured mammalian cells, and their single-channel properties were examined using the patch-clamp technique combined with radio ligand binding and the fluorescence staining technique. We demonstrated that the replacement of the four pore-lining residues in the channel domain of the α7 nicotinic receptor with the hydrophilic residue serine prolongs the open-channel lifetime, although the conductance of these mutants decreases. At the coupling interface between the extracellular and transmembrane domains, when the VRW residues in the Cys-loop were substituted with the corresponding residues (i.e., IYN) in the 5-HT3A receptor, the single-channel activity elicited by acetylcholine is impaired. This effect occurred despite the expression of the mutant receptors on the cell surface and despite the fact that the apparent Kd values were much lower than those of the wild-type α7 receptor. When we further lowered the channel-gating barrier of this chimera to enhance the open-channel probability, the loss of function was rescued. Overall, we explored the microscopic mechanisms underlying the interplay between the channel domains and the coupling interface that affect the channel activity, and we generated an allosteric gating model for the α7 receptor. This model shows that the gating machinery and coupling assembly codetermine the single-channel gating kinetics. These results likely apply to all channels in the Cys-loop receptor family.

摘要

配体门控离子通道在介导神经元间快速突触传递中发挥作用。然而,结合域与孔道域功能偶联从而导致通道开放的结构基础,仍是深入研究的课题。在此,构建了一系列α7烟碱型受体突变体,用于在培养的哺乳动物细胞中表达,并采用膜片钳技术结合放射性配体结合及荧光染色技术检测其单通道特性。我们证明,用亲水性残基丝氨酸取代α7烟碱型受体通道域中的四个孔道内衬残基,虽会降低这些突变体的电导,但会延长通道开放寿命。在细胞外域与跨膜域的偶联界面处,当半胱氨酸环中的VRW残基被5-HT3A受体中的相应残基(即IYN)取代时,乙酰胆碱引发的单通道活性受损。尽管突变体受体在细胞表面表达,且其表观解离常数(Kd)值远低于野生型α7受体,但仍出现了这种效应。当我们进一步降低该嵌合体的通道门控屏障以提高通道开放概率时,功能丧失得到挽救。总体而言,我们探究了影响通道活性的通道域与偶联界面之间相互作用的微观机制,并构建了α7受体的变构门控模型。该模型表明,门控机制和偶联组件共同决定单通道门控动力学。这些结果可能适用于半胱氨酸环受体家族中的所有通道。

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