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5-羟色胺3型受体和α4β2烟碱型乙酰胆碱受体大细胞质环内单通道电导的共同决定因素。

Common determinants of single channel conductance within the large cytoplasmic loop of 5-hydroxytryptamine type 3 and alpha4beta2 nicotinic acetylcholine receptors.

作者信息

Hales Tim G, Dunlop James I, Deeb Tarek Z, Carland Jane E, Kelley Stephen P, Lambert Jeremy J, Peters John A

机构信息

Department of Pharmacology and Physiology, George Washington University, Washington, DC 20037, USA.

出版信息

J Biol Chem. 2006 Mar 24;281(12):8062-71. doi: 10.1074/jbc.M513222200. Epub 2006 Jan 3.

Abstract

Homomeric 5-hydroxytryptamine type 3A receptors (5-HT3ARs) have a single channel conductance (gamma) below the resolution of single channel recording (966 +/- 75 fS, estimated by variance analysis). By contrast, heteromeric 5-HT3A/B and nicotinic acetylcholine receptors (nAChRs) have picosiemen range gamma values. In this study, single channel recordings revealed that replacement of cytoplasmic membrane-associated (MA) helix arginine 432 (-4'), 436 (0'), and 440 (4') residues by 5-HT3B (-4'Gln, 0'Asp, and 4'Ala) residues increases gamma to 36.5 +/- 1.0 pS. The 0' residue makes the most substantial contribution to gamma of the 5-HT3AR. Replacement of 0'Arg by aspartate, glutamate (alpha7 nAChR subunit MA 0'), or glutamine (beta2 subunit MA 0') increases gamma to the resolvable range (>6 pS). By contrast, replacement of 0'Arg by phenylalanine (alpha4 subunit MA 0') reduced gamma to 416 +/- 107 fS. In reciprocal experiments with alpha4beta2 nAChRs (gamma = 31.3 +/- 0.8 pS), replacement of MA 0' residues by arginine in alpha4beta2(Q443R) and alpha4(F588R)beta2 reduced gamma slightly. By contrast, the gamma of double mutant alpha4(F588R)beta2(Q443R) was halved. The MA -4' and 4' residues also influenced gamma of 5-HT3ARs. Replacement of nAChR alpha4 or beta2 MA 4' residues by arginine made current density negligible. By contrast, replacement of both -4' residues by arginine produced functional nAChRs with substantially reduced gamma (11.4 +/- 0.5 pS). Homology models of the 5-HT3A and alpha4beta2 nAChRs against Torpedo nAChR revealed MA -4', 0', and 4' residues within five intracellular portals. This locus may be a common determinant of ion conduction throughout the Cys loop receptor family.

摘要

同聚体5-羟色胺3A型受体(5-HT3ARs)具有低于单通道记录分辨率的单通道电导(γ)(通过方差分析估计为966±75飞西门子)。相比之下,异聚体5-HT3A/B和烟碱型乙酰胆碱受体(nAChRs)具有皮西门子范围的γ值。在本研究中,单通道记录显示,用5-HT3B(-4'谷氨酰胺、0'天冬氨酸和4'丙氨酸)残基取代细胞质膜相关(MA)螺旋精氨酸432(-4')、436(0')和440(4')残基可使γ增加至36.5±1.0皮西门子。0'残基对5-HT3AR的γ贡献最大。用天冬氨酸、谷氨酸(α7 nAChR亚基MA 0')或谷氨酰胺(β2亚基MA 0')取代0'精氨酸可使γ增加到可分辨范围(>6皮西门子)。相比之下,用苯丙氨酸(α4亚基MA 0')取代0'精氨酸可使γ降低至416±107飞西门子。在与α4β2 nAChRs(γ = 31.3±0.8皮西门子)的反向实验中,α4β2(Q443R)和α4(F588R)β2中用精氨酸取代MA 0'残基会使γ略有降低。相比之下,双突变体α4(F588R)β2(Q443R)的γ减半。MA -4'和4'残基也影响5-HT3ARs的γ。用精氨酸取代nAChR α4或β2 MA 4'残基会使电流密度可忽略不计。相比之下,用精氨酸取代两个-4'残基会产生功能性nAChRs,其γ大幅降低(11.4±0.5皮西门子)。5-HT3A和α4β2 nAChRs针对电鳐nAChR的同源模型显示,在五个细胞内通道中有MA -4'、0'和4'残基。该位点可能是整个半胱氨酸环受体家族离子传导的共同决定因素。

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