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人重组5-羟色胺3型受体亚基(h5-HT3A)中的离子渗透与传导

Ion permeation and conduction in a human recombinant 5-HT3 receptor subunit (h5-HT3A).

作者信息

Brown A M, Hope A G, Lambert J J, Peters J A

机构信息

Department of Pharmacology and Neuroscience, Ninewells Hospital and Medical School, The University of Dundee, Dundee DD1 9SY, UK.

出版信息

J Physiol. 1998 Mar 15;507 ( Pt 3)(Pt 3):653-65. doi: 10.1111/j.1469-7793.1998.653bs.x.

Abstract
  1. A human recombinant homo-oligomeric 5-HT3 receptor (h5-HT3A) expressed in a human embryonic kidney cell line (HEK 293) was characterized using the whole-cell recording configuration of the patch clamp technique. 2. 5-HT evoked transient inward currents (EC50 = 3.4 microM; Hill coefficient = 1.8) that were blocked by the 5-HT3 receptor antagonist ondansetron (IC50 = 103 pM) and by the non-selective agents metoclopramide (IC50 = 69 nM), cocaine (IC50 = 459 nM) and (+)-tubocurarine (IC50 = 2.8 microM). 3. 5-HT-induced currents rectified inwardly and reversed in sign (E5-HT) at a potential of -2.2 mV. N-Methyl-D-glucamine was finitely permeant. Permeability ratios PNa/PCs and PNMDG/PCs were 0.90 and 0.083, respectively. 4. Permeability towards divalent cations was assessed from measurements of E5-HT in media where Ca2+ and Mg2+ replaced Na+. PCa/PCs and PMg/PCs were calculated to be 1.00 and 0.61, respectively. 5. Single channel chord conductance (gamma) estimated from fluctuation analysis of macroscopic currents increased with membrane hyperpolarization from 243 fS at -40 mV to 742 fS at -100 mV. 6. Reducing [Ca2+]o from 2 to 0.1 mM caused an increase in the whole-cell current evoked by 5-HT. A concomitant reduction in [Mg2+]o produced further potentiation. Fluctuation analysis indicates that a voltage-independent augmentation of gamma contributes to this phenomenon. 7. The data indicate that homo-oligomeric receptors composed of h5-HT3A subunits form inwardly rectifying cation-selective ion channels of low conductance that are permeable to Ca2+ and Mg2+.
摘要
  1. 利用膜片钳技术的全细胞记录模式,对在人胚肾细胞系(HEK 293)中表达的人重组同源寡聚5-羟色胺3型受体(h5-HT3A)进行了特性研究。2. 5-羟色胺诱发瞬时内向电流(半数有效浓度[EC50]=3.4微摩尔;希尔系数=1.8),该电流被5-羟色胺3型受体拮抗剂昂丹司琼(半数抑制浓度[IC50]=103皮摩尔)以及非选择性药物甲氧氯普胺(IC50=69纳摩尔)、可卡因(IC50=459纳摩尔)和(+)-筒箭毒碱(IC50=2.8微摩尔)阻断。3. 5-羟色胺诱导的电流内向整流,并在-2.2毫伏的电位处发生符号反转(E5-HT)。N-甲基-D-葡糖胺具有有限的通透性。钠与氯化铯的通透率比(PNa/PCs)和N-甲基-D-葡糖胺与氯化铯的通透率比(PNMDG/PCs)分别为0.90和0.083。4. 通过在Ca2+和Mg2+取代Na+的培养基中测量E5-HT来评估对二价阳离子的通透性。计算得出钙与氯化铯的通透率比(PCa/PCs)和镁与氯化铯的通透率比(PMg/PCs)分别为1.00和0.61。5. 根据宏观电流的波动分析估算的单通道弦电导(γ)随着膜超极化而增加,从-40毫伏时的243飞西门子增加到-100毫伏时的742飞西门子。6. 将细胞外[Ca2+]从2毫摩尔降至0.1毫摩尔会导致5-羟色胺诱发的全细胞电流增加。同时降低细胞外[Mg2+]会产生进一步的增强作用。波动分析表明,γ的电压非依赖性增强导致了这一现象。7. 数据表明,由h5-HT3A亚基组成的同源寡聚受体形成内向整流的低电导阳离子选择性离子通道,该通道对Ca2+和Mg2+具有通透性。

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