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天然耳蜗P2X受体的变构调节:与重组P2X2受体比较得出的见解

Allosteric modulation of native cochlear P2X receptors: insights from comparison with recombinant P2X2 receptors.

作者信息

Kanjhan Refik, Raybould Nicholas P, Jagger Daniel J, Greenwood Denise, Housley Gary D

机构信息

Molecular Physiology Laboratory, Department of Physiology, Faculty of Medicine and Health Sciences, University of Auckland, Auckland, New Zealand.

出版信息

Audiol Neurootol. 2003 May-Jun;8(3):115-28. doi: 10.1159/000069478.

Abstract

Extracellular adenosine 5'-triphosphate (ATP)-gated ion channels assembled from P2X receptor subunits exhibit subunit-selective allosteric modulation by protons and divalent cations. In voltage-clamped guinea-pig cochlear outer hair cells (OHC) and Deiters' cells (DC), H(+) and Cu(2+), but not Zn(2+), enhanced the P2X receptor-mediated inward currents. Acid pH (6.5) potentiated OHC ATP-gated currents by 45%. Co-application of Cu(2+) (1-40 microM) with ATP increased the response by 20%. In DCs, ATP-gated currents were potentiated 85% by acid pH, and 70% by Cu(2+). Alkaline pH inhibited ATP-gated inward currents by 73% in OHCs and 85% in DCs. Zn(2+) was either ineffective (1-10 microM) or inhibitory (40-400 microM). Recombinant rat P2X(2) receptor-mediated inward currents in XENOPUS oocytes displayed allosteric modulation that was different from the native guinea-pig cochlear P2X receptors. The oocyte ATP-gated inward current was potentiated 450% by shifting from pH 7.5 to pH 6.5, and 130% with 40 microM Cu(2+). The enhanced response to ATP with acid pH and Cu(2+) is a signature of the P2X(2) subunit. In contrast to native guinea-pig cochlear cells, extracellular Zn(2+) (40 microM) increased the recombinant ATP-gated inward current by 200% in oocytes. These results suggest that the positive allosteric modulation of cochlear OHC and DC ATP-gated ion channels by protons and Cu(2+) arises in part from the P2X(2) receptor subunit, with additional regulatory elements.

摘要

由P2X受体亚基组装而成的细胞外5'-三磷酸腺苷(ATP)门控离子通道表现出质子和二价阳离子对亚基的选择性变构调节。在电压钳制的豚鼠耳蜗外毛细胞(OHC)和Deiters细胞(DC)中,H(+)和Cu(2+)而非Zn(2+)增强了P2X受体介导的内向电流。酸性pH值(6.5)使OHC的ATP门控电流增强了45%。Cu(2+)(1 - 40 microM)与ATP共同应用使反应增加了20%。在DC中,酸性pH值使ATP门控电流增强了85%,Cu(2+)使其增强了70%。碱性pH值在OHC中使ATP门控内向电流抑制了73%,在DC中抑制了85%。Zn(2+)要么无效(1 - 10 microM),要么具有抑制作用(40 - 400 microM)。非洲爪蟾卵母细胞中重组大鼠P2X(2)受体介导的内向电流表现出与天然豚鼠耳蜗P2X受体不同的变构调节。通过将pH值从7.5转变为6.5,卵母细胞的ATP门控内向电流增强了450%,40 microM Cu(2+)使其增强了130%。酸性pH值和Cu(2+)对ATP反应的增强是P2X(2)亚基的一个特征。与天然豚鼠耳蜗细胞不同,细胞外Zn(2+)(40 microM)使卵母细胞中的重组ATP门控内向电流增加了200%。这些结果表明,质子和Cu(2+)对耳蜗OHC和DC的ATP门控离子通道的正向变构调节部分源于P2X(2)受体亚基,并伴有其他调节元件。

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