Gisselmann Günter, Plonka Justina, Pusch Hermann, Hatt Hanns
Lehrstuhl für Zellphysiologie, Ruhr-Universität Bochum, Universitätsstrasse 150, 44780 Bochum, Germany.
Neurosci Lett. 2004 Nov 30;372(1-2):151-6. doi: 10.1016/j.neulet.2004.09.031.
Histamine acts as a neurotransmitter of photoreceptors in insects and other arthropods, where it directly activates a chloride channel and mediates rapid inhibitory responses. Homo- and heteromultimeric histamine-gated ion channels formed by HisCl-alpha2 or HisCl-alpha1 + alpha2 subunits from Drosophila melanogaster were characterized by two-electrode voltage-clamp measurements of functionally expressed ion channels in Xenopus laevis oocytes. The sensitivity of heteromultimeric histamine receptors with an EC(50) of 2.3 microM is lower than that of either homomultimeric receptor. They can be further distinguished from the homomultimeric channels by their reduced sensitivity to d-tubocurarine. Heteromultimeric channels generate a spontaneous current in the absence of any agonist. This spontaneous current can be blocked in the absence of an agonist by d-tubocurarine and the histamine antagonists cimetidine, thioperamide and pyrilamine. Homomultimeric HisCl-alpha2 channels are dually gated by histamine (IC(50)=9.4 microM) and GABA (IC(50)=1.0mM), both of which are full agonists. The action of both agonists can be blocked with comparable IC(50) values by the histamine antagonists cimetidine, thioperamide and pyrilamine but not by the GABA antagonist bicuculline. Picrotoxin blocked with an IC(50) of 403 microM. Our data show that histamine and GABA act on the same ion channel, which thus might function as a site of integration of the action of different neurotransmitters.
组胺在昆虫和其他节肢动物中作为光感受器的神经递质,它直接激活氯离子通道并介导快速抑制反应。通过在非洲爪蟾卵母细胞中对功能表达的离子通道进行双电极电压钳测量,对由果蝇的HisCl-α2或HisCl-α1 + α2亚基形成的同源和异源多聚体组胺门控离子通道进行了表征。异源多聚体组胺受体的敏感性(EC50为2.3 μM)低于任何一种同源多聚体受体。它们对d-筒箭毒碱的敏感性降低,这可将它们与同源多聚体通道进一步区分开来。异源多聚体通道在没有任何激动剂的情况下会产生自发电流。在没有激动剂的情况下,这种自发电流可被d-筒箭毒碱以及组胺拮抗剂西咪替丁、硫代哌酰胺和吡苄明阻断。同源多聚体HisCl-α2通道由组胺(IC50 = 9.4 μM)和GABA(IC50 = 1.0 mM)双重门控,二者均为完全激动剂。组胺拮抗剂西咪替丁、硫代哌酰胺和吡苄明可通过相当的IC50值阻断两种激动剂的作用,但GABA拮抗剂荷包牡丹碱则不能。苦味毒以403 μM的IC50值阻断。我们的数据表明,组胺和GABA作用于同一离子通道,因此该通道可能作为不同神经递质作用的整合位点发挥功能。