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首页> 外文期刊>Chemical Senses >Water Taste Transduction Pathway Is Calcium Dependent in Drosophila
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Water Taste Transduction Pathway Is Calcium Dependent in Drosophila

机译:果蝇中水味传导途径的钙依赖性

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摘要

In mammals, detection of osmolarity by the gustatory system was overlooked until recently. In insects, specific taste receptor neurons detect hypoosmotic stimuli and are commonly called “W” (water) cells. W cells are easy to access in vivo and represent a good model to study the transduction of hypoosmotic stimuli. Using pharmacological and genetic approaches in Drosophila, we show that tarsal W cell firing activity depends on the concentration of external calcium bathing the dendrite. This dependence was confirmed by the strong inhibition of W cell responses to hypoosmotic stimuli by lanthanum (IC50 = 8 nM), an ion known to inhibit calcium-permeable channels. Downstream, the transduction pathway likely involves calmodulin because calmodulin antagonists such as W-7 (IC50 = 2 μM) and fluphenazine (IC50 = 30 μM) prevented the activation of the W cell by hypoosmotic stimuli. A protein kinase C (PKC) may also be involved as W cell responses were blocked by PKC inhibitors, chelerythrine (IC50 = 20 μM) and staurosporine (IC50 = 30 μM). It was also reduced when expressing an inhibitory pseudosubstrate of PKC in gustatory receptor neurons. In the rat, the transduction pathway underlying low osmolarity detection involves aquaporin and swelling-activated ion channels. Our study suggests that the transduction pathway of hypoosmotic stimuli in insects differs from mammals.
机译:在哺乳动物中,直到最近才通过味觉系统检测渗透压。在昆虫中,特定的味觉受体神经元检测到渗透压降低,通常称为“ W”(水)细胞。 W细胞易于在体内进入,代表了研究低渗刺激转导的良好模型。使用果蝇的药理和遗传方法,我们表明W细胞的烧成活性取决于浸在枝晶中的外部钙的浓度。镧(IC 50 = 8 nM)强烈抑制了W细胞对低渗刺激的反应,从而证实了这种依赖性,镧是一种抑制钙可渗透通道的离子。在下游,转导途径可能涉及钙调蛋白,因为钙调蛋白拮抗剂如W-7(IC 50 = 2μM)和氟奋乃静(IC 50 = 30μM)阻止了钙调蛋白的激活。 W细胞受到低渗刺激。 PKC抑制剂,白屈菜红碱(IC 50 = 20μM)和星形孢菌素(IC 50 = 30)阻断了W细胞反应,因此蛋白激酶C(PKC)也可能参与其中μM)。当在味觉受体神经元中表达抑制性PKC假底物时,它也会减少。在大鼠中,低渗透压检测所依据的转导途径涉及水通道蛋白和溶胀激活的离子通道。我们的研究表明,昆虫体内低渗刺激的转导途径不同于哺乳动物。

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  • 来源
    《Chemical Senses》 |2009年第5期|p.441-449|共9页
  • 作者单位

    INRA (Institut National de Recherche Agronomique), UMR (Unité mixte de recherche) 1272 Physiologie de l'Insecte—Signalisation et Communication, F-78000 Versailles, France 1Present address: INRA, UMR 1197 Neurobiologie de l'Olfaction et de la Prise Alimentaire, Récepteurs et Communication Chimique, F-78350 Jouy-en-Josas, France and Université de Versailles Saint Quentin en Yvelines, F-78000 Versailles, France;

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