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Phosphorylation via PKC Regulates the Function of the Drosophila Odorant Co-Receptor

机译:通过PKC的磷酸化调节果蝇气味共受体的功能。

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摘要

Insect odorant receptors (ORs) have a unique design of heterodimers formed by an olfactory receptor protein and the ion channel Orco. Heterologously expressed insect ORs are activated via an ionotropic and a metabotropic pathway that leads to cAMP production and activates the Orco channel. The contribution of metabotropic signaling to the insect odor response remains to be elucidated. Disruption of the Gq protein signaling cascade reduces the odor response (Kain et al., ). We investigated this phenomenon in HEK293 cells expressing Drosophila Orco and found that phospholipase C (PLC) inhibition reduced the sensitivity of Orco to cAMP. A similar effect was seen upon inhibition of protein kinase C (PKC), whereas PKC stimulation activated Orco even in the absence of cAMP. Mutation of the five PKC phosphorylation sites in Orco almost completely eliminated sensitivity to cAMP. To test the impact of PKC activity in vivo we combined single sensillum electrophysiological recordings with microinjection of agents affecting PLC and PKC function and observed an altered response of olfactory sensory neurons (OSNs) to odorant stimulation. Injection of the PLC inhibitor or the PKC inhibitor Gö6976 into sensilla reduced the OSN response to odor pulses. Conversely, injection of the PKC activators OAG, a diacylglycerol analog, or phorbol myristate acetate (PMA) enhanced the odor response. We conclude that metabotropic pathways affecting the phosphorylation state of Orco regulate OR function and thereby shape the OSN odor response.
机译:昆虫气味受体(OR)具有由嗅觉受体蛋白和离子通道Orco形成的异二聚体的独特设计。异源表达的昆虫ORs通过离子和代谢途径被激活,导致cAMP产生并激活Orco通道。促代谢信号对昆虫气味反应的贡献仍有待阐明。 Gq蛋白信号转导级联的破坏降低了气味反应(Kain等,)。我们在表达果蝇Orco的HEK293细胞中研究了这一现象,发现磷脂酶C(PLC)抑制作用降低了Orco对cAMP的敏感性。抑制蛋白激酶C(PKC)时也能看到类似的效果,而PKC刺激甚至在不存在cAMP的情况下也能激活Orco。 Orco中五个PKC磷酸化位点的突变几乎完全消除了对cAMP的敏感性。为了测试体内PKC活性的影响,我们将单个sensillum电生理学记录与影响PLC和PKC功能的药剂的微注射相结合,并观察到嗅觉感觉神经元(OSNs)对气味刺激的响应发生了变化。将PLC抑制剂或PKC抑制剂Gö6976注入感觉器中可降低OSN对气味脉冲的响应。相反,注射PKC活化剂OAG,二酰基甘油类似物或佛波肉豆蔻酸酯乙酸酯(PMA)可以增强气味响应。我们得出结论,影响Orco磷酸化状态的代谢通路调节OR功能,从而影响OSN气味反应。

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