首页> 美国卫生研究院文献>The Journal of Neuroscience >Behavioral Impact of Neurotransmitter-Activated G-Protein-Coupled Receptors: Muscarinic and GABAB Receptors Regulate Caenorhabditis elegans Locomotion
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Behavioral Impact of Neurotransmitter-Activated G-Protein-Coupled Receptors: Muscarinic and GABAB Receptors Regulate Caenorhabditis elegans Locomotion

机译:神经递质激活的G蛋白偶联受体的行为影响:毒蕈碱和GABAB受体调节秀丽隐杆线虫的运动。

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摘要

Neurotransmitter released from presynaptic terminals activates both ligand-gated ion channels (ionotropic receptors) and a variety of G-protein-coupled receptors (GPCRs). These neurotransmitter receptors are expressed on both presynaptic and postsynaptic cells. Thus, each neurotransmitter acts on multiple receptor classes, generating a large repertoire of physiological responses. The impact of many ionotropic receptors on neuronal activity and behavior has been clearly elucidated; however, much less is known about how neurotransmitter-gated GPCRs regulate neurons and circuits. In Caenorhabditis elegans, both acetylcholine (ACh) and GABA are released in the nerve cord and mediate fast neuromuscular excitation and inhibition during locomotion. Here we identify a muscarinic receptor (GAR-2) and the GABAB receptor dimer (GBB-1/2) that detect synaptically released ACh and GABA, respectively. Both GAR-2 and GBB-1/2 inhibited cholinergic motor neurons when ACh and GABA levels were enhanced. Loss of either GPCR resulted in movement defects, suggesting that these receptors are activated during locomotion. When the negative feedback provided by GAR-2 was replaced with positive feedback, animals became highly sensitive to ACh levels and locomotion was severely impaired. Thus, conserved GPCRs act in the nematode motor circuit to provide negative feedback and to regulate locomotory behaviors that underlie navigation.
机译:从突触前末端释放的神经递质激活配体门控离子通道(离子性受体)和各种G蛋白偶联受体(GPCR)。这些神经递质受体在突触前和突触后细胞上均表达。因此,每种神经递质都作用于多种受体类别,从而产生大量的生理反应。已经清楚地阐明了许多离子受体对神经元活动和行为的影响。然而,关于神经递质门控GPCR如何调控神经元和回路的了解还很少。在秀丽隐杆线虫中,乙酰胆碱(ACh)和GABA均在神经索中释放,并在运动过程中介导快速的神经肌肉兴奋和抑制。在这里,我们确定毒蕈碱受体(GAR-2)和GABAB受体二聚体(GBB-1 / 2),分别检测突触释放的ACh和GABA。当ACh和GABA水平升高时,GAR-2和GBB-1 / 2均抑制胆碱能运动神经元。任一GPCR的缺失都会导致运动缺陷,表明这些受体在运动过程中被激活。当用GAR-2提供的负反馈替换为正反馈时,动物对ACh水平变得高度敏感,运动受到严重损害。因此,保守的GPCR在线虫的电动机电路中起作用,以提供负反馈并调节构成导航基础的机车行为。

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