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Circadian-Related Heteromerization of Adrenergic and Dopamine D4 Receptors Modulates Melatonin Synthesis and Release in the Pineal Gland

机译:肾上腺素和多巴胺D4受体的昼夜节律相关的杂化作用可调节褪黑激素的合成和在松果体中的释放。

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摘要

The role of the pineal gland is to translate the rhythmic cycles of night and day encoded by the retina into hormonal signals that are transmitted to the rest of the neuronal system in the form of serotonin and melatonin synthesis and release. Here we describe that the production of both melatonin and serotonin by the pineal gland is regulated by a circadian-related heteromerization of adrenergic and dopamine D4 receptors. Through α1B-D4 and β1-D4 receptor heteromers dopamine inhibits adrenergic receptor signaling and blocks the synthesis of melatonin induced by adrenergic receptor ligands. This inhibition was not observed at hours of the day when D4 was not expressed. These data provide a new perspective on dopamine function and constitute the first example of a circadian-controlled receptor heteromer. The unanticipated heteromerization between adrenergic and dopamine D4 receptors provides a feedback mechanism for the neuronal hormone system in the form of dopamine to control circadian inputs.
机译:松果体的作用是将视网膜编码的昼夜节律周期转换成激素信号,该激素信号以5-羟色胺和褪黑激素合成及释放的形式传递至神经系统的其余部分。在这里,我们描述了松果体褪黑激素和5-羟色胺的产生受肾上腺素和多巴胺D4受体的昼夜节律相关的异聚作用的调节。多巴胺可通过α1B-D4和β1-D4受体异源异构体抑制肾上腺素能受体信号传导,并阻断由肾上腺素能受体配体诱导的褪黑激素合成。在一天中不表达D4的几个小时内未观察到这种抑制作用。这些数据提供了有关多巴胺功能的新观点,并构成了昼夜节律控制的受体异源单体的第一个例子。肾上腺素能和多巴胺D4受体之间的意外异源化以多巴胺的形式为神经元激素系统提供反馈机制,以控制昼夜节律的输入。

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