McCarthy Clara Inés, Mustafá Emilio Román, Cornejo María Paula, Yaneff Agustín, Rodríguez Silvia Susana, Perello Mario, Raingo Jesica
Electrophysiology Laboratory of the Multidisciplinary Institute of Cell Biology (Argentine Research Council CONICET, Scientific Research Commission of the Buenos Aires Province and National University of La Plata), La Plata, Buenos Aires, Argentina.
Neurophysiology Laboratory of the Multidisciplinary Institute of Cell Biology (Argentine Research Council CONICET, Scientific Research Commission of the Buenos Aires Province and National University of La Plata), La Plata, Buenos Aires, Argentina.
Mol Neurobiol. 2023 May;60(5):2644-2660. doi: 10.1007/s12035-023-03221-1. Epub 2023 Jan 25.
The dopamine receptor type 1 (D1R) and the dopamine receptor type 5 (D5R), which are often grouped as D1R-like due to their sequence and signaling similarities, exhibit high levels of constitutive activity. The molecular basis for this agonist-independent activation has been well characterized through biochemical and mutagenesis in vitro studies. In this regard, it was reported that many antipsychotic drugs act as inverse agonists of D1R-like constitutive activity. On the other hand, D1R is highly expressed in the medial prefrontal cortex (mPFC), a brain area with important functions such as working memory. Here, we studied the impact of D1R-like constitutive activity and chlorpromazine (CPZ), an antipsychotic drug and D1R-like inverse agonist, on various neuronal Ca conductances, and we explored its effect on calcium-dependent neuronal functions in the mouse medial mPFC. Using ex vivo brain slices containing the mPFC and transfected HEK293T cells, we found that CPZ reduces Ca2.2 currents by occluding D1R-like constitutive activity, in agreement with a mechanism previously reported by our lab, whereas CPZ directly inhibits Ca1 currents in a D1R-like activity independent manner. In contrast, CPZ and D1R constitutive activity did not affect Ca2.1, Ca2.3, or Ca3 currents. Finally, we found that CPZ reduces excitatory postsynaptic responses in mPFC neurons. Our results contribute to understanding CPZ molecular targets in neurons and describe a novel physiological consequence of CPZ non-canonical action as a D1R-like inverse agonist in the mouse brain.
多巴胺1型受体(D1R)和多巴胺5型受体(D5R),由于其序列和信号相似性常被归为类D1R,表现出高水平的组成性活性。通过体外生化和诱变研究,这种非激动剂依赖性激活的分子基础已得到充分表征。在这方面,有报道称许多抗精神病药物可作为类D1R组成性活性的反向激动剂。另一方面,D1R在内侧前额叶皮质(mPFC)中高度表达,mPFC是一个具有工作记忆等重要功能的脑区。在此,我们研究了类D1R组成性活性和氯丙嗪(CPZ,一种抗精神病药物和类D1R反向激动剂)对各种神经元钙电导的影响,并探讨了其对小鼠内侧mPFC中钙依赖性神经元功能的作用。使用包含mPFC的离体脑片和转染的HEK293T细胞,我们发现CPZ通过阻断类D1R组成性活性来降低Ca2.2电流,这与我们实验室先前报道的机制一致,而CPZ以类D1R活性非依赖性方式直接抑制Ca1电流。相比之下,CPZ和D1R组成性活性并未影响Ca2.1、Ca2.3或Ca3电流。最后,我们发现CPZ可降低mPFC神经元中的兴奋性突触后反应。我们的结果有助于理解CPZ在神经元中的分子靶点,并描述了CPZ作为小鼠脑中类D1R反向激动剂的非经典作用的一种新的生理后果。