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Enhancing VTA Cav1.3 L-type Ca2+ channel activity promotes cocaine and mood - related behaviors via overlapping AMPA receptor mechanisms in the nucleus accumbens

机译:通过伏隔核中重叠的AMPA受体机制增强VTA Cav1.3 L型Ca2 +通道活性可卡因和与情绪有关的行为

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摘要

Genetic factors significantly influence susceptibility for substance abuse and mood disorders. Rodent studies have begun to elucidate a role of Cav1.3 L-type Ca2+ channels in neuropsychiatric-related behaviors, such as addictive and depressive-like behaviors. Human studies have also linked the CACNA1D gene, which codes for the Cav1.3 protein, with bipolar disorder (BD). However, the neurocircuitry and the molecular mechanisms underlying the role of Cav1.3 in neuropsychiatric phenotypes are not well established. In the present study, we directly manipulated Cav1.3 channels in Cav1.2 dihydropyridine (DHP) insensitive mutant mice and found that VTA Cav1.3 channels mediate cocaine-related and depressive-like behavior through a common nucleus accumbens (NAc) shell calcium permeable AMPA receptor (CP-AMPAR) mechanism that requires GluA1 phosphorylation at S831. Selective activation of VTA Cav1.3 with (±)-BayK-8644 (BayK) enhanced cocaine conditioned place preference (CPP) and cocaine psychomotor activity while inducing depressive-like behavior, an effect not observed in S831A phospho-mutant mice. Infusion of the CP-AMPAR-specific blocker Naspm into the NAc shell reversed the cocaine and depressive-like phenotypes. In addition, activation of VTA Cav1.3 channels resulted in social behavioral deficits. In contrast to the cocaine- and depression-related phenotypes, GluA1/A2 AMPARs in the NAc core mediated social deficits, independent of S831-GluA1 phosphorylation. Using a candidate gene analysis approach, we also identified single nucleotide polymorphisms in the CACNA1D gene associated with cocaine dependence (CD) in human subjects. Together, our findings reveal novel, overlapping mechanisms through which VTA Cav1.3 mediates cocaine-related, depressive-like and social phenotypes suggesting that Cav1.3 may serve as a target for the treatment of neuropsychiatric symptoms.
机译:遗传因素显着影响药物滥用和情绪障碍的易感性。啮齿类动物研究已开始阐明Cav1.3 L型Ca 2 + 通道在神经精神病相关行为(如成瘾和抑郁样行为)中的作用。人体研究也将编码Cav1.3蛋白的CACNA1D基因与躁郁症(BD)相关联。但是,神经回路和Cav1.3在神经精神病学表型中的作用基础的分子机制尚不明确。在本研究中,我们直接在不敏感的Cav1.2二氢吡啶(DHP)突变小鼠中操纵Cav1.3通道,发现VTA Cav1.3通道通过常见的伏伏核(NAc)壳钙介导可卡因相关和抑郁样行为透性AMPA受体(CP-AMPAR)机制,需要在S831处将GluA1磷酸化。用(±)-BayK-8644(BayK)选择性激活VTA Cav1.3增强了可卡因条件位置偏好(CPP)和可卡因精神运动活性,同时诱导了抑郁样行为,这在S831A磷酸突变小鼠中未观察到。将CP-AMPAR特异性阻滞剂Naspm注入NAc外壳可逆可卡因和抑郁样表型。此外,VTA Cav1.3通道的激活导致社交行为缺陷。与可卡因和抑郁相关的表型相反,NAc核心中的GluA1 / A2 AMPAR介导了社会缺陷,而与S831-GluA1磷酸化无关。使用候选基因分析方法,我们还确定了人类受试者中与可卡因依赖性(CD)相关的CACNA1D基因中的单核苷酸多态性。总之,我们的发现揭示了VTA Cav1.3介导可卡因相关,抑郁样和社会表型的新颖,重叠的机制,这表明Cav1.3可以作为治疗神经精神症状的靶标。

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