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1.
Mol Psychiatry ; 22(12): 1735-1745, 2017 Dec.
Article in English | MEDLINE | ID: mdl-28194001

ABSTRACT

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. 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 insensitive mutant mice and found that ventral tegmental area (VTA) Cav1.3 channels mediate cocaine-related and depressive-like behavior through a common nucleus accumbens (NAc) shell calcium-permeable α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid 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 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 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.


Subject(s)
Affect/physiology , Calcium Channels, L-Type/metabolism , Cocaine/pharmacology , Dopamine Uptake Inhibitors/pharmacology , Nucleus Accumbens/metabolism , Ventral Tegmental Area/metabolism , Affect/drug effects , Animals , Calcium Channels, L-Type/genetics , Cocaine-Related Disorders/metabolism , Conditioning, Psychological/drug effects , Conditioning, Psychological/physiology , Depression/metabolism , Disease Models, Animal , Genetic Association Studies , Humans , Male , Mice, Inbred C57BL , Mice, Transgenic , Motor Activity/drug effects , Motor Activity/physiology , Nucleus Accumbens/drug effects , Post-Synaptic Density/drug effects , Post-Synaptic Density/metabolism , Receptors, AMPA/metabolism , Social Behavior , Ventral Tegmental Area/drug effects
2.
Placenta ; 36(6): 638-44, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25862611

ABSTRACT

INTRODUCTION: Potassium (K(+)) channels are key regulators of vascular smooth muscle cell (VSMC) excitability. In systemic small arteries, Kv7 channel expression/activity has been noted and a role in vascular tone regulation demonstrated. We aimed to demonstrate functional Kv7 channels in human fetoplacental small arteries. METHODS: Human placental chorionic plate arteries (CPAs) were obtained at term. CPA responses to Kv7 channel modulators was determined by wire myography. Presence of Kv7 channel mRNA (encoded by KCNQ1-5) and protein expression were assessed by RT-PCR and immunohistochemistry/immunofluorescence, respectively. RESULTS: Kv7 channel blockade with linopirdine increased CPA basal tone and AVP-induced contraction. Pre-contracted CPAs (AVP; 80 mM K(+) depolarization solution) exhibited significant relaxation to flupirtine, retigabine, the acrylamide (S)-1, and (S) BMS-204352, differential activators of Kv7.1 - Kv7.5 channels. All CPAs assessed expressed KCNQ1 and KCNQ3-5 mRNA; KCNQ2 was expressed only in a subset of CPAs. Kv7 protein expression was confirmed in intact CPAs and isolated VSMCs. DISCUSSION: Kv7 channels are present and active in fetoplacental vessels, contributing to vascular tone regulation in normal pregnancy. Targeting these channels may represent a therapeutic intervention in pregnancies complicated by increased vascular resistance.


Subject(s)
Arteries/physiology , KCNQ Potassium Channels/agonists , KCNQ Potassium Channels/metabolism , Muscle, Smooth, Vascular/physiology , Placenta/blood supply , Vasodilation/physiology , Arteries/drug effects , Female , Humans , Indoles/pharmacology , KCNQ Potassium Channels/antagonists & inhibitors , Muscle, Smooth, Vascular/drug effects , Myocytes, Smooth Muscle/drug effects , Myocytes, Smooth Muscle/physiology , Potassium Channel Blockers/pharmacology , Pregnancy , Pyridines/pharmacology , Vasodilation/drug effects
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