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一个与精神分裂症相关的缺失导致 KCNQ2 依赖性的前额叶皮层中间神经元活动的多巴胺能调节异常。

A Schizophrenia-Related Deletion Leads to KCNQ2-Dependent Abnormal Dopaminergic Modulation of Prefrontal Cortical Interneuron Activity.

机构信息

Department of Neurology, Columbia University, New York, NY10032, USA.

Department of Physiology and Cellular Biophysics, Columbia University, New York, NY 10032, USA.

出版信息

Cereb Cortex. 2018 Jun 1;28(6):2175-2191. doi: 10.1093/cercor/bhx123.

DOI:10.1093/cercor/bhx123
PMID:28525574
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6018968/
Abstract

Altered prefrontal cortex function is implicated in schizophrenia (SCZ) pathophysiology and could arise from imbalance between excitation and inhibition (E/I) in local circuits. It remains unclear whether and how such imbalances relate to genetic etiologies. We used a mouse model of the SCZ-predisposing 22q11.2 deletion (Df(16)A+/- mice) to evaluate how this genetic lesion affects the excitability of layer V prefrontal pyramidal neurons and its modulation by dopamine (DA). Df(16)A+/- mice have normal balance between E/I at baseline but are unable to maintain it upon dopaminergic challenge. Specifically, in wild-type mice, D1 receptor (D1R) activation enhances excitability of layer V prefrontal pyramidal neurons and D2 receptor (D2R) activation reduces it. Whereas the excitatory effect upon D1R activation is enhanced in Df(16)A+/- mice, the inhibitory effect upon D2R activation is reduced. The latter is partly due to the inability of mutant mice to activate GABAergic parvalbumin (PV)+ interneurons through D2Rs. We further demonstrate that reduced KCNQ2 channel function in PV+ interneurons in Df(16)A+/- mice renders them less capable of inhibiting pyramidal neurons upon D2 modulation. Thus, DA modulation of PV+ interneurons and control of E/I are altered in Df(16)A+/- mice with a higher excitation and lower inhibition during dopaminergic modulation.

摘要

前额叶皮层功能改变与精神分裂症(SCZ)的病理生理学有关,可能源于局部回路中兴奋与抑制(E/I)的失衡。目前尚不清楚这种失衡是否以及如何与遗传病因有关。我们使用了一种具有 SCZ 易感性的 22q11.2 缺失(Df(16)A+/- 小鼠)的小鼠模型,以评估这种遗传损伤如何影响前额叶皮层 V 层锥体神经元的兴奋性及其对多巴胺(DA)的调制。Df(16)A+/- 小鼠在基线时具有 E/I 之间的正常平衡,但在多巴胺能挑战时无法维持这种平衡。具体而言,在野生型小鼠中,D1 受体(D1R)激活增强了前额叶皮层 V 层锥体神经元的兴奋性,而 D2 受体(D2R)激活则降低了其兴奋性。而在 Df(16)A+/- 小鼠中,D1R 激活的兴奋性增强,而 D2R 激活的抑制性降低。后者部分归因于突变型小鼠无法通过 D2R 激活 GABA 能性 Parvalbumin(PV)+中间神经元。我们进一步证明,Df(16)A+/- 小鼠中 PV+中间神经元的 KCNQ2 通道功能降低,使它们在 D2 调制时抑制锥体神经元的能力降低。因此,在 Df(16)A+/- 小鼠中,DA 对 PV+中间神经元的调制和 E/I 的控制发生改变,在多巴胺能调制期间表现出更高的兴奋和更低的抑制。