帕尔瓦布明
加巴能
谷氨酸的
神经科学
前脑
电压依赖性钙通道
海马体
生物
钙通道
钙粘蛋白
细胞生物学
内分泌学
化学
内科学
谷氨酸受体
钙
生物化学
抑制性突触后电位
中枢神经系统
受体
医学
作者
Junghee Jin,Dionnet L. Bhatti,Ko-Woon Lee,Lucian Medrihan,Jia Cheng,Jing Wei,Ping Zhong,Zhen Yan,Cassandra L. Kooiker,Claire Song,Jung‐Hyuck Ahn,Gerald J. Obermair,Amy Lee,Jodi Gresack,Paul Greengard,Yong Kim
标识
DOI:10.1038/s41380-019-0371-y
摘要
Genetic polymorphisms of the L-type voltage-gated calcium channel (VGCC) are associated with psychiatric disorders including major depressive disorder. Alterations of S100A10 (p11) level are also implicated in the etiology of major depressive disorder. However, the existence of an endogenous regulator in the brain regulating p11, L-type VGCC, and depressive behavior has not been known. Here we report that Ahnak, whose function in the brain has been obscure, stabilizes p11 and Anxa2 proteins in the hippocampus and prefrontal cortex in the rodent brain. Protein levels of Ahnak, p11, and Anxa2 are highly and positively correlated in the brain. Together these data suggest the existence of an Ahnak/p11/Anxa2 protein complex. Ahnak is expressed in p11-positive as well as p11-negative neurons. Ahnak, through its N-terminal region, scaffolds the L-type pore-forming α1 subunit and, through its C-terminal region, scaffolds the β subunit of VGCC and the p11/Anxa2 complex. Cell surface expression of the α1 subunits and L-type calcium current are significantly reduced in primary cultures of Ahnak knockout (KO) neurons compared to wild-type controls. A decrease in the L-type calcium influx is observed in both glutamatergic neurons and parvalbumin (PV) GABAergic interneurons of Ahnak KO mice. Constitutive Ahnak KO mice or forebrain glutamatergic neuron-selective Ahnak KO mice display a depression-like behavioral phenotype similar to that of constitutive p11 KO mice. In contrast, PV interneuron-selective Ahnak KO mice display an antidepressant-like behavioral phenotype. Our results demonstrate L-type VGCC as an effector of the Ahnak/p11/Anxa2 complex, revealing a novel molecular connection involved in the control of depressive behavior.
科研通智能强力驱动
Strongly Powered by AbleSci AI