首页> 外文期刊>European neuropsychopharmacology: the journal of the European College of Neuropsychopharmacology >Lithium reverses behavioral and axonal transport-related changes associated with ANK3 bipolar disorder gene disruption
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Lithium reverses behavioral and axonal transport-related changes associated with ANK3 bipolar disorder gene disruption

机译:锂逆转与ANK3双相障碍基因破坏相关的行为和轴突转换相关的变化

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摘要

Ankyrin 3 (ANK3) has been implicated as a genetic risk factor for bipolar disorder (BD), however the resulting pathophysiological and treatment implications remain elusive. In a preclinical systems biological approach, we aimed to characterize the behavioral and proteomic effects of Ank3 haploinsufficiency and chronic mood-stabilizer treatment in mice. Psychiatric-related behavior was evaluated with the novelty-suppressed feeding (NSF) paradigm, elevated plus maze (EPM) and a passive avoidance task (PAT). Tandem mass spectrometry (MSE) was employed for hippocampal proteome profiling. A functional enrichment approach based on protein protein interactions (PPIs) was performed to outline which biological processes in the hippocampus were affected by Ank3 haploinsufficiency and lithium treatment. Proteomic abundance changes as detected by MSE or highlighted by PPI network modelling were followed up by targeted selected reaction monitoring (SRM). Increased psychiatric-related behavior in Ank3+/- mice was ameliorated by lithium in all assessments (NSF, EPM, PAT). MSE followed by modular PPI clustering and functional annotation enrichment pointed towards kinesin-related axonal transport and glutamate signaling as mediators of Ank3+/- pathophysiology and lithium treatment. SRM validated this hypothesis and further confirmed abundance changes of ANK3 interaction partners. We propose that psychiatric-related behavior in Ank3+/- mice is connected to a disturbance of the kinesin cargo system, resulting in a dysfunction of neuronal ion channel and glutamate receptor transport. Lithium reverses this molecular signature, suggesting the promotion of anterograde kinesin transport as part of its mechanism of action in ameliorating Ank3-related psychiatric-related behavior. (C) 2017 Elsevier B.V. and ECNP. All rights reserved.
机译:Ankyrin 3(ANK3)涉及双相障碍(BD)的遗传危险因素,然而导致的病理生理学和治疗仍然难以实现。在临床前系统的生物方法中,我们旨在表征ANK3臭氧水碎能力和小鼠慢性情绪稳定剂处理的行为和蛋白色作用。用新颖的抑制喂养(NSF)范例,升高的Plus迷宫(EPM)和被动避免任务(PAT)评估了精神病有关的行为。串联质谱(MSE)用于海马蛋白质组分析。对基于蛋白质蛋白质相互作用(PPI)的功能性富集方法进行了概述海马​​中的生物过程受ANK3卵泡水能和锂处理的影响。通过MSE检测或通过PPI网络建模突出显示的蛋白质组态丰度变化,采用靶向选定的反应监测(SRM)进行随访。在所有评估中,锂改善了ANK3 +/-小鼠中的精神病有关的行为增加(NSF,EPM,PAT)。 MSE,然后是模块化的PPI聚类和功能的注释富集,朝向Kinesin相关的轴突运输和谷氨酸信号传导作为ANK3 +/-病理生理学和锂处理的介质。 SRM验证了这一假设,进一步证实了ANK3互动伙伴的丰富变化。我们提出ANK3 +/-小鼠的精神病相关行为与Kinesin货物系统的干扰相连,导致神经元离子通道和谷氨酸受体运输的功能障碍。锂逆转了这种分子签名,表明促进了Anterograde Kinesin运输,作为其改善ANK3相关精神病相关行为的作用机制的一部分。 (c)2017 Elsevier B.V.和ECNP。版权所有。

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