Prickle2 and Igsf9b Coordinately Regulate the Cytoarchitecture of the Axon Initial Segment.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2020-09-01 Epub Date: 2020-07-08 DOI:10.1247/csf.20028
Md Imrul Hasan Chowdhury, Tomoki Nishioka, Noriko Mishima, Toshihisa Ohtsuka, Kozo Kaibuchi, Daisuke Tsuboi
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引用次数: 2

Abstract

Prickle2 has been identified in genetic studies of subjects with autism spectrum disorder (ASD) and epilepsy, but the pathological mechanism of Prickle2 remains to be fully understood. Proteomic analysis of Prickle2 with mass spectrometry revealed twenty-eight Prickle2 interactors, including immunoglobulin superfamily member 9b (Igsf9b), in the brain. Here, because Igsf9 family proteins are associated with psychiatric diseases and seizures, we studied the physiological interaction between Prickle2 and Igsf9b. Prickle2 colocalized with Igsf9b in cultured hippocampal neurons. Knockdown of Prickle2 affected the subcellular localization of Igsf9b. Interestingly, Igsf9b localized along axonal processes in a pattern opposite to the ASD-related molecule ANK3/AnkG. AnkG is a major component of the axon initial segment (AIS), where a variety of ASD and epilepsy susceptibility proteins accumulate. Igsf9b-knockdown neurons displayed altered AnkG localization. Prickle2 depletion caused defects in AnkG and voltage-gated Na+ channel localization, resulting in altered network activity. These results support the idea that Prickle2 regulates AnkG distribution by controlling the proper localization of Igsf9b. The novel function of Prickle2 in AIS cytoarchitecture provides new insights into the shared pathology of ASD and epilepsy.Key words: Prickle2, Igsf9b, axon initial segment, neuronal excitability, ASD.

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Prickle2和Igsf9b协调调控轴突起始段的细胞结构
在自闭症谱系障碍(ASD)和癫痫患者的遗传研究中发现了Prickle2,但其病理机制尚不完全清楚。质谱分析显示,在大脑中有28个蛋白相互作用物,包括免疫球蛋白超家族成员9b (Igsf9b)。由于Igsf9家族蛋白与精神疾病和癫痫发作有关,我们研究了Prickle2和Igsf9b之间的生理相互作用。皮刺2在培养的海马神经元中与Igsf9b共定位。敲除Prickle2影响Igsf9b的亚细胞定位。有趣的是,Igsf9b沿轴突过程定位的模式与asd相关分子ANK3/AnkG相反。AnkG是轴突初始段(AIS)的主要组成部分,在这里积累了多种ASD和癫痫易感性蛋白。igsf9b敲低神经元显示AnkG定位改变。皮刺2耗尽导致AnkG缺陷和电压门控Na+通道定位,导致网络活性改变。这些结果支持了针刺2通过控制Igsf9b的适当定位来调节AnkG分布的观点。针刺2在AIS细胞结构中的新功能为ASD和癫痫的共同病理提供了新的见解。关键词:皮刺2,Igsf9b,轴突起始段,神经元兴奋性,ASD
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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