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锌诱导的小鼠突触体中Shank3相互作用组的表征。

Characterization of the zinc-induced Shank3 interactome of mouse synaptosome.

作者信息

Lee Yeunkum, Ryu Jae Ryun, Kang Hyojin, Kim Yoonhee, Kim Shinhyun, Zhang Yinhua, Jin Chunmei, Cho Hyo Min, Kim Won-Ki, Sun Woong, Han Kihoon

机构信息

Department of Neuroscience, College of Medicine, Korea University, Seoul, South Korea; Department of Biomedical Sciences, College of Medicine, Korea University, Seoul, South Korea.

Department of Biomedical Sciences, College of Medicine, Korea University, Seoul, South Korea; Department of Anatomy, College of Medicine, Korea University, Seoul, South Korea.

出版信息

Biochem Biophys Res Commun. 2017 Dec 16;494(3-4):581-586. doi: 10.1016/j.bbrc.2017.10.143. Epub 2017 Oct 28.

Abstract

Variants of the SHANK3 gene, which encodes a core scaffold protein of the postsynaptic density of excitatory synapses, have been causally associated with numerous brain disorders. Shank3 proteins directly bind zinc ions through their C-terminal sterile α motif domain, which enhances the multimerization and synaptic localization of Shank3, to regulate excitatory synaptic strength. However, no studies have explored whether zinc affects the protein interactions of Shank3, which might contribute to the synaptic changes observed after zinc application. To examine this, we first purified Shank3 protein complexes from mouse brain synaptosomal lysates that were incubated with different concentrations of ZnCl, and analyzed them with mass spectrometry. We used strict criteria to identify 71 proteins that specifically interacted with Shank3 when extra ZnCl was added to the lysate. To characterize the zinc-induced Shank3 interactome, we performed various bioinformatic analyses that revealed significant associations of the interactome with subcellular compartments, including mitochondria, and brain disorders, such as bipolar disorder and schizophrenia. Together, our results showing that zinc affected the Shank3 protein interactions of in vitro mouse synaptosomes provided an additional link between zinc and core synaptic proteins that have been implicated in multiple brain disorders.

摘要

SHANK3基因编码兴奋性突触后致密区的一种核心支架蛋白,该基因的变异已被证实与多种脑部疾病存在因果关系。Shank3蛋白通过其C端无活性α基序结构域直接结合锌离子,这增强了Shank3的多聚化和突触定位,从而调节兴奋性突触强度。然而,尚无研究探讨锌是否会影响Shank3的蛋白质相互作用,而这可能是锌应用后观察到的突触变化的原因之一。为了研究这一问题,我们首先从小鼠脑突触体裂解物中纯化Shank3蛋白复合物,这些裂解物与不同浓度的ZnCl孵育,然后用质谱分析。我们使用严格的标准鉴定出71种在向裂解物中添加额外的ZnCl时与Shank3特异性相互作用的蛋白质。为了表征锌诱导的Shank3相互作用组,我们进行了各种生物信息学分析,结果显示该相互作用组与包括线粒体在内的亚细胞区室以及双相情感障碍和精神分裂症等脑部疾病存在显著关联。总之,我们的结果表明锌会影响体外小鼠突触体的Shank3蛋白相互作用,这为锌与涉及多种脑部疾病的核心突触蛋白之间提供了额外的联系。

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