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首页> 外文期刊>Journal of proteome research >Drafting the CLN3 protein interactome in SH-SY5Y human neuroblastoma cells: A label-free quantitative proteomics approach
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Drafting the CLN3 protein interactome in SH-SY5Y human neuroblastoma cells: A label-free quantitative proteomics approach

机译:在SH-SY5Y人成神经细胞瘤细胞中起草CLN3蛋白相互作用组:无标记的定量蛋白质组学方法

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摘要

Neuronal ceroid lipofuscinoses (NCL) are the most common inherited progressive encephalopathies of childhood. One of the most prevalent forms of NCL, Juvenile neuronal ceroid lipofuscinosis (JNCL) or CLN3 disease (OMIM: 204200), is caused by mutations in the CLN3 gene on chromosome 16p12.1. Despite progress in the NCL field, the primary function of ceroid-lipofuscinosis neuronal protein 3 (CLN3) remains elusive. In this study, we aimed to clarify the role of human CLN3 in the brain by identifying CLN3-associated proteins using a Tandem Affinity Purification coupled to Mass Spectrometry (TAP-MS) strategy combined with Significance Analysis of Interactome (SAINT). Human SH-SY5Y-NTAP-CLN3 stable cells were used to isolate native protein complexes for subsequent TAP-MS. Bioinformatic analyses of isolated complexes yielded 58 CLN3 interacting partners (IP) including 42 novel CLN3 IP, as well as 16 CLN3 high confidence interacting partners (HCIP) previously identified in another high-throughput study by Behrends et al., 2010. Moreover, 31 IP of ceroid-lipofuscinosis neuronal protein 5 (CLN5) were identified (18 of which were in common with the CLN3 bait). Our findings support previously suggested involvement of CLN3 in transmembrane transport, lipid homeostasis and neuronal excitability, as well as link it to G-protein signaling and protein folding/sorting in the ER.
机译:神经元类固醇脂褐藻糖(NCL)是儿童期最常见的遗传性进行性脑病。 NCL的一种最普遍的形式是青少年神经元类脂褐藻病(JNCL)或CLN3疾病(OMIM:204200),是由16p12.1染色体上的CLN3基因突变引起的。尽管在NCL领域取得了进展,但类脂脂褐藻病神经元蛋白3(CLN3)的主要功能仍然难以捉摸。在这项研究中,我们旨在通过串联亲和纯化与质谱(TAP-MS)策略结合相互作用组的重要性分析(SAINT)鉴定CLN3相关蛋白来阐明人CLN3在大脑中的作用。人类SH-SY5Y-NTAP-CLN3稳定细胞用于分离天然蛋白复合物,用于后续的TAP-MS。对分离的复合物的生物信息学分析产生了58个CLN3相互作用伙伴(IP),包括42个新颖的CLN3 IP,以及16个先前在Behrends等人于2010年进行的高通量研究中确定的CLN3高可信度相互作用伙伴(HCIP)。此外,31鉴定了类脂脂褐质病神经元蛋白5(CLN5)的IP(其中18种与CLN3诱饵相同)。我们的发现支持以前认为CLN3参与跨膜转运,脂质稳态和神经元兴奋性,以及将其与ER中的G蛋白信号传导和蛋白折叠/分选相关联。

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