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绘制 DNAJC11 相互作用网络图谱,该蛋白是一种新的线粒体蛋白,可导致小鼠神经肌肉病变。

Mapping Interactome Networks of DNAJC11, a Novel Mitochondrial Protein Causing Neuromuscular Pathology in Mice.

机构信息

Laboratory of Genetics, Department of Biotechnology , Agricultural University of Athens , Iera Odos 75 , 11855 , Athens , Greece.

Institute for Bioinnovation , Biomedical Sciences Research Center "Alexander Fleming" , Fleming 34 , 16672 , Vari , Greece.

出版信息

J Proteome Res. 2019 Nov 1;18(11):3896-3912. doi: 10.1021/acs.jproteome.9b00338. Epub 2019 Oct 7.

DOI:10.1021/acs.jproteome.9b00338
PMID:31550165
Abstract

We previously identified DNAJC11, a mitochondrial outer membrane protein of unknown function, as a novel genetic cause in modeled neuromuscular disease. To understand the physiological role of DNAJC11, we employed a proteomic approach for the identification of the DNAJC11 interactome, through the expression of DNAJC11-FLAG in HEK293FT cells and transgenic mice. Our analysis confirmed known DNAJC11-interacting proteins including members of the MICOS complex that organize mitochondrial cristae formation. Moreover, we identified in both biological systems novel mitochondrial interactions including VDACs that exchange metabolites across the outer mitochondrial membrane. In HEK293FT cells, DNAJC11 preferentially interacted with ribosomal subunits and chaperone proteins including Hsp70 members, possibly correlating DNAJC11 with cotranslational folding and import of mitochondrial proteins in metabolically active cells. Instead, the DNAJC11 interactome in the mouse cerebrum was enriched for synaptic proteins, supporting the importance of DNAJC11 in synapse and neuronal integrity. Moreover, we demonstrated that the DUF3395 domain is critically involved in DNAJC11 protein-protein interactions, while the J-domain determines its mitochondrial localization. Collectively, these results provide a functional characterization for DNAJC11 domains, while the identified interactome networks reveal an emerging role of DNAJC11 in mitochondrial biogenesis and response to microenvironment changes and requirements.

摘要

我们之前发现 DNAJC11 是一种线粒体膜外蛋白,其功能未知,是模型神经肌肉疾病的一个新的遗传原因。为了了解 DNAJC11 的生理作用,我们通过在 HEK293FT 细胞和转基因小鼠中表达 DNAJC11-FLAG,采用蛋白质组学方法来鉴定 DNAJC11 相互作用组。我们的分析证实了已知的 DNAJC11 相互作用蛋白,包括参与线粒体嵴形成的 MICOS 复合物的成员。此外,我们在这两种生物系统中都鉴定到了新的线粒体相互作用,包括在外膜上交换代谢物的 VDAC。在 HEK293FT 细胞中,DNAJC11 优先与核糖体亚基和伴侣蛋白相互作用,包括 Hsp70 成员,这可能与 DNAJC11 与代谢活跃细胞中线粒体蛋白的共翻译折叠和导入相关。相反,在小鼠大脑中,DNAJC11 相互作用组富含突触蛋白,支持 DNAJC11 在突触和神经元完整性中的重要性。此外,我们证明 DUF3395 结构域在 DNAJC11 蛋白-蛋白相互作用中起着至关重要的作用,而 J 结构域决定了其在线粒体中的定位。总之,这些结果为 DNAJC11 结构域提供了功能特征,而鉴定出的相互作用组网络揭示了 DNAJC11 在线粒体生物发生以及对微环境变化和需求的反应中的新兴作用。

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