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首页> 外文期刊>Journal of proteome research >Protein Interaction Network of Human Protein Kinase D2 Revealed by Chemical Cross-Linking/Mass Spectrometry
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Protein Interaction Network of Human Protein Kinase D2 Revealed by Chemical Cross-Linking/Mass Spectrometry

机译:化学交联/质谱法揭示人蛋白激酶D2的蛋白相互作用网络

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摘要

We investigated the interaction network of human PKD2 in the cytosol and in Golgi-enriched subcellular protein fractions by an affinity enrichment strategy combined with chemical cross-linking/mass spectrometry (MS). Analysis of the subproteomes revealed the presence of distinct proteins in the cytosolic and Golgi fractions. The covalent fixation of transient or weak interactors by chemical cross-linking allowed capturing interaction partners that might otherwise disappear during conventional pull-down experiments. In total, 31 interaction partners were identified for PKD2, including glycogen synthase kinase-3 beta (GSK3B), 14-3-3 protein gamma (YWHAG), and the alpha isoform of 55 kDa regulatory subunit B of protein phosphatase 2A (PPP2R2A). Remarkably, the entire seven-subunit Arp2/3 complex (ARPC1B, ARPC2, ARPC3, ARPC4, ARPC5, ACTR3, ACTR2) as well as ARPC1A and ARPC5L, which are putative substitutes of ARPC1B and ARPC5, were identified. We provide evidence of a direct protein protein interaction between PKD2 and Arp2/3. Our findings will pave the way for further structural and functional studies of PKD2 complexes, especially the PKD2/Arp2/3 interaction, to elucidate the role of PKD2 for transport processes at the trans-Golgi network. Data are available via ProteomeXchange with identifiers PXD003909 (enrichment from cytosolic fractions), PXD003913 (enrichment from Golgi fractions), and PXD003917 (subcellular fractionation).
机译:我们通过结合化学交联/质谱(MS)的亲和力富集策略,研究了人PKD2在细胞质和高尔基体富集的亚细胞蛋白组分中的相互作用网络。对亚蛋白质组的分析表明,胞质和高尔基部分中存在不同的蛋白质。通过化学交联将瞬态或弱相互作用因子共价固定,可以捕获相互作用的伴侣,而这些伴侣在常规的下拉实验中可能会消失。总共为PKD2鉴定了31个相互作用伴侣,包括糖原合酶激酶3 beta(GSK3B),14-3-3蛋白γ(YWHAG)和蛋白磷酸酶2A(PPP2R2A)的55 kDa调节亚基B的α同工型。 。值得注意的是,鉴定了整个七个亚基的Arp2 / 3复合体(ARPC1B,ARPC2,ARPC3,ARPC4,ARPC5,ACTR3,ACTR2)以及ARPC1A和ARPC5L,它们是ARPC1B和ARPC5的假定替代物。我们提供了PKD2和Arp2 / 3之间直接蛋白质相互作用的证据。我们的发现将为进一步研究PKD2复合物(尤其是PKD2 / Arp2 / 3相互作用)的结构和功能铺平道路,从而阐明PKD2在反高尔基网络中运输过程中的作用。数据可通过ProteomeXchange获得,其标识符为PXD003909(来自胞质级分),PXD003913(来自高尔基级分)和PXD003917(亚细胞级分)。

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