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Probing the Protein Interaction Network of Pseudomonas aeruginosa Cells by Chemical Cross-Linking Mass Spectrometry

机译:用化学交联质谱法探测铜绿假单胞菌细胞的蛋白质相互作用网络

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摘要

In pathogenic Gram-negative bacteria, interactions among membrane proteins are key mediators of host cell attachment, invasion, pathogenesis, and antibiotic resistance. Membrane protein interactions are highly dependent upon local properties and environment, warranting direct measurements on native protein complex structures as they exist in cells. Here we apply in vivo chemical cross-linking mass spectrometry, to reveal the first large-scale protein interaction network in Pseudomonas aeruginosa, an opportunistic human pathogen, by covalently linking interacting protein partners, thereby fixing protein complexes in vivo. A total of 626 cross-linked peptide pairs, including previously unknown interactions of many membrane proteins, are reported. These pairs not only define the existence of these interactions in cells but also provide linkage constraints for complex structure predictions. Structures of three membrane proteins, namely, SecD-SecF, OprF, and OprI are predicted using in vivo cross-linked sites. These findings improve understanding of membrane protein interactions and structures in cells.
机译:在致病性革兰氏阴性细菌中,膜蛋白之间的相互作用是宿主细胞附着,侵袭,发病机制和抗生素抗性的关键介体。膜蛋白相互作用高度依赖于局部特性和环境,需要对天然蛋白复合物结构进行直接测量,因为它们存在于细胞中。在这里,我们应用体内化学交联质谱技术,通过共价连接相互作用的蛋白质伴侣,从而在体内固定蛋白质复合物,揭示了铜绿假单胞菌(一种机会性人类病原体)中的第一个大规模蛋白质相互作用网络。据报道,共有626对交联的肽对,包括许多膜蛋白以前未知的相互作用。这些对不仅定义了单元格中这些交互的存在,而且还为复杂的结构预测提供了链接约束。使用体内交联位点可预测三种膜蛋白的结构,即SecD-SecF,OprF和OprI。这些发现增进了对细胞膜蛋白相互作用和结构的理解。

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