Comparative analysis of macrophage post-translational modifications during intracellular bacterial pathogen infection

biorxiv(2020)

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摘要
Macrophages activate robust antimicrobial functions upon engulfing virulent bacteria, yet a wide array of pathogens paradoxically thrive within these innate immune cells. To probe the pathogen-macrophage interface, we used proteomics to comprehensively quantify changes in post-translational modifications (PTMs) of host proteins during infection with three evolutionarily diverse intracellular pathogens: serovar Typhimurium, and . Comparing global phosphorylation and ubiquitylation patterns identified extensive reprogramming of cellular pathways during infection, with ubiquitylation patterns revealing unique pathogen-specific molecular response signatures undetectable by transcriptional profiling. Differential PTM changes during infection with attenuated cells lacking the ESX-1 virulence determinant revealed extensive modification of phagosome dynamics and antiviral type I interferon activation. We found that -mediated activation of the antiviral OASL1-IRF7 pathway promotes bacterial replication, uncovering a new mechanism of virus-bacterial synergy. Our data reveals remarkable specificity in innate cellular responses to complex stimuli and provides a resource for deeper understanding of host-pathogen interactions.
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关键词
<italic>Mycobacterium tuberculosis</italic>,<italic>Salmonella enterica</italic> serovar Typhimurium,<italic>Listeria monocytogenes</italic>,bacterial infection,proteomics,post-translational modifications,phosphorylation,ubiquitination,OASL1,IRF7,<italic>Salmonella enterica</italic> Typhimurium,mass spectrometry,phosphoproteomics,host-pathogen interactions
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