In silico prediction of protein-protein interactions in human macrophages
Компьютерное предсказание белок–белковых взаимодействий в макрофагах человека
2014-01-01
SCID: 54.1/63qw8smf
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APIDMycobacterium tuberculosis infectioncontextualized interactomehuman macrophagesprotein-protein interactions
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Abstract (AI)
BACKGROUND: Protein-protein interaction (PPI) network analyses are highly valuable in deciphering and understanding the intricate organisation of cellular functions. Nevertheless, the majority of available protein-protein interaction networks are context-less, i.e. without any reference to the spatial, temporal or physiological conditions in which the interactions may occur. In this work, we are proposing a protocol to infer the most likely protein-protein interaction (PPI) network in human macrophages. RESULTS: We integrated the PPI dataset from the Agile Protein Interaction DataAnalyzer (APID) with different meta-data to infer a contextualized macrophage-specific interactome using a combination of statistical methods. The obtained interactome is enriched in experimentally verified interactions and in proteins involved in macrophage-related biological processes (i.e. immune response activation, regulation of apoptosis). As a case study, we used the contextualized interactome to highlight the cellular processes induced upon Mycobacterium tuberculosis infection. CONCLUSION: Our work confirms that contextualizing interactomes improves the biological significance of bioinformatic analyses. More specifically, studying such inferred network rather than focusing at the gene expression level only, is informative on the processes involved in the host response. Indeed, important immune features such as apoptosis are solely highlighted when the spotlight is on the protein interaction level.
Key Findings
1
A statistical protocol integrates APID protein-interaction data with metadata to infer a contextualized, macrophage-specific human interactome.
2
Interactome contextualization improves the biological significance of analyses compared with context-free networks.
3
Protein-interaction analysis reveals host-response features, including apoptosis, that are not evident from gene-expression analysis alone.
4
The contextualized interactome identifies cellular processes induced in human macrophages following Mycobacterium tuberculosis infection.
5
The inferred macrophage interactome is enriched for experimentally verified interactions and proteins involved in immune-response activation and apoptosis regulation.
Research Object
the contextualized protein-protein interaction network (macrophage-specific interactome) in human macrophages
Research Subject
the inference and biological characterization of macrophage-specific protein-protein interactions, including immune-response and apoptosis processes, particularly during Mycobacterium tuberculosis infection
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2014-01-01
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