Proteomics

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Proteomic and bioinformatic characterization of proteins secreted conventionally and unconventionally from human primary macrophages upon LPS transfection


ABSTRACT: The non-canonical caspase-4/5 inflammasome has been only very recently characterized. It is expressed by macrophages, the principal effector cells of the innate immunity system, and is activated by gram-negative bacteria, ER stress, and UV radiation. Activation of this inflammasome results in pyroptosis, inflammatory cell death, and secretion of pro-inflammatory cytokines of the interleukin-1 family. In our model we transfected human primary macrophages with Lipopolysaccharide, a cell wall component of gram-negative bacteria, to simulate bacteria entering the cell and thus activating the caspase-4/5 inflammasome. We then performed high-throughput proteomics to identify proteins secreted during the stimulation. The secretome was separated into two fractions using size-exclusion centrifugation, with a 100 kDa cut-off we enriched extracellular vesicles (EVs) and the flow through was concentrated over 10 kDa to yield the rest-secretome (RS) samples. The EV and RS samples of LPS transfected cells were then compared to untreated cells.

INSTRUMENT(S): Q Exactive

ORGANISM(S): Homo Sapiens (ncbitaxon:9606)

SUBMITTER: Tuula Nyman  

PROVIDER: MSV000080769 | MassIVE | Wed Mar 29 12:29:00 BST 2017

SECONDARY ACCESSION(S): PXD005083

REPOSITORIES: MassIVE

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Publications

Global Characterization of Protein Secretion from Human Macrophages Following Non-canonical Caspase-4/5 Inflammasome Activation.

Lorey Martina B MB   Rossi Katriina K   Eklund Kari K KK   Nyman Tuula A TA   Matikainen Sampsa S  

Molecular & cellular proteomics : MCP 20170214 4 suppl 1


Gram-negative bacteria are associated with a wide spectrum of infectious diseases in humans. Inflammasomes are cytosolic protein complexes that are assembled when the cell encounters pathogens or other harmful agents. The non-canonical caspase-4/5 inflammasome is activated by Gram-negative bacteria-derived lipopolysaccharide (LPS) and by endogenous oxidized phospholipids. Protein secretion is a critical component of the innate immune response. Here, we have used label-free quantitative proteomic  ...[more]

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