Quantitative and dynamic catalogs of proteins released during apoptotic and necroptotic cell death
Cell reports, 2020•cell.com
The inflammatory functions of the cytokine tumor necrosis factor (TNF) rely on its ability to
induce cytokine production and to induce cell death. Caspase-dependent and caspase-
independent pathways—apoptosis and necroptosis, respectively—regulate immunogenicity
by the release of distinct sets of cellular proteins. To obtain an unbiased, systems-level
understanding of this important process, we here applied mass spectrometry-based
proteomics to dissect protein release during apoptosis and necroptosis. We report hundreds …
induce cytokine production and to induce cell death. Caspase-dependent and caspase-
independent pathways—apoptosis and necroptosis, respectively—regulate immunogenicity
by the release of distinct sets of cellular proteins. To obtain an unbiased, systems-level
understanding of this important process, we here applied mass spectrometry-based
proteomics to dissect protein release during apoptosis and necroptosis. We report hundreds …
Summary
The inflammatory functions of the cytokine tumor necrosis factor (TNF) rely on its ability to induce cytokine production and to induce cell death. Caspase-dependent and caspase-independent pathways—apoptosis and necroptosis, respectively—regulate immunogenicity by the release of distinct sets of cellular proteins. To obtain an unbiased, systems-level understanding of this important process, we here applied mass spectrometry-based proteomics to dissect protein release during apoptosis and necroptosis. We report hundreds of proteins released from human myeloid cells in time course experiments. Both cell death types induce receptor shedding, but only apoptotic cells released nucleosome components. Conversely, necroptotic cells release lysosomal components by activating lysosomal exocytosis at early stages of necroptosis-induced membrane permeabilization and show reduced release of conventionally secreted cytokines.
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