Characteristic ERK1/2 signaling dynamics distinguishes necroptosis from apoptosis

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TitreCharacteristic ERK1/2 signaling dynamics distinguishes necroptosis from apoptosis
Type de publicationJournal Article
Year of Publication2021
AuteursSipieter F, Cappe B, Leray A, De Schutter E, Bridelance J, Hulpiau P, Van Camp G, Declercq W, Heliot L, Vincent P, Vandenabeele P, Riquet FB
JournalISCIENCE
Volume24
Pagination103074
Date PublishedSEP 24
Type of ArticleArticle
Résumé

ERK1/2 involvement in cell death remains unclear, although many studies have demonstrated the importance of ERK1/2 dynamics in determining cellular responses. To untangle how ERK1/2 contributes to two cell death programs, we investigated ERK1/2 signaling dynamics during hFasL-induced apoptosis and TNF-induced necroptosis in L929 cells. We observed that ERK1/2 inhibition sensitizes cells to apoptosiswhile delaying necroptosis. Bymonitoring ERK1/2 activity by live-cell imaging using an improved ERK1/2 biosensor (EKAR4.0), we reported differential ERK1/2 signaling dynamics between cell survival, apoptosis, and necroptosis. We also decrypted a temporally shifted amplitude- and frequency-modulated (AM/FM) ERK1/2 activity profile in necroptosis versus apoptosis. ERK1/2 inhibition, which disrupted ERK1/2 signaling dynamics, prevented TNF and IL-6 gene expression increase during TNF-induced necroptosis. Using an inducible cell line for activated MLKL, the final executioner of necroptosis, we showed ERK1/2 and its distinctive necroptotic ERK1/2 activity dynamics to be positioned downstream of MLKL.

DOI10.1016/j.isci.2021.103074