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  • Characteristic ERK1/2 signaling dynamics distinguishes necroptosis from apoptosis.

Characteristic ERK1/2 signaling dynamics distinguishes necroptosis from apoptosis.

iScience (2021-09-28)
François Sipieter, Benjamin Cappe, Aymeric Leray, Elke De Schutter, Jolien Bridelance, Paco Hulpiau, Guy Van Camp, Wim Declercq, Laurent Héliot, Pierre Vincent, Peter Vandenabeele, Franck B Riquet
摘要

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 apoptosis while delaying necroptosis. By monitoring 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.

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Sigma-Aldrich
多西环素 单盐酸半乙醇半水合物
Sigma-Aldrich
佛波醇12-十四酸酯13-乙酸酯, ≥99% (TLC), film or powder
Sigma-Aldrich
抗-MLKL抗体,克隆3H1, clone 3H1, from rat
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抗 MAP 激酶,活化(二磷酸化 ERK-1&2)抗体,小鼠单克隆, clone MAPK-YT, purified from hybridoma cell culture
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U0126 钛酸乙酯 单乙醇盐, ≥98% (HPLC), powder
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PD184352, ≥98% (HPLC)
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AZ628, ≥98% (HPLC)