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Published on: July 27, 2018
SB202190-induced cell type-specific vacuole formation and defective autophagy do not depend on p38 MAP kinase
Manoj B Menon1, Alexey Kotlyarov, Matthias Gaestel
1Institute of Biochemistry, Hannover Medical School, Hannover, Germany.
Abstract:
SB202190, a widely used inhibitor of p38 MAPKα and β, was recently described to induce autophagic vacuoles and cell death in colon and ovarian cancer cells lines and, therefore, this effect was supposed to be specific for transformed cells and to open therapeutic options. Here, we demonstrate that SB202190 and the structurally related inhibitor SB203580 induce pro-autophagic gene expression and vacuole formation in various cancer and non-cancer cell lines of human, rat, mouse and hamster origin. This effect seems to induce defective autophagy leading to the accumulation of acidic vacuoles, p62 protein and lipid conjugated LC3. Using further p38 inhibitors we show that p38 MAPK inhibition is not sufficient for the autophagic response. In line with these results, expression of a SB202190-resistant mutant of p38α, which significantly increases activity of the p38 pathway under inhibitory conditions, does not block SB202190-dependent vacuole formation, indicating that lack of p38α activity is not necessary for this effect. Obviously, the induction of autophagic vacuole formation by SB203580 and SB202190 is due to off-target effects of these inhibitors on post-translational protein modifications, such as phosphorylation of the MAPKs ERK1/2 and JNK1/2, ribosomal protein S6, and PKB/Akt. Interestingly, the PI3K-inhibitor wortmannin induces transient vacuole formation indicating that the PI3K-PKB/Akt-mTOR pathway is essential for preventing autophagy and that cross-inhibition of this pathway by SB202190 could be the reason for the early part of the effect observed.
Insights
SB202190 and SB203580 induce autophagic vacuoles in many cell types, but this effect is not due to p38 MAPK inhibition. Off-target effects on other pathways likely cause vacuole formation and defective autophagy.
Area of Science:
- Cell Biology
- Molecular Pharmacology
Background:
- SB202190, a p38 MAPKα/β inhibitor, was thought to induce cancer cell death via autophagy.
- This effect was initially considered specific to transformed cells for therapeutic potential.
Purpose of the Study:
- To investigate the mechanism of SB202190 and SB203580-induced autophagic vacuole formation.
- To determine if p38 MAPK inhibition is responsible for the observed autophagic response.
Main Methods:
- Treatment of various cancer and non-cancer cell lines with SB202190 and SB203580.
- Analysis of autophagic markers (e.g., p62, LC3) and vacuole formation.
- Utilizing p38 inhibitors and a SB202190-resistant p38α mutant.
- Investigating effects on MAPK/ERK, JNK, PI3K-PKB/Akt-mTOR pathways.
Main Results:
- SB202190 and SB203580 induced autophagic vacuoles and gene expression in diverse cell lines.
- Defective autophagy led to accumulation of acidic vacuoles, p62, and lipidated LC3.
- p38 MAPK inhibition alone was insufficient; a resistant p38α mutant did not block vacuole formation.
- Off-target effects on ERK1/2, JNK1/2, S6, and PKB/Akt phosphorylation were observed.
- PI3K inhibition by wortmannin caused transient vacuole formation, suggesting PI3K-PKB/Akt-mTOR pathway involvement.
Conclusions:
- SB202190/SB203580-induced vacuole formation is not mediated by p38 MAPK inhibition.
- Off-target effects on protein modifications and cross-inhibition of the PI3K-PKB/Akt-mTOR pathway are likely responsible.
- The therapeutic potential of SB202190 based on autophagy induction requires re-evaluation due to off-target mechanisms.
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