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Published on: October 27, 2020
GABARAPL1 Inhibits EMT Signaling through SMAD-Tageted Negative Feedback
Marine Jacquet1, Eric Hervouet1,2,3, Timothée Baudu1
1Université Bourgogne Franche-Comté, INSERM, EFS BFC, UMR1098, Interactions Hôte-Greffon-Tumeur/Ingénierie Cellulaire et Génique, F-25000 Besançon, France.
Abstract:
The pathway of selective autophagy, leading to a targeted elimination of specific intracellular components, is mediated by the ATG8 proteins, and has been previously suggested to be involved in the regulation of the Epithelial-mesenchymal transition (EMT) during cancer's etiology. However, the molecular factors and steps of selective autophagy occurring during EMT remain unclear. We therefore analyzed a cohort of lung adenocarcinoma tumors using transcriptome analysis and immunohistochemistry, and found that the expression of ATG8 genes is correlated with that of EMT-related genes, and that GABARAPL1 protein levels are increased in EMT+ tumors compared to EMT- ones. Similarly, the induction of EMT in the A549 lung adenocarcinoma cell line using TGF-β/TNF-α led to a high increase in GABARAPL1 expression mediated by the EMT-related transcription factors of the SMAD family, whereas the other ATG8 genes were less modified. To determine the role of GABARAPL1 during EMT, we used the CRISPR/Cas9 technology in A549 and ACHN kidney adenocarcinoma cell lines to deplete GABARAPL1. We then observed that GABARAPL1 knockout induced EMT linked to a defect of GABARAPL1-mediated degradation of the SMAD proteins. These findings suggest that, during EMT, GABARAPL1 might intervene in an EMT-regulatory loop. Indeed, induction of EMT led to an increase in GABARAPL1 levels through the activation of the SMAD signaling pathway, and then GABARAPL1 induced the autophagy-selective degradation of SMAD proteins, leading to EMT inhibition.
Insights
Selective autophagy, mediated by ATG8 proteins, regulates Epithelial-mesenchymal transition (EMT). GABARAPL1 protein increases during EMT, impacting SMAD protein degradation and potentially inhibiting EMT progression in lung adenocarcinoma.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Selective autophagy, mediated by ATG8 proteins, is implicated in Epithelial-mesenchymal transition (EMT).
- The precise molecular mechanisms of selective autophagy in EMT remain largely uncharacterized.
- Understanding these mechanisms is crucial for cancer etiology and progression.
Purpose of the Study:
- To investigate the role of ATG8 proteins, specifically GABARAPL1, in regulating EMT.
- To elucidate the molecular interplay between GABARAPL1, SMAD signaling, and EMT in lung adenocarcinoma.
Main Methods:
- Transcriptome analysis and immunohistochemistry on lung adenocarcinoma tumors.
- EMT induction in A549 cells using TGF-β/TNF-α.
- CRISPR/Cas9-mediated GABARAPL1 depletion in A549 and ACHN cell lines.
Main Results:
- ATG8 gene expression correlates with EMT markers; GABARAPL1 protein is upregulated in EMT+ tumors.
- EMT induction increases GABARAPL1 expression via SMAD transcription factors.
- GABARAPL1 depletion promotes EMT by impairing SMAD protein degradation.
Conclusions:
- GABARAPL1 plays a regulatory role in EMT, potentially through a feedback loop involving SMAD signaling.
- Increased GABARAPL1 levels during EMT lead to SMAD degradation, suggesting an inhibitory effect on EMT.
- GABARAPL1 represents a potential therapeutic target for modulating EMT in cancer.
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