Your browser doesn't support javascript.
loading
The role of GABARAPL1/GEC1 in autophagic flux and mitochondrial quality control in MDA-MB-436 breast cancer cells.
Boyer-Guittaut, Michaël; Poillet, Laura; Liang, Qiuli; Bôle-Richard, Elodie; Ouyang, Xiaosen; Benavides, Gloria A; Chakrama, Fatima-Zahra; Fraichard, Annick; Darley-Usmar, Victor M; Despouy, Gilles; Jouvenot, Michèle; Delage-Mourroux, Régis; Zhang, Jianhua.
Affiliation
  • Boyer-Guittaut M; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France; Department of Pathology; University of Alabama at Birmingham; Birmingham, AL USA; Center for Free Radical Biology; Univers
  • Poillet L; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France.
  • Liang Q; Department of Pathology; University of Alabama at Birmingham; Birmingham, AL USA; Center for Free Radical Biology; University of Alabama at Birmingham; Birmingham, AL USA.
  • Bôle-Richard E; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France.
  • Ouyang X; Department of Pathology; University of Alabama at Birmingham; Birmingham, AL USA; Center for Free Radical Biology; University of Alabama at Birmingham; Birmingham, AL USA; Department of Veterans Affairs; Birmingham VA Medical Center; Birmingham, AL USA.
  • Benavides GA; Department of Pathology; University of Alabama at Birmingham; Birmingham, AL USA; Center for Free Radical Biology; University of Alabama at Birmingham; Birmingham, AL USA.
  • Chakrama FZ; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France.
  • Fraichard A; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France.
  • Darley-Usmar VM; Department of Pathology; University of Alabama at Birmingham; Birmingham, AL USA; Center for Free Radical Biology; University of Alabama at Birmingham; Birmingham, AL USA.
  • Despouy G; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France.
  • Jouvenot M; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France.
  • Delage-Mourroux R; Université de Franche-Comté; Laboratoire de Biochimie; EA3922 Estrogènes; Expression Génique et Pathologies du Système Nerveux Central; Sciences et Techniques; Besançon, France.
  • Zhang J; Department of Pathology; University of Alabama at Birmingham; Birmingham, AL USA; Center for Free Radical Biology; University of Alabama at Birmingham; Birmingham, AL USA; Department of Veterans Affairs; Birmingham VA Medical Center; Birmingham, AL USA.
Autophagy ; 10(6): 986-1003, 2014 Jun.
Article in En | MEDLINE | ID: mdl-24879149
GABARAPL1/GEC1 is an early estrogen-induced gene which encodes a protein highly conserved from C. elegans to humans. Overexpressed GABARAPL1 interacts with GABAA or kappa opioid receptors, associates with autophagic vesicles, and inhibits breast cancer cell proliferation. However, the function of endogenous GABARAPL1 has not been extensively studied. We hypothesized that GABARAPL1 is required for maintaining normal autophagic flux, and plays an important role in regulating cellular bioenergetics and metabolism. To test this hypothesis, we knocked down GABARAPL1 expression in the breast cancer MDA-MB-436 cell line by shRNA. Decreased expression of GABARAPL1 activated procancer responses of the MDA-MB-436 cells including increased proliferation, colony formation, and invasion. In addition, cells with decreased expression of GABARAPL1 exhibited attenuated autophagic flux and a decreased number of lysosomes. Moreover, decreased GABARAPL1 expression led to cellular bioenergetic changes including increased basal oxygen consumption rate, increased intracellular ATP, increased total glutathione, and an accumulation of damaged mitochondria. Taken together, our results demonstrate that GABARAPL1 plays an important role in cell proliferation, invasion, and autophagic flux, as well as in mitochondrial homeostasis and cellular metabolic programs.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Autophagy / Breast Neoplasms / Adaptor Proteins, Signal Transducing / Mitophagy / Microtubule-Associated Proteins Language: En Journal: Autophagy Year: 2014 Document type: Article Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Autophagy / Breast Neoplasms / Adaptor Proteins, Signal Transducing / Mitophagy / Microtubule-Associated Proteins Language: En Journal: Autophagy Year: 2014 Document type: Article Country of publication: United States