International Journal of Obesity · 2011 · 47 citations · 7 references
Metabolic RemodelingTranscriptional RegulationStable KnockdownAtf6α PathwayMetabolic SignalingAtf6α ExpressionCell SignalingProtein Quality ControlProtein FunctionBiochemistryUnfolded Protein ResponseGene ExpressionCell BiologySignal TransductionDevelopmental BiologyNatural SciencesMetabolic RegulationCellular BiochemistryMetabolismMedicineLipid Synthesis
The unfolded protein response (UPR) is activated by endoplasmic reticulum stress resulting from an accumulation of unfolded or mis-folded proteins. The UPR is divided into three arms, involving the activation of ATF-6, PERK and IRE-1, that together act to restrict new protein synthesis and increase the production of chaperones. Recent studies have implicated the PERK and IRE-1 components of the UPR in adipocyte differentiation. In this study, we investigate the importance of ATF6α during adipogenesis using stable knockdown of this protein in the model adipogenic cell line, C3H10T1/2. Reduction of ATF6α expression by >70% resulted in impaired expression of key adipogenic genes and reduced lipid accumulation following the induction of adipogenesis. In contrast, loss of ATF6α did not impair the ability of cells to undergo osteogenic differentiation. Overall, our data indicate that all three arms of the UPR, including ATF6α, must be intact to permit adipogenesis to occur.
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Endoplasmic Reticulum Stress Is Reduced in Tissues of Obese Subjects After Weight Loss
Margaret F. Gregor, Ling Yang, Elisa Fabbrini et al. · Diabetes · 2008 · 485 citations · Full text
The IRE1α-XBP1 Pathway of the Unfolded Protein Response Is Required for Adipogenesis
Haibo Sha, Yin He, Hui Chen et al. · Cell Metabolism · 2009 · 291 citations · Full text
Ekaterina Bobrovnikova-Marjon, Georgia Hatzivassiliou, Christina Grigoriadou et al. · Proceedings of the National Academy of Sciences · 2008 · 256 citations · Full text
Adipocyte Differentiation, Cell Proliferation, Targeted Deletion +19