Hydroxycarbamide and Sickle Cell Anemia: Paradoxical Effects Related to Redox Mechanisms of Cellular Adaptation. [PDF]
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E7386 Enhances Lenvatinib's Antitumor Activity in Preclinical Models and Human Hepatocellular Carcinoma. [PDF]
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The strategic breakdown: CHAC enzymes as regulators of glutathione homeostasis and disease implications. [PDF]
Schröder E +4 more
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PARP inhibitor BMN673 triggers PARylation-mediated ATF4-GDF15 pathway to drive autophagy and ferroptosis in ataxia telangiectasia mutated gene-deficient colorectal cancer cells. [PDF]
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TGFBR3 supports anoikis through suppressing ATF4 signaling
Journal of Cell Science, 2022ABSTRACT Epithelial morphogenesis and oncogenic transformation can cause loss of cell adhesion, and detached cells are eliminated by anoikis. Here, we reveal that transforming growth factor β receptor 3 (TGFBR3) acts as an anoikis mediator through the coordination of activating transcription factor 4 (ATF4).
Yu-Jhen Hsu +6 more
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Endoplasmic reticulum stress increases LECT2 expression via ATF4
Biochemical and Biophysical Research Communications, 2021Non-alcoholic fatty liver disease (NAFLD) is frequently associated with obesity, insulin resistance, and endoplasmic reticulum (ER) stress. Elevated circulating levels of the hepatokine leukocyte cell-derived chemotaxin-2 (LECT2) have also been noted in NAFLD; however, the mechanism underlying this association is unclear. To investigate a possible link
Chan Yoon Park +9 more
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Probabilistic models of uORF-mediated ATF4 translation control
Mathematical Biosciences, 2022ATF4 is a key transcription factor that activates transcription of genes needed to respond to cellular stress. Although the mRNA encoding ATF4 is present at constant levels in the cell during the initial response, translation of ATF4 increases under conditions of cellular stress while the global translation rate decreases.
Olivia N.J.M. Marasco +2 more
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Role of ATF4 in skeletal muscle atrophy
Current Opinion in Clinical Nutrition & Metabolic Care, 2017Here, we discuss recent work focused on the role of activating transcription factor 4 (ATF4) in skeletal muscle atrophy.Muscle atrophy involves and requires widespread changes in skeletal muscle gene expression; however, the transcriptional regulatory proteins responsible for those changes are not yet well defined. Recent work indicates that some forms
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