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    Article

    Iron drives anabolic metabolism through active histone demethylation and mTORC1

    All eukaryotic cells require a minimal iron threshold to sustain anabolic metabolism. However, the mechanisms by which cells sense iron to regulate anabolic processes are unclear. Here we report a previously u...

    Jason S. Shapiro, Hsiang-Chun Chang, Yuki Tatekoshi, Zibo Zhao in Nature Cell Biology (2023)

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    Open Access

    Correction: Corrigendum: Snf1-related kinase improves cardiac mitochondrial efficiency and decreases mitochondrial uncoupling

    Nature Communications 8: Article number: 14095 (2017); Published: 24 January 2017; Updated: 30 August 2017. The authors inadvertently omitted Eltyeb Abdelwahid, who contributed to the generation of animal mode...

    Amy K. Rines, Hsiang-Chun Chang, Rongxue Wu, Tatsuya Sato in Nature Communications (2017)

  3. Article

    Open Access

    Snf1-related kinase improves cardiac mitochondrial efficiency and decreases mitochondrial uncoupling

    Ischaemic heart disease limits oxygen and metabolic substrate availability to the heart, resulting in tissue death. Here, we demonstrate that the AMP-activated protein kinase (AMPK)-related protein Snf1-relate...

    Amy K. Rines, Hsiang-Chun Chang, Rongxue Wu, Tatsuya Sato in Nature Communications (2017)