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PUBMED FOR HANDHELDS

Journal Abstract Search


566 related items for PubMed ID: 29031721

  • 1. Cdkal1, a type 2 diabetes susceptibility gene, regulates mitochondrial function in adipose tissue.
    Palmer CJ, Bruckner RJ, Paulo JA, Kazak L, Long JZ, Mina AI, Deng Z, LeClair KB, Hall JA, Hong S, Zushin PH, Smith KL, Gygi SP, Hagen S, Cohen DE, Banks AS.
    Mol Metab; 2017 Oct; 6(10):1212-1225. PubMed ID: 29031721
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  • 2. Adipocyte MTERF4 regulates non-shivering adaptive thermogenesis and sympathetic-dependent glucose homeostasis.
    Castillo A, Vilà M, Pedriza I, Pardo R, Cámara Y, Martín E, Beiroa D, Torres-Torronteras J, Oteo M, Morcillo MA, Martí R, Simó R, Nogueiras R, Villena JA.
    Biochim Biophys Acta Mol Basis Dis; 2019 Jun 01; 1865(6):1298-1312. PubMed ID: 30690068
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  • 3. Inhibition of Sam68 triggers adipose tissue browning.
    Zhou J, Cheng M, Boriboun C, Ardehali MM, Jiang C, Liu Q, Han S, Goukassian DA, Tang YL, Zhao TC, Zhao M, Cai L, Richard S, Kishore R, Qin G.
    J Endocrinol; 2015 Jun 01; 225(3):181-9. PubMed ID: 25934704
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  • 6. Adiponectin stimulates Sca1+CD34--adipocyte precursor cells associated with hyperplastic expansion and beiging of brown and white adipose tissue.
    Bauzá-Thorbrügge M, Vujičić M, Chanclón B, Palsdottir V, Pillon NJ, Benrick A, Wernstedt Asterholm I.
    Metabolism; 2024 Feb 01; 151():155716. PubMed ID: 37918793
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  • 9. Adipocyte-specific ablation of the Ca2+ pump SERCA2 impairs whole-body metabolic function and reveals the diverse metabolic flexibility of white and brown adipose tissue.
    Bauzá-Thorbrügge M, Banke E, Chanclón B, Peris E, Wu Y, Musovic S, Jönsson C, Strålfors P, Rorsman P, Olofsson CS, Wernstedt Asterholm I.
    Mol Metab; 2022 Sep 01; 63():101535. PubMed ID: 35760318
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  • 10. REEP6 knockout leads to defective β-adrenergic signaling in adipocytes and promotes obesity-related metabolic dysfunction.
    Son Y, Choi C, Saha A, Park JH, Im H, Cho YK, Seong JK, Burl RB, Rondini EA, Granneman JG, Lee YH.
    Metabolism; 2022 May 01; 130():155159. PubMed ID: 35150731
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  • 11. Development of type 2 diabetes caused by a deficiency of a tRNA(lys) modification.
    Wei FY, Tomizawa K.
    Islets; 2012 May 01; 4(1):71-3. PubMed ID: 22157242
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  • 16. Deletion of CDKAL1 affects mitochondrial ATP generation and first-phase insulin exocytosis.
    Ohara-Imaizumi M, Yoshida M, Aoyagi K, Saito T, Okamura T, Takenaka H, Akimoto Y, Nakamichi Y, Takanashi-Yanobu R, Nishiwaki C, Kawakami H, Kato N, Hisanaga S, Kakei M, Nagamatsu S.
    PLoS One; 2010 Dec 09; 5(12):e15553. PubMed ID: 21151568
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  • 18. Heme Oxygenase 1 and 2 Differentially Regulate Glucose Metabolism and Adipose Tissue Mitochondrial Respiration: Implications for Metabolic Dysregulation.
    Yao H, Peterson AL, Li J, Xu H, Dennery PA.
    Int J Mol Sci; 2020 Sep 27; 21(19):. PubMed ID: 32992485
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  • 20. Lipolysis Triggers a Systemic Insulin Response Essential for Efficient Energy Replenishment of Activated Brown Adipose Tissue in Mice.
    Heine M, Fischer AW, Schlein C, Jung C, Straub LG, Gottschling K, Mangels N, Yuan Y, Nilsson SK, Liebscher G, Chen O, Schreiber R, Zechner R, Scheja L, Heeren J.
    Cell Metab; 2018 Oct 02; 28(4):644-655.e4. PubMed ID: 30033199
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