A hormone complex of FABP4 and nucleoside kinases regulates islet function

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作者
Kacey J. Prentice
Jani Saksi
Lauren T. Robertson
Grace Y. Lee
Karen E. Inouye
Kosei Eguchi
Alexandra Lee
Ozgur Cakici
Emily Otterbeck
Paulina Cedillo
Peter Achenbach
Anette-Gabriele Ziegler
Ediz S. Calay
Feyza Engin
Gökhan S. Hotamisligil
机构
[1] Sabri Ülker Center for Metabolic Research,Institute of Diabetes Research, Helmholtz Zentrum Munchen
[2] Harvard T. H. Chan School of Public Health,Departments of Biomolecular Chemistry and Medicine, Division of Endocrinology, Diabetes and Metabolism
[3] Department of Molecular Metabolism,undefined
[4] German Research Center for Environmental Health,undefined
[5] University of Wisconsin–Madison School of Medicine and Public Health,undefined
[6] Broad Institute of Harvard and MIT,undefined
来源
Nature | 2021年 / 600卷
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摘要
The liberation of energy stores from adipocytes is critical to support survival in times of energy deficit; however, uncontrolled or chronic lipolysis associated with insulin resistance and/or insulin insufficiency disrupts metabolic homeostasis1,2. Coupled to lipolysis is the release of a recently identified hormone, fatty-acid-binding protein 4 (FABP4)3. Although circulating FABP4 levels have been strongly associated with cardiometabolic diseases in both preclinical models and humans4–7, no mechanism of action has yet been described8–10. Here we show that hormonal FABP4 forms a functional hormone complex with adenosine kinase (ADK) and nucleoside diphosphate kinase (NDPK) to regulate extracellular ATP and ADP levels. We identify a substantial effect of this hormone on beta cells and given the central role of beta-cell function in both the control of lipolysis and development of diabetes, postulate that hormonal FABP4 is a key regulator of an adipose–beta-cell endocrine axis. Antibody-mediated targeting of this hormone complex improves metabolic outcomes, enhances beta-cell function and preserves beta-cell integrity to prevent both type 1 and type 2 diabetes. Thus, the FABP4–ADK–NDPK complex, Fabkin, represents a previously unknown hormone and mechanism of action that integrates energy status with the function of metabolic organs, and represents a promising target against metabolic disease.
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页码:720 / 726
页数:6
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