Apoptotic brown adipocytes enhance energy expenditure via extracellular inosine.
Birte NiemannSaskia Haufs-BrusbergLaura PuetzMartin FeickertMichelle Y JaecksteinAnne HoffmannJelena ZurkovicMarkus HeineEva-Maria TrautmannChrista Elisabeth MüllerAnke TönjesChristian SchleinAzin JafariHolger K EltzschigThorsten GnadMatthias BlüherNatalie KrahmerPeter KovacsJoerg HeerenAlexander PfeiferPublished in: Nature (2022)
Brown adipose tissue (BAT) dissipates energy 1,2 and promotes cardiometabolic health 3 . Loss of BAT during obesity and ageing is a principal hurdle for BAT-centred obesity therapies, but not much is known about BAT apoptosis. Here, untargeted metabolomics demonstrated that apoptotic brown adipocytes release a specific pattern of metabolites with purine metabolites being highly enriched. This apoptotic secretome enhances expression of the thermogenic programme in healthy adipocytes. This effect is mediated by the purine inosine that stimulates energy expenditure in brown adipocytes by the cyclic adenosine monophosphate-protein kinase A signalling pathway. Treatment of mice with inosine increased BAT-dependent energy expenditure and induced 'browning' of white adipose tissue. Mechanistically, the equilibrative nucleoside transporter 1 (ENT1, SLC29A1) regulates inosine levels in BAT: ENT1-deficiency increases extracellular inosine levels and consequently enhances thermogenic adipocyte differentiation. In mice, pharmacological inhibition of ENT1 as well as global and adipose-specific ablation enhanced BAT activity and counteracted diet-induced obesity, respectively. In human brown adipocytes, knockdown or blockade of ENT1 increased extracellular inosine, which enhanced thermogenic capacity. Conversely, high ENT1 levels correlated with lower expression of the thermogenic marker UCP1 in human adipose tissues. Finally, the Ile216Thr loss of function mutation in human ENT1 was associated with significantly lower body mass index and 59% lower odds of obesity for individuals carrying the Thr variant. Our data identify inosine as a metabolite released during apoptosis with a 'replace me' signalling function that regulates thermogenic fat and counteracts obesity.
Keyphrases
- high fat diet induced
- insulin resistance
- adipose tissue
- high fat diet
- cell death
- endothelial cells
- metabolic syndrome
- skeletal muscle
- type diabetes
- poor prognosis
- oxidative stress
- protein kinase
- induced pluripotent stem cells
- gene expression
- endoplasmic reticulum stress
- weight loss
- public health
- healthcare
- cell cycle arrest
- mass spectrometry
- electronic health record
- weight gain
- ms ms
- randomized controlled trial
- clinical trial
- risk assessment
- cell proliferation
- high resolution
- artificial intelligence
- health information
- machine learning
- study protocol
- big data
- liquid chromatography
- body mass index
- atrial fibrillation