Whole transcriptome analysis and validation of metabolic pathways in subcutaneous adipose tissues during FGF21-induced weight loss in non-human primates.
Sara A MurrayLouise S Dalbo GeKaralee BaqueroChristina A SanfordAyesha MisquithAaron Jeffrey MercerThomas H MeekMette GuldbrandtBirgitte AndersenPaul KievitKevin L GroveBurak KutluPublished in: Scientific reports (2020)
Fibroblast growth factor 21 (FGF21) induces weight loss in mouse, monkey, and human studies. In mice, FGF21 is thought to cause weight loss by stimulating thermogenesis, but whether FGF21 increases energy expenditure (EE) in primates is unclear. Here, we explore the transcriptional response and gene networks active in adipose tissue of rhesus macaques following FGF21-induced weight loss. Genes related to thermogenesis responded inconsistently to FGF21 treatment and weight loss. However, expression of gene modules involved in triglyceride (TG) synthesis and adipogenesis decreased, and this was associated with greater weight loss. Conversely, expression of innate immune cell markers was increased post-treatment and was associated with greater weight loss. A lipogenesis gene module associated with weight loss was evaluated by testing the function of member genes in mice. Overexpression of NRG4 reduced weight gain in diet-induced obese mice, while overexpression of ANGPTL8 resulted in elevated TG levels in lean mice. These observations provide evidence for a shifting balance of lipid storage and metabolism due to FGF21-induced weight loss in the non-human primate model, and do not fully recapitulate increased EE seen in rodent and in vitro studies. These discrepancies may reflect inter-species differences or complex interplay of FGF21 activity and counter-regulatory mechanisms.
Keyphrases
- weight loss
- bariatric surgery
- roux en y gastric bypass
- weight gain
- adipose tissue
- gastric bypass
- endothelial cells
- genome wide
- high glucose
- high fat diet induced
- transcription factor
- glycemic control
- poor prognosis
- obese patients
- body mass index
- gene expression
- immune response
- cell proliferation
- birth weight
- type diabetes
- physical activity
- metabolic syndrome
- oxidative stress
- dna methylation
- binding protein
- bioinformatics analysis
- postmenopausal women
- preterm birth