Zbtb7b engages the long noncoding RNA Blnc1 to drive brown and beige fat development and thermogenesis.
Siming LiLin MiLei YuQi YuTongyu LiuGuo-Xiao WangXu-Yun ZhaoJun WuJiandie D LinPublished in: Proceedings of the National Academy of Sciences of the United States of America (2017)
Brown and beige adipocytes convert chemical energy into heat through uncoupled respiration to defend against cold stress. Beyond thermogenesis, brown and beige fats engage other metabolic tissues via secreted factors to influence systemic energy metabolism. How the protein and long noncoding RNA (lncRNA) regulatory networks act in concert to regulate key aspects of thermogenic adipocyte biology remains largely unknown. Here we developed a genome-wide functional screen to interrogate the transcription factors and cofactors in thermogenic gene activation and identified zinc finger and BTB domain-containing 7b (Zbtb7b) as a potent driver of brown fat development and thermogenesis and cold-induced beige fat formation. Zbtb7b is required for activation of the thermogenic gene program in brown and beige adipocytes. Genetic ablation of Zbtb7b impaired cold-induced transcriptional remodeling in brown fat, rendering mice sensitive to cold temperature, and diminished browning of inguinal white fat. Proteomic analysis revealed a mechanistic link between Zbtb7b and the lncRNA regulatory pathway through which Zbtb7b recruits the brown fat lncRNA 1 (Blnc1)/heterogeneous nuclear ribonucleoprotein U (hnRNPU) ribonucleoprotein complex to activate thermogenic gene expression in adipocytes. These findings illustrate the emerging concept of a protein-lncRNA regulatory network in the control of adipose tissue biology and energy metabolism.
Keyphrases
- adipose tissue
- long noncoding rna
- genome wide
- insulin resistance
- gene expression
- transcription factor
- high fat diet
- dna methylation
- long non coding rna
- high fat diet induced
- copy number
- high glucose
- endothelial cells
- diabetic rats
- fatty acid
- single cell
- quality improvement
- protein protein
- drug induced
- stress induced
- oxidative stress
- skeletal muscle
- heat shock protein
- anti inflammatory
- oxide nanoparticles