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PRDM16 controls a brown fat/skeletal muscle switch

机译:PRDM16控制棕色脂肪/骨骼肌开关

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Brown fat can increase energy expenditure and protect against obesity through a specialized program of uncoupled respiration. Here we show by in vivo fate mapping that brown, but not white, fat cells arise from precursors that express Myf5, a gene previously thought to be expressed only in the myogenic lineage. We also demonstrate that the transcriptional regulator PRDM16 (PRD1-BF1-RIZ1 homologous domain containing 16) controls a bidirectional cell fate switch between skeletal myoblasts and brown fat cells. Loss of PRDM16 from brown fat precursors causes a loss of brown fat characteristics and promotes muscle differentiation. Conversely, ectopic expression of PRDM16 in myoblasts induces their differentiation into brown fat cells. PRDM16 stimulates brown adipogenesis by binding to PPAR-γ (peroxisome-proliferator-activated receptor-γ) and activating its transcriptional function. Finally, Prdm 76-deficient brown fat displays an abnormal morphology, reduced thermogenic gene expression and elevated expression of muscle-specific genes. Taken together, these data indicate that PRDM16 specifies the brown fat lineage from a progenitor that expresses myoblast markers and is not involved in white adipogenesis.
机译:棕色脂肪可以通过专门的无呼吸程序来增加能量消耗并预防肥胖。在这里,我们通过体内命运图谱显示棕色而不是白色的脂肪细胞来自表达Myf5的前体,该基因以前被认为仅在成肌谱系中表达。我们还证明,转录调节因子PRDM16(PRD1-BF1-RIZ1同源域包含16个)控制骨骼肌成肌细胞和棕色脂肪细胞之间的双向细胞命运切换。褐色脂肪前体中PRDM16的损失会导致褐色脂肪特性的丧失并促进肌肉分化。相反,PRDM16在成肌细胞中的异位表达诱导其分化为棕色脂肪细胞。 PRDM16通过与PPAR-γ(过氧化物酶体增殖物激活的受体-γ)结合并激活其转录功能来刺激褐色脂肪形成。最后,缺乏Prdm 76的棕色脂肪表现出异常的形态,降低的热基因表达和升高的肌肉特异性基因表达。综上所述,这些数据表明PRDM16指定了来自表达成肌细胞标志物且不参与白色脂肪形成的祖细胞的棕色脂肪谱系。

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