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Berardinelli-Seip Congenital Lipodystrophy 2/Seipin Is a Cell-Autonomous Regulator of Lipolysis Essential for Adipocyte Differentiation

机译:Berardinelli-Seip先天性脂肪营养不良2 / Seipin是脂肪细胞分化必需的脂解的细胞自主调节剂。

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Mutations in BSCL2 underlie human congenital generalized lipodystrophy. We inactivated Bscl2 in mice to examine the mechanisms whereby absence of Bscl2 leads to adipose tissue loss and metabolic disorders. Bscl2?/? mice develop severe lipodystrophy of white adipose tissue (WAT), dyslipidemia, insulin resistance, and hepatic steatosis. In vitro differentiation of both Bscl2?/? murine embryonic fibroblasts (MEFs) and stromal vascular cells (SVCs) reveals normal early-phase adipocyte differentiation but a striking failure in terminal differentiation due to unbridled cyclic AMP (cAMP)-dependent protein kinase A (PKA)-activated lipolysis, which leads to loss of lipid droplets and silencing of the expression of adipose tissue-specific transcription factors. Importantly, such defects in differentiation can be largely rescued by inhibitors of lipolysis but not by a gamma peroxisome proliferator-activated receptor (PPARγ) agonist. The residual epididymal WAT (EWAT) in Bscl2?/? mice displays enhanced lipolysis. It also assumes a “brown-like” phenotype with marked upregulation of UCP1 and other brown adipose tissue-specific markers. Together with decreased Pref1 but increased C/EBPβ levels, these changes highlight a possible increase in cAMP signaling that impairs terminal adipocyte differentiation in the EWAT of Bscl2?/? mice. Our study underscores the fundamental role of regulated cAMP/PKA-mediated lipolysis in adipose differentiation and identifies Bscl2 as a novel cell-autonomous determinant of activated lipolysis essential for terminal adipocyte differentiation.
机译:BSCL2中的突变是人类先天性全身脂肪营养不良的基础。我们灭活了小鼠中的Bscl2,以检查缺乏Bscl2导致脂肪组织损失和代谢异常的机制。 Bscl2 ?/?小鼠出现严重的白色脂肪组织脂肪异常(WAT),血脂异常,胰岛素抵抗和肝脂肪变性。 Bscl2 ?/?小鼠胚胎成纤维细胞(MEF)和基质血管细胞(SVC)的体外分化显示正常的早期脂肪细胞分化但由于不受限制的环状AMP(cAMP)依赖性蛋白激酶A(PKA)激活的脂解作用,导致终末分化的显着失败,这导致脂质滴流失和脂肪组织特异性转录因子的表达沉默。重要的是,分化中的此类缺陷可以通过脂解抑制剂大量挽救,而不能通过γ过氧化物酶体增殖物激活受体(PPARγ)激动剂来挽救。 Bscl2 ?/?小鼠的残余附睾WAT(EWAT)显示出增强的脂解作用。它还假定具有UCP1和其他棕色脂肪组织特异性标志物明显上调的“棕色样”表型。这些变化与Pref1降低但C /EBPβ水平升高共同表明,cAMP信号传导可能增加,从而损害 Bscl2 ?/?sup>小鼠的EWAT中的终末脂肪细胞分化。我们的研究强调了调控的cAMP / PKA介导的脂肪分解在脂肪分化中的基本作用,并确定Bscl2是活化的脂肪分解的新的细胞自主决定因子,对末端脂肪细胞的分化至关重要。

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