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An inhibitory role of progerin in the gene induction network of adipocyte differentiation from iPS cells

机译:早春素在iPS细胞分化为脂肪细胞的基因诱导网络中的抑制作用

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摘要

Lipodystrophies, characterized by partial or complete loss of adipose tissue, have been associated with mutations in the lamin A gene. It remains unclear how lamin A mutants interfere with adipose tissue formation. Hutchinson–Gilford progeria syndrome (HGPS) presents the most severe form of lamin A-associated diseases, whose patients show a complete loss of subcutaneous fat. Using iPSCs reprogrammed from HGPS fibroblasts, we induced adipocyte formation from iPSC derived embryoid bodies or from iPSC derived mesenchymal stem cells. Both approaches revealed a severe lipid storage defect in HGPS cells at late differentiation stage, faithfully recapitulating HGPS patient phenotype. Expression analysis further indicated that progerin inhibited the transcription activation of PPARγ2 and C/EBPα, but had little effects on the early adipogenic regulators. Our experiments demonstrate two comparable approaches of in vitro modeling lipodystrophies with patient-specific iPSCs, and support a regulatory role of lamin A in the terminal differentiation stage of adipogenesis.
机译:以脂肪组织部分或全部丧失为特征的脂肪营养素与lamin A基因突变有关。尚不清楚lamin A突变体如何干扰脂肪组织的形成。 Hutchinson–Gilford早衰综合征(HGPS)是最严重的Lamin A相关疾病,其患者皮下脂肪完全消失。使用从HGPS成纤维细胞重新编程的iPSC,我们诱导了iPSC来源的胚状体或iPSC来源的间充质干细胞形成脂肪细胞。两种方法都揭示了HGPS细胞在分化后期存在严重的脂质存储缺陷,忠实地概括了HGPS患者的表型。表达分析进一步表明,progerin抑制PPARγ2和C /EBPα的转录激活,但对早期成脂调节剂几乎没有影响。我们的实验证明了两种可比拟的方法,可以对具有患者特异性iPSC的脂肪营养障碍进行体外建模,并支持层粘连蛋白A在脂肪形成的终末分化阶段的调节作用。

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