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Silencing of the small GTPase DIRAS3 induces cellular senescence in human white adipose stromal/progenitor cells

机译:沉默小GTPase DIRAS3诱导人白色脂肪基质/祖细胞的细胞衰老

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摘要

Inhibition of Akt-mTOR signaling protects from obesity and extends life span in animals. In the present study, we analyse the impact of the small GTPase, GTP-binding RAS-like 3 (DIRAS3), a recently identified weight-loss target gene, on cellular senescence in adipose stromal/progenitor cells (ASCs) derived from human subcutaneous white adipose tissue (sWAT). We demonstrate that DIRAS3 knock-down (KD) in ASCs induces activation of Akt-mTOR signaling and proliferation arrest. DIRAS3 KD ASCs lose the potential to form colonies and are negative for Ki-67. Moreover, silencing of DIRAS3 results in a premature senescence phenotype. This is characterized by senescence-associated β-galactosidase positive enlarged ASCs containing increased p16INK4A level and activated retinoblastoma protein. DIRAS3 KD ASCs form senescence-associated heterochromatic foci as shown by increased level of γ-H2A.X positive foci. Furthermore, these cells express a senescence-associated secretory phenotype characterized by increased interleukin-8 secretion. Human DIRAS3 KD ASCs develop also a senescence phenotype in sWAT of SCID mice. Finally, we show that DIRAS3 KD in ASCs stimulates both adipogenic differentiation and premature senescence. In conclusion, our data suggest that silencing of DIRAS3 in ASCs and subsequently hyper-activation of Akt-mTOR drives adipogenesis and premature senescence. Moreover, differentiating ASCs and/or mature adipocytes may acquire features of cellular senescence.
机译:抑制Akt-mTOR信号传导可防止肥胖,并延长动物的寿命。在本研究中,我们分析了小GTP酶,GTP结合的RAS样3(DIRAS3),最近确定的减肥目标基因,对人皮下脂肪基质/祖细胞(ASC)细胞衰老的影响白色脂肪组织(sWAT)。我们证明在ASC中DIRAS3敲低(KD)诱导Akt-mTOR信号激活和增殖停滞。 DIRAS3 KD ASC失去形成菌落的潜力,并且对Ki-67呈阴性。此外,DIRAS3沉默导致过早的衰老表型。其特征是衰老相关的β-半乳糖苷酶阳性的ASCs增高,其中p16 INK4A 水平升高,视网膜母细胞瘤蛋白活化。 DIRAS3 KD ASCs形成了与衰老相关的异色病灶,如γ-H2A.X阳性病灶水平升高所显示。此外,这些细胞表达以白介素8分泌增加为特征的衰老相关的分泌表型。人DIRAS3 KD ASC在SCID小鼠的sWAT中也发展出衰老表型。最后,我们表明,ASC中的DIRAS3 KD刺激脂肪形成分化和过早衰老。总之,我们的数据表明,ASC中DIRAS3的沉默和随后Akt-mTOR的过度活化会驱动脂肪形成和早衰。而且,分化的ASC和/或成熟的脂肪细胞可能获得细胞衰老的特征。

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