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Reactive Oxygen Species Facilitate Adipocyte Differentiation by Accelerating Mitotic Clonal Expansion

机译:活性氧促进脂肪细胞的分化 加速有丝分裂克隆 扩张

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摘要

Growth-arrested 3T3-L1 preadipocytes rapidly express CCAAT/enhancer-binding protein-β (C/EBPβ) upon hormonal induction of differentiation. However, the DNA binding activity of C/EBPβ is not activated until the cells synchronously reenter S phase during the mitotic clonal expansion (MCE) phase of differentiation. In this period, C/EBPβ is sequentially phosphorylated by MAPK and glycogen synthase kinase-3β, inducing C/EBPβ DNA binding activity and transcription of its target genes. Because the DNA binding activity of C/EBPβ is further enhanced by oxidation in vitro, we investigated how redox state affects C/EBPβ DNA binding and MCE during adipogenesis. When 3T3-L1 cells were treated with H2O2 and hormonal stimuli, differentiation was accelerated with increased expression of peroxisome proliferator-activated receptor γ. Interestingly, cell cycle progression (S to G2/M phase) was markedly enhanced by H2O2, whereas antioxidants caused an S phase arrest during the MCE. H2O2 treatment resulted in the early appearance of a punctate pattern observed by immunofluorescent staining of C/EBPβ, which is a hallmark for C/EBPβ binding to regulatory elements, whereas a short antioxidant treatment rapidly dispersed the centromeric localization of C/EBPβ. Consistently, reactive oxygen species production was increased during 3T3-L1 differentiation. Our results indicate that redox-induced C/EBPβ DNA binding activity, along with the dual phosphorylation of C/EBPβ, is required for the MCE and terminal differentiation of adipocytes.
机译:激素诱导分化后,生长停滞的3T3-L1前脂肪细胞迅速表达CCAAT /增强子结合蛋白-β(C /EBPβ)。但是,直到细胞在分化的有丝分裂克隆扩增(MCE)阶段同步重新进入S期时,C /EBPβ的DNA结合活性才被激活。在此期间,C /EBPβ被MAPK和糖原合酶激酶-3β依次磷酸化,从而诱导C /EBPβDNA结合活性及其靶基因的转录。由于体外氧化可进一步增强C /EBPβ的DNA结合活性,因此我们研究了脂肪形成过程中氧化还原状态如何影响C /EBPβ的DNA结合和MCE。用H2O2和激素刺激处理3T3-L1细胞时,过氧化物酶体增殖物激活受体γ的表达增加,从而促进分化。有趣的是,H2O2明显增强了细胞周期进程(从S到G2 / M期),而抗氧化剂在MCE期间导致S期停滞。 H2O2处理导致C /EBPβ免疫荧光染色观察到点状图案的早期出现, 是C /EBPβ与调节元件结合的标志,而短 抗氧化剂处理迅速分散了着丝粒的着丝粒定位 C /EBPβ。一致地,增加了活性氧的产生 在3T3-L1分化过程中。我们的结果表明,氧化还原诱导的 C /EBPβDNA结合活性,以及​​双磷酸化 MCE和终末分化需要C /EBPβ 脂肪细胞。

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