Timchenko N A, Wilde M, Iakova P, Albrecht J H, Darlington G J
Huffington Center on Aging, Department of Pathology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.
Nucleic Acids Res. 1999 Sep 1;27(17):3621-30. doi: 10.1093/nar/27.17.3621.
We have previously found that loss of C/EBPalpha in hepatocytes of newborn livers leads to increased proliferation, to a reduction in p21 protein levels and to an induction of S phase-specific E2F/p107 complexes. In this paper, we investigated C/EBPalpha-dependent regulation of E2F complexes in a well-characterized cell line, 3T3-L1, and in stable transformants that conditionally express C/EBPalpha. C/EBPalpha and C/EBPbeta proteins are induced in 3T3-L1 preadipocytes during differentiation with different kinetics and potentially may regulate E2F/Rb family complexes. In pre-differentiated cells, three E2F complexes are observed: cdk2/E2F/p107, E2F/p130 and E2F4. cdk2/E2F/p107 complexes are induced in nuclear extracts of 3T3-L1 cells during mitotic expansion, but are not detectable in nuclear extracts at later stages of 3T3-L1 differentiation. The reduction in E2F/p107 complexes is associated with elevation of C/EBPalpha, but is independent of C/EBPbeta expression. Bacterially expressed, purified His-C/EBPalpha is able to disrupt E2F/p107 complexes that are observed at earlier stages of 3T3-L1 differentiation. C/EBPbeta, however, does not disrupt E2F/p107 complexes. A short C/EBPalpha peptide with homology to E2F is sufficient to bring about the disruption of E2F/p107 complexes from 3T3-L1 cells in vitro. Induction of C/EBPalpha in stable 3T3-L1 clones revealed that C/EBPalpha causes disruption of p107/E2F complexes in these cells. In contrast, E2F/p130 complexes are induced in cells expressing C/EBPalpha. Our data suggest that induction of p130/E2F complexes by C/EBPalpha occurs via up-regulation of p21, which, in turn, leads to association with and inhibition of, cdk2 kinase activity. The reduction in cdk2 kinase activity correlates with alterations of p130 phosphorylation and with induction of p130/E2F complexes in 3T3-L1 stable clones. Our data suggest two pathways of C/EBPalpha-dependent regulation of E2F/Rb family complexes: disruption of S phase-specific E2F/p107 complexes and induction of E2F/p130 complexes.
我们之前发现,新生肝脏肝细胞中C/EBPα的缺失会导致细胞增殖增加、p21蛋白水平降低以及S期特异性E2F/p107复合物的诱导。在本文中,我们研究了在特征明确的细胞系3T3-L1以及条件性表达C/EBPα的稳定转化体中,C/EBPα对E2F复合物的依赖性调控。在3T3-L1前脂肪细胞分化过程中,C/EBPα和C/EBPβ蛋白以不同动力学被诱导,并且可能调控E2F/Rb家族复合物。在预分化细胞中,观察到三种E2F复合物:cdk2/E2F/p107、E2F/p130和E2F4。cdk2/E2F/p107复合物在3T3-L1细胞有丝分裂扩增期间的核提取物中被诱导,但在3T3-L1分化后期的核提取物中检测不到。E2F/p107复合物的减少与C/EBPα的升高相关,但与C/EBPβ的表达无关。细菌表达并纯化的His-C/EBPα能够破坏在3T3-L1分化早期观察到的E2F/p107复合物。然而,C/EBPβ不会破坏E2F/p107复合物。与E2F具有同源性的短C/EBPα肽足以在体外破坏3T3-L1细胞中的E2F/p107复合物。在稳定的3T3-L1克隆中诱导C/EBPα表明,C/EBPα会导致这些细胞中的p107/E2F复合物被破坏。相反,在表达C/EBPα的细胞中诱导产生E2F/p130复合物。我们的数据表明,C/EBPα对E2F/Rb家族复合物的依赖性调控有两条途径:破坏S期特异性E2F/p107复合物以及诱导E2F/p130复合物。