Meng Xianwang, Yang Yong-Fan, Cao Xiemin, Govindan Manjapra V, Shuen Michael, Hollenberg Anthony N, Mymryk Joe S, Walfish Paul G
Samuel Lunenfeld Research Institute of Mount Sinai Hospital, Endocrine Division, University of Toronto Medical School, Toronto, Ontario, Canada M5G 1X5.
Mol Endocrinol. 2003 Jun;17(6):1095-105. doi: 10.1210/me.2002-0294. Epub 2003 Mar 13.
In mammalian cells, the human adenovirus type 5 early region 1A (E1A) oncoprotein functions as a thyroid hormone (TH)-dependent activator of the thyroid hormone receptor (TR). Interestingly, in the cellular context of the yeast Saccharomyces cerevisiae, E1A acts as a TR-specific constitutive coactivator that is down-regulated by TH. TH reduces the interaction of E1A with the TR in yeast but not HeLa cells. The N-terminal 82 amino acids of E1A are sufficient for coactivation in yeast and residues 4-29 are essential. In yeast, expression of the nuclear receptor corepressor (N-CoR) could down-regulate constitutive transcriptional activation of the TR by E1A, whereas expression of the glucocorticoid receptor interacting protein 1 (GRIP-1) coactivator reconstituted the E1A-induced pattern of enhanced TH-dependent gene activation by TR observed in mammalian cells. We further show that the mating type switching gene (SWI)/sucrose nonfermenting (SNF) gene chromatin remodeling complex is required for both TH/GRIP-1- and E1A-dependent coactivator function, whereas the general control nonrepressed protein (GCN5)/alteration/deficiency in activation protein (ADA2) components of the SPT, ADA, GCN5, acetylation (SAGA) transcriptional adaptor complex are required for TH/GRIP-1, but not E1A-dependent activation of the TR. Taken together, these studies demonstrate that the novel TR-specific coactivator function of E1A in yeast depends on the SWI/SNF chromatin remodeling complex and can be further influenced by changes in the cellular complement of transcriptional coregulatory proteins.
在哺乳动物细胞中,人5型腺病毒早期区域1A(E1A)癌蛋白作为甲状腺激素(TH)依赖性的甲状腺激素受体(TR)激活剂发挥作用。有趣的是,在酿酒酵母的细胞环境中,E1A充当TR特异性组成型共激活因子,其活性受TH下调。TH可减少酵母中E1A与TR的相互作用,但对HeLa细胞无此作用。E1A的N端82个氨基酸足以在酵母中发挥共激活作用,其中4至29位残基至关重要。在酵母中,核受体共抑制因子(N-CoR)的表达可下调E1A对TR的组成型转录激活,而糖皮质激素受体相互作用蛋白1(GRIP-1)共激活因子的表达则可重建在哺乳动物细胞中观察到的E1A诱导的TR依赖性基因激活增强模式。我们进一步表明,交配型转换基因(SWI)/蔗糖非发酵(SNF)基因染色质重塑复合体对于TH/GRIP-1和E1A依赖性共激活因子功能均是必需的,而SPT、ADA、GCN5、乙酰化(SAGA)转录衔接复合体的一般控制非抑制蛋白(GCN5)/激活蛋白改变/缺陷(ADA2)组分对于TH/GRIP-1依赖性而非E1A依赖性的TR激活是必需的。综上所述,这些研究表明E1A在酵母中新型的TR特异性共激活因子功能依赖于SWI/SNF染色质重塑复合体,并且可受到转录共调节蛋白细胞组成变化的进一步影响。