Group of Transcriptional Regulation of Gene Expression, IDIBAPS, Barcelona, Spain.
Mol Cell Biol. 2013 Apr;33(7):1368-82. doi: 10.1128/MCB.01259-12. Epub 2013 Jan 22.
Skeletal muscle development is orchestrated by the myogenic regulatory factor MyoD, whose activity is blocked in myoblasts by proteins preventing its nuclear translocation and/or binding to G/C-centered E-boxes in target genes. Recent evidence indicates that muscle gene expression is also regulated at the cis level by differential affinity for DNA between MyoD and other E-box binding proteins during myogenesis. MyoD binds to G/C-centered E-boxes, enriched in muscle differentiation genes, in myotubes but not in myoblasts. Here, we used cell-based and in vivo Drosophila, Xenopus laevis, and mouse models to show that ZEB1, a G/C-centered E-box binding transcriptional repressor, imposes a temporary stage-dependent inhibition of muscle gene expression and differentiation via CtBP-mediated transcriptional repression. We found that, contrary to MyoD, ZEB1 binds to G/C-centered E-boxes in muscle differentiation genes at the myoblast stage but not in myotubes. Its knockdown results in precocious expression of muscle differentiation genes and acceleration of myotube formation. Inhibition of muscle genes by ZEB1 occurs via transcriptional repression and involves recruitment of the CtBP corepressor. Lastly, we show that the pattern of gene expression associated with muscle differentiation is accelerated in ZEB1(-/-) mouse embryos. These results set ZEB1 as an important regulator of the temporal pattern of gene expression controlling muscle differentiation.
骨骼肌的发育是由肌源性调节因子 MyoD 调控的,MyoD 的活性在成肌细胞中被阻止其核易位和/或与靶基因中 G/C 中心 E 盒结合的蛋白所抑制。最近的证据表明,在肌肉发生过程中,MyoD 与其他 E 盒结合蛋白之间 DNA 结合的差异亲和力也会在顺式水平上调节肌肉基因的表达。MyoD 结合富含肌肉分化基因的 G/C 中心 E 盒,但不在成肌细胞中结合。在这里,我们使用基于细胞的和体内的果蝇、非洲爪蟾和小鼠模型表明,ZEB1 是一种 G/C 中心 E 盒结合的转录抑制因子,通过 CtBP 介导的转录抑制,对肌肉基因表达和分化施加暂时的、依赖于阶段的抑制。我们发现,与 MyoD 相反,ZEB1 在成肌细胞阶段而不是在肌管中结合肌肉分化基因中的 G/C 中心 E 盒。其敲低导致肌肉分化基因的过早表达和肌管形成的加速。ZEB1 通过转录抑制抑制肌肉基因的表达,涉及 CtBP 核心抑制因子的募集。最后,我们表明与肌肉分化相关的基因表达模式在 ZEB1(-/-) 小鼠胚胎中加速。这些结果将 ZEB1 确立为控制肌肉分化的基因表达时间模式的重要调节因子。