Wellcome Trust Centre for Stem Cell Research, University of Cambridge, Cambridge CB2 1QR, UK.
Nat Cell Biol. 2011 Nov 20;13(12):1395-405. doi: 10.1038/ncb2385.
How the proto-oncogene c-Myc balances the processes of stem-cell self-renewal, proliferation and differentiation in adult tissues is largely unknown. We explored c-Myc's transcriptional roles at the epidermal differentiation complex, a locus essential for skin maturation. Binding of c-Myc can simultaneously recruit (Klf4, Ovol-1) and displace (Cebpa, Mxi1 and Sin3a) specific sets of differentiation-specific transcriptional regulators to epidermal differentiation complex genes. We found that Sin3a causes deacetylation of c-Myc protein to directly repress c-Myc activity. In the absence of Sin3a, genomic recruitment of c-Myc to the epidermal differentiation complex is enhanced, and re-activation of c-Myc-target genes drives aberrant epidermal proliferation and differentiation. Simultaneous deletion of c-Myc and Sin3a reverts the skin phenotype to normal. Our results identify how the balance of two transcriptional key regulators can maintain tissue homeostasis through a negative feedback loop.
原癌基因 c-Myc 如何在成体组织中平衡干细胞自我更新、增殖和分化的过程在很大程度上尚不清楚。我们研究了 c-Myc 在表皮分化复合物中的转录作用,该复合物是皮肤成熟所必需的。c-Myc 的结合可以同时募集(Klf4、Ovol-1)和置换(Cebpa、Mxi1 和 Sin3a)特定的分化特异性转录调节剂到表皮分化复合物基因。我们发现 Sin3a 导致 c-Myc 蛋白去乙酰化,从而直接抑制 c-Myc 的活性。在没有 Sin3a 的情况下,c-Myc 基因组募集到表皮分化复合物的增加,并重新激活 c-Myc 靶基因驱动异常的表皮增殖和分化。同时删除 c-Myc 和 Sin3a 可使皮肤表型恢复正常。我们的结果表明,两个转录关键调节剂的平衡如何通过负反馈回路维持组织内稳态。