State Key Laboratory of Oral Diseases and National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, China.
Department of Endodontics, West China Hospital of Stomatology, Sichuan University, Chengdu, China.
Sci Adv. 2022 Jul 22;8(29):eabn4977. doi: 10.1126/sciadv.abn4977.
Given that adult stem cells (ASCs) fuel homeostasis and healing by providing tissue-specific descendants, the fidelity of ASC fate determination is crucial for regeneration. Here, we established that an epigenetic control of epithelial ASC fate fidelity via Ezh2/H3K27me3 was indispensable for incisor homeostasis and regeneration. Mechanistically, in homeostasis, H3K27me3 upstream occupies the Sonic hedgehog (Shh) promoter to directly restrain Shh expression, thereby precisely confining Shh expression. When injury occurred, Ezh2/H3K27me3 was substantially induced within inner enamel epithelium and preameloblast zones, and such epigenetic response guaranteed the fidelity of ASC commitment via pulling injury-increased Shh back to homeostatic levels, utterly underlying regeneration progression. Once losing H3K27me3-dependent restriction of Shh expression through the Cre-Loxp system totally disrupted lineage commitment and stemness exhaustion, and abolished hard tissue regeneration emerged in vivo. We next uncovered the molecular mechanisms by which injury-induced Ezh2 mediated the spatiotemporal dynamics of H3K27me3 to repress Shh expression, thus epigenetically deciding ASC fate.
鉴于成体干细胞 (ASCs) 通过提供组织特异性后代来维持体内平衡和促进组织修复,因此 ASC 命运决定的准确性对于组织再生至关重要。在这里,我们通过 Ezh2/H3K27me3 建立了上皮细胞 ASC 命运准确性的表观遗传控制,这对于门齿的体内平衡和再生是必不可少的。在体内平衡中,H3K27me3 上游占据 Sonic hedgehog (Shh) 启动子,直接抑制 Shh 表达,从而精确限制 Shh 的表达。当发生损伤时,Ezh2/H3K27me3 在内釉上皮和前成釉细胞区大量诱导,这种表观遗传反应通过将损伤增加的 Shh 拉回到体内平衡水平,从而保证了 ASC 承诺的准确性,完全支持再生的进展。一旦通过 Cre-Loxp 系统完全失去 H3K27me3 依赖性 Shh 表达的限制,就会破坏细胞谱系的承诺和干细胞的枯竭,体内的硬组织再生就会消失。接下来,我们揭示了损伤诱导的 Ezh2 通过时空动力学调节 H3K27me3 来抑制 Shh 表达的分子机制,从而在表观遗传上决定了 ASC 的命运。