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Histone H3 K4/9/27 Trimethylation Levels Affect Wound Healing and Stem Cell Dynamics in Adult Skin

机译:组蛋白H3 K4 / 9/27三甲基化水平影响成年皮肤伤口愈合和干细胞动力学

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摘要

Epigenetic mechanisms controlling adult mammalian stem cell (SC) dynamics might be critical for tissue regeneration but are poorly understood. Mouse skin and hair follicle SCs (HFSCs) display reduced histone H3 K4me3, K9me3, and K27me3 methylation levels (hypomethylation) preceding hair growth. Chemical inhibition of relevant histone demethylases impairs subsequent differentiation and growth of HFs and delays wound healing. In wounding, this impairs epithelial cell differentiation and blood vessel recruitment, but not proliferation and fibroblast recruitment. With -CreER as a newfound inter-follicular epidermis lineage-labeling tool, and -CreER for hair follicles, we demonstrate a reduced contribution of both lineages to wound healing after interfering with hypomethylation. Blocked hypomethylation increases BMP4 expression and selectively upregulates H3 K4me3 on the promoter, which may explain the effects on HFSC quiescence, hair cycle, and injury repair. Thus, transient hypomethylation of histone H3 K4/9/27me3 is essential for adult skin epithelial SC dynamics for proper tissue homeostasis and repair.
机译:控制成年哺乳动物干细胞(SC)动态的表观遗传机制可能对于组织再生至关重要,但了解甚少。小鼠皮肤和毛囊SC(HFSC)在毛发生长之前显示出降低的组蛋白H3 K4me3,K9me3和K27me3甲基化水平(次甲基化)。相关组蛋白脱甲基酶的化学抑制作用会削弱随后的HFs的分化和生长,并延迟伤口愈合。在创伤中,这损害上皮细胞分化和血管募集,但不损害增殖和成纤维细胞募集。使用-CreER作为新发现的小孔间表皮谱系标记工具,以及-CreER用于毛囊,我们证明了这两种谱系在干扰甲基化不足后对伤口愈合的作用降低。阻断的低甲基化会增加BMP4表达,并选择性上调启动子上的H3 K4me3,这可能解释了对HFSC静止,毛发周期和损伤修复的影响。因此,组蛋白H3 K4 / 9 / 27me3的瞬时低甲基化对于成人皮肤上皮SC动力学进行适当的组织稳态和修复至关重要。

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