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- Erasing the methyl mark: histone demethylases at the center of cellular differentiation and disease
- The Role of Histone Demethylases in Disease
- Histone H3 K4/9/27 Trimethylation Levels Affect Wound Healing and Stem Cell Dynamics in Adult Skin
- Signalling couples hair follicle stem cell quiescence with reduced histone H3 K4/K9/K27me3 for proper tissue homeostasis
- Roles of <i>jumonji</i> and <i>jumonji</i> family genes in chromatin regulation and development
- Hairless is a nuclear receptor corepressor essential for skin function
- LSD1 is Required for Hair Cell Regeneration in Zebrafish
- Epigenetic regulations on skin wound healing: implications from current researches.
- Tailored chromatin modulation to promote tissue regeneration
- Human Hairless Protein Roles in Skin/Hair and Emerging Connections to Brain and Other Cancers
- 1397 LSD1 is critical for epidermal development and skin barrier formation
- UTX (KDM6A) promotes differentiation noncatalytically in somatic self-renewing epithelia
- INVESTIGATIONS INTO THE ROLE OF THE X-LINKED EPIGENETIC REGULATOR UTX (KDM6A) IN SELF-RENEWING STRATIFYING EPITHELIA
- MOF-mediated histone H4 Lysine 16 acetylation governs mitochondrial and ciliary functions by controlling gene promoters
- Noval advance of histone modification in inflammatory skin diseases and related treatment methods
- Epigenetic control of adult stem cell function
- Epigenetic regulation in adult stem cells and cancers
- Interactions of the Vitamin D Receptor with the Corepressor Hairless
- Mettl3-catalyzed m <sup>6</sup> A regulates histone modifier and modification expression in self-renewing somatic tissue
- The Immune Functions of Keratinocytes in Skin Wound Healing
- Non-histone Methylation of SET7/9 and its Biological Functions
- Is There a Histone Code for Cellular Quiescence?
- Cell fate decisions: emerging roles for metabolic signals and cell morphology
- Small RNAs Loom Large During Reprogramming
- Dynamics and Epigenetics of the Epidermal Differentiation Complex
- Inhibition of the CoREST Repressor Complex Promotes Wound Re-Epithelialization through the Regulation of Keratinocyte Migration
- Transcriptional and epigenetic mechanisms governing epidermal stem cell regulation
- Epigenetic and transcriptional profiling of secondary hair follicle stem cells during cashmere growth
- Epigenetics of Colorectal Cancer
- Hypoxia in Cell Reprogramming and the Epigenetic Regulations