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- Integration of Biochemical and Mechanical Signals at the Nuclear Periphery: Impacts on Skin Development and Disease
- All Roads Go to the Nucleus: Integration of Signaling/Transcription Factor-Mediated and Epigenetic Regulatory Mechanisms in the Control of Skin Development and Regeneration
- 0846 Wnt signaling drives hair follicle regeneration in wounds by attenuating mechanotransduction in the epidermis
- ATP-dependent chromatin remodeling during mammalian development
- Second International Symposium—Epigenetic Regulation of Skin Regeneration and Aging: From Chromatin Biology towards the Understanding of Epigenetic Basis of Skin Diseases
- Live imaging reveals chromatin compaction transitions and dynamic transcriptional bursting during stem cell differentiation in vivo
- Epidermal Stem Cells Are Defined by Global Histone Modifications that Are Altered by Myc-Induced Differentiation
- SOX11 and SOX4 drive the reactivation of an embryonic gene program during murine wound repair
- Wnt signaling modulates mechanotransduction in the epidermis to drive hair follicle regeneration
- GRHL3 binding and enhancers rearrange as epidermal keratinocytes transition between functional states
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