Runx1 modulates developmental, but not injury-driven, hair follicle stem cell activation
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Summary
A degree of functional overlap in Runx1 regulation of blood and hair follicle stem cells at an equivalent time point in the development of these two tissues is suggested.
- Type
- article
- Published
- 2008-03-15
- Cited by
- 117
- References
- 47
- Access
- Open access
- OpenAlex
- https://openalex.org/W1973592216
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:6191082
Keywords
Biology, Hair follicle, Stem cell, Cell biology, Cellular differentiation
References
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- Regulation of RUNX1/AML1 during the G2/M transition.
- Label-retaining cells reside in the bulge area of pilosebaceous unit: implications for follicular stem cells, hair cycle, and skin carcinogenesis.
- Defining the Epithelial Stem Cell Niche in Skin
- The magical touch: genome targeting in epidermal stem cells induced by tamoxifen application to mouse skin.
- Three clonal types of keratinocyte with different capacities for multiplication.
- Stem Cells and Their Niches
- Two distinct signaling pathways in hair cycle induction: Stat3-dependent and -independent pathways.
- Out of Eden: stem cells and their niches.
- A comprehensive guide for the recognition and classification of distinct stages of hair follicle morphogenesis.
- Keratinocyte‐specific ablation of Stat3 exhibits impaired skin remodeling, but does not affect skin morphogenesis
- Normal and transforming functions of RUNX1: A perspective
- Conditional gene expression in the epidermis of transgenic mice using the tetracycline-regulated transactivators tTA and rTA linked to the keratin 5 promoter.
Cited by
- Runx1 and p21 synergistically limit the extent of hair follicle stem cell quiescence in vivo
- Runx1 role in epithelial and cancer cell proliferation implicates lipid metabolism and Scd1 and Soat1 activity
- Cellular dynamics in the niche of infrequently dividing hair follicle stem cells in the mouse Mus musculus
- Transcriptional control of epidermal stem cells.
- Investigating RUNX transcription factors in mammary gland development and breast cancer
- Understanding The Molecular Mechanisms Of Hair Follicle Stem Cell Quiescence And Genome Plasticity
- Defining a tissue stem cell‐driven Runx1/Stat3 signalling axis in epithelial cancer
- Runx/Cbfb signaling regulates postnatal development of granular convoluted tubule in the mouse submandibular gland
- Epidermal homeostasis: a balancing act of stem cells in the skin
- Neuroblastoma cell proliferation is sensitive to changes in levels of RUNX1 and RUNX3 protein.
- Adult interfollicular tumour-initiating cells are reprogrammed into an embryonic hair follicle progenitor-like fate during basal cell carcinoma initiation
- RUNX genes find a niche in stem cell biology
- RUNX1 and its understudied role in breast cancer
- Distinct Self-renewal and Differentiation Phases in the Niche of Infrequently Dividing Hair Follicle Stem Cells
- High Runx1 levels promote a reversible more differentiated cell-state in hair follicle stem cells during quiescence
- Adult hair follicle stem cells do not retain the older DNA strands in vivo during normal tissue homeostasis
- Transcription factors Runx1 to 3 are expressed in the lacrimal gland epithelium and are involved in regulation of gland morphogenesis and regeneration.
- A Transcriptional Mechanism Integrating Inputs from Extracellular Signals to Activate Hippocampal Stem Cells
- Core Binding Factor Beta Functions in the Maintenance of Stem Cells and Orchestrates Continuous Proliferation and Differentiation in Mouse Incisors
- An RNA interference screen uncovers a new molecule in stem cell self-renewal and long-term regeneration
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