Copyright © 2010 by Morgan & Claypool Life Sciences.
NCBI Bookshelf. A service of the National Library of Medicine, National Institutes of Health.
Abstract
The neural crest is a remarkable embryonic population of cells found only in vertebrates and has the potential to give rise to many different cell types contributing throughout the body. These derivatives range from the mesenchymal bone and cartilage comprising the facial skeleton, to neuronal derivatives of the peripheral sensory and autonomic nervous systems, to melanocytes throughout the body, and to smooth muscle of the great arteries of the heart. For these cells to correctly progress from an unspecifi ed, nonmigratory population to a wide array of dynamic, differentiated cell types—some of which retain stem cell characteristics presumably to replenish these derivatives—requires a complex network of molecular switches to control the gene programs giving these cells their defi ning structural, enzymatic, migratory, and signaling capacities. This review will bring together current knowledge of neural crest-specifi c transcription factors governing these progressions throughout the course of development. A more thorough understanding of the mechanisms of transcriptional control in differentiation will aid in strategies designed to push undifferentiated cells toward a particular lineage, and unraveling these processes will help toward reprogramming cells from a differentiated to a more naive state.
Contents
- 1. Introduction
- 1.1 THE ROLE OF TRANSCRIPTIONAL REGULATION IN DEVELOPMENT
- 1.2 NEURAL CREST CELLS HAVE REMARKABLE DEVELOPMENTAL PLASTICITY
- 1.3 The role of transcription factors in neural crest stem cells and induced pluripotent stem cells
- 1.4 NC MISREGULATION IN DISEASE STATES
- 1.5 REVIEWING CURRENT KNOWLEDGE OF NC TRANSCRIPTIONAL CONTROL
- 2. AP Genes
- 3. bHLH Proteins
- 4. ETS Genes
- 5. Fox Genes
- 6. Homeobox Genes
- 7. Hox Genes
- 8. Lim Genes
- 9. Pax Genes
- 10. POU Domain Genes
- 11. RAR /RXR Genes
- 12. Smad Genes
- 13. Sox Genes
- 14. Zinc Finger Genes
- 15. Other Miscellaneous Genes
- 15.1 Atf1
- 15.2 Cited2 AND Cited4
- 15.3 Creb1
- 15.4 Ctbp1 AND Ctbp2
- 15.5 Dawg
- 15.6 Mafb
- 15.7 MEDIATOR SUBUNITS Med12 AND Med24
- 15.8 Mef2
- 15.9 Mrf2
- 15.10 Myb AND Mybl2
- 15.11 Myocd, Mkl1, Mkl2
- 15.12 Nfatc3 AND Nfatc4
- 15.13 Nfyb
- 15.14 NUCLEAR RECEPTORS Nr2f1, Nr2f2, Nr5a1, Nr5a2
- 15.15 Rela (NFkB SUBUNIT)
- 15.16 Srf
- 15.17 IMMEDIATE-EARLY GENES Sp1, Sp3, AND Sp4
- 15.18 Stat3
- 15.19 Tcof1
- 15.20 Tead2
- 15.21 Tsc22d1
- References
- Author Biographies
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Neural crest and mesoderm lineage-dependent gene expression in orofacial development.Bhattacherjee V, Mukhopadhyay P, Singh S, Johnson C, Philipose JT, Warner CP, Greene RM, Pisano MM. Differentiation. 2007 Jun; 75(5):463-77. Epub 2007 Feb 5.
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Induction of the neural crest state: Control of stem cell attributes by gene regulatory, post-transcriptional and epigenetic interactions.
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Induction of the neural crest state: Control of stem cell attributes by gene regulatory, post-transcriptional and epigenetic interactions.Prasad MS, Sauka-Spengler T, Labonne C. Dev Biol. 2012 Jun 1; 366(1):10-21. Epub 2012 Mar 30.
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Review Molecular mechanisms of neural crest formation.
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Review A gene regulatory network orchestrates neural crest formation.
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