Transcriptional regulation of photoreceptor development and homeostasis in the mammalian retina.
review · Level V
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- Record sourced from PubMed, PMID 20648062.
- Also identified by DOI 10.1038/nrn2880 and PMC identifier 11346175.
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Abstract
In the developing vertebrate retina, diverse neuronal subtypes originate from multipotent progenitors in a conserved order and are integrated into an intricate laminated architecture. Recent progress in mammalian photoreceptor development has identified a complex relationship between six key transcription-regulatory factors (RORbeta, OTX2, NRL, CRX, NR2E3 and TRbeta2) that determine rod versus M cone or S cone cell fate. We propose a step-wise 'transcriptional dominance' model of photoreceptor cell fate determination, with the S cone representing the default state of a generic photoreceptor precursor. Elucidation of gene-regulatory networks that dictate photoreceptor genesis and homeostasis will have wider implications for understanding the development of nervous system function and for the treatment of neurodegenerative diseases.
Medical subject headings
- Homeostasis
- Neurogenesis
- Photoreceptor Cells
- Retina
- Transcription, Genetic