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Publication : Gene regulatory networks controlling vertebrate retinal regeneration.

First Author  Hoang T Year  2020
Journal  Science Volume  370
Issue  6519 PubMed ID  33004674
Mgi Jnum  J:297653 Mgi Id  MGI:6479147
Doi  10.1126/science.abb8598 Citation  Hoang T, et al. (2020) Gene regulatory networks controlling vertebrate retinal regeneration. Science 370(6519)
abstractText  Injury induces retinal Muller glia of certain cold-blooded vertebrates, but not those of mammals, to regenerate neurons. To identify gene regulatory networks that reprogram Muller glia into progenitor cells, we profiled changes in gene expression and chromatin accessibility in Muller glia from zebrafish, chick, and mice in response to different stimuli. We identified evolutionarily conserved and species-specific gene networks controlling glial quiescence, reactivity, and neurogenesis. In zebrafish and chick, the transition from quiescence to reactivity is essential for retinal regeneration, whereas in mice, a dedicated network suppresses neurogenic competence and restores quiescence. Disruption of nuclear factor I transcription factors, which maintain and restore quiescence, induces Muller glia to proliferate and generate neurons in adult mice after injury. These findings may aid in designing therapies to restore retinal neurons lost to degenerative diseases.
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