Genetic control of cellular morphogenesis in Müller glia

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Abstract

Of all the cells in the body, those with the greatest variety of shapes reside in the central nervous system yet they all start their postmitotic lives as simple elongated cells of the neuroepithelium 1 .The molecular processes by which these, or indeed any, cells gain their particular cell-specific anatomies remain largely unexplored.We, therefore, developed a strategy to identify the genes involved in cellular morphogenesis using Müller glial (MG) cells in the vertebrate retina as a model system.These radially oriented cells, discovered by Heinrich Müller in 1851 and named in his honour 2 , are astonishingly complex yet, as the great neurohistologist Ramon y Cajal first noted, they share a conserved set of key anatomical features 3 .Using genomic and CRISPR based strategies in zebrafish, combined with a temporal dissection of the process, we found more than 40 genes involved in MG cell morphogenesis.Strikingly, the sequential steps of anatomical feature addition are regulated by successive expression of cohorts of interrelated genes, revealing unprecedented insights into the developmental genetics of cellular morphogenesis.

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