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Publication : The Hippo Pathway Blocks Mammalian Retinal Müller Glial Cell Reprogramming.

First Author  Rueda EM Year  2019
Journal  Cell Rep Volume  27
Issue  6 Pages  1637-1649.e6
PubMed ID  31067451 Mgi Jnum  J:278722
Mgi Id  MGI:6358881 Doi  10.1016/j.celrep.2019.04.047
Citation  Rueda EM, et al. (2019) The Hippo Pathway Blocks Mammalian Retinal Muller Glial Cell Reprogramming. Cell Rep 27(6):1637-1649.e6
abstractText  In response to retinal damage, the Muller glial cells (MGs) of the zebrafish retina have the ability to undergo a cellular reprogramming event in which they enter the cell cycle and divide asymmetrically, thereby producing multipotent retinal progenitors capable of regenerating lost retinal neurons. However, mammalian MGs do not exhibit such a proliferative and regenerative ability. Here, we identify Hippo pathway-mediated repression of the transcription cofactor YAP as a core regulatory mechanism that normally blocks mammalian MG proliferation and cellular reprogramming. MG-specific deletion of Hippo pathway components Lats1 and Lats2, as well as transgenic expression of a Hippo non-responsive form of YAP (YAP5SA), resulted in dramatic Cyclin D1 upregulation, loss of adult MG identity, and attainment of a highly proliferative, progenitor-like cellular state. Our results reveal that mammalian MGs may have latent regenerative capacity that can be stimulated by repressing Hippo signaling.
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