4.7 Article

Lhx2 Is an Essential Factor for Retinal Gliogenesis and Notch Signaling

期刊

JOURNAL OF NEUROSCIENCE
卷 36, 期 8, 页码 2391-2405

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.3145-15.2016

关键词

differentiation; Lhx2; Muller glia; Notch; retina

资金

  1. National Institutes of Health [R01EY020560, R01EY017015, F32EY024201]
  2. Knights Templar Pediatric Ophthalmology Foundation

向作者/读者索取更多资源

Muller glia (MG) are the only glial cell type produced by the neuroepithelial progenitor cells that generate the vertebrate retina. MG are required to maintain retinal homeostasis and support the survival of retinal neurons. Furthermore, in certain vertebrate classes, MG function as adult stem cells, mediating retinal regeneration in response to injury. However, the mechanisms that regulate MG development are poorly understood because there is considerable overlap in gene expression between retinal progenitor cells and differentiated MG. We show that the LIM homeodomain transcription factor Lhx2 is required for the development of MG in the mouse retina. Temporally controlled knock-out studies reveal a requirement for Lhx2 during all stages of MG development, ranging from the proliferation of gliocompetent retinal progenitors, activation of Muller-specific gene expression, and terminal differentiation of MG morphological features. We show that Lhx2 regulates gliogenesis in part by regulating directly the expression of Notch pathway genes including Notch1, Dll1, and Dll3 and gliogenic transcription factors such as Hes1, Hes5, Sox8, and Rax. Conditional knock-out of Lhx2 resulted in a rapid downregulation of Notch pathway genes and loss of Notch signaling. We further demonstrate that Muller gliogenesis induced by misex-pression of the potently gliogenic Notch pathway transcriptional effector Hes5 requires Lhx2 expression. These results indicate that Lhx2 not only directly regulates expression of Notch signaling pathway components, but also acts together with the gliogenic Notch pathway to drive MG specification and differentiation.

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