Notch Signaling Influences Neuroprotective and Proliferative Properties of Mature Muller Glia

作者:Ghai Kanika; Zelinka Christopher; Fischer Andy J*
来源:Journal of Neuroscience, 2010, 30(8): 3101-3112.
DOI:10.1523/JNEUROSCI.4919-09.2010

摘要

Notch signaling is known to play important roles during retinal development. Recently, Notch signaling has been shown to be active in proliferating Muller glia in acutely damaged chick retina (Hayes et al., 2007). However, the roles of Notch in mature, undamaged retina remain unknown. Thus, the purpose of this study was to determine the role of the Notch-signaling pathway in the postnatal retina. Here we show that components of the Notch-signaling pathway are expressed in most Muller glia at low levels in undamaged retina. The expression of Notch-related genes varies during early postnatal development and across regions, with higher expression in peripheral versus central retina. Blockade of Notch activity with a small molecule inhibitor before damage was protective to retinal interneurons (amacrine and bipolar cells) and projection neurons (ganglion cells). In the absence of damage, Notch is upregulated in retinas treated with insulin and FGF2; the combination of these factors is known to stimulate the proliferation and dedifferentiation of Muller glia (Fischer et al., 2002b). Inhibition of Notch signaling during FGF2 treatment reduces levels of the downstream effectors of the MAPK-signaling pathway-p38 MAPK and pCREB in Muller glia. Further, inhibition of Notch activity potently inhibits FGF2-induced proliferation of Muller glia. Together, our data indicate that Notch signaling is downstream of, and is required for, FGF2/MAPK signaling to drive the proliferation of Muller glia. In addition, our data suggest that low levels of Notch signaling in Muller glia diminish the neuroprotective activities of these glial cells.

  • 出版日期2010-2-24