|  Help  |  About  |  Contact Us

Publication : Differential gene induction by genetic and ligand-mediated activation of the Sonic hedgehog pathway in neural stem cells.

First Author  Galvin KE Year  2007
Journal  Dev Biol Volume  308
Issue  2 Pages  331-42
PubMed ID  17599824 Mgi Jnum  J:124121
Mgi Id  MGI:3720544 Doi  10.1016/j.ydbio.2007.05.031
Citation  Galvin KE, et al. (2007) Differential gene induction by genetic and ligand-mediated activation of the Sonic hedgehog pathway in neural stem cells. Dev Biol 308(2):331-42
abstractText  Sonic hedgehog (Shh), a secreted morphogen and mitogen, is essential for nervous system development and neural stem cell (NSC) self-renewal. As the intracellular signal transduction of Shh in NSCs is largely unknown, we sought to characterize pathway targets using ligand stimulation and genetic models of activation. NSCs haploinsufficient for Patched (Ptc), a receptor repressive to Shh signaling, showed enhanced proliferation of a magnitude similar to Shh-treated wild-type (Wt) NSCs. Analysis of the Gli zinc-finger transcription factors, primary mediators of Shh activity, demonstrated differential induction between models of pathway activation. Gli1 was significantly induced in Wt NSCs exposed to Shh, whereas Gli2 was elevated and Gli1 expression did not change in Ptc(+/-) NSCs. Other Shh targets (Nmyc, Id factors) were induced under both conditions of pathway activation. Interestingly, Shh-treated Ptc(+/-) NSCs induced expression of Gli1 but failed to increase proliferation, suggesting that the NSCs may have reached a physiologic plateau in proliferative capacity. Thus, our data demonstrate that Ptc(+/-) mice have an expanded progenitor cell niche in vivo and that NSCs maintain a cell-intrinsic increase in basal proliferation in vitro that is sustained by a Gli transduction signature distinct from that of exogenous Shh stimulation. Additionally, Ptc(+/-) NSCs maintain tight control over mitosis and do not further augment proliferation in the presence of mitogenic stimulation.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

3 Authors

4 Bio Entities

Trail: Publication

0 Expression