Npas4 regulates the expression of Sox1 in an early neural progenitor cell population during neural differentiation of mouse embryonic stem cells (CROSBI ID 645961)
Prilog sa skupa u zborniku | sažetak izlaganja sa skupa | domaća recenzija
Podaci o odgovornosti
Klarić, Thomas Stephen ; Thomas, Paul ; Dottori, Mirella ; Leong Wai Khay ; Koblar, Simon Andrea ; Lewis, Martin David
engleski
Npas4 regulates the expression of Sox1 in an early neural progenitor cell population during neural differentiation of mouse embryonic stem cells
Npas4 is an activity dependent transcription factor expressed within neurons of the central nervous system where it regulates the expression of several genes that are important for neuronal survival and synaptic plasticity. In the adult brain, Npas4 plays an important role in several key aspects of neurobiology including inhibitory synapse formation, neuroprotection and memory ; however, very little is known regarding the role of Npas4 during neurodevelopment. In this study, we used neural differentiation of embryonic stem cells (ESCs) as a model to investigate the expression and function of Npas4 during early development. We found that while Npas4 is not expressed by undifferentiated ESCs, it becomes transiently up regulated during neural differentiation of both mouse and human ESCs at a stage of differentiation that is characterised by proliferation of neural progenitor cells (NPCs). Knock down of Npas4 expression in mouse ESCs undergoing neural differentiation resulted in a decrease in the percentage of cells expressing the neuroectoderm marker Sox1, though expression of Nestin (a marker of more mature NPCs) was not affected. Our findings suggest that Npas4 acts upstream of Sox1 during neural differentiation and further suggest a potential role for Npas4 in aspects of NPC maintenance and/or differentiation. Here we provide the first evidence that Npas4 is expressed developmentally by a population of early NPCs and that it may have a developmental role that is unrelated to its function in the adult brain.
Npas4 ; mouse embryonic stem cells ; neural differentiation
nije evidentirano
nije evidentirano
nije evidentirano
nije evidentirano
nije evidentirano
nije evidentirano
Podaci o prilogu
2012.
objavljeno
Podaci o matičnoj publikaciji
Podaci o skupu
ComBio2012
predavanje
23.09.2012-27.09.2012
Adelaide, Australija