TY - JOUR
T1 - Foxa2 regulates the expression of Nato3 in the floor plate by a novel evolutionarily conserved promoter
AU - Mansour, Abed Al Fatah
AU - Nissim-Eliraz, Einat
AU - Zisman, Sophie
AU - Golan-Lev, Tamar
AU - Schatz, Omri
AU - Klar, Avihu
AU - Ben-Arie, Nissim
N1 - Funding Information: This work was supported by grants from the Israel Science Foundation ( 431/07 to Nissim Ben-Arie and 226/09 to AK), the ISF-Legacy Heritage Fund ( 1914/08 to Nissim Ben-Arie and 1930/08 to AK), the Israel Ministry of Health (to AK) and DFG (to AK). We are grateful to J. Briscoe for a generous contribution of expression constructs, Or Avner for technical assistance and Esther Golenser and Theodora Bar-El for carefully reading and editing the manuscript.
PY - 2011/1
Y1 - 2011/1
N2 - The development of the neural tube into a complex central nervous system involves morphological, cellular and molecular changes, all of which are tightly regulated. The floor plate (FP) is a critical organizing center located at the ventral-most midline of the neural tube. FP cells regulate dorsoventral patterning, differentiation and axon guidance by secreting morphogens. Here we show that the bHLH transcription factor Nato3 (Ferd3l) is specifically expressed in the spinal FP of chick and mouse embryos. Using in ovo electroporation to understand the regulation of the FP-specific expression of Nato3, we have identified an evolutionarily conserved 204. bp genomic region, which is necessary and sufficient to drive expression to the chick FP. This promoter contains two Foxa2-binding sites, which are highly conserved among distant phyla. The two sites can bind Foxa2 in vitro, and are necessary for the expression in the FP in vivo. Gain and loss of Foxa2 function in vivo further emphasize its role in Nato3 promoter activity. Thus, our data suggest that Nato3 is a direct target of Foxa2, a transcription activator and effector of Sonic hedgehog, the hallmark regulator of FP induction and spinal cord development. The identification of the FP-specific promoter is an important step towards a better understanding of the molecular mechanisms through which Nato3 transcription is regulated and for uncovering its function during nervous system development. Moreover, the promoter provides us with a powerful tool for conditional genetic manipulations in the FP.
AB - The development of the neural tube into a complex central nervous system involves morphological, cellular and molecular changes, all of which are tightly regulated. The floor plate (FP) is a critical organizing center located at the ventral-most midline of the neural tube. FP cells regulate dorsoventral patterning, differentiation and axon guidance by secreting morphogens. Here we show that the bHLH transcription factor Nato3 (Ferd3l) is specifically expressed in the spinal FP of chick and mouse embryos. Using in ovo electroporation to understand the regulation of the FP-specific expression of Nato3, we have identified an evolutionarily conserved 204. bp genomic region, which is necessary and sufficient to drive expression to the chick FP. This promoter contains two Foxa2-binding sites, which are highly conserved among distant phyla. The two sites can bind Foxa2 in vitro, and are necessary for the expression in the FP in vivo. Gain and loss of Foxa2 function in vivo further emphasize its role in Nato3 promoter activity. Thus, our data suggest that Nato3 is a direct target of Foxa2, a transcription activator and effector of Sonic hedgehog, the hallmark regulator of FP induction and spinal cord development. The identification of the FP-specific promoter is an important step towards a better understanding of the molecular mechanisms through which Nato3 transcription is regulated and for uncovering its function during nervous system development. Moreover, the promoter provides us with a powerful tool for conditional genetic manipulations in the FP.
KW - BHLH transcription factor
KW - Chick in ovo electroporation
KW - Floor plate
KW - Foxa2
KW - Nato3
KW - Spinal cord development
KW - Transcriptional regulation
UR - http://www.scopus.com/inward/record.url?scp=78650915176&partnerID=8YFLogxK
U2 - 10.1016/j.mcn.2010.09.002
DO - 10.1016/j.mcn.2010.09.002
M3 - مقالة
C2 - 20849957
SN - 1044-7431
VL - 46
SP - 187
EP - 199
JO - Molecular and Cellular Neuroscience
JF - Molecular and Cellular Neuroscience
IS - 1
ER -