Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiation

The molecular mechanisms and potential clinical applications of neural precursor cells have recently been the subject of intensive study. Dlx5, a homeobox transcription factor related to the distal-less gene in Drosophila, was shown to play an important role during forebrain development. The subvent...

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Main Authors: H.F. Shu, F.Y. Gao, C.Q. Zhang, S.Y. Liu, Z.Y. Zhang, Y.C. Song, K.J. Qiu, H. Yang
Format: Article
Language:English
Published: Associação Brasileira de Divulgação Científica 2010-02-01
Series:Brazilian Journal of Medical and Biological Research
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-879X2010000200008
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spelling doaj-2cf952420f2f4924b13c915277fbbbec2020-11-24T21:07:20ZengAssociação Brasileira de Divulgação CientíficaBrazilian Journal of Medical and Biological Research0100-879X1414-431X2010-02-01432176185Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiationH.F. ShuF.Y. GaoC.Q. ZhangS.Y. LiuZ.Y. ZhangY.C. SongK.J. QiuH. YangThe molecular mechanisms and potential clinical applications of neural precursor cells have recently been the subject of intensive study. Dlx5, a homeobox transcription factor related to the distal-less gene in Drosophila, was shown to play an important role during forebrain development. The subventricular zone (SVZ) in the adult brain harbors the largest abundance of neural precursors. The anterior SVZ (SVZa) contains the most representative neural precursors in the SVZ. Further research is necessary to elucidate how Dlx5-related genes regulate the differentiation of SVZa neural precursors. Here, we employed immunohistochemistry and molecular biology techniques to study the expression of Dlx5 and related homeobox genes Er81 and Islet1 in neonatal rat brain and in in vitro cultured SVZa neural precursors. Our results show that Dlx5 and Er81 are also highly expressed in the SVZa, rostral migratory stream, and olfactory bulb. Islet1 is only expressed in the striatum. In cultured SVZa neural precursors, Dlx5 mRNA expression gradually decreased with subsequent cell passages and was completely lost by passage four. We also transfected a Dlx5 recombinant plasmid and found that Dlx5 overexpression promoted neuronal differentiation of in vitro cultured SVZa neural precursors. Taken together, our data suggest that Dlx5 plays an important role during neuronal differentiation.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-879X2010000200008Neural precursorsDlx5Green fluorescent proteinRecombinant plasmids
collection DOAJ
language English
format Article
sources DOAJ
author H.F. Shu
F.Y. Gao
C.Q. Zhang
S.Y. Liu
Z.Y. Zhang
Y.C. Song
K.J. Qiu
H. Yang
spellingShingle H.F. Shu
F.Y. Gao
C.Q. Zhang
S.Y. Liu
Z.Y. Zhang
Y.C. Song
K.J. Qiu
H. Yang
Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiation
Brazilian Journal of Medical and Biological Research
Neural precursors
Dlx5
Green fluorescent protein
Recombinant plasmids
author_facet H.F. Shu
F.Y. Gao
C.Q. Zhang
S.Y. Liu
Z.Y. Zhang
Y.C. Song
K.J. Qiu
H. Yang
author_sort H.F. Shu
title Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiation
title_short Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiation
title_full Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiation
title_fullStr Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiation
title_full_unstemmed Rat Dlx5 is expressed in the subventricular zone and promotes neuronal differentiation
title_sort rat dlx5 is expressed in the subventricular zone and promotes neuronal differentiation
publisher Associação Brasileira de Divulgação Científica
series Brazilian Journal of Medical and Biological Research
issn 0100-879X
1414-431X
publishDate 2010-02-01
description The molecular mechanisms and potential clinical applications of neural precursor cells have recently been the subject of intensive study. Dlx5, a homeobox transcription factor related to the distal-less gene in Drosophila, was shown to play an important role during forebrain development. The subventricular zone (SVZ) in the adult brain harbors the largest abundance of neural precursors. The anterior SVZ (SVZa) contains the most representative neural precursors in the SVZ. Further research is necessary to elucidate how Dlx5-related genes regulate the differentiation of SVZa neural precursors. Here, we employed immunohistochemistry and molecular biology techniques to study the expression of Dlx5 and related homeobox genes Er81 and Islet1 in neonatal rat brain and in in vitro cultured SVZa neural precursors. Our results show that Dlx5 and Er81 are also highly expressed in the SVZa, rostral migratory stream, and olfactory bulb. Islet1 is only expressed in the striatum. In cultured SVZa neural precursors, Dlx5 mRNA expression gradually decreased with subsequent cell passages and was completely lost by passage four. We also transfected a Dlx5 recombinant plasmid and found that Dlx5 overexpression promoted neuronal differentiation of in vitro cultured SVZa neural precursors. Taken together, our data suggest that Dlx5 plays an important role during neuronal differentiation.
topic Neural precursors
Dlx5
Green fluorescent protein
Recombinant plasmids
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-879X2010000200008
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