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The Zinc Finger Transcription Factor Sp9 Is Required for the Development of Striatopallidal Projection Neurons.

Authors :
Zhang, Qiangqiang
Zhang, Qiangqiang
Zhang, Yue
Wang, Chunyang
Xu, Zhejun
Liang, Qifei
An, Lei
Li, Jiwen
Liu, Zhidong
You, Yan
He, Miao
Mao, Ying
Chen, Bin
Xiong, Zhi-Qi
Rubenstein, John L
Yang, Zhengang
Zhang, Qiangqiang
Zhang, Qiangqiang
Zhang, Yue
Wang, Chunyang
Xu, Zhejun
Liang, Qifei
An, Lei
Li, Jiwen
Liu, Zhidong
You, Yan
He, Miao
Mao, Ying
Chen, Bin
Xiong, Zhi-Qi
Rubenstein, John L
Yang, Zhengang
Source :
Cell reports; vol 16, iss 5, 1431-1444; 2211-1247
Publication Year :
2016

Abstract

Striatal medium-sized spiny neurons (MSNs), composed of striatonigral and striatopallidal neurons, are derived from the lateral ganglionic eminence (LGE). We find that the transcription factor Sp9 is expressed in LGE progenitors that generate nearly all striatal MSNs and that Sp9 expression is maintained in postmitotic striatopallidal MSNs. Sp9-null mice lose most striatopallidal MSNs because of decreased proliferation of striatopallidal MSN progenitors and increased Bax-dependent apoptosis, whereas the development of striatonigral neurons is largely unaffected. ChIP qPCR provides evidence that Ascl1 directly binds the Sp9 promoter. RNA-seq and in situ hybridization reveal that Sp9 promotes expression of Adora2a, P2ry1, Gpr6, and Grik3 in the LGE and striatum. Thus, Sp9 is crucial for the generation, differentiation, and survival of striatopallidal MSNs.

Details

Database :
OAIster
Journal :
Cell reports; vol 16, iss 5, 1431-1444; 2211-1247
Notes :
application/pdf, Cell reports vol 16, iss 5, 1431-1444 2211-1247
Publication Type :
Electronic Resource
Accession number :
edsoai.on1378687690
Document Type :
Electronic Resource