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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/5332
Title: Integration of CNS survival and differentiation by HIF2 alpha
Authors: Ching-Yi Ko
Ming-Yuan Tsai
Tseng, W. F.
Wen-Fang Tseng
C.-H. Cheng
C-R Huang
J-S Wu
H-Y Chung
Cho-Shuen Hsieh
C-K Sun
S-P L Hwang
C. Yuh
C.-J. Huang
T-W Pai
Wen-Shyong Tzou 
Chin-Hwa Hu 
Issue Date: Nov-2011
Publisher: Nature Portfolio
Journal Volume: 18
Journal Issue: 11
Start page/Pages: 1757-1770
Source: Cell Death and Differentiation
Abstract: 
Hypoxia-inducible factor (HIF) 1α and HIF2α and the inhibitor of apoptosis survivin represent prominent markers of many human cancers. They are also widely expressed in various embryonic tissues, including the central nervous system; however, little is known about their functions in embryos. Here, we show that zebrafish HIF2α protects neural progenitor cells and neural differentiation processes by upregulating the survivin orthologues birc5a and birc5b during embryogenesis. Morpholino-mediated knockdown of hif2α reduced the transcription of birc5a and birc5b, induced p53-independent apoptosis and abrogated neural cell differentiation. Depletion of birc5a and birc5b recaptured the neural development defects that were observed in the hif2α morphants. The phenotypes induced by HIF2α depletion were largely rescued by ectopic birc5a and birc5b mRNAs, indicating that Birc5a and Birc5b act downstream of HIF2α. Chromatin immunoprecipitation assay revealed that HIF2α binds to birc5a and birc5b promoters directly to modulate their transcriptions. Knockdown of hif2α, birc5a or birc5b reduced the expression of the cdk inhibitors p27/cdkn1b and p57/cdkn1c and increased ccnd1/cyclin D1 transcription in the surviving neural progenitor cells. The reduction in elavl3/HuC expression and enhanced pcna, nestin, ascl1b and sox3 expression indicate that the surviving neural progenitor cells in hif2α morphants maintain a high proliferation rate without terminally differentiating. We propose that a subset of developmental defects attributed to HIF2α depletion is due in part to the loss of survivin activity.
URI: http://scholars.ntou.edu.tw/handle/123456789/5332
ISSN: 1350-9047
DOI: 10.1038/cdd.2011.44
://WOS:000295929600008
://WOS:000295929600008
Appears in Collections:生命科學暨生物科技學系

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