4.5 Article

AUF1 and Hu Proteins in the Developing Rat Brain: Implication in the Proliferation and Differentiation of Neural Progenitors

期刊

JOURNAL OF NEUROSCIENCE RESEARCH
卷 87, 期 6, 页码 1296-1309

出版社

WILEY
DOI: 10.1002/jnr.21957

关键词

development; neural progenitor cells; neurogenesis; posttranscriptional regulation; RNA binding protein

资金

  1. Therapeutic Stem Cells (AFMANSERM)
  2. AVENIR (INSERM)
  3. INSEIZM/Region Pays de Loire
  4. French Ministry of Education and Research

向作者/读者索取更多资源

Posttranscriptional events such as RNA stabilization are important for cell differentiation, but little is known about the impact of AU-rich binding proteins (AUBPs) on the fate of neural cells. Expression of destabilizing AUBPs such as AUF1 and neuronal-specific stabilizing proteins such as HuB, HuC and HuD was therefore analyzed in the developing central nervous system. Real-time RT PCR indicated a specific developmental pattern in the postnatal cerebellum, with a progressive down-regulation of AUF1 from P1, whereas HuB was strongly up-regulated at about P7. These changes were accompanied by a progressive increase in AUF1 p45 and the disappearance of one HuB isoform from P15, suggesting particular roles for these AUBPs in the developing cerebellum. AUF1 was detected in the three main cerebellar layers, whereas Hu proteins were found only in postmitotic neurons. A role for Hu proteins in the early stages of neuronal differentiation is further supported by arrest of cell proliferation following induction of HuB or HuD expression in a neural stem cell line. The decrease in nestin expression suggest that HuD, but not HuB, favors the transition of neural progenitors into early neuroblasts, but other factors are most probably required for their full differentiation into neurons, insofar as GAP-43 was not detected in HuD-transfected cells. These data suggest critical roles for HuB at the very earliest stages of neuronal differentiation, such as cell cycle exit, and HuD might also be involved in the transition of neural progenitors into early neuroblasts. Taken together, the present results strengthen the importance of AUBPs in brain ontogenesis. (C) 2008 Wiey-Liss, Inc.

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