4.7 Article

Prox1 inhibits neurite outgrowth during central nervous system development

期刊

CELLULAR AND MOLECULAR LIFE SCIENCES
卷 78, 期 7, 页码 3443-3465

出版社

SPRINGER BASEL AG
DOI: 10.1007/s00018-020-03709-2

关键词

Axon extension; Calcium signaling; CamkII; CREB phosphorylation; Neuronal maturation

资金

  1. Fondation Sante grant
  2. Hellenic Foundation for Research and Innovation (H.F.R.I) [1782]
  3. European Research Council [309612]
  4. Act Scholarships grant program for the second round of postgraduate studies from resources of OP Human Resources Development, Education and Lifelong Learning 2014-2020
  5. European Social Fund (ESF)
  6. A Greek Research Infrastructure for Visualizing and Monitoring Fundamental Biological Processes (BIO-IMAGING-GR) - Operational Programme Competitiveness, Entrepreneurship and Innovation (NSRF 2014-2020) [MIS 5002755]
  7. European Union (European Regional Development Fund)
  8. European Research Council (ERC) [309612] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

Prox1 is identified as a key gene regulatory factor that inhibits neurite elongation, allowing nascent neurons to find the correct position before initiating neurites and axon elongation.
During central nervous system (CNS) development, proper and timely induction of neurite elongation is critical for generating functional, mature neurons, and neuronal networks. Despite the wealth of information on the action of extracellular cues, little is known about the intrinsic gene regulatory factors that control this developmental decision. Here, we report the identification of Prox1, a homeobox transcription factor, as a key player in inhibiting neurite elongation. Although Prox1 promotes acquisition of early neuronal identity and is expressed in nascent post-mitotic neurons, it is heavily down-regulated in the majority of terminally differentiated neurons, indicating a regulatory role in delaying neurite outgrowth in newly formed neurons. Consistently, we show that Prox1 is sufficient to inhibit neurite extension in mouse and human neuroblastoma cell lines. More importantly, Prox1 overexpression suppresses neurite elongation in primary neuronal cultures as well as in the developing mouse brain, while Prox1 knock-down promotes neurite outgrowth. Mechanistically, RNA-Seq analysis reveals that Prox1 affects critical pathways for neuronal maturation and neurite extension. Interestingly, Prox1 strongly inhibits many components of Ca2+ signaling pathway, an important mediator of neurite extension and neuronal maturation. In accordance, Prox1 represses Ca2+ entry upon KCl-mediated depolarization and reduces CREB phosphorylation. These observations suggest that Prox1 acts as a potent suppressor of neurite outgrowth by inhibiting Ca2+ signaling pathway. This action may provide the appropriate time window for nascent neurons to find the correct position in the CNS prior to initiation of neurites and axon elongation.

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