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Pea3 Transcription Factor Family Members Etv4 and Etv5 Mediate Retrograde Signaling and Axonal Growth of DRG Sensory Neurons in Response to NGF

Overview
Journal J Neurosci
Specialty Neurology
Date 2013 Oct 4
PMID 24089499
Citations 32
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Abstract

Nerve growth factor (NGF) is a target-derived neurotrophic growth factor that controls many aspects of sensory and sympathetic neuronal development. The identification of transcription factors and downstream target genes that mediate NGF-dependent neuronal differentiation and target field innervation is currently a major challenge. Here, we show that the Pea3 transcription factor family members Etv4 and Etv5 are expressed by developing TrkA-positive dorsal root ganglion (DRG) neurons during the period of target innervation. Real-time PCR assays indicated that Etv4 and Etv5 mRNAs are significantly induced by NGF in different neuronal cells, suggesting that they could be involved in the biological responses induced by this neurotrophin. Interestingly, distal axon application of NGF in compartmentalized cultures of rat DRG sensory neurons was sufficient to induce a significant increase in Etv4 and Etv5 mRNA expression. Pharmacological assays also revealed that activation of MEK/ERK (MAPK) pathway is required for Etv4 and Etv5 gene induction in response to NGF. Downregulation of Etv4 and Etv5 using small interference RNA knockdown experiments inhibited NGF-induced neurite outgrowth of rat sensory neurons, while overexpression of full-length Etv4 or Etv5 potentiated neuronal differentiation in response to this neurotrophin. Together, these data establish Etv4 and Etv5 as essential molecules of the transcriptional program linking neurotrophin signaling to sensory neuronal differentiation, and suggest that they can be involved in NGF-mediated target innervation.

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References
1.
Wakamatsu Y, Maynard T, Weston J . Fate determination of neural crest cells by NOTCH-mediated lateral inhibition and asymmetrical cell division during gangliogenesis. Development. 2000; 127(13):2811-21. DOI: 10.1242/dev.127.13.2811. View

2.
Watson F, Heerssen H, Bhattacharyya A, Klesse L, Lin M, Segal R . Neurotrophins use the Erk5 pathway to mediate a retrograde survival response. Nat Neurosci. 2001; 4(10):981-8. DOI: 10.1038/nn720. View

3.
Barker P, Hussain N, McPherson P . Retrograde signaling by the neurotrophins follows a well-worn trk. Trends Neurosci. 2002; 25(8):379-81. DOI: 10.1016/s0166-2236(02)02199-9. View

4.
Ye H, Kuruvilla R, Zweifel L, Ginty D . Evidence in support of signaling endosome-based retrograde survival of sympathetic neurons. Neuron. 2003; 39(1):57-68. DOI: 10.1016/s0896-6273(03)00266-6. View

5.
Ledda F, Bieraugel O, Shirazi Fard S, Vilar M, Paratcha G . Lrig1 is an endogenous inhibitor of Ret receptor tyrosine kinase activation, downstream signaling, and biological responses to GDNF. J Neurosci. 2008; 28(1):39-49. PMC: 6671136. DOI: 10.1523/JNEUROSCI.2196-07.2008. View