Genetic or transcranial magnetic stimulation of B-RAF-MEK signaling promotes CST axon sprouting and functional regeneration
Boato, F.; Guan, X.; Zhu, Y.; Ryu, Y.; Voutounou, M.; Rynne, C.; Freschlin, C. R.; Zumbo, P.; Betel, D.; Matho, K. S.; Makarov, S. N.; Wu, Z.; Son, Y.-J.; Nummenmaa, A.; Huang, J. Z.; Edwards, D. J.; Zhong, J.
Show abstract
Facilitating axon regeneration in the injured central nervous system remains a challenging task. RAF-MEK signaling plays an important role in axon elongation during nervous system development. Here we show that activation of B-RAF in mature corticospinal neurons elicited the expression of a discrete set of transcription factors previously implicated in the regeneration of zebrafish optic nerve axons. Genetic activation of B-RAF-MEK signaling promoted robust regeneration and sprouting of corticospinal tract axons after injury. Newly sprouting axon collaterals formed synaptic connections with spinal interneurons, correlating with the recovery of skilled motor function. Seeking a non-invasive way to stimulate axon regeneration, we found that suprathreshold high-frequency repetitive transcranial magnetic stimulation activates the B-RAF canonical effectors MEK1/2 and requires MEK1/2 activity to promote corticospinal axon regeneration and sprouting after injury. These data demonstrate a central role of neuron-intrinsic RAF-MEK signaling in enhancing the growth capacity of mature corticospinal neurons and propose HF-rTMS as a potential therapy for spinal cord injury. One Sentence SummaryGenetic or HF-rTMS-mediated activation of B-RAF- MEK signaling promotes CST axon sprouting and functional regeneration after a spinal cord injury.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Heterozygosity for neurodevelopmental disorder-associated TRIO variants yields distinct deficits in behavior, neuronal development, and synaptic transmission in mice. 96%
- Transcriptional regulation of neural stem cell expansion in adult hippocampus 95%
- Silencing long ascending propriospinal neurons after spinal cord injury improves hindlimb stepping in the adult rat 95%
Similar papers in this journal
- Spinal motor neuron development and metabolism are transcriptionally regulated by Nuclear Factor IA 96%
- A dynamic gene regulatory code drives synaptic development of hippocampal granule cells 95%
- Astrocytic TDP-43 dysregulation impairs memory by modulating antiviral pathways and interferon-inducible chemokines 95%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.