Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. Reversing this decline is associated with the induction of a large repertoire of regeneration-associated genes (RAGs), but the underlying regulatory mechanisms of the transcriptional changes are largely unknown. Here, we establish a correlation between diminished axon growth potential and histone 4 (H4) hypoacetylation. When neurons are triggered into a growth state, as in the conditioning lesion paradigm, H4 acetylation is restored, and RAG transcription is initiated. We have identified a set of target genes of Smad1, a proregenerative transcription factor, in conditioned DRG neurons. We also show that, during the epigenetic reprogramming proc...
The peripheral nervous system (PNS) regenerates after injury. However, regeneration is often comprom...
AbstractAxon regeneration in adult central nervous system (CNS) is limited in part by a developmenta...
Axons in the Peripheral Nervous System are able to regenerate after injury, unlike axons in the Cent...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. Re...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. R...
Axon regeneration is hindered by a decline of intrinsic axon growth capacity as neurons mature. Reve...
In contrast to central nervous system neurons, dorsal root ganglia (DRG) neurons can switch to a reg...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
After a spinal cord injury, axons fail to regenerate in the adult mammalian central nervous system, ...
Axonal injury results in regenerative success or failure, depending on whether the axon lies in the ...
Neuroregenerative therapies for central nervous system (CNS) injury, neurodegenerative disease, or s...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...
The peripheral nervous system (PNS) regenerates after injury. However, regeneration is often compro...
After a spinal cord injury, axons fail to regenerate in the adult mammalian central nervous system, ...
The peripheral nervous system (PNS) regenerates after injury. However, regeneration is often comprom...
AbstractAxon regeneration in adult central nervous system (CNS) is limited in part by a developmenta...
Axons in the Peripheral Nervous System are able to regenerate after injury, unlike axons in the Cent...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. Re...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. R...
Axon regeneration is hindered by a decline of intrinsic axon growth capacity as neurons mature. Reve...
In contrast to central nervous system neurons, dorsal root ganglia (DRG) neurons can switch to a reg...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
After a spinal cord injury, axons fail to regenerate in the adult mammalian central nervous system, ...
Axonal injury results in regenerative success or failure, depending on whether the axon lies in the ...
Neuroregenerative therapies for central nervous system (CNS) injury, neurodegenerative disease, or s...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...
The peripheral nervous system (PNS) regenerates after injury. However, regeneration is often compro...
After a spinal cord injury, axons fail to regenerate in the adult mammalian central nervous system, ...
The peripheral nervous system (PNS) regenerates after injury. However, regeneration is often comprom...
AbstractAxon regeneration in adult central nervous system (CNS) is limited in part by a developmenta...
Axons in the Peripheral Nervous System are able to regenerate after injury, unlike axons in the Cent...