<p>In contrast to central nervous system neurons, dorsal root ganglia (DRG) neurons can switch to a regenerative state after peripheral axotomy. In a screen for chromatin regulators of the regenerative responses in this conditioning lesion paradigm, we identified Tet methylcytosine dioxygenase 3 (Tet3) as upregulated in DRG neurons, along with increased 5-hydroxymethylcytosine (5hmC). We generated genome-wide 5hmC maps in adult DRG, which revealed that peripheral and central axotomy (leading to no regenerative effect) triggered differential 5hmC changes that are associated with distinct signaling pathways. 5hmC was altered in a large set of regeneration-associated genes (RAGs), including well-known RAGs, such as <i>Atf3, Bdnf</i>, and <i>Sm...
BACKGROUND: The ability of a neuron to regenerate functional connections after injury is influenced ...
Injured sensory neurons activate a transcriptional program necessary for robust axon regeneration an...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...
In contrast to central nervous system neurons, dorsal root ganglia (DRG) neurons can switch to a reg...
Axonal injury results in regenerative success or failure, depending on whether the axon lies in the ...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. R...
Axons in the Peripheral Nervous System are able to regenerate after injury, unlike axons in the Cent...
Injured neurons in the peripheral nervous system (PNS) can regenerate long-distances and re-establis...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. Re...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
Axotomized neurons have the innate ability to undergo regenerative sprouting but this is often imped...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
The identification of cell intrinsic factors that enhance the regeneration of central nervous system...
Primary sensory neurons in dorsal root ganglia (DRG) undergo a cell body response after injury, wher...
Summary: Axonal regrowth is crucial for recovery from CNS injury but is severely restricted in adult...
BACKGROUND: The ability of a neuron to regenerate functional connections after injury is influenced ...
Injured sensory neurons activate a transcriptional program necessary for robust axon regeneration an...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...
In contrast to central nervous system neurons, dorsal root ganglia (DRG) neurons can switch to a reg...
Axonal injury results in regenerative success or failure, depending on whether the axon lies in the ...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. R...
Axons in the Peripheral Nervous System are able to regenerate after injury, unlike axons in the Cent...
Injured neurons in the peripheral nervous system (PNS) can regenerate long-distances and re-establis...
Axon regeneration is hindered by a decline of intrinsic axon growth capability in mature neurons. Re...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
Axotomized neurons have the innate ability to undergo regenerative sprouting but this is often imped...
The molecular mechanisms discriminating between regenerative failure and success remain elusive. Whi...
The identification of cell intrinsic factors that enhance the regeneration of central nervous system...
Primary sensory neurons in dorsal root ganglia (DRG) undergo a cell body response after injury, wher...
Summary: Axonal regrowth is crucial for recovery from CNS injury but is severely restricted in adult...
BACKGROUND: The ability of a neuron to regenerate functional connections after injury is influenced ...
Injured sensory neurons activate a transcriptional program necessary for robust axon regeneration an...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...