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PP4-dependent HDAC3 dephosphorylation discriminates between axonal regeneration and regenerative failure.

EMBO J.. 2019; 
HerveraArnau,ZhouLuming,PalmisanoIlaria,McLachlanEilidh,KongGuiping,HutsonThomas H,DanziMatt C,LemmonVance P,BixbyJohn L,Matamoros-AnglesAndreu,ForsbergKirsi,De VirgiliisFrancesco,MatheosDina P,KwapisJanine,WoodMarcelo A,PuttaguntaRadhika,Del RíoJosé Antonio,Di GiovanniSi
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摘要

The molecular mechanisms discriminating between regenerative failure and success remain elusive. While a regeneration-competent peripheral nerve injury mounts a regenerative gene expression response in bipolar dorsal root ganglia (DRG) sensory neurons, a regeneration-incompetent central spinal cord injury does not. This dichotomic response offers a unique opportunity to investigate the fundamental biological mechanisms underpinning regenerative ability. Following a pharmacological screen with small-molecule inhibitors targeting key epigenetic enzymes in DRG neurons, we identified HDAC3 signalling as a novel candidate brake to axonal regenerative growth. In vivo, we determined that only a regenerative peri... More

关键词

HDAC3,calcium,nerve regeneration,spinal cord injury,transcrip