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PMID: 29431744 Published · ppublish English

A histone deacetylase 3-dependent pathway delimits peripheral myelin growth and functional regeneration.

Nature medicine ·Vol. 24 ·No. 3 ·2018-00-00

He X, Zhang L, Queme LF, Liu X, Lu A, Waclaw RR, Dong X, Zhou W, Kidd G, Yoon SO, Buonanno A, Rubin JB, Xin M, Nave KA, Trapp BD, Jankowski MP, Lu QR

Abstract

Deficits in Schwann cell-mediated remyelination impair functional restoration after nerve damage, contributing to peripheral neuropathies. The mechanisms mediating block of remyelination remain elusive. Here, through small-molecule screening focusing on epigenetic modulators, we identified histone deacetylase 3 (HDAC3; a histone-modifying enzyme) as a potent inhibitor of peripheral myelinogenesis. Inhibition of HDAC3 enhanced myelin growth and regeneration and improved functional recovery after peripheral nerve injury in mice. HDAC3 antagonizes the myelinogenic neuregulin-PI3K-AKT signaling axis. Moreover, genome-wide profiling analyses revealed that HDAC3 represses promyelinating programs through epigenetic silencing while coordinating with p300 histone acetyltransferase to activate myelination-inhibitory programs that include the HIPPO signaling effector TEAD4 to inhibit myelin growth. Schwann cell-specific deletion of either Hdac3 or Tead4 in mice resulted in an elevation of myelin thickness in sciatic nerves. Thus, our findings identify the HDAC3-TEAD4 network as a dual-function switch of cell-intrinsic inhibitory machinery that counters myelinogenic signals and maintains peripheral myelin homeostasis, highlighting the therapeutic potential of transient HDAC3 inhibition for improving peripheral myelin repair.

MeSH 主题词
Animals DNA-Binding Proteins/genetics E1A-Associated p300 Protein/genetics Genome Histone Deacetylases Humans Mice, Transgenic Muscle Proteins/genetics Myelin Sheath/genetics,metabolism Nerve Degeneration/genetics,physiopathology Nerve Regeneration/genetics Peripheral Nerve Injuries/genetics,physiopathology,rehabilitation Recovery of Function/genetics Remyelination/genetics Schwann Cells/metabolism,pathology Sciatic Nerve/growth & development,injuries,metabolism Signal Transduction TEA Domain Transcription Factors Transcription Factors/genetics
Article Info
Journal
Nature medicine
Abbr.
Nat Med
ISSN
1546-170X
Published
2018-00-00
Language
English
Country/Region
United States
NLM ID
9502015
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