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The HDAC7-TET2 epigenetic axis is essential during early B lymphocyte development.

Alba AzagraAinara MelerOriol de BarriosLaureano Tomás-DazaOlga CollazoBeatriz MonterdeMireia ObiolsLlorenç RovirosaMaria Vila-CasadesúsMónica Cabrera-PasadasMar Gusi-VivesThomas GrafIgnacio VarelaJosé Luis SardinaBiola M JavierreMaribel Parra
Published in: Nucleic acids research (2022)
Correct B cell identity at each stage of cellular differentiation during B lymphocyte development is critically dependent on a tightly controlled epigenomic landscape. We previously identified HDAC7 as an essential regulator of early B cell development and its absence leads to a drastic block at the pro-B to pre-B cell transition. More recently, we demonstrated that HDAC7 loss in pro-B-ALL in infants associates with a worse prognosis. Here we delineate the molecular mechanisms by which HDAC7 modulates early B cell development. We find that HDAC7 deficiency drives global chromatin de-condensation, histone marks deposition and deregulates other epigenetic regulators and mobile elements. Specifically, the absence of HDAC7 induces TET2 expression, which promotes DNA 5-hydroxymethylation and chromatin de-condensation. HDAC7 deficiency also results in the aberrant expression of microRNAs and LINE-1 transposable elements. These findings shed light on the mechanisms by which HDAC7 loss or misregulation may lead to B cell-based hematological malignancies.
Keyphrases
  • histone deacetylase
  • gene expression
  • dna methylation
  • transcription factor
  • poor prognosis
  • dna damage
  • peripheral blood
  • oxidative stress
  • anti inflammatory
  • replacement therapy