Cytoplasmic Accumulation of Histones Induced by BET Inhibition Protects Cells from C9orf72 Poly(PR)-Induced Cell Death

Adv Biol (Weinh). 2024 Mar;8(3):e2300334. doi: 10.1002/adbi.202300334. Epub 2024 Jan 11.

Abstract

Repeat dipeptides such as poly(proline-arginine) (polyPR) are generated from the hexanucleotide GGGGCC repeat expansions in the C9orf72 gene. These dipeptides are often considered as the genetic cause of familial amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). In the study, fluorescein isothiocyanate (FITC) labeled PR20 is used to investigate PR20-induced cell death. The findings reveal that the cell death induced by PR20 is dependent on its nuclear distribution and can be blocked by a nuclear import inhibitor called importazole. Further investigation reveals that BRD4 inhibitors, such as JQ-1 and I-BET762, restrict cytoplasmic localization of PR20, thereby reducing its cytotoxic effect. Mechanistically, the inhibition of BRD4 leads to an increase in the expression of numerous histones, resulting in the accumulation of histones in the cytoplasm. These cytoplasmic histones associate with PR20 and limit its distribution within the nucleus. Notably, the ectopic expression of histones alone is enough to confer protection to cells treated with PR20. In addition, phenylephrine (PE) induces cellular hypertrophy and cytoplasmic distribution of histone, which also helps protect cells from PR20-induced cell death. The research suggests that temporarily inducing the presence of cytoplasmic histones may alleviate the neurotoxic effects of dipeptide repeat proteins.

Keywords: BRD4; G9a; amyotrophic lateral sclerosis (ALS); frontotemporal dementia (FTD); histones; phenylephrine (PE); poly (proline-arginine) (PR).

MeSH terms

  • C9orf72 Protein / genetics
  • C9orf72 Protein / metabolism
  • C9orf72 Protein / pharmacology
  • Cell Death / genetics
  • DNA Repeat Expansion
  • Dipeptides / genetics
  • Dipeptides / metabolism
  • Dipeptides / pharmacology
  • Histones* / genetics
  • Histones* / metabolism
  • Histones* / pharmacology
  • Nuclear Proteins* / genetics
  • Nuclear Proteins* / metabolism
  • Nuclear Proteins* / pharmacology
  • Transcription Factors / genetics
  • Transcription Factors / metabolism
  • Transcription Factors / pharmacology

Substances

  • Histones
  • C9orf72 Protein
  • Nuclear Proteins
  • Transcription Factors
  • Dipeptides