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Release and activity of histone in diseases

Cell Death and Disease · 2014 · Vol. 5(8) · pp. e1370–e1370
R ChenRui KangX-G FanDaolin Tang

Abstract

Histones and their post-translational modifications have key roles in chromatin remodeling and gene transcription. Besides intranuclear functions, histones act as damage-associated molecular pattern molecules when they are released into the extracellular space. Administration of exogenous histones to animals leads to systemic inflammatory and toxic responses through activating Toll-like receptors and inflammasome pathways. Anti-histone treatment (e.g., neutralizing antibodies, activated protein C, recombinant thrombomodulin, and heparin) protect mice against lethal endotoxemia, sepsis, ischemia/reperfusion injury, trauma, pancreatitis, peritonitis, stroke, coagulation, and thrombosis. In addition, elevated serum histone and nucleosome levels have been implicated in multiple pathophysiological processes and progression of diseases including autoimmune diseases, inflammatory diseases, and cancer. Therefore, extracellular histones could serve as biomarkers and novel therapeutic targets in human diseases.

Neutrophil, Myeloperoxidase and Oxidative MechanismsImmune cells in cancerProtease and Inhibitor MechanismsHistoneHMGB1BiologyCell biologyInflammasomeImmunologyExtracellularCancer researchNeutrophil extracellular trapsChemokine

MeSH terms

AnimalsAutoimmune DiseasesHistonesHumansNucleosomesPancreatitisPeritonitisProtein Processing, Post-TranslationalThrombosisApoptosisSepsisEpigenesis, Genetic

Funding

  • Pancreatic Cancer Action Network
  • University of Pittsburgh
  • National Institutes of Health
  • Cancer Institute, University of Pittsburgh
Citations
406
FWCI
12.65
field-weighted impact
References
85
Percentile
99%
vs. same field & year
Citations per year
Cited by
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