AI Article Synopsis

  • Cherubism is linked to mutations in the SH3BP2 gene, with recent studies revealing that autoinflammation driven by TNF-α plays a significant role in the condition.
  • Research on cherubism mice shows that inflammation is MYD88 dependent and that mutant macrophages have heightened reactions to pathogens and tissue damage signals, leading to excessive TNF-α production.
  • The study indicates that oral bacteria and damage signals during jawbone remodeling likely lead to the specific appearance of cherubism lesions in the jaw, while reduced damage signals after jaw stabilization may explain why these lesions diminish after puberty.

Article Abstract

Cherubism is caused by mutations in SH3BP2. Studies of cherubism mice showed that tumor necrosis factor α (TNF-α)-dependent autoinflammation is a major cause of the disorder but failed to explain why human cherubism lesions are restricted to jaws and regress after puberty. We demonstrate that the inflammation in cherubism mice is MYD88 dependent and is rescued in the absence of TLR2 and TLR4. However, germ-free cherubism mice also develop inflammation. Mutant macrophages are hyperresponsive to PAMPs (pathogen-associated molecular patterns) and DAMPs (damage-associated molecular patterns) that activate Toll-like receptors (TLRs), resulting in TNF-α overproduction. Phosphorylation of SH3BP2 at Y183 is critical for the TNF-α production. Finally, SYK depletion in macrophages prevents the inflammation. These data suggest that the presence of a large amount of TLR ligands, presumably oral bacteria and DAMPs during jawbone remodeling, may cause the jaw-specific development of human cherubism lesions. Reduced levels of DAMPs after stabilization of jaw remodeling may contribute to the age-dependent regression.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4177302PMC
http://dx.doi.org/10.1016/j.celrep.2014.08.023DOI Listing

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