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Biology subjects

Boyce, B.

Publications and source records attributed to Boyce, B..

2 recordsLinked to original sources

Post-translational regulation of Platelet-derived growth factor receptor β is critical for fracture repair in aged mice

Increased protein ubiquitination was observed in fracture callus and particularly in aged mice. Treatment of proteasome inhibitor enhanced fracture repair in young and mice by increasing the number of mesenchymal progenitor cells (MPCs). However, the protein targets of proteasome inhibitor are still not known. Ub-proteomics identifies the top ub-proteins in MPCs and osteoblasts. Among them, PDGFR{beta} plays important roles both in osteogenesis and angiogenesis, which were reduced in callus of aged mice. We examine the dramatic decrease of PDGFR{beta} protein level, increased Ub-PDGFR{beta}, but mild decrease of mRNA in callus of aged mice, suggesting dys-regulated protein modification is the major cause of decreased PDGFR{beta} level. Decreased PDGFR{beta} results in the failure of PDGF-BB enhanced MPCs proliferation and fracture repair in aged mice. Co-treatment with proteasome inhibitor rescues the ability of PDGF-BB on MPC proliferation and fracture repair. Our findings not only discover the protein target of proteasome inhibitor in MPCs, but importantly connect the compromised effect of PDGF treatment on diseases with PDGFR{beta} proteasomal degradation. We open a new avenue for the treatment of fracture repair in elderly with the combination of PDGF-BB and proteasome inhibitor.

cell biology↗

Senescent cells impair fracture repair through elevating ubiquitin-proteasome system activity in aged mice.

Senescent cells accumulate in multiple tissues with aging. Depletion of senescent cells benefits the aging related disease, such as aging bone fracture. However, the molecular mechanisms by which senescent cells regulate their neighboring bone cells are still not well-known. We reported that proteasome inhibitor enhanced fracture repair in aged mice. Senescent cells are major source of chronic inflammatory cytokines, which in turn induced protein ubiquitination. We reported that PDGFR{beta} was one of the highly ubiquitinated proteins in mesenchymal progenitors (MPCs) and TGF{beta} was the most increased SASP. In the current study, we found TGF{beta} induced PDGFR{beta} ubiquitination and proteasomal degradation through its E3 ligases. TGF{beta} neutralizing antibody blocked the inhibited callus derived MPC growth and increased Ub-PDGFR{beta} by senescent cells, which could be further prevented PDGFR{beta} inhibitor. These findings suggested senescent cells derived TGF{beta} impaired fracture repair in aged mice through elevating ubiquitination of PDGFR{beta}. The discovery of TGF{beta}-PDGFR{beta} pathway triggered by senescent cells opens avenues for optimizing treatment strategies for aging related disease by combination with the ligand of PDGFR{beta}.

cell biology↗