The role of proteasome in muscle wasting of experimental arthritis

Vivian Oliveira Nunes Teixeira1,2, Bárbara Jonson Bartikoski1,2, Rafaela Cavalheiro do Espirito Santo3,4

  • 1Medical Sciences Program, Medicine Department, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.

Abstract

Insights

Etanercept treatment for rheumatoid arthritis in mice maintained muscle weight and normalized proteasome activity, unlike methotrexate. Anti-TNF therapy may reduce arthritis-related muscle wasting.

Area of Science:

  • Biochemistry
  • Immunology
  • Molecular Biology

Background:

  • Rheumatoid arthritis (RA) is an autoimmune disease causing muscle impairment and disability.
  • The proteasome system's role in skeletal muscle dysfunction in RA is not fully understood.

Purpose of the Study:

  • To investigate proteasome system activity in skeletal muscles of mice with collagen-induced arthritis (CIA).
  • To evaluate the effects of etanercept (anti-TNF) and methotrexate on proteasome activity and gene/protein expression in CIA mice.

Main Methods:

  • Male DBA1/J mice were induced with CIA and treated with etanercept, methotrexate, or vehicle.
  • Muscle weight, proteasome activity (caspase-like), and gene/protein expression of proteasome subunits were quantified.
  • Clinical scores and hind paw edema were monitored throughout the 6-week treatment period.

Main Results:

  • Etanercept treatment maintained muscle weight, unlike methotrexate or vehicle.
  • Etanercept normalized 26S proteasome activity and reduced MuRF-1 mRNA expression.
  • Arthritis increased proteasome activity and specific subunit expression (PSMβ8, PSMβ9, PMSβ6); etanercept counteracted these changes.

Conclusions:

  • Collagen-induced arthritis increases skeletal muscle proteasome activation.
  • Etanercept treatment effectively modulated proteasome activity and gene expression, comparable to healthy controls.
  • Anti-TNF therapy, like etanercept, shows potential in mitigating arthritis-associated muscle wasting.