Sirt5 regulates chondrocyte metabolism and osteoarthritis development through protein lysine malonylation

Huanhuan Liu1,2, Anupama Binoy1,2, Siqi Ren1,2

  • 1Department of Biomedical Sciences, Heritage College of Osteopathic Medicine (HCOM), Ohio University, Athens, OH, 45701, USA.

Abstract

Insights

Sirtuin-5 (SIRT5) and lysine malonylation (MaK) are key in osteoarthritis (OA) development. Dysregulation of SIRT5-MaK exacerbates OA in aging and obesity, highlighting a novel therapeutic target.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Genetics

Background:

  • Chondrocyte metabolic dysfunction is central to osteoarthritis (OA) pathogenesis, particularly with aging and obesity.
  • Protein post-translational modifications (PTMs) regulate cellular metabolism, with lysine malonylation (MaK) emerging as a significant factor.
  • Sirtuin-5 (SIRT5) is a key regulator of PTMs, including MaK, and its role in OA warrants investigation.

Purpose of the Study:

  • To investigate the role of lysine malonylation (MaK) and its regulator Sirtuin-5 (SIRT5) in the development of osteoarthritis (OA).
  • To explore the impact of Sirt5 deficiency and obesity on joint degeneration.
  • To identify genetic variations in SIRT5 associated with OA.

Main Methods:

  • Analysis of SIRT5 and MaK levels in human and mouse cartilage.
  • Utilizing systemic and cartilage-specific Sirt5 knockout mouse models with high-fat diet (HFD) induction.
  • Proteomics to delineate the malonylome in chondrocytes and identify SIRT5 mutations in a human population database.

Main Results:

  • SIRT5 levels decrease while MaK levels increase in aging cartilage.
  • Combined Sirt5 deficiency and obesity worsen joint degeneration in a sex-dependent manner.
  • Identified a rare SIRT5 mutation (F101L) segregating in an OA family, leading to increased MaK, decreased ECM gene expression, and increased inflammation.

Conclusions:

  • Sirt5-mediated MaK is a critical regulator of chondrocyte metabolism.
  • Dysregulation of the Sirt5-MaK pathway is a significant mechanism in aging and obesity-associated OA.
  • Targeting the Sirt5-MaK pathway may offer therapeutic strategies for OA.

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