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Deacetylation of FOXO4 by Sirt1 stabilizes chondrocyte extracellular matrix upon activating SOX9
1Department of Orthopedics, Puai Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China. william.myers@students.clatsopcc.edu.
Objective:
FOXO4 has essential roles in cellular metabolism and prevents cartilage degeneration in osteoarthritis (OA). Here we aim to provide evidence that deacetylated-FOXO4 stabilizes chondrocyte (CH) extracellular matrix (ECM) related to SOX9 activation.
Patients And Methods:
We used Chromatin immunoprecipitation (ChIP) and Dual-Luciferase reporter assay to verify that the FOXO4 protein activates SOX9 by binding to its promoter. We cultured human CHs with IL-1β to cause degeneration and supplied Sirt1 protein to deacetylate FOXO4. To confirm the function of FOXO4 and SOX9 during CHs degeneration, we also used the FOXO4 and SOX9 silenced CHs by siRNA transfection as a comparison. Western blot assay was used to analyze the protein level of Sirt1, SOX9, and the acetylated condition of FOXO4. Besides, RT-PCR was used to measure the mRNA level of collagen I/II/X, aggrecan, MMP-13, and ADAMTS-5 for determining the ECM states.
Results:
FOXO4 protein transcriptionally activates SOX9 expression by binding to its promoter. Under the IL-1β stimulation, FOXO4 acetyl-lysine rate increased, and the SOX9 protein expression decreased, which was alleviated after the supplement of exogenic Sirt1 protein. Meanwhile, Sirt1 overexpression increased the collagen II and aggrecan and reduced the collagen I, collagen X, MMP-13, and ADAMTS-5 mRNA expression. However, the silencing of FOXO4 abolished the Sirt1 induced SOX9 expression and weakened the ECM production stability. Additionally, SOX9 silencing also alleviated the effect of the Sirt1 supplement on the degenerated CHs, though the FOXO4 was highly deacetylated.
Conclusions:
FOXO4 acetylation aggravates during the degeneration of CHs, and the deacetylation of FOXO4 by Sirt1 could activate the SOX9 expression and result in maintaining the ECM stability of cartilage.
Insights
Deacetylated FOXO4 stabilizes cartilage extracellular matrix by activating SOX9, preventing osteoarthritis progression. Sirt1 deacetylation of FOXO4 is key to maintaining chondrocyte health and matrix stability.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Biology
Background:
- FOXO4 plays a crucial role in cellular metabolism and in preventing cartilage degeneration in osteoarthritis (OA).
- Chondrocyte (CH) extracellular matrix (ECM) stability is vital for cartilage health, and its degeneration is a hallmark of OA.
- SOX9 is a key transcription factor involved in chondrogenesis and maintaining chondrocyte function.
Purpose of the Study:
- To investigate the role of deacetylated FOXO4 in stabilizing chondrocyte (CH) extracellular matrix (ECM) in osteoarthritis (OA).
- To provide evidence that FOXO4 stabilizes CH ECM through SOX9 activation.
Main Methods:
- Chromatin immunoprecipitation (ChIP) and Dual-Luciferase reporter assay to confirm FOXO4 binding to the SOX9 promoter.
- In vitro culture of human CHs with IL-1β to induce degeneration, with or without Sirt1 protein supplementation.
- siRNA-mediated silencing of FOXO4 and SOX9 in CHs to assess their functional roles.
- Western blot analysis for protein levels (Sirt1, SOX9, acetylated FOXO4) and RT-PCR for ECM-related gene expression (collagen I/II/X, aggrecan, MMP-13, ADAMTS-5).
Main Results:
- FOXO4 directly activates SOX9 transcription by binding to its promoter.
- IL-1β stimulation increased FOXO4 acetylation and decreased SOX9 expression, effects reversed by Sirt1 supplementation.
- Sirt1 overexpression upregulated ECM components (collagen II, aggrecan) and downregulated matrix-degrading enzymes (collagen I, collagen X, MMP-13, ADAMTS-5).
- Silencing FOXO4 abrogated Sirt1-induced SOX9 expression and ECM stabilization; SOX9 silencing also diminished Sirt1's protective effects on degenerated CHs.
Conclusions:
- FOXO4 acetylation increases during chondrocyte degeneration in OA.
- Deacetylation of FOXO4 by Sirt1 activates SOX9 expression.
- This Sirt1-mediated activation of SOX9 by FOXO4 is crucial for maintaining cartilage ECM stability.
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