Abstract
AbstractVitamin C deficiency disrupts the integrity of connective tissues including bone. For decades this function has been primarily attributed to Vitamin C as a cofactor for collagen maturation. Here, we demonstrate that Vitamin C epigenetically orchestrates osteogenic differentiation and function by modulating chromatin accessibility and priming transcriptional activity. Vitamin C regulates histone demethylation (H3K9me3 and H3K27me3) and promotes TET-mediated 5hmC DNA hydroxymethylation at promoters, enhancers and super-enhancers near bone-specific genes. This epigenetic circuit licenses osteoblastogenesis by permitting the expression of all major pro-osteogenic genes. Osteogenic cell differentiation is strictly and continuously dependent on Vitamin C, whereas Vitamin C is dispensable for adipogenesis. Importantly, deletion of 5hmC-writers, Tet1 and Tet2, in Vitamin C-sufficient murine bone causes severe skeletal defects which mimic bone phenotypes of Vitamin C-insufficient Gulo knockout mice, a model of Vitamin C deficiency and scurvy. Thus, Vitamin C’s epigenetic functions are central to osteoblastogenesis and bone formation and may be leveraged to prevent common bone-degenerating conditions.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
Reference81 articles.
1. Sarafrazi, N., Wambogo, E. A. & Shepherd, J. A. Osteoporosis or Low Bone Mass in Older Adults: United States, 2017–2018. NCHS Data Brief, 1–8 (2021).
2. Looker, A. C., Sarafrazi Isfahani, N., Fan, B. & Shepherd, J. A. FRAX-based Estimates of 10-year Probability of Hip and Major Osteoporotic Fracture Among Adults Aged 40 and Over: United States, 2013 and 2014. Natl Health Stat Report, 1–16 (2017).
3. Wright, N. C. et al. The recent prevalence of osteoporosis and low bone mass in the United States based on bone mineral density at the femoral neck or lumbar spine. J. Bone Min. Res. 29, 2520–2526 (2014).
4. Conaway, H. H., Henning, P. & Lerner, U. H. Vitamin a metabolism, action, and role in skeletal homeostasis. Endocr. Rev. 34, 766–797 (2013).
5. Falch, J. A., Mowe, M. & Bohmer, T. Low levels of serum ascorbic acid in elderly patients with hip fracture. Scand. J. Clin. Lab. Invest 58, 225–228 (1998).
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