再生(生物学)
细胞生物学
软骨
重编程
机制(生物学)
新陈代谢
化学
表观遗传学
细胞代谢
后生
代谢途径
接头(建筑物)
关节软骨
软骨发生
生物
细胞代谢
解剖
代谢活性
作者
Chenyan Huang,Chenyu Deng,Z Gao,C L Chen,郑惠民,Yue Yang,Yan Wei
摘要
ABSTRACT Osteoarthritis (OA) arises from impaired epigenetic coordination of inflammatory and metabolic cues, leading to compromised cartilage homeostasis. Such coordination is partly governed by ribonucleic acid (RNA) epigenetic mechanisms, however, the role of the predominant RNA modification N 6 ‐methyladenosine (m 6 A) in this process remains unclear. Herein, we identify an epigenetic–metabolic pathway in which Wilms' Tumor 1‐Associating Protein (WTAP)‐mediated m 6 A modification stabilizes low‐density lipoprotein receptor‐related protein 1 (LRP1) and redirects lipid metabolism toward chondrogenesis. Loss‐of‐function assays demonstrate that WTAP is required for the chondrogenic differentiation of BMSCs, as its depletion suppresses the expression of multiple cartilage‐associated genes. Mechanistically, WTAP enhances m 6 A methylation and stabilizes Lrp1 transcripts, a key regulator of cholesterol metabolism and matrix synthesis, thereby driving lipid metabolic reprogramming toward chondrogenesis. Structure‐based screening identified silibinin and estradiol benzoate as LRP1‐specific agonists that activate the WTAP–LRP1 pathway to promote cartilage repair in vivo. Collectively, our findings establish m 6 A‐dependent metabolic reprogramming as a pivotal epigenetic mechanism of cartilage regeneration with therapeutic potential for promoting chondrogenesis.
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