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Cryptotanshinone Protects Cartilage against Developing Osteoarthritis through the miR-106a-5p/GLIS3 Axis
Quanbo Ji1, Dengbin Qi2, Xiaojie Xu3
1Department of Orthopaedics, General Hospital of Chinese People's Liberation Army, Beijing 100853, China; Department of Orthopaedic Surgery, Stanford University, Stanford, CA 94305, USA.
Abstract:
Cryptotanshinone (CTS) has emerged as an anti-inflammatory agent in osteoarthritis (OA). However, the molecular mechanism underlying its potent therapeutic effect on OA remains largely unknown. MicroRNAs (miRNAs) act as crucial regulators in maintaining cartilage homeostasis. To investigate whether CTS protects against developing OA through regulation of miRNAs, we examined the potential CTS-mediated miRNA molecules using microarray analysis. We found that CTS significantly promoted miR-106a-5p expression in chondrocytes. Using the OA mouse model created by anterior cruciate ligament transection, we revealed that intra-articular injection of miR-106a-5p agomir attenuated OA. In addition, miR-106a-5p inhibited GLI-similar 3 (GLIS3) production by directly targeting the 3' untranslated region. CTS promoted miR-106a-5p expression through recruitment of a member of the paired box (PAX) family of transcription factors, PAX5, to the miR-106a-5p promoter. Inhibition of PAX5 mimicked the effect of miR-106a-5p and abolished the CTS ability to regulate miR-106a-5p expression. In OA patients, miR-106-5p is downregulated which is accompanied by downregulation of PAX5 and upregulation of GLIS3. Collectively, these data highlight that the PAX5/miR-106a-5p/GLIS3 axis acts as a novel pleiotropic regulator in CTS-mediated OA cartilage protection, suggesting that miR-106a-5p and PAX5 activation and GLIS3 inhibition might be useful and attractive for therapeutic strategies to treat OA patients.
Insights
Cryptotanshinone (CTS) protects against osteoarthritis (OA) by boosting miR-106a-5p, which inhibits GLIS3. This involves the transcription factor PAX5, offering new therapeutic targets for OA.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Osteoarthritis (OA) is a degenerative joint disease with limited treatment options.
- Cryptotanshinone (CTS) shows anti-inflammatory effects in OA, but its mechanism is unclear.
- MicroRNAs (miRNAs) are key regulators of cartilage homeostasis.
Purpose of the Study:
- To elucidate the molecular mechanism of CTS in OA protection.
- To investigate the role of miRNAs in CTS-mediated OA therapy.
- To identify novel therapeutic targets for OA.
Main Methods:
- Microarray analysis to identify CTS-regulated miRNAs.
- OA mouse model induced by anterior cruciate ligament transection.
- In vitro and in vivo experiments assessing miR-106a-5p, GLIS3, and PAX5 interactions.
Main Results:
- CTS significantly upregulated miR-106a-5p expression in chondrocytes.
- Intra-articular miR-106a-5p agomir injection attenuated OA in mice.
- miR-106a-5p directly targets and inhibits GLIS3 production.
- CTS upregulates miR-106a-5p via PAX5 recruitment to its promoter.
- OA patients show decreased miR-106a-5p and PAX5, with increased GLIS3.
Conclusions:
- The PAX5/miR-106a-5p/GLIS3 axis is a novel regulator in CTS-mediated OA cartilage protection.
- PAX5 activation and GLIS3 inhibition are potential therapeutic strategies for OA.
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