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Intratibial Osteosarcoma Cell Injection to Generate Orthotopic Osteosarcoma and Lung Metastasis Mouse Models
Published on: October 28, 2021
S1P/S1PR3 axis promotes aerobic glycolysis by YAP/c-MYC/PGAM1 axis in osteosarcoma
Yifei Shen1, Shujie Zhao2, Shenyu Wang3
1Department of Orthopedics, The Affiliated Hospital of Nanjing Medical University, Changzhou No. 2 People's Hospital, Changzhou, Jiangsu 213003, China.
Background:
Osteosarcoma (OS) is a malignant tumor mainly occurring in young people. Due to the limited effective therapeutic strategies, OS patients cannot achieve further survival improvement. G-protein-coupled receptors (GPCRs) constitute the largest family of cell membrane receptors and consequently hold the significant promise for tumor imaging and targeted therapy. We aimed to explore the biological functions of Sphingosine 1-phosphate receptor 3 (S1PR3), one of the members of GPCRs family, in OS and the possibility of S1PR3 as an effective target for the treatment of osteosarcoma.
Methods:
The quantitative real time PCR (qRT-PCR) and western blotting were used to analyze the mRNA and protein expressions. Cell counting kit-8 (CCK8), colony formation assay and cell apoptosis assay were performed to test the cellular proliferation in vitro. Subcutaneous xenograft mouse model was generated to evaluate the functions of S1PR3 in vivo. RNA sequencing was used to compare gene expression patterns between S1PR3-knockdown and control MNNG-HOS cells. In addition, metabolic alternations in OS cells were monitored by XF96 metabolic flux analyzer. Co-immunoprecipitation (Co-IP) assay was used to explore the interaction between Yes-associated protein (YAP) and c-MYC. Chromatin immunoprecipitation was used to investigate the binding capability of PGAM1 and YAP or c-MYC. Moreover, the activities of promoter were determined by the luciferase reporter assay.
Findings:
S1PR3 and its specific ligand Sphingosine 1-phosphate (S1P) were found elevated in OS, and the higher expression of S1PR3 was correlated with the poor survival rate. Moreover, our study has proved that the S1P/S1PR3 axis play roles in proliferation promotion, apoptosis inhibition, and aerobic glycolysis promotion of osteosarcoma cells. Mechanistically, the S1P/S1PR3 axis inhibited the phosphorylation of YAP and promoted the nuclear translocation of YAP, which contributed to the formation of the YAP-c-MYC complex and enhanced transcription of the important glycolysis enzyme PGAM1. Moreover, the S1PR3 antagonist TY52156 exhibited in vitro and in vivo synergistic inhibitory effects with methotrexate on OS cell growth.
Interpretation:
Our study unveiled a role of S1P, a bioactive phospholipid, in glucose metabolism reprogram through interaction with its receptor S1PR3. Targeting S1P/S1PR3 axis might serve as a potential therapeutic target for patients with OS. FUND: This research was supported by National Natural Science Foundation of China (81472445 and 81672587).
Insights
The Sphingosine 1-phosphate receptor 3 (S1PR3) pathway promotes osteosarcoma growth and glycolysis. Targeting this S1PR3 axis offers a potential new therapeutic strategy for osteosarcoma patients.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Osteosarcoma (OS) is a prevalent bone cancer in young individuals with limited treatment options.
- G-protein-coupled receptors (GPCRs) are promising targets for cancer therapy and imaging.
- Sphingosine 1-phosphate receptor 3 (S1PR3) is a GPCR investigated for its role in OS.
Purpose of the Study:
- To investigate the biological functions of S1PR3 in osteosarcoma.
- To evaluate S1PR3 as a potential therapeutic target for osteosarcoma.
Main Methods:
- Quantitative real-time PCR and Western blotting for gene and protein expression analysis.
- In vitro assays (CCK8, colony formation, apoptosis) and in vivo xenograft models to assess cellular proliferation and tumor growth.
- RNA sequencing, metabolic flux analysis, co-immunoprecipitation, chromatin immunoprecipitation, and luciferase reporter assays to elucidate molecular mechanisms.
Main Results:
- S1PR3 and its ligand Sphingosine 1-phosphate (S1P) are elevated in OS and correlate with poor survival.
- The S1P/S1PR3 axis promotes OS cell proliferation, inhibits apoptosis, and enhances aerobic glycolysis.
- Mechanistically, S1PR3 signaling promotes YAP nuclear translocation, forming a YAP-c-MYC complex that boosts PGAM1 transcription, a key glycolysis enzyme.
- The S1PR3 antagonist TY52156 showed synergistic effects with methotrexate against OS growth in vitro and in vivo.
Conclusions:
- The S1P/S1PR3 axis plays a critical role in reprogramming glucose metabolism in osteosarcoma.
- Targeting the S1P/S1PR3 axis presents a promising therapeutic strategy for osteosarcoma treatment.
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