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Published on: March 27, 2020
N6-methyladenosine-modified circTEAD1 stabilizes Yap1 mRNA to promote chordoma tumorigenesis
Hanwen Li1, Yingchuang Tang1, Xingbang Ruan1
1Department of Orthopedic Surgery, The First Affiliated Hospital of Soochow University, Suzhou, People's Republic of China.
Background:
Chordoma, a rare bone tumour with aggressive local invasion and high recurrence rate with limited understanding of its molecular mechanisms. Circular RNAs (circRNAs) have been extensively implicated in tumorigenesis, yet their involvement in chordoma remains largely unexplored. N6-methyladenosine (m6A) modification holds a crucial function in regulating protein translation, RNA degradation and transcription.
Methods:
Initially, screening and validation of circTEAD1 in chordoma were conducted by high-throughput sequencing. Subsequently, sh-circTEAD1 and an overexpression plasmid were constructed. Colony formation assays, cell counting kit-8, Transwell and wound healing assays were utilized to validate the function of circTEAD1 in vitro. RNA pull-down assays identified the binding proteins of circTEAD1, which underwent verification through RNA immunoprecipitation (RIP). Methylated RIP assays were conducted to detect the m6A binding sites. Following this, luciferase assay, RT-qPCR, RIP and Western blotting analyses were conducted, revealing that Yap1 was the direct target of circTEAD1. Afterwards, the same methods were utilized for the validation of the function of Yap1 in chordoma in vitro. Finally, the regulatory relationship between circTEAD1 and Yap1 in chordoma was verified by an in vivo tumour formation assay.
Results:
CircTEAD1 was identified as an upregulated circRNA in chordoma specimens, with heightened circTEAD1 expression emerging as a prognostic indicator. In vitro experiments convincingly demonstrated that circTEAD1 significantly promoted chordoma cell invasion, migration and aggressiveness. Furthermore, the analysis revealed that methyltransferase-like 3-mediated m6A modification facilitated the cytoplasmic export of circTEAD1. The circTEAD1/IGF2BP3/Yap1 mRNA RNA-protein ternary complex not only bolstered the stability of Yap1 mRNA but also exerted a pivotal role in driving chordoma tumorigenesis.
Conclusions:
In this study, the role of m6A-modified circTEAD1 in chordoma was identified. The findings offer novel insights into the potential molecular targets for chordoma therapy, shedding light on the intricate interplay between circRNAs, m6A modification and Yap1 mRNA in chordoma pathogenesis.
Insights
N6-methyladenosine (m6A) modified circTEAD1 promotes chordoma progression by stabilizing Yap1 mRNA. This study reveals circTEAD1 as a potential therapeutic target for chordoma, a rare and aggressive bone tumor.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Chordoma is a rare bone tumor characterized by aggressive local invasion and high recurrence rates.
- The molecular mechanisms underlying chordoma development are poorly understood.
- Circular RNAs (circRNAs) and N6-methyladenosine (m6A) modification are implicated in tumorigenesis but their roles in chordoma are largely unexplored.
Purpose of the Study:
- To investigate the role of circTEAD1 in chordoma.
- To elucidate the involvement of m6A modification in circTEAD1-mediated chordoma pathogenesis.
- To identify potential therapeutic targets for chordoma.
Main Methods:
- High-throughput sequencing to identify circTEAD1 in chordoma.
- In vitro assays (colony formation, CCK-8, Transwell, wound healing) to assess circTEAD1 function.
- RNA pull-down, RIP, methylated RIP, and luciferase assays to identify and validate circTEAD1 targets and interactions.
- In vivo tumor formation assay to verify the regulatory relationship between circTEAD1 and Yap1.
Main Results:
- CircTEAD1 is upregulated in chordoma and serves as a prognostic indicator.
- CircTEAD1 promotes chordoma cell invasion, migration, and aggressiveness.
- m6A modification by methyltransferase-like 3 facilitates circTEAD1 export.
- The circTEAD1/IGF2BP3/Yap1 complex enhances Yap1 mRNA stability, driving chordoma tumorigenesis.
Conclusions:
- m6A-modified circTEAD1 plays a significant role in chordoma pathogenesis.
- CircTEAD1, m6A modification, and Yap1 mRNA interaction offers novel insights into chordoma.
- Targeting circTEAD1 presents a potential therapeutic strategy for chordoma.
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