Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2025 May;480(5):2923-2933.
doi: 10.1007/s11010-024-05149-z. Epub 2024 Nov 11.

RBM15-mediated the m6A modification of MAT2A promotes osteosarcoma cell proliferation, metastasis and suppresses ferroptosis

Affiliations

RBM15-mediated the m6A modification of MAT2A promotes osteosarcoma cell proliferation, metastasis and suppresses ferroptosis

Zhong Huang et al. Mol Cell Biochem. 2025 May.

Abstract

Methionine adenosyltransferase 2 A (MAT2A) has been found to mediate osteosarcoma (OS) progression. Therefore, more roles and mechanisms of MAT2A in the development of OS deserve further exploration. The mRNA and protein levels of MAT2A and RNA binding motif protein 15 (RBM15) were tested by quantitative real-time PCR and western blot (WB). Cell proliferation and metastasis were examined using EdU assay and transwell assay. The protein levels of metastasis-related markers and ferroptosis-related marker were measured by WB. Cell ferroptosis was assessed via testing GSH, ROS, and Fe2+ levels. Mice xenograft model was constructed to explore the roles of MAT2A and RBM15 in vivo. RBM15 and MAT2A interaction was assessed by MeRIP assay and dual-luciferase reporter assay. High expression of MAT2A was observed in OS tumor tissues and cells. MAT2A knockdown reduced OS cell proliferation, migration, invasion and enhanced ferroptosis. Silencing of MAT2A inhibited OS tumor growth in vivo. RBM15 was upregulated in OS tumor tissues and cells, which could promote MAT2A expression by N6-methyladenosine (m6A) modification. Downregulation of RBM15 repressed OS cell behaviors and tumorigenesis by decreasing MAT2A expression. In conclusion, MAT2A, regulated by RBM15-mediated m6A modification, accelerated OS malignant progression by increasing cell proliferation, metastasis and decreasing ferroptosis.

Keywords: M6A; MAT2A; Osteosarcoma; RBM15.

PubMed Disclaimer

Conflict of interest statement

Declarations. Conflict of interest: The authors declare that they have no conflicts of interest. Ethical approval: All procedures were approved by the Ethics Committee of Haikou Affiliated Hospital of Central South University Xiangya School of Medicine and were carried out according to the guidelines of Declaration of Helsinki. Animal experiment was approved by the Animal Ethics Committee of Haikou Affiliated Hospital of Central South University Xiangya School of Medicine. Animal studies were performed in compliance with the ARRIVE guidelines and the Basel Declaration. Consent to participate: Written informed consents were obtained from all patients.

Similar articles

Cited by

References

    1. Corre I, Verrecchia F, Crenn V, Redini F, Trichet V (2020) The osteosarcoma microenvironment: a Complex but targetable ecosystem. Cells 9:976 - DOI - PubMed - PMC
    1. Mannerstrom B, Kornilov R, Abu-Shahba AG, Chowdhury IM, Sinha S, Seppanen-Kaijansinkko R et al (2019) Epigenetic alterations in mesenchymal stem cells by osteosarcoma-derived extracellular vesicles. Epigenetics 14:352–364 - DOI - PubMed - PMC
    1. Chong ZX, Yeap SK, Ho WY (2021) Unraveling the roles of miRNAs in regulating epithelial-to-mesenchymal transition (EMT) in osteosarcoma. Pharmacol Res 172:105818 - DOI - PubMed
    1. Zarghooni K, Bratke G, Landgraf P, Simon T, Maintz D, Eysel P (2023) The diagnosis and treatment of osteosarcoma and ewing’s sarcoma in children and adolescents. Dtsch Arztebl Int 120:405–412 - PubMed - PMC
    1. Chen C, Xie L, Ren T, Huang Y, Xu J, Guo W (2021) Immunotherapy for osteosarcoma: fundamental mechanism, rationale, and recent breakthroughs. Cancer Lett 500:1–10 - DOI - PubMed

MeSH terms

LinkOut - more resources