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Author Spotlight: RNA FISH for Locating lncRNA-SNHG6 in Osteosarcoma Cells
Published on: June 16, 2023
Downregulation of the long non‑coding RNA FOXD2‑AS1 inhibits cell proliferation, migration and invasion in
Haomeng Zhang1, Yao Lu2, Jun Wang3
1Department of Orthopedic Oncology Institute, Tangdu Hospital, The Second Affiliated Hospital of Air Force Medical University, Xi'an, Shaanxi 710038, P.R. China.
Abstract:
Increasing amounts of long noncoding RNAs (lncRNAs) have been shown to be involved in the development of cancer. Recently, aberrant expression of the lncRNA forkhead box D2 adjacent opposite strand RNA1 (FOXD2‑AS1) has been reported to be involved in the progression of several types of human cancer. However, the function and mechanism of FOXD2‑AS1 in osteosarcoma (OS) are currently unclear. The present study aimed to investigate the function and mechanism of FOXD2‑AS1 in OS. Firstly, it was revealed that the expression levels of FOXD2‑AS1 were significantly upregulated in OS tissues and cells, compared with in adjacent tissues and normal cells, as determined using reverse transcription‑quantitative polymerase chain reaction. Notably, the overall survival of patients with relatively high FOXD2‑AS1 expression in OS tissues was significantly lower than that of patients with relatively low expression, as determined using Kaplan‑Meier analysis. In addition, loss‑of‑function experiments were performed in vivo and in vitro to study the biological effects of FOXD2‑AS1. The SOSP‑9607 and U2OS OS cell lines were infected with lentivirus‑mediated FOXD2‑AS1 short hairpin RNA; subsequently, the alterations in cell phenotype and downstream molecules were evaluated. Knockdown of FOXD2‑AS1 inhibited the proliferation, migration and invasion of OS cells. Furthermore, the number of cells in the S phase was significantly decreased, which was consistent with the results of the Cell Counting kit 8 proliferation assay. The expression levels of ribonucleotide reductase regulatory subunit M2 and phosphoglycerate dehydrogenase were decreased, as determined by western blotting, following FOXD2‑AS1 knockdown. Finally, in a nude mouse model of tumorigenesis, it was revealed that, when FOXD2‑AS1 expression was downregulated, tumor growth was significantly reduced and pulmonary metastatic nodules were markedly reduced. The results of the present study suggested that decreased FOXD2‑AS1 expression may inhibit the growth, migration and invasion of tumor cells, and it may regulate downstream gene expression. In conclusion, these findings indicated that FOXD2‑AS1 may be used as a potential therapeutic target and early tumor marker for the diagnosis and prognosis of OS.
Insights
Long noncoding RNA FOXD2-AS1 is upregulated in osteosarcoma (OS) and promotes cancer progression. Inhibiting FOXD2-AS1 suppressed OS cell growth, migration, and invasion, suggesting it as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Long noncoding RNAs (lncRNAs) are increasingly recognized for their roles in cancer development.
- Aberrant expression of lncRNA FOXD2-AS1 has been linked to several human cancers, but its function in osteosarcoma (OS) remains unclear.
Purpose of the Study:
- To investigate the function and mechanism of FOXD2-AS1 in osteosarcoma (OS).
- To determine the potential of FOXD2-AS1 as a diagnostic and prognostic marker for OS.
Main Methods:
- Reverse transcription-quantitative polymerase chain reaction (RT-qPCR) to assess FOXD2-AS1 expression in OS tissues and cells.
- Kaplan-Meier analysis to correlate FOXD2-AS1 expression with patient survival.
- In vitro and in vivo loss-of-function experiments using lentivirus-mediated short hairpin RNA (shRNA) targeting FOXD2-AS1 in OS cell lines (SOSP-9607, U2OS).
- Western blotting to evaluate downstream protein expression.
- Tumorigenesis assay in a nude mouse model.
Main Results:
- FOXD2-AS1 expression was significantly upregulated in OS tissues and cells compared to adjacent normal tissues and cells.
- High FOXD2-AS1 expression correlated with significantly lower overall survival in OS patients.
- Knockdown of FOXD2-AS1 inhibited OS cell proliferation, migration, and invasion, and reduced S-phase cell count.
- FOXD2-AS1 knockdown decreased the expression of ribonucleotide reductase regulatory subunit M2 and phosphoglycerate dehydrogenase.
- Downregulation of FOXD2-AS1 significantly reduced tumor growth and pulmonary metastasis in a nude mouse model.
Conclusions:
- FOXD2-AS1 plays a crucial role in promoting the growth, migration, and invasion of osteosarcoma cells.
- FOXD2-AS1 may regulate downstream gene expression involved in cancer progression.
- FOXD2-AS1 represents a potential therapeutic target and an early tumor marker for the diagnosis and prognosis of osteosarcoma.
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