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Published on: October 28, 2021
MicroRNA-493-5p inhibits proliferation and metastasis of osteosarcoma cells by targeting Kruppel-like factor 5
Zaiqing Zhang1, Gongzeng Luo1, Chuandong Yu2
1Department of Orthopaedics, Linyi Central Hospital, Yishui, China.
Abstract:
Osteosarcoma, including spinal osteosarcoma, has properties of high degree of malignancy, high rate of recurrence, and high incidence of metastasis. microRNAs can exert oncogenic or tumor suppressive roles in cancer cells. This study explored the effects of microRNA-493-5p (miR-493-5p) on osteosarcoma cell viability, migration, invasion, and apoptosis, as well as the underlying possible mechanism. First, the expression of miR-493-5p in osteosarcoma tissues and cells was detected using quantitative reverse transcription polymerase chain reaction (qRT-PCR). Then, the effects of miR-493-5p overexpression (or suppression) on osteosarcoma cell viability, migration, invasion, and apoptosis, as well as Kruppel-like factor 5 (KLF5) expression, were assessed using the Cell Counting Kit-8 assay, two-chamber transwell assay, Annexin V-FITC/PI apoptosis detection kit, qRT-PCR, and western blotting, respectively. Finally, the roles of KLF5 in miR-493-5p suppression-induced U20S cell viability, migration, and invasion enhancement, as well as the PI3K/AKT pathway activation, were evaluated. We found that miR-493-5p had lower expression in tumor tissues of spinal osteosarcoma and osteosarcoma cells. Overexpression of miR-493-5p inhibited osteosarcoma U20S cell viability, migration, and invasion, but induced cell apoptosis. On the contrary, suppression of miR-493-5p-promoted U20S cell viability, migration, and invasion. KLF5 was a direct target gene of miR-493-5p, which participated in the effects of miR-493-5p on U20S cell viability, migration, invasion, and apoptosis. Furthermore, suppression of the miR-493-5p activated PI3K/AKT pathway in U20S cells by upregulating KLF5. In conclusion, we revealed that miR-493-5p exerted tumor suppressive roles in spinal osteosarcoma and osteosarcoma cells. Overexpression of miR-493-5p inhibited proliferation and metastasis of osteosarcoma cells by downregulating KLF5 and inactivating the PI3K/AKT signaling pathway.
Insights
MicroRNA-493-5p (miR-493-5p) acts as a tumor suppressor in osteosarcoma. Lower miR-493-5p levels promote cancer cell growth and metastasis by upregulating KLF5 and activating the PI3K/AKT pathway.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Osteosarcoma, particularly spinal osteosarcoma, is characterized by high malignancy, recurrence, and metastasis.
- MicroRNAs play crucial roles as either oncogenes or tumor suppressors in cancer development.
Purpose of the Study:
- To investigate the functional role of microRNA-493-5p (miR-493-5p) in osteosarcoma.
- To elucidate the underlying molecular mechanism involving Kruppel-like factor 5 (KLF5) and the PI3K/AKT signaling pathway.
Main Methods:
- Quantitative reverse transcription polymerase chain reaction (qRT-PCR) to assess miR-493-5p expression.
- Cell viability, migration, invasion, and apoptosis assays (CCK-8, Transwell, Annexin V/PI) to evaluate miR-493-5p effects.
- Western blotting and qRT-PCR to determine KLF5 expression and pathway activation.
Main Results:
- miR-493-5p expression was significantly lower in osteosarcoma tissues and cells.
- Overexpression of miR-493-5p inhibited osteosarcoma cell viability, migration, and invasion, while inducing apoptosis.
- Suppression of miR-493-5p enhanced cell viability, migration, and invasion.
- KLF5 was identified as a direct target of miR-493-5p and mediated its effects.
- miR-493-5p suppressed osteosarcoma progression by downregulating KLF5 and inactivating the PI3K/AKT pathway.
Conclusions:
- miR-493-5p functions as a tumor suppressor in spinal osteosarcoma.
- Restoring miR-493-5p levels can inhibit osteosarcoma proliferation and metastasis.
- The miR-493-5p/KLF5/PI3K/AKT axis represents a potential therapeutic target for osteosarcoma treatment.
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