Annexin A2 regulates glioma cell proliferation through the STAT3‑cyclin D1 pathway
Ling Chen1, Ling Lin1, Na Xian2
1Department of Biochemistry and Molecular Biology, The School of Basic Medical Sciences, Fujian Medical University, Fuzhou, Fujian 350108, P.R. China.
Abstract:
Annexin A2 (ANXA2) acts as a calcium‑dependent phospholipid‑binding protein that is widely expressed in vertebrate cells and has abnormally high expression in various tumor cells. However, the detailed molecular mechanism underlying the effects of ANXA2 on glioma cells remains unclear. The present study aimed to investigate the role and underlying molecular mechanisms of ANXA2 in glioma cell proliferation. The results revealed that knockdown of ANXA2 inhibited the proliferation of U251 and U87 glioma cell lines and decreased phosphorylated (p) signal transducer and activator of transcription 3 (STAT3)(Y705) and cyclin D1 expression, leading to impedance of the G1‑to‑S phase transition. Furthermore, it was suggested that ANXA2 may regulate pSTAT3(Y705) levels through direct binding with STAT3, thereby affecting STAT3‑cyclin D1 pathway‑mediated cell proliferation. When ANXA2 was re‑expressed in ANXA2‑knockdown cells, the expression of pSTAT3(Y705) and cyclin D1 was restored. Furthermore, overexpression of ANXA2 significantly promoted the proliferation of U251 cells, as determined by an MTT assay and a tumor formation assay in nude mice, but had no statistically significant effect on colony formation rate, cell cycle progression or the STAT3‑cyclin D1 pathway, suggesting that endogenous ANXA2 may be redundant. Additionally, the present study provided evidence that the overexpression of ANXA2 enhanced the expression of pSTAT3(Y705) in the presence of epidermal growth factor (EGF), indicating that the proliferation‑promoting effect of ANXA2 may be due to the accumulation and synergistic effect of paracrine EGF. Taken together, the present results indicated that ANXA2 may affect the proliferation of human glioma cells through the STAT3‑cyclin D1 pathway via direct interaction with STAT3 in U251 and U87 glioma cells. ANXA2 was redundant in this pathway, but positive synergy was revealed to exist between ANXA2 and EGF.
Insights
Annexin A2 (ANXA2) knockdown inhibits glioma cell proliferation by reducing pSTAT3 and cyclin D1. ANXA2 interacts with STAT3, impacting the STAT3-cyclin D1 pathway and cell cycle progression in glioma cells.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Annexin A2 (ANXA2), a calcium-dependent phospholipid-binding protein, is highly expressed in tumor cells.
- The precise molecular mechanisms of ANXA2 in glioma cell proliferation are not fully understood.
Purpose of the Study:
- To investigate the role and underlying molecular mechanisms of ANXA2 in human glioma cell proliferation.
- To elucidate the interaction between ANXA2, STAT3, and cyclin D1 in glioma cells.
Main Methods:
- Gene knockdown of ANXA2 in U251 and U87 glioma cell lines.
- Analysis of phosphorylated STAT3 (pSTAT3) and cyclin D1 expression.
- Cell cycle progression analysis (G1-to-S transition).
- Overexpression studies and in vivo tumor formation assays in nude mice.
- Investigation of ANXA2 interaction with STAT3.
Main Results:
- ANXA2 knockdown inhibited glioma cell proliferation, decreased pSTAT3(Y705) and cyclin D1 expression, and impeded G1-to-S phase transition.
- ANXA2 directly binds to STAT3, influencing the STAT3-cyclin D1 pathway.
- Overexpression of ANXA2 promoted U251 cell proliferation, particularly in the presence of epidermal growth factor (EGF), suggesting a synergistic effect.
Conclusions:
- ANXA2 influences human glioma cell proliferation through the STAT3-cyclin D1 pathway via direct interaction with STAT3.
- While ANXA2 appears redundant in this specific pathway, it exhibits synergistic effects with EGF in promoting proliferation.
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