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Characterization of Functionally Associated miRNAs in Glioblastoma and their Engineering into Artificial Clusters for Gene Therapy
Published on: October 4, 2019
Effect of miR‑29a‑3p in exosomes on glioma cells by regulating the PI3K/AKT/HIF‑1α pathway
Zeqiang Liu1, Zheng Yang2, Lu He1
1Department of Laboratory Medicine, Peking University Third Hospital, Beijing 100191, P.R. China.
Abstract:
Exosomes secreted by glioma cells can carry a number of bioactive molecules. As the most abundant noncoding RNA in exosomes, microRNAs (miRNAs) are involved in signaling between tumor cells in a number of ways. In addition, hypoxia is an important feature of the microenvironment of most tumors. The present study investigated the effect of miR‑29a‑3p in glioma exosomes on the proliferation and apoptosis levels of U251 glioma cells under hypoxia. Qualitative PCR results showed that the expression level of miR‑29a‑3p in plasma exosomes of glioma patients was lower than that of normal subjects. By conducting hypoxia experiments in vitro on U251 glioma cells, it was found that the expression level of miR‑29a‑3p decreased following hypoxia, while overexpression of miR‑29a‑3p significantly decreased the proliferation of U251 glioma cells and promoted apoptosis by inhibiting the expression of the antiapoptotic marker Bcl‑2 and increasing the expression of the proapoptotic marker Bax The potential targets of miR‑29a‑3p were predicted by online tools and validated by a dual‑luciferase gene reporter assay. miR‑29a‑3p was found to target and regulate PI3K, which in turn inhibited the activity of the PI3K‑AKT pathway, thereby reducing the expression of hypoxia inducible factor (HIF)‑1α protein. Furthermore, the effects of miR‑29a‑3p on proliferation and apoptosis in glioma cells in those processes could be reversed by the PI3K‑AKT agonist Recilisib. In addition, the inhibitory effect of miR‑29a‑3p on the PI3K/AKT/HIF‑1α regulatory axis could cause a decrease in the expression levels of pyruvate dehydrogenase kinase‑1 and pyruvate dehydrogenase kinase‑2 and eventually lead to a reduction in glycolysis in U251 glioma cells. Similarly, Recilisib slowed the inhibitory effect of miR‑29a‑3p on glycolysis and glycolysis‑related molecules. The results of this study tentatively confirm that miR‑29a‑3p carried by exosomes can be used as a novel diagnostic marker and a potential inhibitory molecule for glioma cells, providing a new theoretical and experimental basis for the precise clinical treatment of glioma.
Insights
MicroRNA-29a-3p in glioma exosomes inhibits tumor growth and promotes apoptosis by targeting the PI3K/AKT/HIF-1α pathway. Lower levels in patients suggest its potential as a diagnostic marker and therapeutic target for glioma.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- Exosomes mediate intercellular communication in tumors via microRNAs (miRNAs).
- Hypoxia is a common feature in the tumor microenvironment, influencing cancer progression.
- MiRNAs within exosomes play crucial roles in glioma cell signaling and response to hypoxia.
Purpose of the Study:
- To investigate the role of miR-29a-3p in glioma exosomes on U251 glioma cell proliferation and apoptosis under hypoxic conditions.
- To elucidate the molecular mechanisms by which miR-29a-3p affects glioma cells, including its potential targets and signaling pathways.
- To evaluate the therapeutic potential of miR-29a-3p as a diagnostic marker and inhibitory molecule for glioma.
Main Methods:
- Quantitative PCR to measure miR-29a-3p expression in plasma exosomes from glioma patients and normal subjects.
- In vitro hypoxia experiments on U251 glioma cells to assess the effects of miR-29a-3p overexpression on proliferation and apoptosis.
- Bioinformatic prediction and dual-luciferase reporter assay to identify and validate miR-29a-3p targets, focusing on the PI3K-AKT pathway and HIF-1α.
- Assessment of glycolysis-related molecules and the effect of Recilisib (a PI3K-AKT agonist) on miR-29a-3p-mediated processes.
Main Results:
- Lower expression of miR-29a-3p was observed in plasma exosomes of glioma patients compared to normal subjects.
- Hypoxia decreased miR-29a-3p expression in U251 cells; overexpression inhibited proliferation and promoted apoptosis by targeting Bcl-2 and Bax.
- miR-29a-3p targets PI3K, inhibiting the PI3K-AKT pathway and reducing HIF-1α protein expression.
- Recilisib reversed the effects of miR-29a-3p on proliferation, apoptosis, and glycolysis, including the PI3K/AKT/HIF-1α axis and downstream glycolysis markers.
Conclusions:
- miR-29a-3p, carried by exosomes, plays a significant role in regulating glioma cell proliferation and apoptosis under hypoxia.
- The miR-29a-3p/PI3K/AKT/HIF-1α pathway is a key mechanism influencing glioma progression and glycolysis.
- miR-29a-3p shows promise as a novel diagnostic biomarker and a potential therapeutic agent for glioma treatment.
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