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Published on: May 26, 2023
MYBL2 protects against H9c2 injury induced by hypoxia via AKT and NF‑κB pathways
Mingfeng Shao1, Zexiang Ren2, Rongjun Zhang1
1Department of Cardiology, Linyi People's Hospital, Linyi, Shandong 276003, P.R. China.
Abstract:
Cardiovascular diseases have become one of the major public health problems in many countries. The downregulation of MYBL2 was found in H9c2 and native cardiomyocytes cells after hypoxia treatment. The present study aimed to investigate the effects of MYB proto‑oncogene like 2 (MYBL2) on H9c2 injury induced by hypoxia. Reverse transcription‑quantitative polymerase chain reaction and western blot were performed on H9c2 cells to determine the mRNA and protein levels of MYBL2, respectively. Small interfering RNA (siRNA) was employed to downregulate MYBL2 expression in H9c2 cells to investigate changes in cell proliferation and apoptosis. Cell proliferation was assessed by a Cell Counting kit‑8 assay and the percentage of apoptotic cells was determined using an Annexin V‑fluorescein isothiocyanate/propidium iodide apoptosis detection kit. The nuclear factor‑κB (NF‑κB) and AKT signaling pathways in H9c2 cells were investigated by western blot analysis. The results demonstrated that the overexpression of MYBL2 promoted cell proliferation and suppressed apoptosis. Furthermore, overexpression of MYBL2 suppressed the expression of phosphorylated (p)‑AKT, p‑NF‑κB inhibitor α, p‑p65 and B‑cell CLL/lymphoma 3 (Bcl‑3). The results indicated that MYBL2 may improve cell viability and inhibit H9c2 apoptosis via the inhibition of AKT and NF‑κB pathways. Therefore, MYBL2 may be a potential therapeutic target for the treatment of myocardial infarction.
Insights
MYBL2 (MYB proto-oncogene like 2) protects heart cells from hypoxia-induced injury. Upregulating MYBL2 promotes cell survival and reduces apoptosis by inhibiting AKT and NF-κB pathways, suggesting its therapeutic potential for myocardial infarction.
Area of Science:
- Cardiology
- Molecular Biology
- Cell Biology
Background:
- Cardiovascular diseases represent a significant global public health challenge.
- Hypoxia downregulates MYBL2 expression in cardiomyocytes, suggesting its role in cardiac injury.
Purpose of the Study:
- To investigate the protective effects of MYBL2 against hypoxia-induced injury in H9c2 cardiomyoblast cells.
- To elucidate the molecular mechanisms underlying MYBL2's role in cardiac cell survival and apoptosis.
Main Methods:
- Quantitative PCR and Western blotting to measure MYBL2 mRNA and protein levels.
- siRNA-mediated knockdown of MYBL2 to assess its functional impact.
- Cell Counting Kit-8 assay for proliferation and Annexin V/PI staining for apoptosis.
- Western blot analysis of AKT and NF-κB signaling pathway components.
Main Results:
- Overexpression of MYBL2 enhanced H9c2 cell proliferation and suppressed apoptosis.
- MYBL2 overexpression led to decreased levels of phosphorylated AKT (p-AKT), phosphorylated NF-κB inhibitor α (p-IκBα), phosphorylated p65 (p-p65), and Bcl-3.
- These findings suggest MYBL2 inhibits AKT and NF-κB signaling pathways.
Conclusions:
- MYBL2 enhances H9c2 cell viability and inhibits apoptosis under hypoxic conditions.
- MYBL2 exerts its protective effects through the inhibition of AKT and NF-κB signaling pathways.
- MYBL2 emerges as a potential therapeutic target for myocardial infarction treatment.
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