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Updated: Jul 19, 2025

Improved Rodent Model of Myocardial Ischemia and Reperfusion Injury
Published on: March 7, 2022
CREB-binding protein and HIF-1α/β-catenin to upregulate miR-322 and alleviate myocardial ischemia-reperfusion injury
Wei Dong1, Jun-Fei Weng1, Jian-Bing Zhu1
1Department of Cardiology, The First Affiliated Hospital of Nanchang University, Nanchang, People's Republic of China.
Abstract:
Myocardial ischemia/reperfusion injury (MIRI) is a prevalent condition associated with numerous critical clinical conditions. miR-322 has been implicated in MIRI through poorly understood mechanisms. Our preliminary analysis indicated potential interaction of CREB-binding protein (CBP), a transcriptional coactivator and acetyltransferase, with HIF-1α/β-catenin, which might regulate miR-322 expression. We, therefore, hypothesized that CBP/HIF-1α/β-catenin/miR-322 axis might play a role in MIRI. Rat cardiomyocytes subjected to oxygen-glucose deprivation /reperfusion (OGD/R) and Langendorff perfused heart model were used to model MIRI in vitro and in vivo, respectively. We used various techniques such as CCK-8 assay, transferase dUTP nick end labeling staining, western blotting, RT-qPCR, chromatin immunoprecipitation (ChIP), dual-luciferase assay, co-immunoprecipitation (Co-IP), hematoxylin and eosin staining, and TTC staining to assess cell viability, apoptosis, and the levels of CBP, HIF-1α, β-catenin, miR-322, and acetylation. Our results indicate that OGD/R in cardiomyocytes decreased CBP/HIF-1α/β-catenin/miR-322 expression, increased cell apoptosis and cytokines, and reduced cell viability. However, overexpression of CBP or miR-322 suppressed OGD/R-induced cell injury, while knockdown of HIF-1α/β-catenin further exacerbated the damage. HIF-1α/β-catenin bound to miR-322 promoter to promote its expression, while CBP acetylated HIF-1α/β-catenin for stabilization. Overexpression of CBP attenuated MIRI in rats by acetylating HIF-1α/β-catenin to stabilize their expression, resulting in stronger binding of HIF-1α/β-catenin with the miR-322 promoter and subsequent increased miR-322 levels. Therefore, activating CBP/HIF-1α/β-catenin/miR-322 signaling may be a potential approach to treat MIRI.
Insights
Activating the CBP/HIF-1α/β-catenin/miR-322 pathway protects against myocardial ischemia/reperfusion injury (MIRI). This involves CBP acetylating HIF-1α/β-catenin, stabilizing them to enhance miR-322 expression and reduce MIRI.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Cellular Signaling
Background:
- Myocardial ischemia/reperfusion injury (MIRI) is a significant clinical challenge with incompletely understood mechanisms.
- MicroRNA-322 (miR-322) has been linked to MIRI, but its regulatory pathways remain unclear.
- CREB-binding protein (CBP) may interact with HIF-1α and β-catenin to influence miR-322 expression.
Purpose of the Study:
- To investigate the role of the CBP/HIF-1α/β-catenin/miR-322 axis in myocardial ischemia/reperfusion injury (MIRI).
- To elucidate the molecular mechanisms by which CBP, HIF-1α, β-catenin, and miR-322 interact during MIRI.
Main Methods:
- Utilized rat cardiomyocytes subjected to oxygen-glucose deprivation/reperfusion (OGD/R) for in vitro modeling.
- Employed a Langendorff perfused heart model for in vivo MIRI studies.
- Assessed cell viability, apoptosis, and molecular levels using CCK-8, TUNEL, Western blotting, RT-qPCR, ChIP, dual-luciferase, and Co-IP assays.
Main Results:
- OGD/R decreased CBP, HIF-1α, β-catenin, and miR-322 expression, leading to increased apoptosis and reduced cell viability.
- Overexpression of CBP or miR-322 attenuated OGD/R-induced injury, while HIF-1α/β-catenin knockdown exacerbated damage.
- CBP acetylated and stabilized HIF-1α/β-catenin, which then bound to the miR-322 promoter, enhancing its expression.
Conclusions:
- The CBP/HIF-1α/β-catenin/miR-322 signaling pathway plays a crucial protective role in MIRI.
- CBP-mediated acetylation of HIF-1α/β-catenin stabilizes these proteins, promoting miR-322 expression and mitigating MIRI.
- Targeting the CBP/HIF-1α/β-catenin/miR-322 axis represents a potential therapeutic strategy for MIRI.
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