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Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
miR-181b regulates vascular endothelial aging by modulating an MAP3K3 signaling pathway
Haoyang Zhou1,2, Dafeng Yang1,2, Henry S Cheng1
1Cardiovascular Division, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Abstract:
Endothelial cell (EC) aging plays a vital role in the pathogenesis of cardiovascular disease (CVD). MicroRNAs have emerged as crucial regulators of target gene expression by inhibiting mRNA translation and/or promoting mRNA degradation. We identify an aging-related and oxidative stress-responsive microRNA, miR-181b, that inhibits endothelial cell apoptosis and senescence. In gain- or loss-of-function studies, miR-181b regulated the expression of key apoptosis markers (Bcl2, Bax, cleaved-Caspase3) and senescence markers (p16, p21, γH2AX) and the ratio of apoptotic cells (TUNEL-positive) and senescent cells (SA-βgal-positive) in H2 O2 -induced ECs. Mechanistically, miR-181b targets MAP3K3 and modulates a MAP3K3/MKK/MAPK signaling pathway. MAP3K3 knockdown recapitulated the phenotype of miR-181b overexpression and miR-181b was dependent on MAP3K3 for regulating EC apoptosis and senescence. In vivo, miR-181b expression showed a negative correlation with increasing age in the mouse aorta. Endothelial-specific deficiency of miR-181a2b2 increased the target MAP3K3, markers of vascular senescence (p16, p21), and DNA double-strand breaks (γH2AX) in the aorta of aged mice. Collectively, this study unveils an important role of miR-181b in regulating vascular endothelial aging via an MAP3K3-MAPK signaling pathway, providing new potential therapeutic targets for antiaging therapy in CVD.
Insights
MicroRNA miR-181b protects against endothelial cell aging and apoptosis by targeting MAP3K3. This finding offers potential therapeutic targets for antiaging strategies in cardiovascular disease.
Area of Science:
- Cardiovascular Biology
- Molecular Biology
- Aging Research
Background:
- Endothelial cell (EC) aging is a key factor in cardiovascular disease (CVD) development.
- MicroRNAs regulate gene expression and are implicated in cellular aging processes.
Purpose of the Study:
- To identify microRNAs involved in endothelial cell aging and oxidative stress.
- To elucidate the role of miR-181b in regulating endothelial cell apoptosis and senescence.
Main Methods:
- Gain- and loss-of-function studies in H2O2-induced ECs.
- Analysis of apoptosis and senescence markers (Bcl2, Bax, cleaved-Caspase3, p16, p21, γH2AX).
- In vivo studies in aged mice with endothelial-specific miR-181a2b2 deficiency.
Main Results:
- miR-181b was identified as an aging-related, oxidative stress-responsive microRNA that inhibits EC apoptosis and senescence.
- miR-181b targets MAP3K3, modulating the MAP3K3/MKK/MAPK signaling pathway.
- In aged mice, miR-181b deficiency exacerbated vascular senescence and DNA damage.
Conclusions:
- miR-181b plays a crucial role in regulating vascular endothelial aging.
- The miR-181b/MAP3K3/MAPK pathway represents a potential therapeutic target for antiaging interventions in CVD.
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