ArticleCell death & disease2023
Rho A/ROCK1 signaling-mediated metabolic reprogramming of valvular interstitial cells toward Warburg effect accelerates aortic valve calcification via AMPK/RUNX2 axis.
Article in Cell death & disease, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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13 citing papers in PubMed, 17 citations in OpenAlex.
- Therapeutic potential of astrocyte transdifferentiated neurons.Neural regeneration research · 2026Article
- Sodium-Glucose Cotransporter 2 Inhibitors in Valvular Heart Disease: Cardiovascular Benefit, Valve-Specific Effects, and Evidence Gaps-A Structured Narrative Review.Journal of clinical medicine · 2026Review
- Dual targeting of mitochondrial metabolism and Rho GTPase signaling to suppress cancer metastasis (Review).Oncology reports · 2026Review
- Inflammatory and hormonal crosstalk linking rheumatic fever to chronic valvular heart disease.Molecular biology reports · 2026Review
- Olfactory Mucosal Mesenchymal Stem Cell-Derived Exosomal LncA2M-AS1 Ameliorates Parkinson's Disease by Regulating Microglial Glucose Metabolic Reprogramming and Neuroinflammation via the CFL1/ROCK1 Axis.CNS neuroscience & therapeutics · 2026Article
- Thr3/Ser90 phosphorylation-stabilized S100A8 regulates cholesterol metabolism in glioblastoma stem cells.Oncogene · 2026Article
- Mechanical regulation of metabolism, epigenetics, and their interplay.npj biomedical innovations · 2026Review
- Decoding the lactylation-immune link in calcific aortic valve disease: a comprehensive bioinformatics approach.Human genomics · 2025Article
- Inflammation via JAK-STAT/HIF-1α Drives Metabolic Changes in Pentose Phosphate Pathway and Glycolysis That Support Aortic Valve Cell Calcification.Arteriosclerosis, thrombosis, and vascular biology · 2025Article
- METTL3 obstructs vascular smooth muscle cells osteogenic reprogramming by methylating Runx2 in chronic kidney disease.Communications biology · 2025Article
- Navigating the Landscape of Translational Medicine of Calcific Aortic Valve Disease: Bridging Bench to Bedside.JACC. Asia · 2025Review
- Targeting Lactate: An Emerging Strategy for Macrophage Regulation in Chronic Inflammation and Cancer.Biomolecules · 2024Review
- Cell signaling and transcriptional regulation of osteoblast lineage commitment, differentiation, bone formation, and homeostasis.Cell discovery · 2024Review
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Authors and funding
7 authors at 2 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
The aberrant differentiation of valvular interstitial cells (VICs) to osteogenic lineages promotes calcified aortic valves disease (CAVD), partly activated by potentially destructive hemodynamic forces. These involve Rho A/ROCK1 signaling, a mechano-sensing pathway. However, how Rho A/ROCK1 signaling transduces mechanical signals into cellular responses and disrupts normal VIC homeostasis remain unclear. We examined Rho A/ROCK1 signaling in human aortic valves, and further detected how Rho A/ROCK1 signaling regulates mineralization in human VICs. Aortic valves (CAVD n = 22, normal control (NC) n = 12) from patients undergoing valve replacement were investigated. Immunostaining and western blotting analysis indicated that Rho A/ROCK1 signaling, as well as key transporters and enzymes involved in the Warburg effect, were markedly upregulated in human calcified aortic valves compared with those in the controls. In vitro, Rho A/ROCK1-induced calcification was confirmed as AMPK-dependent, via a mechanism involving metabolic reprogramming of human VICs to Warburg effect. Y-27632, a selective ROCK1 inhibitor, suppressed the Warburg effect, rescued AMPK activity and subsequently increased RUNX2 ubiquitin-proteasome degradation, leading to decreased RUNX2 protein accumulation in human VICs under pathological osteogenic stimulus. Rho A/ROCK1 signaling, which is elevated in human calcified aortic valves, plays a positive role in valvular calcification, partially through its ability to drive metabolic switching of VICs to the Warburg effect, leading to altered AMPK activity and RUNX2 protein accumulation. Thus, Rho A/ROCK1 signaling could be an important and unrecognized hub of destructive hemodynamics and cellular aerobic glycolysis that is essential to promote the CAVD process.
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