ArticleDiabetologia2011
MIR221/MIR222-driven post-transcriptional regulation of P27KIP1 and P57KIP2 is crucial for high-glucose- and AGE-mediated vascular cell damage.
Article in Diabetologia, 2011. The graph could read no effect estimate from its abstract, so it casts no vote on the map. It has been retracted, and should not be counted. Cited by 35 papers.
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Who cites it
35 citing papers in PubMed, 64 citations in OpenAlex.
- Circulating hsa-miR-221 as a possible diagnostic and prognostic biomarker of diabetic nephropathy.Molecular biology reports · 2023Article
- Extracellular vesicles-incorporated microRNA signature as biomarker and diagnosis of prediabetes state and its complications.Reviews in endocrine & metabolic disorders · 2022Review
- Epigenetic Modifications and Non-Coding RNA in Diabetes-Mellitus-Induced Coronary Artery Disease: Pathophysiological Link and New Therapeutic Frontiers.International journal of molecular sciences · 2022Review
- Mechanisms of metabolic memory and renal hypoxia as a therapeutic target in diabetic kidney disease.Journal of diabetes investigation · 2017Review
- Exercise mediated protection of diabetic heart through modulation of microRNA mediated molecular pathways.Cardiovascular diabetology · 2017Review
- Empagliflozin Limits Myocardial InfarctionFrontiers in physiology · 2017Article
- Ghrelin, MicroRNAs, and Critical Limb Ischemia: Hungering for a Novel Treatment Option.Frontiers in endocrinology · 2017Review
- Activated Stat5 trafficking Via Endothelial Cell-derived Extracellular Vesicles Controls IL-3 Pro-angiogenic Paracrine Action.Scientific reports · 2016Article
- Obesity reduces the pro-angiogenic potential of adipose tissue stem cell-derived extracellular vesicles (EVs) by impairing miR-126 content: impact on clinical applications.International journal of obesity (2005) · 2016Article
- Differential Expression of MicroRNAs in Endarterectomy Specimens Taken from Patients with Asymptomatic and Symptomatic Carotid Plaques.PloS one · 2016Article
- Article
- Insights into the molecular mechanisms of diabetes-induced endothelial dysfunction: focus on oxidative stress and endothelial progenitor cells.Endocrine · 2015Article
- Endothelial microparticles reduce ICAM-1 expression in a microRNA-222-dependent mechanism.Journal of cellular and molecular medicine · 2015Article
- Pathogenesis of diabetic cerebral vascular disease complication.World journal of diabetes · 2015Review
- MicroRNAs and cardiovascular diseases.BioMed research international · 2015Review
- Skewed Epigenetics: An Alternative Therapeutic Option for Diabetes Complications.Journal of diabetes research · 2015Review
- Human miR-221/222 in Physiological and Atherosclerotic Vascular Remodeling.BioMed research international · 2015Review
- microRNAs Distinctively Regulate Vascular Smooth Muscle and Endothelial Cells: Functional Implications in Angiogenesis, Atherosclerosis, and In-Stent Restenosis.Advances in experimental medicine and biology · 2015Article
- miRNA-221 and miRNA-222 synergistically function to promote vascular calcification.Cell biochemistry and function · 2014Article
- miR-221/222 control luminal breast cancer tumor progression by regulating different targets.Cell cycle (Georgetown, Tex.) · 2014Article
Corrections and comments
- Retraction · 2018-02-09Duplication of/in Image · Falsification/Fabrication of Image · Investigation by Journal/Publisher · Investigation by Third Party ·
- Retracted
Authors and funding
5 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
aims/hypothesisMicroRNAs (miRNAs) are a novel group of small non-coding RNAs that regulate gene expression at the post-transcriptional level and act on their target mRNAs in a tissue- and cell-type-specific manner. Herein, the relevance of MIR221/MIR222 in high-glucose- and AGE-mediated vascular damage was investigated.
methodsFunctional studies were performed using human mature endothelial cells and endothelial progenitor cells subjected to high glucose or AGE. Quantitative real-time amplification was performed to analyse MIR221/MIR222 expression in these experimental conditions. Luciferase assay was used to identify MIR221/MIR222 targets. Functional studies were performed in vitro and in vivo in mice using gain- and loss-of-function approaches.
resultsUsing an in vivo mouse model we demonstrated that exposure to AGE and high glucose impaired vessel formation. Moreover, in vitro functional studies revealed that both high glucose and AGE inhibit cell-cycle progression by modulating the expression of P27KIP1 (also known as CDKN1B) and P57KIP2 (also known as CDKN1C), which encode cyclin-dependent kinase inhibitor 1B (p27, Kip1) (P27KIP1) and cyclin-dependent kinase inhibitor 1C (p57, Kip2) (P57KIP2), respectively. Crucial to AGE- and high-glucose-mediated cell-cycle arrest was the downregulation of MIR221/MIR222 expression. Luciferase assay showed that MIR221 and MIR222 specifically bind to the P27KIP1 and P57KIP2 mRNA 3'-untranslated regions, implicating P27KIP1 and P57KIP2 as MIR221/MIR222 targets. These results were confirmed by gain-of-function experiments in vitro, and by injecting mice with endothelial cells overexpressing MIR221 and MIR222. CONCLUSIONS/
interpretationWe provide evidence that high-glucose- and AGE-induced inhibition of vascular cell proliferation is controlled by MIR221/MIR222-driven post-transcriptional regulation of P27KIP1 and P57KIP2. These data add further insight to the possible contribution of miRNAs in vascular damage mediated by a high-glucose environment.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.