ArticleJournal of neuroinflammation2024
m6A-methylase METTL3 promotes retinal angiogenesis through modulation of metabolic reprogramming in RPE cells.
Article in Journal of neuroinflammation, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- The m 6 A writer VIRMA regulates the developmental elimination of retinal astrocytes and retinal vascular integrity maintenance.Neural regeneration research · 2026Article
- A Rare De Novo Missense Mutation in IFT122 Confers a Genetic Susceptibility Factor of Idiopathic Pediatric Uveitis Via Trio-based Whole-Exome Sequencing.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Deep-ZOMA: A Deep Learning-Based Approach for Automated Morphometric Analysis of Zebrafish Larvae Ocular Structures.Translational vision science & technology · 2026Article
- N6-methyladenosine (m6A) methylation in adipose tissue: role, regulation, and therapeutic potential.Cellular and molecular life sciences : CMLS · 2026Review
- ALKBH5 promotes gastric cancer angiogenesis by stabilizing LncRNA PVT1 and VEGFA RNAs via m6A demethylation.Molecular and cellular biochemistry · 2026Article
- Novel MAFG-METTL14-SCD1 axis regulates lipid metabolism mediating choroidal melanoma distant metastasis.Journal of experimental & clinical cancer research : CR · 2025Article
- Role of m6A RNA methylation regulators in pancreatic cancer: interactions and potential implications.Cancer cell international · 2025Review
- Multi-omics integration reveals the role of N6-methyladenosine in epilepsy, ischemic stroke, and vascular dementia.Molecular brain · 2025Article
- BARD1-mediated stabilization of METTL14 promotes retinal neovascularization by m6A-modifying MXD1 mRNA on a YTHDF2-dependent manner.Theranostics · 2025Article
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Authors and funding
15 authors.
Funding
Abstract
Retinal neovascularization (RNV) disease is one of the leading causes of blindness, yet the molecular underpinnings of this condition are not well understood. To delve into the critical aspects of cell-mediated angiogenesis, we analyzed our previously published single-cell data. Our analysis revealed that retinal pigment epithelium (RPE) cells serve a crucial promotional function in angiogenesis. RPE cells were regulated by N6-methyladenosine (m6A). Next, we detected several critical m6A methylase in hypoxic ARPE-19 cells and in oxygen-induced retinopathy (OIR) mice, our results revealed a significant decrease in the level of methyltransferase like 3 (METTL3). METTL3 specific inhibitor STM2457 intravitreal injection or METTL3 conditional knockout mice both showed a significantly reduced neovascularization area of retina. Additionally, the angiogenesis-related abilities of human retinal endothelial cells (HRECs) were diminished after co-cultured with ARPE-19 treated with STM2457 or sh-METTL3 in vitro. Furthermore, through the integration of Methylated RNA immunoprecipitation (MeRIP) sequencing and RNA sequencing, we discovered that the metabolic enzyme quinolinate phosphoribosyltransferase (QPRT) was directly modified by METTL3 and recognized by the YTH N6-methyladenosine RNA binding protein C1 (YTHDC1). Moreover, after over-expressing QPRT, the angiogenic abilities of HRECs were improved through the phosphorylated phosphatidylinositol-3-kinase (p-PI3K)/ phosphorylated threonine kinase (p-AKT) pathway. Collectively, our study provided a novel therapeutic target for retinal angiogenesis.
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