Jan 2026· Journal of Ophthalmology· Vol 2026· 0 citations· 30 references
Medicine
TL;DR
It is demonstrated that the circMETTL3/miR‐100/BMPR2 axis plays a vital regulatory role in AMD development.
Abstract
Background Age‐related macular degeneration (AMD) is a common degenerative eye disease that eventually leads to irreversible vision loss. CircRNAs have received increasing attention for their regulatory role in AMD. In this study, whole transcriptome sequencing identified differentially expressed circRNA (circMETTL3) in AMD. Previous studies have unlocked the potential mechanism of circMETTL3 in cancer, but its role in AMD has not been studied. Methods ARPE‐19 cells treated with H2O2 were used as the AMD cell model. The senescence, oxidative stress, and DNA damage of ARPE‐19 cells were determined by SA‐β‐gal staining, DCFH‐DA staining, and IF assay. The levels of RPE‐specific markers or mRNA levels were assessed using western blot assay. The potential mechanism of circMETTL3 was investigated by luciferase reporting assay and RIP assay. Results CircMETTL3 was revealed to decrease in AMD cell models. The addition of circMETTL3 decreased SA‐β‐gal staining and ROS production and facilitated cell viability in H2O2‐treated ARPE‐19 cells. Moreover, γH2AX and KRT18 levels were suppressed, and TJP1, BEST1, and CTNNB1 protein levels were increased by circMETTL3 addition. In addition, circMETTL3 could bind to and negatively regulate miR‐100. Overexpression of miR‐100 exacerbated senescence, oxidative stress, and DNA damage in H2O2‐treated ARPE‐19 cells, which reversed the effects of circMETTL3. Furthermore, BMPR2 was targeted by miR‐100. Overexpression of BMPR2 inhibited H2O2‐induced cell damage in ARPE‐19 cells, which reversed the effects of miR‐100. Conclusions In sum, these findings demonstrated that the circMETTL3/miR‐100/BMPR2 axis plays a vital regulatory role in AMD development.
The cKIAA1462/miR-183-5p/HMGB1 axis plays a critical role in diabetic RPE injury by dual regulation of autophagy and pyroptosis by targeting this pathway may offer a novel therapeutic strategy for early diabetic retinopathy.
Lufei Wang, Jia’nan Xie, Longfei Yang et al.· Journal of Translational Med...· 0 citations
Gastric cancer (GC) is a major global digestive malignancy with high incidence and mortality. Circular fanconi anemia complementation group B (circFANCB) expression is elevated in cancer, and its suppression suppresses tumor progression. However, research on the function of circFANCB in GC has not been reported yet. The role and mechanism of circFANCB in GC were investigated through circular RNA (circRNA) sequencing, database prediction, and experimental validation, including quantitative real‐time PCR (qRT‐PCR), ribonuclease R assay, nuclear‐cytoplasmic fractionation, 5‐ethynyl‐2′‐deoxyuridine assay, flow cytometry, wound healing assay, Transwell assay, tube formation assay, western blot, dual‐luciferase reporter assay, and enzyme‐linked immunosorbent assay. Furthermore, its mechanism was further explored in vivo using a xenograft nude mouse model and immunohistochemistry. Online prediction tools, methylation‐dependent RNA immunoprecipitation (MeRIP), and RNA immunoprecipitation (RIP) assays were employed to investigate whether methyltransferase‐like protein 3 (METTL3) targeted circular FANCB (circFANCB) via m6A methylation. In GC, circFANCB expression was upregulated. Knockdown of circFANCB inhibited cell proliferation, migration, invasion, and angiogenesis while promoting cell death. CircFANCB increased CEACAM5 expression by binding to miR‐454‐3p. CEACAM5 suppressed ferroptosis in GC cells. Rescue experiments confirmed that circFANCB inhibited ferroptosis by upregulating CEACAM5, thereby promoting GC cell proliferation. Animal models demonstrated that circFANCB knockdown inhibited GC tumor growth. Additionally, METTL3 enhanced circFANCB expression through m6A methylation. Rescue experiments further confirmed that METTL3 promotes the malignant phenotype of GC cells by upregulating circFANCB. The m6A‐modified circFANCB promotes the malignant progression of GC by regulating ferroptosis via the miR‐454‐3p/CEACAM5 axis, providing a theoretical basis for potential clinical therapeutic strategies.
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The FOXO6–SMURF2–NR4A1–NR4A1 axis critically regulates ferroptosis in RPE cells during DR, and this interaction critically regulates ferroptosis in RPE cells during DR.
Qiao Chen, Bo Su, Ke Xu et al.· Journal of cell communicatio...· 0 citations
Adenovirus-mediated knockdown of circRNA_013145 significantly improved erectile function and alleviated cavernosal pathological injury in DMED rats, as evidenced by an increased intracavernosal pressure (ICP)/mean arterial pressure (MAP) ratio, enhanced CD31 expression and reduced collagen deposition.
Wenhan Huang, Xin Lv, Jiahua Qian et al.· International Journal of Mol...· 0 citations