分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Light pollution impairs ovarian function via m6A-dependent miR-421-5p processing-mediated clock disruption

Yuhan Zhang, Yong Tan, Jie Chen, Tingting Zhou, Guicheng Xia

Journal:CHRONOBIOLOGY INTERNATIONAL

IF:2.5

DOI:10.1080/07420528.2026.2655702

PMID:

Published:2026-04-14

research field:分子生物学细胞生物学生殖生物学环境健康时间生物学表观遗传学

Abstract

Light pollution disrupts circadian rhythms and impairs ovarian function, but the underlying molecular mechanisms remain unclear. This study investigates whether the METTL14-miR-421-5p-CLOCK axis mediates these effects. Female rats were exposed to normal or continuous light. Estrous cycles, ovarian morphology, and hormone levels were assessed, alongside analysis of METTL14, miR-421-5p, and CLOCK expression. In human KGN granulosa cells, METTL14 was knocked down or overexpressed to examine its role in miR-421-5p maturation, and CLOCK regulation. Cell viability, migration, and apoptosis were measured. Light-exposed rats exhibited disrupted estrous cycles, irregular follicular development, and hormonal imbalance, with a 40% decrease in E2 and a 1.5-fold increase in testosterone. Ovarian m6A levels increased, with upregulated Mettl14 and a 50% reduction in Clock expression. Altered miRNA processing was observed, leading to elevated mature miR-421-5p. Similar phenomena were also observed in rat ovarian granulosa cells. In KGN cells, METTL14 knockdown suppressed m6A methylation and miR-421-5p maturation, thereby increasing CLOCK expression and restoring granulosa cell function. Conversely, METTL14 overexpression exacerbated miR-421-5p-mediated CLOCK suppression and cellular dysfunction. Light pollution upregulates METTL14, enhancing m6A-dependent maturation of miR-421-5p, which post-transcriptionally represses CLOCK. This novel epi-transcriptomic mechanism disrupts steroidogenesis and ovulation, offering new insights for preventing pollution-related reproductive diseases.

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