染色质
细胞生物学
转录因子
先锋因素
转录组
抄写(语言学)
卵泡期
下调和上调
生物
异染色质
转录调控
配子
基因表达调控
表观遗传学
排卵
遗传学
基因表达
基因
组蛋白
细胞
芯片排序
性染色质
细胞核
隐色素
染色质免疫沉淀
作者
Hongyong Zhang,Zechen Li,Yanmei Zhu,Wencong Lyu,Wenlu Wei,Haochen Wang,Shuangjie Tian,Yue Wei,Jianfeng Zhong,Qing‐Yuan Sun,Yiting Guan
标识
DOI:10.1038/s41467-025-64009-6
摘要
Granulosa cells (GCs) are the most dynamically responsive cell lineage to encourage continuous folliculogenesis; however, developmental dynamics and interplay with downstream transcription circuitry remain unclear. Here, we unravel the redistribution of genome-wide chromatin areas that drive broad developmental-related transcriptomic alterations during follicular maturation in murine and porcine GCs. Distinct GC-activated accessibility regions (GAAs) at the ovulatory phase are responsible for augmenting flanking GC-involved developmental gene (GDG) expression, which are essential for transcriptional responses to developmental cues. Mechanistically, the transcription factor Fosl2 is strongly recruited to GAAs, facilitating chromatin accessibility state transition. Elevated GAA signals driven by Fosl2 loading induce a significant upregulation of adjacent GDG expression. Additionally, GC-specific Fosl2 deletion in mice perturbs GC cellularity, leading to subfertility related to reproductive aging. Together, we highlight a dynamic chromatin accessibility landscape during follicular maturation, revealing the indispensable Fosl2 function not only controls transcriptional activation via a reconfigured chromatin state, but also orchestrates intricate signaling pathways that are fundamental for ovulation and reproduction.
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