全能的
母子转换
生物
染色质
遗传学
细胞生物学
胚胎干细胞
合子
转录因子
抄写(语言学)
蛋白质亚单位
功能(生物学)
胚胎发生
RNA聚合酶Ⅱ
转录调控
组蛋白
基因表达调控
核酸内切酶
机制(生物学)
表观遗传学
先锋因素
胚胎
作者
Liangliang Wang,Yiru Wang,Yaqi Miao,Yuan Song,Jialiang Zhou,Yuanxiang Zhu,Ying Cheng,Wenxin Zhang,Qinmiao Sun,Fan Lai,Guoqiang Zhang,Dahua Chen
标识
DOI:10.1073/pnas.2531899123
摘要
Zygotic genome activation (ZGA) marks the first transcriptional milestone and establishes embryonic totipotency. Although pioneer factors have been reported to initiate this process, how chromatin is primed for the totipotent state, allowing the binding of pioneer factors for successful ZGA, remains unclear. Here, we identify IntS11, the catalytic subunit of the Integrator complex, as a totipotent determinant of embryonic chromatin governing ZGA in Drosophila . We show that IntS11 functions upstream of pioneer factors in early embryos: Maternal IntS11 depletion substantially impairs RNA polymerase II (Pol II) recruitment, thereby preventing pioneer factors Zelda and GAGA factor (GAF) from accessing regulatory elements and initiating genome-wide zygotic transcription. Mechanistically, IntS11 exerts dual roles: its canonical endonuclease activity is required to sustain major-wave zygotic transcription, while a distinct enzyme-independent function drives de novo Pol II loading and pioneer factor engagement. These findings uncover a fundamental maternal-specific mechanism whereby IntS11 establishes transcriptional competence, ensuring totipotent chromatin states and successful ZGA.
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