细胞生物学
胚泡
调节器
生物
卵裂球
合子
胚胎干细胞
RNA剪接
全能的
选择性拼接
胚胎
胚胎发生
转录组
母子转换
细胞周期
基因
囊胚
转录因子
基因表达调控
微量注射
体细胞
卵母细胞
遗传学
胎盘形成
劈理(地质)
下调和上调
基因亚型
生殖系
重编程
抄写(语言学)
细胞分化
基因表达
基因组印记
作者
Kang Zhao,Tingyu Han,Yanli Cheng,Yi‐Dan Zhang,Yu-Wei Zhang,Jinjian Guo,Shaojun Zhang,Wenze Huang,Jing Zhang,Pei‐Yu Liao,Ying Xin,ChuanChen Chu,Qing‐Yuan Sun,Zhizhen Liu,Xiang‐Hong Ou,Jun Xie
摘要
During early mammalian embryogenesis, totipotent zygotes and early blastomeres undergo extensive post-transcriptional regulation during the establishment of the first cell lineages; however, the functional contribution of alternative splicing to embryonic compaction and blastulation remains poorly understood. Here, we show that SF3B1, a core component of the spliceosome, is upregulated from the 4-cell stage and mediates highly dynamic splicing programs. Depletion of SF3B1 results in developmental arrest at the morula stage, accompanied by widespread transcriptomic dysregulation characterized by aberrant expression of transcription factors that impede pluripotency transition. Alternative splicing analysis further identifies that aberrantly spliced transcripts were significantly enriched in genes involved in cell cycle regulation, such as Cdk11b and Ccnb1. Importantly, we demonstrate that SF3B1 undergoes intrinsic, IDR-driven liquid-liquid phase separation both in vitro and in vivo, forming nuclear condensates in oocytes and early embryos, which is essential for successful development to the blastocyst stage. Together, our findings reveal that phase separation mediated SF3B1 splicing activity is a critical regulator of early mouse embryonic development.
科研通智能强力驱动
Strongly Powered by AbleSci AI