磷酸化
福克斯A1
有丝分裂
基因
生物
遗传学
极光激酶B
细胞生物学
化学
基因表达
染色体
动细胞
作者
Qian Zhang,Shuaiyu Liu,Olanrewaju Ayodeji Durojaye,Fangyuan Xiong,Zhiyou Fang,Tahir Ullah,Chuanhai Fu,Bo Sun,Hao Chen,Peng Xia,Zhikai Wang,Xuebiao Yao,Xing Liu
出处
期刊:Cell Reports
[Elsevier]
日期:2024-09-01
卷期号:43 (9): 114739-114739
标识
DOI:10.1016/j.celrep.2024.114739
摘要
FOXA1 serves as a crucial pioneer transcription factor during developmental processes and plays a pivotal role as a mitotic bookmarking factor to perpetuate gene expression profiles and maintain cellular identity. During mitosis, the majority of FOXA1 dissociates from specific DNA binding sites and redistributes to non-specific binding sites; however, the regulatory mechanisms governing molecular dynamics and activity of FOXA1 remain elusive. Here, we show that mitotic kinase Aurora B specifies the different DNA binding modes of FOXA1 and guides FOXA1 biomolecular condensation in mitosis. Mechanistically, Aurora B kinase phosphorylates FOXA1 at Serine 221 (S221) to liberate the specific, but not the non-specific, DNA binding. Interestingly, the phosphorylation of S221 attenuates the FOXA1 condensation that requires specific DNA binding. Importantly, perturbation of the dynamic phosphorylation impairs accurate gene reactivation and cell proliferation, suggesting that reversible mitotic protein phosphorylation emerges as a fundamental mechanism for the spatiotemporal control of mitotic bookmarking.
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