转录因子
染色质
生物
先锋因素
多叶的
AP-1转录因子
核小体
细胞命运测定
细胞生物学
重编程
遗传学
植物
DNA
基因
作者
Run Jin,Samantha Klasfeld,Yang Zhu,Meilín Fernández García,Jun Xiao,Soon‐Ki Han,Adam Konkol,Doris Wagner
标识
DOI:10.1038/s41467-020-20883-w
摘要
Master transcription factors reprogram cell fate in multicellular eukaryotes. Pioneer transcription factors have prominent roles in this process because of their ability to contact their cognate binding motifs in closed chromatin. Reprogramming is pervasive in plants, whose development is plastic and tuned by the environment, yet little is known about pioneer transcription factors in this kingdom. Here, we show that the master transcription factor LEAFY (LFY), which promotes floral fate through upregulation of the floral commitment factor APETALA1 (AP1), is a pioneer transcription factor. In vitro, LFY binds to the endogenous AP1 target locus DNA assembled into a nucleosome. In vivo, LFY associates with nucleosome occupied binding sites at the majority of its target loci, including AP1. Upon binding, LFY 'unlocks' chromatin locally by displacing the H1 linker histone and by recruiting SWI/SNF chromatin remodelers, but broad changes in chromatin accessibility occur later. Our study provides a mechanistic framework for patterning of inflorescence architecture and uncovers striking similarities between LFY and animal pioneer transcription factor.
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