4.7 Article

The LEAFY floral regulator displays pioneer transcription factor properties

期刊

MOLECULAR PLANT
卷 14, 期 5, 页码 829-837

出版社

CELL PRESS
DOI: 10.1016/j.molp.2021.03.004

关键词

flower development; pioneer transcription factor; gene regulation; chromatin remodeling

资金

  1. ANR-DFG project Flopinet [ANR-16-CE92-0023-01]
  2. GRAL, a program from the Chemistry Biology Health (CBH) Graduate School of University Grenoble Alpes [ANR-17-EURE-0003]

向作者/读者索取更多资源

As a pioneer transcription factor, LFY has the ability to bind both methylated and non-methylated DNA, modify chromatin state to initiate gene expression, and induce chromatin accessibility in target genes APETALA1 and AGAMOUS in plant seedling tissues. This study suggests that LFY possesses key pioneer TF features contributing to launching the floral gene expression program.
Pioneer transcription factors (TFs) are a special category of TFs with the capacity to bind to closed chromatin regions in which DNA is wrapped around histones and may be highly methylated. Subsequently, pioneer TFs are able to modify the chromatin state to initiate gene expression. In plants, LEAFY (LFY) is a master floral regulator and has been suggested to act as a pioneer TF in Arabidopsis. Here, we demonstrate that LFY is able to bind both methylated and non-methylated DNA using a combination of in vitro genome-wide binding experiments and structural modeling. Comparisons between regions bound by LFY in vivo and chromatin accessibility data suggest that a subset of LFY bound regions is occupied by nucleosomes. We confirm that LFY is able to bind nucleosomal DNA in vitro using reconstituted nucleosomes. Finally, we show that constitutive LFY expression in seedling tissues is sufficient to induce chromatin accessibility in the LFY direct target genes APETALA1 and AGAMOUS. Taken together, our study suggests that LFY possesses key pioneer TF features that contribute to launching the floral gene expression program.

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