Liquid-liquid phase separation of florigen activation complex induces flowering
Taoka, K.-i.; Tsuji, H.; Anzawa, S.; Enomoto, M.; Koizumi, Y.; Nakamura, J.; Tanaka, M.; Fujita, A.; Furuita, K.; Kodama, T. S.; Fujimoto, M.; Kurokawa, K.; Okamoto, T.; Fujiwara, T.; Nakano, A.; Kojima, C.
Show abstract
Floral transition, regulated by the systemic action of the mobile florigen protein FLOWERING LOCUS T (FT), is essential for successful plant reproduction1. How FT controls downstream gene expression remains incompletely understood, although it relies on the florigen activation complex (FAC), a core component of FT function2-4. The FAC is a nucleus-localized transcriptional activator of genes encoding MADS-box transcription factors critical to reproductive development and consists of florigen FT; a scaffold 14-3-3 protein that is a key component for complex assembly; and FD, a basic leucine-zipper protein that recruits the FAC to DNA. Here we report that the FAC exhibits phase separation. In rice shoot apical meristem cells, rice florigen Heading date 3a (Hd3a) fused to the green fluorescent protein formed speckles in the nucleus. The FAC speckle is formed in a FAC-dependent manner in tobacco cells. Recombinant Hd3a, but not OsFD1, phase-separated in vitro, and this effect was enhanced in the presence of 14-3-3 protein. Furthermore, mutations affecting functionally important residues in the pocket region or C-terminal disordered region of Hd3a affected FAC phase separation, providing a biochemical framework for the proteins effect on flowering. The ability to form condensates via phase transition represents a previously unknown mechanism for gene activation by the FAC.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A pair of readers of histone H3K4 methylation recruit Polycomb repressive complex 2 to regulate photoperiodic flowering 96%
- The O-Fucosyltransferase SPINDLY Attenuates Auxin-Induced Fruit Growth by Inhibiting ARF6 and ARF8 binding to Coactivator Mediator Complex in Arabidopsis 96%
- Arabidopsis ACINUS is O-glycosylated and regulates transcription and alternative splicing of regulators of reproductive transitions 96%
Similar papers in this journal
Similar papers in this journal
- S1 basic leucine zipper transcription factors shape plant architecture by controlling C/N partitioning to apical and lateral organs 96%
- PIEZO ion channel is required for root mechanotransduction in Arabidopsis thaliana 95%
- An AINTEGUMENTA phospho-switch controls bilateral stem cell activity during secondary growth 95%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.