Structural Evolution of LEAFY Reveals DNA-Mediated Cooperativity and Dimerization Shifts at the Water-to-Land Transition
Verhage, L.; Thevenon, E.; Chahtane, H.; Grandvuillemin, L.; Nanao, M. H.; Dumas, R.; Zubieta, C.; PARCY, F.
Show abstract
The evolution of transcription factor (TF) DNA-binding specificity is a major driver of gene regulatory innovation. Unlike most TFs, which diversify through gene duplication and neofunctionalization, the plant-specific LEAFY (LFY) TF evolved novel binding specificities without extensive duplication. Here, we combine experimental structural determination and biochemical assays to reveal how LFYs dimerization and DNA-binding preferences shifted during the water-to-land transition. We present crystal structures of the LFY DNA-binding domain (DBD) from the hornwort Nothoceros aenigmaticus and the alga Interfilum paradoxum bound to DNA, demonstrating two distinct dimerization mechanisms: one mediated by direct protein-protein interactions and another driven by DNA-mediated cooperativity. In the ancestral state, LFY likely bound DNA as a dimer through DNA-mediated cooperativity, with protein-protein dimerization emerging later, enforcing new DNA-binding preferences. Our findings support a revised evolutionary scenario for LFY, highlighting the dynamic interplay between protein-DNA and protein-protein interactions as key drivers of TF binding specificity. This work deepens our understanding of how structural adaptations in TFs underpin evolutionary transitions in gene regulation.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Evolutionary Dynamics of RuBisCO: Emergence of the Small Subunit and its Impact Through Time 94%
- The cynosure of CtBP: evolution of a bilaterian transcriptional corepressor 94%
- The expansion and diversification of epigenetic regulatory networks underpins major transitions in the evolution of land plants 94%
Similar papers in this journal
- Cryo-EM structures reveal that RFC recognizes both the 3'- and 5'-DNA ends to load PCNA onto gaps for DNA repair 95%
- Comprehensive phylogenetic analysis of the ribonucleotide reductase family reveals an ancestral clade and the role of insertions and extensions in diversification 94%
- CoCoNuTs: A diverse subclass of Type IV restriction systems predicted to target RNA 94%
Similar papers in this journal
- CryoEM structures of human CMG - ATPγS - DNA and CMG - AND-1 complexes 94%
- Yeast Ssd1 is a non-enzymatic member of the RNase II family with an alternative RNA recognition interface 94%
- Binding of the TRF2 iDDR motif to RAD50 highlights a convergent evolutionary strategy to inactivate MRN at telomeres 94%
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.