Structural homology reveals cerato-platanins as conserved antimicrobials repeatedly co-opted for fungal host colonization
Kraege, A.; Wolf, V.; Mesny, F.; Petti, G.; Liu, S.; Zhu, J.; Nielsen, O.; Busch, N.; Thomma, B.
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Fungal cerato-platanins (CPs) are small ([~]12 kDa) secreted proteins broadly conserved across filamentous fungi and implicated in a striking diversity of biological processes, ranging from fungal development to interactions with plant hosts. However, a core molecular activity unifying these diverse functions has remained elusive. Fungal pathogens secrete effector proteins, including CPs, to manipulate host physiology and promote colonization. Increasing evidence demonstrates that particular fungal effectors possess antimicrobial activity that enables pathogens to reshape host-associated microbiota during infection, and that antimicrobial activity is strongly enriched among evolutionarily conserved secreted proteins. These findings suggests that intermicrobial competition represents an ancient and fundamental fungal trait, and that several effectors that manipulate plant hosts evolved from ancient antimicrobials. Here, we identify antimicrobial activity as the conserved core function of the CP family, from which diverse roles in environmental adaptation and host interaction evolved. Structural analysis of the Verticillium dahliae secretome identified a structural cluster containing the CP protein CP1 and the previously characterized antimicrobial effector Ave1, providing the first structural link between CPs and antimicrobial activity. Accordingly, functional assays demonstrate that V. dahliae CPs exhibit selective antimicrobial activity in vitro. Expanding this analysis to a wide diversity of phylogenetic lineages and ecological lifestyles revealed that antimicrobial features are broadly conserved across the CP family. Together, our findings identify antimicrobial activity as an ancient and conserved molecular function that unifies the CP family and support a model in which host-manipulating effector functions evolved from ancestral proteins that mediate inter-microbial competition.
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