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A bacterial-killing type IV secretion system as a hidden antifungal device

Long Lin, Zhiyuan Zhang, Hongda Fang, Yicheng Yang, Xiu-Yuan Li, Han Chen, Min Tao, Yuhan Dong, Bingxin Wang, Danyu Shen, Xiaolong Shao, Limin Wang, Jinshui Zheng, Mengcen Wang, Fengquan Liu, Guoliang Qian

Peer-reviewed journalBold claims, read criticallyClaims a big stepReal-world use

In the authors' words

Interkingdom competition between bacteria and fungi in nutrient-limited environments drives microbial community dynamics, yet the molecular mechanisms enabling bacterial dominance during bacterial-fungal interaction remain poorly characterized. This study reveals a paradigm-shifting role for bacterial type IV secretion system (T4SS) by demonstrating that a specialized bacterial-killing T4SS (T4SS BK ) in Lysobacter enzymogenes serves as a universal cross-kingdom antifungal weapon. Combining genetic, biochemical, and bioinformatical approaches, we show that T4SS BK mediates direct contact-dependent suppression of phylogenetically diverse fungi—including unicellular yeasts and filamentous species—through delivery of a conserved deoxyribonuclease effector, LtdD. Structural characterization reveals that LtdD homologs are evolutionarily conserved across T4SS BK -harboring bacterial lineages, suggesting widespread ecological deployment of this antifungal strategy. These findings overturn the classical dogma of T4SS BK as an antibacterial apparatus and establish it as a multifunctional microbial combat system capable of trans-kingdom interference. By elucidating a DNA-targeting mechanism of fungal growth inhibition, our work not only redefines the ecological role of T4SS BK in microbial warfare but also provides a molecular blueprint for engineering DNA-based antifungal therapies.

Main resultThe abstract does not state a limitation.

Appeared: Friday, September 25. Science Advances. Peer-reviewed journal.

DOI: 10.1126/sciadv.aeg3743