pipette
ENEnglish

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

Revista con revisión por paresAfirmaciones fuertes, leer con cuidadoDice ser un gran avanceUso en el mundo real

En palabras de los autores

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.

Resultado principalEl resumen no menciona limitaciones.

Apareció: viernes, 25 de septiembre. Science Advances. Revista con revisión por pares.

DOI: 10.1126/sciadv.aeg3743