Skip to content
Review Open access

Type VI secretion systems at the interface between bacteria and eukaryotic cells

Sep 2026 · Genetics and Molecular Biology · Vol 49 · 0 citations · 106 references
Medicine

TL;DR

This review summarizes recent advances in the study of T6SSs that target eukaryotic cells, highlighting their roles in virulence, resistance to environmental predators, and microbial competition, and discusses T6SS-mediated interactions with protozoan predators, fungi, animal hosts and plants.

Abstract

Abstract Bacterial type VI secretion systems (T6SSs) are molecular devices that traverse the bacterial envelope and mediate the translocation of protein effectors directly into prokaryotic or eukaryotic cells, thereby interfering with diverse cellular processes in target organisms. T6SSs involved in interbacterial competition have been widely described and functionally characterized, together with a remarkable arsenal of cognate toxins. In contrast, comparatively less is known about anti-eukaryotic T6SSs. This review summarizes recent advances in the study of T6SSs that target eukaryotic cells, highlighting their roles in virulence, resistance to environmental predators, and microbial competition. We discuss T6SS-mediated interactions with protozoan predators, fungi, animal hosts and plants, emphasizing the expanding repertoire of T6SS effectors that modulate conserved eukaryotic pathways. Together, these findings reveal the ecological and pathogenic relevance of T6SS-driven trans-kingdom interactions.

Read PDF

Similar papers

Open access Sep 2026

Regulation of Type VI Secretion Systems of Burkholderia during transition to intracellular lifestyle.

Pathogenic bacteria tightly regulate gene expression in response to environmental cues. In Burkholderia species, the Type VI Secretion Systems (T6SS) mediate interbacterial competition and host cell interactions. Here, we show that B. thailandensis switches from the anti-bacterial T6SS-1 to the anti-eukaryotic T6SS-5 d...

H. Cheung, Daria Jacqueline Wüst, M. Plum et al. · 0 citations
Review Open access Aug 2026

Functional diversity of accessory factors of the type VI secretion system

This review discusses several of the better-studied TAGs, as well as highlight under-researched TAGs that are likely of great significance and present the following six functional categories: Firing Coordinators, Target Recognition Factors, Structural Factors, Transcriptional Regulators, Secretion Regulators, and Unkno...

C. Latario, Benjamin D. Ross · 0 citations
Open access Sep 2026

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

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...

Long Lin, Zhi-Yuan Zhang, Hong-Da Fang et al. · 0 citations
Sep 2026

Experimental evolution reveals genetic routes for adaptive loss of the antibacterial type VI secretion system.

This work combined experimental evolution with whole-genome sequencing and whole-genome sequencing identified two RfaH-binding ops elements within the sci1 cluster, revealing antitermination as a regulatory element of EAEC T6SS transcription, which is conserved among Enterobacteriaceae.

Boris Taillefer, Jonas B. Desjardins, Eric Cascales · 0 citations
Review Open access Sep 2026

Coordination of quorum sensing with T3SS and T6SS: Bacterial strategies for combating fungal pathogens

ABSTRACT Bacterial-fungal interactions are essential for ecosystem balance, where secretion systems like the Type III Secretion System (T3SS) and Type VI Secretion System (T6SS) play crucial roles. T6SS acts as a multifunctional weapon by delivering antifungal effectors that disrupt fungal cell integrity and metabolism...

Yuan-Yuan Ma, An-Min Ren, Xiao-Lei Ji et al. · 0 citations
Open access Aug 2026

The Type VI secretion effector TpeX expands the pore-forming virulence arsenal of Pseudomonas aeruginosa

TpeX is identified as a bactericidal, colicin-like pore-forming T6SS effector whose membrane activity is controlled by a cognate immunity protein, thereby expanding the repertoire of membrane-targeting weapons used by P. aeruginosa in interbacterial competition.

Chantal Soscia, Sébastien Reig, D. Lefebvre et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.