Discovery and functional characterization of a novel PilV variant in a mcr-1 -positive IncI2 plasmid

ABSTRACT IncI2-type plasmids are major vehicles for the dissemination of mcr-1 . These plasmids encode a type IV secretion system (T4SS) that mediates conjugative transfer and a type IV pilus (T4P) that facilitates mating-pair formation. Shufflon-mediated diversity of tip adhesin PilV of T4P may contribute to the extensive dissemination of IncI2 plasmids. Herein, we identified a novel shufflon segment forming an active new PilV variant from an IncI2 plasmid, which was named PilV-E and was detected in 127 of 501 (25.35%) complete IncI2 plasmids in public databases. We further demonstrated that strains harboring the single PilV-E variant displayed a distinct functional profile, characterized by both robust biofilm formation and high Caco-2 adhesion. Compared with the Δ pilV -shufflon- rci strain, the PilV-E-carrying strain showed increased biofilm formation (OD 590 from 1.50 to 2.60), increased Caco-2 adhesion (0.04% to 5.46%), and increased surface motility (1.20 to 1.87 cm/day). Among all variants, PilV-A' showed the strongest cell adhesion (6.00%), whereas PilV-B' showed the greatest motility (2.54 cm/day). Notably, PilV-E significantly restored conjugation frequency compared with the Δ pilV -shufflon- rci strain and displayed the highest and lowest frequencies when recipients were Escherichia coli (5.23 × 10 −3 ) and Acinetobacter baumannii (4.46 × 10 −8 ), respectively. All findings confirm that PilV-E serves as a novel and key tip adhesin of T4P and plays a crucial role in plasmid conjugation, indicating that the diversity of shufflon-mediated PilV variants has been underestimated and providing insight into the molecular basis for the extensive spread of IncI2 plasmids. IMPORTANCE The plasmid-mediated colistin resistance gene mcr-1 has become a major public health concern because it compromises one of the last-line treatments for multidrug-resistant Gram-negative bacterial infections. IncI2 plasmids are among the most important vehicles for the dissemination of mcr-1 , but the molecular factors that facilitate their efficient transfer remain insufficiently understood. In this study, we identified PilV-E, a novel shufflon-associated type IV pilus tip adhesin encoded by a human-derived IncI2 plasmid, and demonstrated its contribution to bacterial fitness-related phenotypes and conjugative transfer. The prevalence of PilV-E among complete IncI2 plasmids further indicates that this variant has been overlooked in previous studies. These findings expand our understanding of shufflon-mediated PilV diversity and provide new insight into how IncI2 plasmids participate in the efficient dissemination of mcr-1 among diverse bacterial species, including clinically important pathogens.

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Journal
Microbiology Spectrum
Published
2026-09-30
DOI
https://doi.org/10.1128/spectrum.01825-26
Primary Topic
Bacterial Genetics and Biotechnology
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article
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article

Discovery and functional characterization of a novel PilV variant in a mcr-1 -positive IncI2 plasmid

Hongwei Zhou, Yingbo Shen, Congming Wu, Jianzhong Shen et al.
Microbiology Spectrum
Bacterial Genetics and Biotechnology
article

Discovery and functional characterization of a novel PilV variant in a mcr-1 -positive IncI2 plasmid

Hongwei Zhou, Yingbo Shen, Congming Wu, Jianzhong Shen, Yang Wang, Rong Zhang, Yuchen Wu, Jie Yang, Silin Liu, Chen An, Dongyan Shao
article en

Abstract

ABSTRACT IncI2-type plasmids are major vehicles for the dissemination of mcr-1 . These plasmids encode a type IV secretion system (T4SS) that mediates conjugative transfer and a type IV pilus (T4P) that facilitates mating-pair formation. Shufflon-mediated diversity of tip adhesin PilV of T4P may contribute to the extensive dissemination of IncI2 plasmids. Herein, we identified a novel shufflon segment forming an active new PilV variant from an IncI2 plasmid, which was named PilV-E and was detected in 127 of 501 (25.35%) complete IncI2 plasmids in public databases. We further demonstrated that strains harboring the single PilV-E variant displayed a distinct functional profile, characterized by both robust biofilm formation and high Caco-2 adhesion. Compared with the Δ pilV -shufflon- rci strain, the PilV-E-carrying strain showed increased biofilm formation (OD 590 from 1.50 to 2.60), increased Caco-2 adhesion (0.04% to 5.46%), and increased surface motility (1.20 to 1.87 cm/day). Among all variants, PilV-A' showed the strongest cell adhesion (6.00%), whereas PilV-B' showed the greatest motility (2.54 cm/day). Notably, PilV-E significantly restored conjugation frequency compared with the Δ pilV -shufflon- rci strain and displayed the highest and lowest frequencies when recipients were Escherichia coli (5.23 × 10 −3 ) and Acinetobacter baumannii (4.46 × 10 −8 ), respectively. All findings confirm that PilV-E serves as a novel and key tip adhesin of T4P and plays a crucial role in plasmid conjugation, indicating that the diversity of shufflon-mediated PilV variants has been underestimated and providing insight into the molecular basis for the extensive spread of IncI2 plasmids. IMPORTANCE The plasmid-mediated colistin resistance gene mcr-1 has become a major public health concern because it compromises one of the last-line treatments for multidrug-resistant Gram-negative bacterial infections. IncI2 plasmids are among the most important vehicles for the dissemination of mcr-1 , but the molecular factors that facilitate their efficient transfer remain insufficiently understood. In this study, we identified PilV-E, a novel shufflon-associated type IV pilus tip adhesin encoded by a human-derived IncI2 plasmid, and demonstrated its contribution to bacterial fitness-related phenotypes and conjugative transfer. The prevalence of PilV-E among complete IncI2 plasmids further indicates that this variant has been overlooked in previous studies. These findings expand our understanding of shufflon-mediated PilV diversity and provide new insight into how IncI2 plasmids participate in the efficient dissemination of mcr-1 among diverse bacterial species, including clinically important pathogens.

Microbiology Spectrum
Sanya University (CN), Second Affiliated Hospital of Zhejiang University (CN), China Agricultural University (CN), Zhejiang University (CN)
Good health and well-being
Openalex Percentile: Top 12%
Bacterial Genetics and Biotechnology
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