Cryo-EM structure of the conjugation H-pilus reveals the cyclic nature of the TrhA pilin

N Naito Ishimoto (Rutherford Appleton Laboratory, Research Complex at Harwell) J Joshua L. C. Wong (Department of Life Sciences, Imperial College London) S Shan He (Department of Chemistry, The Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, State Key Laboratory of Nervous System Disorder, Division of Life Science, and Department of Chemical and Biological Engineering) S Sally Shirran (Biomedical Sciences Research Complex Mass Spectrometry & Proteomics Facility, University of St Andrews) O Olivia Wright-Paramio (Department of Life Sciences, Imperial College London) C Chloe Seddon (Rutherford Appleton Laboratory, Research Complex at Harwell) N Nanki Singh (Rutherford Appleton Laboratory, Research Complex at Harwell) C Carlos Balsalobre (Department de Genètica, Microbiologia i Estadística, Facultat de Biologia, Universitat de Barcelona) R Ravi R. Sonani (Department of Biochemistry and Molecular Genetics) A Abigail Clements (Rutherford Appleton Laboratory, Research Complex at Harwell) E Edward H. Egelman (Department of Biochemistry and Molecular Genetics) G Gad Frankel (Department of Life Sciences, Imperial College London) K Konstantinos Beis (Rutherford Appleton Laboratory, Research Complex at Harwell)

Abstract

Conjugation, the major driver of the spread of antimicrobial resistance genes, relies on a conjugation pilus for DNA transfer. Conjugative pili, such as the F-pilus, are dynamic tubular structures, composed of a polymerized pilin, that mediate the initial donor–recipient interactions, a process known as mating pair formation (MPF). IncH are low-copy-number plasmids, traditionally considered broad host range, which are found in bacteria infecting both humans and animals. The reference IncHI1 plasmid R27, isolated from Salmonella enterica serovar Typhi, encodes the conjugative H-pilus subunit TrhA containing 74 residues after cleavage of the signal sequence. Here, we show that the H-pilus forms long filamentous structures that mediate MPF and describe its cryoelectron-microscopic (cryo-EM) structure at 2.2 Å resolution. Like the F pilus, the H-pilin subunits form helical assemblies with phospholipid molecules at a stoichiometric ratio of 1:1. While there were previous reports that the T-pilus from Agrobacterium tumefaciens was composed of cyclic subunits, three recent cryo-EM structures of the T-pilus found no such cyclization. Here, we report that the H-pilin is cyclic, with a covalent bond connecting the peptide backbone between the N and C termini. Both the cryo-EM map and mass spectrometry revealed cleavage of the last five residues of the pilin, followed by cyclization via condensation of the amine and carboxyl residues. Mutagenesis experiments revealed that loss of cyclization abolished pilus biogenesis and efficient plasmid transfer. The cyclic nature of the pilin could stabilize the pilus and may explain the high incidence of IncH plasmid dissemination.

Article Details

Volume / Issue Vol. 122, Issue 16
Published April 22, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

N

Naito Ishimoto

Rutherford Appleton Laboratory, Research Complex at Harwell

J

Joshua L. C. Wong

Department of Life Sciences, Imperial College London

S

Shan He

Department of Chemistry, The Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, State Key Laboratory of Nervous System Disorder, Division of Life Science, and Department of Chemical and Biological Engineering

S

Sally Shirran

Biomedical Sciences Research Complex Mass Spectrometry & Proteomics Facility, University of St Andrews

O

Olivia Wright-Paramio

Department of Life Sciences, Imperial College London

C

Chloe Seddon

Rutherford Appleton Laboratory, Research Complex at Harwell

N

Nanki Singh

Rutherford Appleton Laboratory, Research Complex at Harwell

C

Carlos Balsalobre

Department de Genètica, Microbiologia i Estadística, Facultat de Biologia, Universitat de Barcelona

R

Ravi R. Sonani

Department of Biochemistry and Molecular Genetics

A

Abigail Clements

Rutherford Appleton Laboratory, Research Complex at Harwell

E

Edward H. Egelman

Department of Biochemistry and Molecular Genetics

G

Gad Frankel

Department of Life Sciences, Imperial College London

K

Konstantinos Beis

Rutherford Appleton Laboratory, Research Complex at Harwell