Cryo-EM structure and evolutionary history of the conjugation surface exclusion protein TraT
Abstract
Abstract Conjugation plays a major role in dissemination of antimicrobial resistance genes. Following transfer of IncF-like plasmids, recipients become refractory to a second wave of conjugation with the same plasmid via entry (TraS) and surface (TraT) exclusion mechanisms. Here, we show that TraT from the pKpQIL and F plasmids (TraT pKpQIL and TraT F ) exhibits plasmid surface exclusion specificity. The cryo-EM structures of TraT pKpQIL and TraT F reveal that they oligomerise into decameric champagne bottle cork-like structures, which are anchored to the outer membrane via a diacylglycerol and palmitic acid modified α-helical barrel domain. Unexpectedly, we identify chromosomal TraT homologues from multiple Gram-negative phyla which form numerous divergent lineages in a phylogenetic tree of TraT sequences. Plasmid-associated TraT sequences are found in multiple distinct lineages, including two separate clades incorporating TraT from Enterobacteriaceae IncF/F-like and Legionellaceae F-like plasmids. These findings suggest that different plasmid backbones have acquired and co-opted TraT on independent occasions.
Article Details
Authors (9)
Chloe Seddon
Rutherford Appleton Laboratory, Research Complex at Harwell
Sophia David
Joshua L. C. Wong
Department of Life Sciences, Imperial College London
Naito Ishimoto
Rutherford Appleton Laboratory, Research Complex at Harwell
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
Jonathan Bradshaw
Wen Wen Low
Gad Frankel
Department of Life Sciences, Imperial College London
Konstantinos Beis
Rutherford Appleton Laboratory, Research Complex at Harwell