Scinovex
review Open AccessTop 1% cited

F factor conjugation is a true type IV secretion system

FEMS Microbiology Letters · 2003 · Vol. 224(1) · pp. 1–15
Trevor D. LawleyWilliam KlimkeMichael J. GubbinsLaura S. Frost

Abstract

The F sex factor of Escherichia coli is a paradigm for bacterial conjugation and its transfer (tra) region represents a subset of the type IV secretion system (T4SS) family. The F tra region encodes eight of the 10 highly conserved (core) gene products of T4SS including TraAF (pilin), the TraBF, -KF (secretin-like), -VF (lipoprotein) and TraCF (NTPase), -EF, -LF and TraGF (N-terminal region) which correspond to TrbCP, -IP, -GP, -HP, -EP, -JP, DP and TrbLP, respectively, of the P-type T4SS exemplified by the IncP plasmid RP4. F lacks homologs of TrbBP (NTPase) and TrbFP but contains a cluster of genes encoding proteins essential for F conjugation (TraFF, -HF, -UF, -WF, the C-terminal region of TraGF, and TrbCF) that are hallmarks of F-like T4SS. These extra genes have been implicated in phenotypes that are characteristic of F-like systems including pilus retraction and mating pair stabilization. F-like T4SS systems have been found on many conjugative plasmids and in genetic islands on bacterial chromosomes. Although few systems have been studied in detail, F-like T4SS appear to be involved in the transfer of DNA only whereas P- and I-type systems appear to transport protein or nucleoprotein complexes. This review examines the similarities and differences among the T4SS, especially F- and P-like systems, and summarizes the properties of the F transfer region gene products.

Escherichia coli research studiesBacterial Genetics and BiotechnologyVibrio bacteria research studiesBacterial conjugationPilusPlasmidSecretionGeneEscherichia coliPilinBiologyGeneticsChemistry

MeSH terms

Amino Acid SequenceConjugation, GeneticEscherichia coliF FactorMolecular Sequence DataPhylogeny
Citations
419
FWCI
11.81
field-weighted impact
References
112
Percentile
99%
vs. same field & year
Citations per year
Cited by
Mobile genetic elements: the agents of open source evolution
Nature Reviews Microbiology · 2005 · 1,796 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.