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A family of bacteriocin ABC transporters carry out proteolytic processing of their substrates concomitant with export

Molecular Microbiology · 1995 · Vol. 16(2) · pp. 229–240
Leiv Sigve HåvarsteinDzung B. DiepIngolf F. Nes

Abstract

Lantibiotic and non-lantibiotic bacteriocins are synthesized as precursor peptides containing N-terminal extensions (leader peptides) which are cleaved off during maturation. Most non-lantibiotics and also some lantibiotics have leader peptides of the so-called double-glycine type. These leader peptides share consensus sequences and also a common processing site with two conserved glycine residues in positions -1 and -2. The double-glycine-type leader peptides are unrelated to the N-terminal signal sequences which direct proteins across the cytoplasmic membrane via the sec pathway. Their processing sites are also different from typical signal peptidase cleavage sites, suggesting that a different processing enzyme is involved. Peptide bacteriocins are exported across the cytoplasmic membrane by a dedicated ATP-binding cassette (ABC) transporter. Here we show that the ABC transporter is the maturation protease and that its proteolytic domain resides in the N-terminal part of the protein. This result demonstrates that the ABC transporter has a dual function: (i) removal of the leader peptide from its substrate, and (ii) translocation of its substrate across the cytoplasmic membrane. This represents a novel strategy for secretion of bacterial proteins.

Probiotics and Fermented FoodsBacterial Genetics and BiotechnologyGenomics and Phylogenetic StudiesATP-binding cassette transporterLantibioticsSignal peptideBiologyBiochemistryBacteriocinPeptideSignal peptidaseTransporterCytoplasm

MeSH terms

Amino Acid SequenceBacteriocinsBase SequenceBiological TransportEscherichia coliGenes, BacterialMolecular Sequence DataProtein PrecursorsRecombinant ProteinsSubstrate SpecificityTranscriptional ActivationSequence AlignmentConserved SequencePoint MutationSequence Homology, Amino Acid
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Proceedings of the National Academy of Sciences · 1977 · 69,196 citations
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Analytical Biochemistry · 1990 · 86,156 citations
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