Phase-variable expression of a family of glycoproteins imparts a dynamic surface to a symbiont in its human intestinal ecosystem
- 13 February 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (7) , 2413-2418
- https://doi.org/10.1073/pnas.0608797104
Abstract
The recent report of the synthesis of glycoproteins by the abundant intestinal symbionts Bacteroides showed that these organisms use a novel bacterial enzyme to decorate their surfaces with a sugar residue derived from their environment. As a first step in understanding the importance of these glycoproteins to the bacteria and to the bacterial-host symbiosis, we identified and characterized the abundant glycoproteins of Bacteroides distasonis (proposed reclassification as Parabacteroides distasonis) [Sakamoto M, Benno Y (2006) Int J Syst Evol Microbiol 56:1599-1605]. Using lectin-affinity purification followed by tandem mass spectrometry, we identified a family of at least nine glycoproteins, similar only to the S-layer glycoproteins of Tannerella forsythia. Analysis of one of these purified glycoproteins demonstrated that the glycan is primarily a polymer of xylose, a monosaccharide rarely found in bacterial glycans. Even more unexpected was the finding that seven of nine of the glycoprotein promoters undergo DNA inversion, a process that we show is active in their endogenous human environment. Using cross-species functional assays, we show that a single serine family site-specific recombinase globally mediates the inversions of these glycoprotein promoters. This regulatory mechanism is similar to that of the Bacteroides fragilis capsular polysaccharides and establishes DNA inversion as a general and ancient means of regulation of glycan-containing surface molecules of these important human intestinal symbionts.Keywords
This publication has 15 references indexed in Scilit:
- Identification and characterization of the genes encoding a unique surface (S-) layer of Tannerella forsythiaGene, 2006
- An Immunomodulatory Molecule of Symbiotic Bacteria Directs Maturation of the Host Immune SystemCell, 2005
- Human Symbionts Use a Host-Like Pathway for Surface FucosylationScience, 2005
- Multiple inverted DNA repeats of Bacteroides fragilis that control polysaccharide antigenic variation are similar to the hin region inverted repeats of Salmonella typhimuriumMicrobiology, 2003
- A Genomic View of the Human- Bacteroides thetaiotaomicron SymbiosisScience, 2003
- Extensive surface diversity of a commensal microorganism by multiple DNA inversionsNature, 2001
- Analysis ofcepAand otherBacteroides fragilisgenes reveals a unique promoter structureFEMS Microbiology Letters, 2000
- Bacteroides fragilisNCTC9343 Produces at Least Three Distinct Capsular Polysaccharides: Cloning, Characterization, and Reassignment of Polysaccharide B and C Biosynthesis LociInfection and Immunity, 2000
- EditorialMethods, 1994
- Heterologous gene expression in Bacteroides fragilisPlasmid, 1992