Literature DB >> 21606362

Genetic and molecular analyses reveal an evolutionary trajectory for glycan synthesis in a bacterial protein glycosylation system.

Bente Børud1, Raimonda Viburiene, Meredith D Hartley, Berit Smestad Paulsen, Wolfgang Egge-Jacobsen, Barbara Imperiali, Michael Koomey.   

Abstract

Although protein glycosylation systems are becoming widely recognized in bacteria, little is known about the mechanisms and evolutionary forces shaping glycan composition. Species within the genus Neisseria display remarkable glycoform variability associated with their O-linked protein glycosylation (pgl) systems and provide a well developed model system to study these phenomena. By examining the potential influence of two ORFs linked to the core pgl gene locus, we discovered that one of these, previously designated as pglH, encodes a glucosyltransferase that generates unique disaccharide products by using polyprenyl diphosphate-linked monosaccharide substrates. By defining the function of PglH in the glycosylation pathway, we identified a metabolic conflict related to competition for a shared substrate between the opposing glycosyltransferases PglA and PglH. Accordingly, we propose that the presence of a stereotypic, conserved deletion mutation inactivating pglH in strains of Neisseria gonorrhoeae, Neisseria meningitidis, and related commensals, reflects a resolution of this conflict with the consequence of reduced glycan diversity. This model of genetic détente is supported by the characterization of pglH "missense" alleles encoding proteins devoid of activity or reduced in activity such that they cannot exert their effect in the presence of PglA. Thus, glucose-containing glycans appear to be a trait undergoing regression at the genus level. Together, these findings document a role for intrinsic genetic interactions in shaping glycan evolution in protein glycosylation systems.

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Year:  2011        PMID: 21606362      PMCID: PMC3111294          DOI: 10.1073/pnas.1103321108

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  23 in total

1.  The phase-variable allele of the pilus glycosylation gene pglA is not strongly associated with strains of Neisseria gonorrhoeae isolated from patients with disseminated gonococcal infection.

Authors:  P M Power; S C Ku; K Rutter; M J Warren; E A Limnios; J W Tapsall; M P Jennings
Journal:  Infect Immun       Date:  2007-02-12       Impact factor: 3.441

2.  Identification and characterization of pilG, a highly conserved pilus-assembly gene in pathogenic Neisseria.

Authors:  T Tønjum; N E Freitag; E Namork; M Koomey
Journal:  Mol Microbiol       Date:  1995-05       Impact factor: 3.501

3.  Anti-Gal binds to pili of Neisseria meningitidis: the immunoglobulin A isotype blocks complement-mediated killing.

Authors:  R M Hamadeh; M M Estabrook; P Zhou; G A Jarvis; J M Griffiss
Journal:  Infect Immun       Date:  1995-12       Impact factor: 3.441

4.  Genetic characterization of pilin glycosylation and phase variation in Neisseria meningitidis.

Authors:  P M Power; L F Roddam; K Rutter; S Z Fitzpatrick; Y N Srikhanta; M P Jennings
Journal:  Mol Microbiol       Date:  2003-08       Impact factor: 3.501

5.  The role of galE in the biosynthesis and function of gonococcal lipopolysaccharide.

Authors:  B D Robertson; M Frosch; J P van Putten
Journal:  Mol Microbiol       Date:  1993-05       Impact factor: 3.501

6.  Analysis of the role of pglI in pilin glycosylation of Neisseria meningitidis.

Authors:  Matthew J Warren; Louise F Roddam; Peter M Power; Tamsin D Terry; Michael P Jennings
Journal:  FEMS Immunol Med Microbiol       Date:  2004-05-01

7.  Meningococcal pilin: a glycoprotein substituted with digalactosyl 2,4-diacetamido-2,4,6-trideoxyhexose.

Authors:  E Stimson; M Virji; K Makepeace; A Dell; H R Morris; G Payne; J R Saunders; M P Jennings; S Barker; M Panico
Journal:  Mol Microbiol       Date:  1995-09       Impact factor: 3.501

8.  Characterization of the pilF-pilD pilus-assembly locus of Neisseria gonorrhoeae.

Authors:  N E Freitag; H S Seifert; M Koomey
Journal:  Mol Microbiol       Date:  1995-05       Impact factor: 3.501

9.  Comparative phylogenomics of the food-borne pathogen Campylobacter jejuni reveals genetic markers predictive of infection source.

Authors:  Olivia L Champion; Michael W Gaunt; Ozan Gundogdu; Abdi Elmi; Adam A Witney; Jason Hinds; Nick Dorrell; Brendan W Wren
Journal:  Proc Natl Acad Sci U S A       Date:  2005-10-17       Impact factor: 11.205

10.  Genetic analysis of the capsular biosynthetic locus from all 90 pneumococcal serotypes.

Authors:  Stephen D Bentley; David M Aanensen; Angeliki Mavroidi; David Saunders; Ester Rabbinowitsch; Matthew Collins; Kathy Donohoe; David Harris; Lee Murphy; Michael A Quail; Gabby Samuel; Ian C Skovsted; Margit Staum Kaltoft; Bart Barrell; Peter R Reeves; Julian Parkhill; Brian G Spratt
Journal:  PLoS Genet       Date:  2006-03-10       Impact factor: 5.917

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  23 in total

1.  Phase-Variable Genotypes Sweetened by Glycosylation Phenotypes.

Authors:  Nathan J Weyand
Journal:  J Bacteriol       Date:  2018-07-25       Impact factor: 3.490

2.  Characterization of a Unique Tetrasaccharide and Distinct Glycoproteome in the O-Linked Protein Glycosylation System of Neisseria elongata subsp. glycolytica.

Authors:  Jan Haug Anonsen; Åshild Vik; Bente Børud; Raimonda Viburiene; Finn Erik Aas; Shani W A Kidd; Marina Aspholm; Michael Koomey
Journal:  J Bacteriol       Date:  2015-10-19       Impact factor: 3.490

Review 3.  The sweet tooth of bacteria: common themes in bacterial glycoconjugates.

Authors:  Hanne L P Tytgat; Sarah Lebeer
Journal:  Microbiol Mol Biol Rev       Date:  2014-09       Impact factor: 11.056

4.  Novel protein substrates of the phospho-form modification system in Neisseria gonorrhoeae and their connection to O-linked protein glycosylation.

Authors:  Jan Haug Anonsen; Wolfgang Egge-Jacobsen; Finn Erik Aas; Bente Børud; Michael Koomey; Ashild Vik
Journal:  Infect Immun       Date:  2011-11-14       Impact factor: 3.441

5.  Disrupted Synthesis of a Di-N-acetylated Sugar Perturbs Mature Glycoform Structure and Microheterogeneity in the O-Linked Protein Glycosylation System of Neisseria elongata subsp. glycolytica.

Authors:  Nelson Wang; Jan Haug Anonsen; Raimonda Viburiene; Joseph S Lam; Åshild Vik; Michael Koomey
Journal:  J Bacteriol       Date:  2018-12-07       Impact factor: 3.490

6.  Genotypic and Phenotypic Characterization of the O-Linked Protein Glycosylation System Reveals High Glycan Diversity in Paired Meningococcal Carriage Isolates.

Authors:  Bente Børud; Guro K Bårnes; Ola Brønstad Brynildsrud; Elisabeth Fritzsønn; Dominique A Caugant
Journal:  J Bacteriol       Date:  2018-07-25       Impact factor: 3.490

7.  Recombinant truncated AniA of pathogenic Neisseria elicits a non-native immune response and functional blocking antibodies.

Authors:  Lucy K Shewell; Shan C Ku; Benjamin L Schulz; Freda E-C Jen; Tsitsi D Mubaiwa; Margaret R Ketterer; Michael A Apicella; Michael P Jennings
Journal:  Biochem Biophys Res Commun       Date:  2013-01-09       Impact factor: 3.575

8.  Diversity within the O-linked protein glycosylation systems of acinetobacter species.

Authors:  Nichollas E Scott; Rachel L Kinsella; Alistair V G Edwards; Martin R Larsen; Sucharita Dutta; Julian Saba; Leonard J Foster; Mario F Feldman
Journal:  Mol Cell Proteomics       Date:  2014-06-10       Impact factor: 5.911

9.  Allelic variation in a simple sequence repeat element of neisserial pglB2 and its consequences for protein expression and protein glycosylation.

Authors:  Raimonda Viburiene; Åshild Vik; Michael Koomey; Bente Børud
Journal:  J Bacteriol       Date:  2013-05-31       Impact factor: 3.490

10.  Protein O-linked glycosylation in the plant pathogen Ralstonia solanacearum.

Authors:  Wael Elhenawy; Nichollas E Scott; M Laura Tondo; Elena G Orellano; Leonard J Foster; Mario F Feldman
Journal:  Glycobiology       Date:  2015-11-03       Impact factor: 4.313

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