This Article
Right arrow Full Text
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrowReprints and Permissions
Right arrow Copyright Information
Right arrow Books from ASM Press
Right arrow MicrobeWorld
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Szymanski, C. M.
Right arrow Articles by Guerry, P.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Szymanski, C. M.
Right arrow Articles by Guerry, P.

 Previous Article  |  Next Article 

Infection and Immunity, April 2002, p. 2242-2244, Vol. 70, No. 4
0019-9567/02/$04.00+0     DOI: 10.1128/IAI.70.4.2242-2244.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.

Campylobacter Protein Glycosylation Affects Host Cell Interactions

Christine M. Szymanski,1,{dagger} Donald H. Burr,2 and Patricia Guerry1*

Enteric Diseases Program, Naval Medical Research Center, Silver Spring ,1 Food and Drug Administration, Beltsville, Maryland2

Received 15 October 2001/ Returned for modification 12 December 2001/ Accepted 16 January 2002

Campylobacter jejuni 81-176 pgl mutants impaired in general protein glycosylation showed reduced ability to adhere to and invade INT407 cells and to colonize intestinal tracts of mice.


* Corresponding author. Mailing address: Enteric Diseases Program, Naval Medical Research Center, 503 Robert Grant Ave., Silver Spring, MD 20910-7500. Phone: (301) 319-7662. Fax: (301) 319-7679. E-mail: guerryp{at}nmrc.navy.mil.

Editor: J. T. Barbieri

{dagger} Present address: Institute for Biological Sciences, National Research Council, Ottawa, ON, Canada.


Infection and Immunity, April 2002, p. 2242-2244, Vol. 70, No. 4
0019-9567/02/$04.00+0     DOI: 10.1128/IAI.70.4.2242-2244.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.




This article has been cited by other articles:

  • Novik, V., Hofreuter, D., Galan, J. E. (2009). Characterization of a Campylobacter jejuni VirK Protein Homolog as a Novel Virulence Determinant. Infect. Immun. 77: 5428-5436 [Abstract] [Full Text]  
  • Nothaft, H., Liu, X., McNally, D. J., Li, J., Szymanski, C. M. (2009). Study of free oligosaccharides derived from the bacterial N-glycosylation pathway. Proc. Natl. Acad. Sci. USA 106: 15019-15024 [Abstract] [Full Text]  
  • Elliott, K. T., Zhulin, I. B., Stuckey, J. A., DiRita, V. J. (2009). Conserved Residues in the HAMP Domain Define a New Family of Proposed Bipartite Energy Taxis Receptors. J. Bacteriol. 191: 375-387 [Abstract] [Full Text]  
  • Kus, J. V., Kelly, J., Tessier, L., Harvey, H., Cvitkovitch, D. G., Burrows, L. L. (2008). Modification of Pseudomonas aeruginosa Pa5196 Type IV Pilins at Multiple Sites with D-Araf by a Novel GT-C Family Arabinosyltransferase, TfpW. J. Bacteriol. 190: 7464-7478 [Abstract] [Full Text]  
  • Taguchi, F., Shibata, S., Suzuki, T., Ogawa, Y., Aizawa, S.-I., Takeuchi, K., Ichinose, Y. (2008). Effects of Glycosylation on Swimming Ability and Flagellar Polymorphic Transformation in Pseudomonas syringae pv. tabaci 6605. J. Bacteriol. 190: 764-768 [Abstract] [Full Text]  
  • Pope, C., Wilson, J., Taboada, E. N., MacKinnon, J., Felipe Alves, C. A., Nash, J. H. E., Rahn, K., Tannock, G. W. (2007). Epidemiology, Relative Invasive Ability, Molecular Characterization, and Competitive Performance of Campylobacter jejuni Strains in the Chicken Gut. Appl. Environ. Microbiol. 73: 7959-7966 [Abstract] [Full Text]  
  • Muller, J., Meyer, B., Hanel, I., Hotzel, H. (2007). Comparison of lipooligosaccharide biosynthesis genes of Campylobacter jejuni strains with varying abilities to colonize the chicken gut and to invade Caco-2 cells. J Med Microbiol 56: 1589-1594 [Abstract] [Full Text]  
  • Nakagawa, S., Takaki, Y., Shimamura, S., Reysenbach, A.-L., Takai, K., Horikoshi, K. (2007). Deep-sea vent {varepsilon}-proteobacterial genomes provide insights into emergence of pathogens. Proc. Natl. Acad. Sci. USA 104: 12146-12150 [Abstract] [Full Text]  
  • Watson, R. O., Novik, V., Hofreuter, D., Lara-Tejero, M., Galan, J. E. (2007). A MyD88-Deficient Mouse Model Reveals a Role for Nramp1 in Campylobacter jejuni Infection. Infect. Immun. 75: 1994-2003 [Abstract] [Full Text]  
  • Vijayakumar, S., Merkx-Jacques, A., Ratnayake, D. B., Gryski, I., Obhi, R. K., Houle, S., Dozois, C. M., Creuzenet, C. (2006). Cj1121c, a Novel UDP-4-keto-6-deoxy-GlcNAc C-4 Aminotransferase Essential for Protein Glycosylation and Virulence in Campylobacter jejuni. J. Biol. Chem. 281: 27733-27743 [Abstract] [Full Text]  
  • Aas, F. E., Egge-Jacobsen, W., Winther-Larsen, H. C., Lovold, C., Hitchen, P. G., Dell, A., Koomey, M. (2006). Neisseria gonorrhoeae Type IV Pili Undergo Multisite, Hierarchical Modifications with Phosphoethanolamine and Phosphocholine Requiring an Enzyme Structurally Related to Lipopolysaccharide Phosphoethanolamine Transferases. J. Biol. Chem. 281: 27712-27723 [Abstract] [Full Text]  
  • Kakuda, T., DiRita, V. J. (2006). Cj1496c Encodes a Campylobacter jejuni Glycoprotein That Influences Invasion of Human Epithelial Cells and Colonization of the Chick Gastrointestinal Tract.. Infect. Immun. 74: 4715-4723 [Abstract] [Full Text]  
  • Verma, A., Schirm, M., Arora, S. K., Thibault, P., Logan, S. M., Ramphal, R. (2006). Glycosylation of b-Type Flagellin of Pseudomonas aeruginosa: Structural and Genetic Basis.. J. Bacteriol. 188: 4395-4403 [Abstract] [Full Text]  
  • Weerapana, E., Imperiali, B. (2006). Asparagine-linked protein glycosylation: from eukaryotic to prokaryotic systems. Glycobiology 16: 91R-101R [Abstract] [Full Text]  
  • Kelly, J., Jarrell, H., Millar, L., Tessier, L., Fiori, L. M., Lau, P. C., Allan, B., Szymanski, C. M. (2006). Biosynthesis of the N-Linked Glycan in Campylobacter jejuni and Addition onto Protein through Block Transfer.. J. Bacteriol. 188: 2427-2434 [Abstract] [Full Text]  
  • Grant, A. J., Coward, C., Jones, M. A., Woodall, C. A., Barrow, P. A., Maskell, D. J. (2005). Signature-Tagged Transposon Mutagenesis Studies Demonstrate the Dynamic Nature of Cecal Colonization of 2-Week-Old Chickens by Campylobacter jejuni. Appl. Environ. Microbiol. 71: 8031-8041 [Abstract] [Full Text]  
  • Arora, S. K., Neely, A. N., Blair, B., Lory, S., Ramphal, R. (2005). Role of Motility and Flagellin Glycosylation in the Pathogenesis of Pseudomonas aeruginosa Burn Wound Infections. Infect. Immun. 73: 4395-4398 [Abstract] [Full Text]  
  • Obhi, R. K., Creuzenet, C. (2005). Biochemical Characterization of the Campylobacter jejuni Cj1294, a Novel UDP-4-keto-6-deoxy-GlcNAc Aminotransferase That Generates UDP-4-amino-4,6-dideoxy-GalNAc. J. Biol. Chem. 280: 20902-20908 [Abstract] [Full Text]  
  • Stintzi, A., Marlow, D., Palyada, K., Naikare, H., Panciera, R., Whitworth, L., Clarke, C. (2005). Use of Genome-Wide Expression Profiling and Mutagenesis To Study the Intestinal Lifestyle of Campylobacter jejuni. Infect. Immun. 73: 1797-1810 [Abstract] [Full Text]  
  • Feldman, M. F., Wacker, M., Hernandez, M., Hitchen, P. G., Marolda, C. L., Kowarik, M., Morris, H. R., Dell, A., Valvano, M. A., Aebi, M. (2005). Engineering N-linked protein glycosylation with diverse O antigen lipopolysaccharide structures in Escherichia coli. Proc. Natl. Acad. Sci. USA 102: 3016-3021 [Abstract] [Full Text]  
  • Bernatchez, S., Szymanski, C. M., Ishiyama, N., Li, J., Jarrell, H. C., Lau, P. C., Berghuis, A. M., Young, N. M., Wakarchuk, W. W. (2005). A Single Bifunctional UDP-GlcNAc/Glc 4-Epimerase Supports the Synthesis of Three Cell Surface Glycoconjugates in Campylobacter jejuni. J. Biol. Chem. 280: 4792-4802 [Abstract] [Full Text]  
  • Larsen, J. C., Szymanski, C., Guerry, P. (2004). N-Linked Protein Glycosylation Is Required for Full Competence in Campylobacter jejuni 81-176. J. Bacteriol. 186: 6508-6514 [Abstract] [Full Text]  
  • Palyada, K., Threadgill, D., Stintzi, A. (2004). Iron Acquisition and Regulation in Campylobacter jejuni. J. Bacteriol. 186: 4714-4729 [Abstract] [Full Text]  
  • Jones, M. A., Marston, K. L., Woodall, C. A., Maskell, D. J., Linton, D., Karlyshev, A. V., Dorrell, N., Wren, B. W., Barrow, P. A. (2004). Adaptation of Campylobacter jejuni NCTC11168 to High-Level Colonization of the Avian Gastrointestinal Tract. Infect. Immun. 72: 3769-3776 [Abstract] [Full Text]  
  • Karlyshev, A. V., Everest, P., Linton, D., Cawthraw, S., Newell, D. G., Wren, B. W. (2004). The Campylobacter jejuni general glycosylation system is important for attachment to human epithelial cells and in the colonization of chicks. Microbiology 150: 1957-1964 [Abstract] [Full Text]  
  • Carrillo, C. D., Taboada, E., Nash, J. H. E., Lanthier, P., Kelly, J., Lau, P. C., Verhulp, R., Mykytczuk, O., Sy, J., Findlay, W. A., Amoako, K., Gomis, S., Willson, P., Austin, J. W., Potter, A., Babiuk, L., Allan, B., Szymanski, C. M. (2004). Genome-wide Expression Analyses of Campylobacter jejuni NCTC11168 Reveals Coordinate Regulation of Motility and Virulence by flhA. J. Biol. Chem. 279: 20327-20338 [Abstract] [Full Text]  
  • Szymanski, C. M., Michael, F. St., Jarrell, H. C., Li, J., Gilbert, M., Larocque, S., Vinogradov, E., Brisson, J.-R. (2003). Detection of Conserved N-Linked Glycans and Phase-variable Lipooligosaccharides and Capsules from Campylobacter Cells by Mass Spectrometry and High Resolution Magic Angle Spinning NMR Spectroscopy. J. Biol. Chem. 278: 24509-24520 [Abstract] [Full Text]  
  • Young, N. M., Brisson, J.-R., Kelly, J., Watson, D. C., Tessier, L., Lanthier, P. H., Jarrell, H. C., Cadotte, N., St. Michael, F., Aberg, E., Szymanski, C. M. (2002). Structure of the N-Linked Glycan Present on Multiple Glycoproteins in the Gram-negative Bacterium, Campylobacter jejuni. J. Biol. Chem. 277: 42530-42539 [Abstract] [Full Text]