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Lipooligosaccharides

O. Geiger, E. P. Kennedy, V. N. Reinhold, and B. J. J. Lugtenberg, A novel, highly unsaturated fatty acid moiety of lipooligosaccharide signals determines host specificity of Rhizohium. Nature 354 125 (1991). [Pg.219]

G. Truchet, P. Roche, P. Lerouge, J, Vasse, S. Camut. F. de Billy, J. C. Prome, and J. Denarie, Sulphated lipooligosaccharide signals of Rhizohiuni meliloli elicit root nodule organogenesis in alfalfa. Nature 351 670-673 (1991). [Pg.320]

Gibson, B. W. Phillips, N. J. John, C. M. Melaugh, W. Lipooligosaccharides in pathogenic Haemophilus and Neisseria species—Mass spectrometric techniques for identification and characterization. ACS Sympo. Ser. 1994,541,185-202. [Pg.253]

Lipooligosaccharide (LOS) bacterial, 25 498 Lipophilic amphiphiles, 24 154-155 Lipophilic interaction dominated substrate recognition, 16 783-786 Lipophilic moieties, 8 706t Lipopolysaccharides (LPS), 4 706 11 47 BPI protein ability to neutralize, 18 257 peptide and protein binding affinity to, 18 256... [Pg.525]

Silipo A, Molinaro A, Sturiale L, Dow JM, Erbs G, Lanzetta R, Newman MA, Parrilli M (2005) The elicitation of plant innate immunity by lipooligosaccharide oiXanthomonas campestris. J Biol Client 280 33660-33668... [Pg.270]

Alam, M., Miyoshi, S.-L, Tomochika, K.-L, and Shinoda, S. (1996). Purification and characterization of novel hemagglutinins from Vibrio mimicus A 39 kilodalton major outer membrane protein and lipooligosaccharide. Infect. Immun. 64,4035-4041. [Pg.140]

Escalante-Sanchez E, Rosas-Ramirez D, Linares E, Bye R, Pereda-Miranda R (2008) Batatinosides II—VI, Acylated Lipooligosaccharides from the Resin Glycosides of Sweet Potato. J Agric Pood Chem 56 9423... [Pg.150]

Apicella, M.A., Griffiss, J.M., Schneider, H. Isolation and characterization of lipopolysaccharides, lipooligosaccharides, and lipid A. Methods Enzymol 235 (1994) 242-252. [Pg.47]

Inzana, T.J., Apicella, M.A. Use of a bilayer stacking gel to improve resolution of lipopolysaccharides and lipooligosaccharides in polyacrylamide gels. Electrophoresis 20 (1999) 462-465. [Pg.48]

Kelly, J., Masoud, H., Perry, M.B., Richards, J.C., Thibault, P. Separation and characterization of O-deacylated lipooligosaccharides and glycans derived from Moraxella catarrhalis using capillary electrophoresis-electrospray mass spectrometry and tandem mass spectrometry. Anal Biochem 233 (1996) 15-30. [Pg.49]

Kim, J.J., Phillips, N.J., Gibson, B.W., Griffiss, J.M., Yamasaki, R. Meningococcal group A lipooligosaccharides (LOS) preliminary structural studies and characterization of serotype-associated and conserved LOS epitopes. Infect Immun 62 (1994) 1566-1575. [Pg.49]

Lesse, A.J., Campagnari, A.A., Bittner, W.E., Apicella, M.A. Increased resolution of lipopolysaccharides and lipooligosaccharides utilizing tricine-sodium dodecyl sulfate-polyacrylamide gel electrophoresis. J Immunol Methods 126 (1990) 109-117. [Pg.49]

Noda, K., Kubota, K., Yamasaki, R. Separation of lipooligosaccharides by linear gradient gel electrophoresis. Anal Biochem 279 (2000) 18-22. [Pg.50]

Ierano, T., Siiipo, A., Sturiale, L., Garozzo, D., Bryant, C., Lanzetta, R., Parrilli, M., Aldridge, C., Gould, F.K., Corris, P.A., Khan, C.M., De Soyza, A., Molinaro, A. First structural characterization of Burkholderia vietnamiensis lipooligosaccharide from cystic fibrosis-associated lung transplantation strains. Glycobiology 19(11) (2009) 1214-1223. [Pg.95]

St. Michael, F., Li, J., Vinogradov, E., Larocque, S., Harper, M., Cox, A.D. Structural analysis of the lipooligosaccharide of Pasteurella multocida strain VP161 identification of both Kdo-P and Kdo-Kdo species in the lipopolysaccharide. Carbohydr Res 340 (2005b) 59-68. [Pg.98]

Vinogradov, E., Korenevsky, A., Beveridge, T.J. The structure of the rough-type lipooligosaccharide from Shewanella oneidensis MR-1, containing 8-amino-8-deoxy-Kdo and an open-chain form of 2-acetamido-2-deoxy-D-galactose. Carbohydr Res 338 (2003) 1991-1997. [Pg.98]

Guerry, P., Szymanski, C.M., Prendergast, M.M., Hickey, T.E., Ewing, C.P., Pattarini, D.L., Moran A.P. Phase variation of Campylobacter jejuni 81-176 lipooligosaccharide affects ganglioside mimicry and invasiveness in vitro. Infect Immun 70 (2002) 787-793. [Pg.233]

Habib, I., Louwen, R., Uyttendaele, M., Houf, K., Vandenberg, O., Nieuwenhuis, E.E., Miller, W.G., van Belkum, A., De Zutter, L. Correlation between genotypic diversity, lipooligosaccharide gene locus class variation, and Caco-2 cell invasion potential of Campylobacter jejuni isolates from chicken meat and humans contribution to virulotyping. Appl Environ Microbiol 75 (2009) 4277-4288. [Pg.233]

Moran, A.P., Annuk, H., Prendergast, M.M. Antibodies induced by ganglioside-mimicking Campylobacter jejuni lipooligosaccharides recognise epitopes at the nodes of Ranvier. J Neuroimmunol 165 (2005a) 179-185. [Pg.237]

Prendergast, M.M., Tribble, D.R., Baqar, S., Scott, D.A., Ferris, J.A., Walker, R.I., Moran, A.P. In vivo phase variation and serological response to lipooligosaccharide of Campylobacter jejuni in experimental human infection. Infect Immun 72 (2004) 916-922. [Pg.238]

Dale, P.A. McQuillen, D.P., Gulati, S., Rice, P.A. Human vaccination with Escherichia coli 35 mutant induces cross-reactive bactericidal antibody against Neisseria gonorrhoeae lipooligosaccharide. J Infect Dis 166 (1992) 316. [Pg.300]


See other pages where Lipooligosaccharides is mentioned: [Pg.569]    [Pg.238]    [Pg.178]    [Pg.108]    [Pg.62]    [Pg.63]    [Pg.63]    [Pg.107]    [Pg.1149]    [Pg.1761]    [Pg.569]    [Pg.104]    [Pg.493]    [Pg.69]    [Pg.72]    [Pg.96]    [Pg.98]    [Pg.210]    [Pg.212]    [Pg.402]    [Pg.359]   
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Lipooligosaccharide , bacterial cells

Lipooligosaccharides signaling

Lipooligosaccharides structures

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