Found 18 structures.
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1. Compound ID: 301
Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_136045,IEDB_142489,IEDB_144562,IEDB_152214,IEDB_174333,SB_86
The structure is contained in the following publication(s):
- Article ID: 79
Forsberg LS, Bhat UR, Carlson RW "Structural characterization of the O-antigenic polysaccharide of the lipopolysaccharide from Rhizobium etli strain CE3. A unique O-acetylated glycan of discrete size, containing 3-O-methyl-6-deoxy-L-talose and 2,3,4-tri-O-methyl-L-fucose" -
Journal of Biological Chemistry 275(25) (2000) 18851-18863
The O-antigenic polysaccharide of the Rhizobium etli CE3 lipopolysaccharide (LPS) was structurally characterized using chemical degradations (Smith degradation and beta-elimination of uronosyl residues) in combination with alkylation analysis, electrospray, and matrix-assisted laser desorption ionization-time of flight mass spectrometry, tandem mass spectrometry, and (1)H COSY and TOCSY nuclear magnetic resonance spectroscopy analyses of the native polysaccharide and the derived oligosaccharides. The polysaccharide was found to be a unique, relatively low molecular weight glycan having a fairly discrete size, with surprisingly little variation in the number of repeating units (degree of polymerization = 5). The polysaccharide is O-acetylated and contains a variety of O-methylated glycosyl residues, rendering the native glycan somewhat hydrophobic. The molecular mass of the major de-O-acetylated species, including the reducing end 3-deoxy-d-manno-2-octulosonic acid (Kdo) residue, is 3330 Da. The polysaccharide is comprised of a trisaccharide repeating unit having the structure →4)-α-D-GlcpA-(1→4)-[α-3-O-Me-6-deoxy-Talp-(1→3)]-α-l-Fucp-(1→. The nonreducing end of the glycan is terminated with the capping sequence α-2,3,4-tri-O-Me-Fucp-(1→4)-α-D-GlcpA-(1→, and the reducing end of the molecule consists of the non-repeating sequence →3)-α-L-Fucp-(1→3)-β-D-Manp-(1→3)-β-QuiNA cp-(1→4)-alpha-Kdop-(2→, where QuiNAc is N-acetylquinovosamine (2-N-acetamido-2,6-dideoxyglucose). The reducing end Kdo residue links the O-chain polysaccharide to the core region oligosaccharide, resulting in a unique location for a Kdo residue in LPS, removed four residues distally from the lipid A moiety. Structural heterogeneity in the O-chain arises mainly from the O-acetyl and O-methyl substitution. Methylation analysis using trideuteriomethyl iodide indicates that a portion of the 2,3,4-tri-O-methylfucosyl capping residues, typically 15%, are replaced with 2-O-methyl- and/or 2,3-di-O-methylfucosyl residues. In addition, approximately 25% of the 3,4-linked branching fucosyl residues and 10% of the 3-linked fucosyl residues are 2-O-methylated. A majority of the glucuronosyl residues are methyl-esterified at C-6. These unique structural features may be significant in the infection process
Lipopolysaccharide, O-antigen, Rhizobium etli, 6-deoxy-L-talose, symbiosis
NCBI PubMed ID: 10858446Publication DOI: 10.1074/jbc.M001090200Journal NLM ID: 2985121RPublisher: Baltimore, MD: American Society for Biochemistry and Molecular Biology
Correspondence: rcarlson@ccrc.uga.edu
Institutions: Complex Carbohydrate Research Center, University of Georgia, Athens, GA, USA, USA
Methods: methylation, sugar analysis, ESI-MS, ESI-MS/MS
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2. Compound ID: 302
Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_136045,IEDB_142489,IEDB_144562,IEDB_152214,IEDB_174333,SB_86
The structure is contained in the following publication(s):
- Article ID: 79
Forsberg LS, Bhat UR, Carlson RW "Structural characterization of the O-antigenic polysaccharide of the lipopolysaccharide from Rhizobium etli strain CE3. A unique O-acetylated glycan of discrete size, containing 3-O-methyl-6-deoxy-L-talose and 2,3,4-tri-O-methyl-L-fucose" -
Journal of Biological Chemistry 275(25) (2000) 18851-18863
The O-antigenic polysaccharide of the Rhizobium etli CE3 lipopolysaccharide (LPS) was structurally characterized using chemical degradations (Smith degradation and beta-elimination of uronosyl residues) in combination with alkylation analysis, electrospray, and matrix-assisted laser desorption ionization-time of flight mass spectrometry, tandem mass spectrometry, and (1)H COSY and TOCSY nuclear magnetic resonance spectroscopy analyses of the native polysaccharide and the derived oligosaccharides. The polysaccharide was found to be a unique, relatively low molecular weight glycan having a fairly discrete size, with surprisingly little variation in the number of repeating units (degree of polymerization = 5). The polysaccharide is O-acetylated and contains a variety of O-methylated glycosyl residues, rendering the native glycan somewhat hydrophobic. The molecular mass of the major de-O-acetylated species, including the reducing end 3-deoxy-d-manno-2-octulosonic acid (Kdo) residue, is 3330 Da. The polysaccharide is comprised of a trisaccharide repeating unit having the structure →4)-α-D-GlcpA-(1→4)-[α-3-O-Me-6-deoxy-Talp-(1→3)]-α-l-Fucp-(1→. The nonreducing end of the glycan is terminated with the capping sequence α-2,3,4-tri-O-Me-Fucp-(1→4)-α-D-GlcpA-(1→, and the reducing end of the molecule consists of the non-repeating sequence →3)-α-L-Fucp-(1→3)-β-D-Manp-(1→3)-β-QuiNA cp-(1→4)-alpha-Kdop-(2→, where QuiNAc is N-acetylquinovosamine (2-N-acetamido-2,6-dideoxyglucose). The reducing end Kdo residue links the O-chain polysaccharide to the core region oligosaccharide, resulting in a unique location for a Kdo residue in LPS, removed four residues distally from the lipid A moiety. Structural heterogeneity in the O-chain arises mainly from the O-acetyl and O-methyl substitution. Methylation analysis using trideuteriomethyl iodide indicates that a portion of the 2,3,4-tri-O-methylfucosyl capping residues, typically 15%, are replaced with 2-O-methyl- and/or 2,3-di-O-methylfucosyl residues. In addition, approximately 25% of the 3,4-linked branching fucosyl residues and 10% of the 3-linked fucosyl residues are 2-O-methylated. A majority of the glucuronosyl residues are methyl-esterified at C-6. These unique structural features may be significant in the infection process
Lipopolysaccharide, O-antigen, Rhizobium etli, 6-deoxy-L-talose, symbiosis
NCBI PubMed ID: 10858446Publication DOI: 10.1074/jbc.M001090200Journal NLM ID: 2985121RPublisher: Baltimore, MD: American Society for Biochemistry and Molecular Biology
Correspondence: rcarlson@ccrc.uga.edu
Institutions: Complex Carbohydrate Research Center, University of Georgia, Athens, GA, USA, USA
Methods: methylation, sugar analysis, ESI-MS, ESI-MS/MS
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3. Compound ID: 1735
Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_137485,IEDB_144983,IEDB_152206,IEDB_983930,SB_44,SB_72
The structure is contained in the following publication(s):
- Article ID: 535
Ovchinnikova OG, Kocharova NA, Backinowsky LV, Torzewska A, Shashkov AS, Knirel YA, Rozalski A "The structure of the O-polysaccharide from the lipopolysaccharide of Providencia stuartii O47" -
Carbohydrate Research 339(15) (2004) 2621-2626
The O-polysaccharide was obtained by mild acid degradation of the lipopolysaccharide of Providencia stuartii O47:H4, strain 3646/51. Studies by sugar and methylation analyses along with Smith degradation and 1H and 13C NMR spectroscopy, including two-dimensional 1H,1H COSY, TOCSY, ROESY and H-detected 1H,13C HSQC and HMBC experiments, showed that the polysaccharide has a branched hexasaccharide repeating unit with the following structure: [carbohydrate structure: see text]
Lipopolysaccharide, O-antigen, polysaccharide structure, Providencia stuartii
NCBI PubMed ID: 15476725Journal NLM ID: 0043535Publisher: Elsevier
Correspondence: olgao@hotmail.ru
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia, Department of Immunobiology of Bacteria, Institute of Microbiology and Immunology, University of Lodz, PL 90-237 Lodz, Poland
Methods: methylation, NMR-2D, NMR, sugar analysis, Smith degradation
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4. Compound ID: 1736
|
a-D-GlcpNAc-(1-2)-Subst-(1-4)-b-D-Manp-(1-3)-b-D-Manp-(1-3)-D-Ery-onic
Subst = CH2OHCH(CH2OH)OCH(O)CH(O)CH2OH = SMILES O=C(C(CO)=O)OC{2}(CO){1}CO |
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Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_137340,IEDB_137485,IEDB_141807,IEDB_144983,IEDB_151531,IEDB_152206,IEDB_983930,SB_44,SB_72
The structure is contained in the following publication(s):
- Article ID: 535
Ovchinnikova OG, Kocharova NA, Backinowsky LV, Torzewska A, Shashkov AS, Knirel YA, Rozalski A "The structure of the O-polysaccharide from the lipopolysaccharide of Providencia stuartii O47" -
Carbohydrate Research 339(15) (2004) 2621-2626
The O-polysaccharide was obtained by mild acid degradation of the lipopolysaccharide of Providencia stuartii O47:H4, strain 3646/51. Studies by sugar and methylation analyses along with Smith degradation and 1H and 13C NMR spectroscopy, including two-dimensional 1H,1H COSY, TOCSY, ROESY and H-detected 1H,13C HSQC and HMBC experiments, showed that the polysaccharide has a branched hexasaccharide repeating unit with the following structure: [carbohydrate structure: see text]
Lipopolysaccharide, O-antigen, polysaccharide structure, Providencia stuartii
NCBI PubMed ID: 15476725Journal NLM ID: 0043535Publisher: Elsevier
Correspondence: olgao@hotmail.ru
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia, Department of Immunobiology of Bacteria, Institute of Microbiology and Immunology, University of Lodz, PL 90-237 Lodz, Poland
Methods: methylation, NMR-2D, NMR, sugar analysis, Smith degradation
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5. Compound ID: 4183
|
L-Ser-(2-6)-b-D-GalpA-(1-3)-b-D-GlcpNAc-(1-2)-a-D-Rhap4NAc-(1-3)-L-Ery-onic
xLEry-onic = L-erythronic acid |
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Structure type: oligomer
Contained glycoepitopes: IEDB_135813,IEDB_137340,IEDB_141807,IEDB_150900,IEDB_151531
The structure is contained in the following publication(s):
- Article ID: 1550
Ovchinnikova OG, Kocharova NA, Torzewska A, Blaszczyk A, Shashkov AS, Knirel YA, Rozalski A "The structure of the O-polysaccharide from the lipopolysaccharide of Providencia stuartii O43 containing an amide of D-galacturonic acid with L-serine" -
Carbohydrate Research 340(7) (2005) 1407-1411
The O-polysaccharide was obtained by mild acid degradation of the lipopolysaccharide of Providencia stuartii O43:H28 and studied by sugar and methylation analyses, Smith degradation and 1H and 13C NMR spectroscopy, including 2D ROESY, and H-detected 1H, 13C HSQC and HMBC experiments, as well as a NOESY experiment in a 9:1 H2O/D2O mixture to reveal correlations for NH protons. It was found that the polysaccharide is built up of linear tetrasaccharide repeating units containing an amide of D-galacturonic acid with L-serine [D-GalA6(L-Ser)] and has the following structure:[3)-β-D-GalpA6(L-Ser)-(1→3)-β-D-GlcpNAc-(1→2)-α-D-Rhap4NAc-(1→4)-β-D-GlcpA-(1→]n.
Lipopolysaccharide, O-antigen, polysaccharide structure, Providencia stuartii, D-galacturonoyl-L-serine
NCBI PubMed ID: 15854614Publication DOI: 10.1016/j.carres.2005.03.011Journal NLM ID: 0043535Publisher: Elsevier
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia, Department of Immunobiology of Bacteria, Institute of Microbiology and Immunology, University of Lodz, PL-90237 Lodz, Poland
Methods: methylation, NMR, sugar analysis, Smith degradation
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6. Compound ID: 4811
Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_135813,IEDB_136105,IEDB_137340,IEDB_141807,IEDB_151531,IEDB_225177,IEDB_885823
The structure is contained in the following publication(s):
- Article ID: 1814
Shashkov AS, L'vov VL, Tokhtamysheva NV, Dmitriev BA, Kochetkov NK "Structure and carbon-13 NMR spectrum of Shigella boydii type 4 specific polysaccharide" -
Bioorganicheskaya Khimia = Bioorganic Chemistry [Russian] 7(5) (1981) 729-735
The 13C NMR spectrum of Shigella boydii type 4 specific polysaccharide, as well as the spectra of oligosaccharide fragments produced from the title polysaccharide by two consecutive Smith's degradations were interpreted. The data fully confirmed the structure of the repeating unit of the specific polysaccharide which was earlier established by other methods.
Journal NLM ID: 7804941WWW link: http://www.rjbc.ru/arc/7/5/0729-0735.pdfPublisher: Moskva: Nauka
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Academy of Sciences of the USSR, Moscow, Russia
Methods: 13C NMR
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7. Compound ID: 4812
Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_135813,IEDB_136105,IEDB_137340,IEDB_141807,IEDB_151531,IEDB_225177,IEDB_885823
The structure is contained in the following publication(s):
- Article ID: 1814
Shashkov AS, L'vov VL, Tokhtamysheva NV, Dmitriev BA, Kochetkov NK "Structure and carbon-13 NMR spectrum of Shigella boydii type 4 specific polysaccharide" -
Bioorganicheskaya Khimia = Bioorganic Chemistry [Russian] 7(5) (1981) 729-735
The 13C NMR spectrum of Shigella boydii type 4 specific polysaccharide, as well as the spectra of oligosaccharide fragments produced from the title polysaccharide by two consecutive Smith's degradations were interpreted. The data fully confirmed the structure of the repeating unit of the specific polysaccharide which was earlier established by other methods.
Journal NLM ID: 7804941WWW link: http://www.rjbc.ru/arc/7/5/0729-0735.pdfPublisher: Moskva: Nauka
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Academy of Sciences of the USSR, Moscow, Russia
Methods: 13C NMR
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8. Compound ID: 4819
|
GroN-(2-6)-+
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b-D-GlcpNAc-(1-2)-b-D-GalpA-(1-3)-a-D-GalpNAc-(1-3)-Ery-onic |
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Structure type: oligomer
Compound class: O-polysaccharide, O-antigen
Contained glycoepitopes: IEDB_130648,IEDB_135813,IEDB_137340,IEDB_137473,IEDB_1391961,IEDB_141584,IEDB_141807,IEDB_151531,IEDB_885822
The structure is contained in the following publication(s):
- Article ID: 1820
L'vov VL, Tokhtamysheva NV, Shaskov AS, Dmitriev BA, Kochetkov NK "Bacterial antigenic polysaccharides. XII. The structure and 13C NMR spectrum of polysaccharide chain of Shigella boydii type 8 lipopolysaccharide" -
Bioorganicheskaya Khimia = Bioorganic Chemistry [Russian] 9 (1983) 60-73
A specific acidic polysaccharide was isolated from Sh. boydii type 8 antigenic lipopolysaccharide after mild hydrolysis followed by chromatography on Sephadex G-50. The polysaccharide consists of D-glucuronic acid, D-galacturonic acid, 2-acetamido-2-deoxy-D-glucose, 2-acetamido-2-deoxy-D-galactose and 2-amino-1,3-propanediol residues in 1:1:1:1:1 ratio. From the results of methylation analysis, partial acid hydrolysis and Smith degradation, the structure of the repeating unit of the specific polysaccharide was deduced as: (Formula: see text). The 13C NMR spectra of native, O-deacetylated and carboxyl-reduced polysaccharides, as well as the spectrum of oligosaccharide produced by Smith degradation were interpreted. The 13C NMR data fully confirmed the structure of the polysaccharide repeating unit.
NCBI PubMed ID: 6207837Journal NLM ID: 7804941Publisher: Moskva: Nauka
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Academy of Sciences of the USSR, Moscow, Russia
Methods: 13C NMR
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9. Compound ID: 7422
Structure type: oligomer
Contained glycoepitopes: IEDB_135813,IEDB_136045,IEDB_137340,IEDB_141807,IEDB_142489,IEDB_144562,IEDB_145669,IEDB_150092,IEDB_151531,IEDB_152214,IEDB_153212,IEDB_174333,SB_74,SB_85,SB_86
The structure is contained in the following publication(s):
- Article ID: 3353
Perepelov AV, Liu B, Senchenkova SN, Shashkov AS, Feng L, Knirel YA, Wang L "Close relation of the O-polysaccharide structure of Escherichia coli O168 and revised structure of the O-polysaccharide of Shigella dysenteriae type 4" -
Carbohydrate Research 342(17) (2007) 2676-2681
The O-polysaccharide was isolated from the lipopolysaccharide of Escherichia coli O168 and studied by chemical analyses and Smith degradation along with (1)H and (13)C NMR spectroscopies. The following structure of the branched pentasaccharide repeating unit of the O-polysaccharide was established: [carbohydrate structure: see text] where 6-O-acetylation of GlcNAc is partial. Reinvestigation of the O-polysaccharide of Shigella dysenteriae type 4 established earlier showed it to have the same structure except for that the lateral Fuc residue is nonstoichiometrically O-acetylated at each position.
O-antigen, Escherichia coli, bacterial polysaccharide structure, Shigella dysenteriae, methodology
NCBI PubMed ID: 17880932Publication DOI: 10.1016/j.carres.2007.08.005Journal NLM ID: 0043535Publisher: Elsevier
Correspondence: perepel@ioc.ac.ru
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia
Methods: 13C NMR, 1H NMR, methylation, GLC-MS, NMR-2D, chemical analysis, mild acid hydrolysis, Smith degradation, NMR-1D, alkaline hydrolysis
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10. Compound ID: 8033
Structure type: oligomer
Contained glycoepitopes: IEDB_135813,IEDB_136045,IEDB_137340,IEDB_141807,IEDB_142489,IEDB_144562,IEDB_145669,IEDB_151531,IEDB_152214,IEDB_174333,SB_86
The structure is contained in the following publication(s):
- Article ID: 3531
Perepelov AV, Senchenkova SN, Shashkov AS, Knirel YA, Liu B, Feng L, Wang L "Antigenic polysaccharides of bacteria. 41. Structures of the O-specific polysaccharides of Shigella dysenteriae types 4 and 5 revised by NMR spectroscopy" -
Russian Journal of Bioorganic Chemistry 34(4) (2008) 460-467
The earlier established structures of the acidic O-specific polysaccharides from two typical strains of the Shigella dysenteriae bacterium were revised using modern NMR spectroscopy techniques. In particular, the configurations of the glycosidic linkages of GlcNAc (S. dysenteriae type 4) and mannose (S. dysenteriae type 5) residues were corrected. In addition, the location of the sites of non-stoichiometric O-acetylation in S. dysenteriae type 4 was determined: the lateral fucose residue was shown to be occasionally O-acetylated; also, theposition of the O-acetyl group present at the stoichiometric quantity in S. dysenteriae type 5 was corrected. The revised structures of the polysaccharides studied are shown below. The known identity of theO-specific polysaccharide structures of S. dysenteriae type 5 and Escherichia coli O58 was confirmed by 13C NMR spectroscopy and, hence, the structure of the E. coli O58 polysaccharide should be revised in the same manner.
structure, O-antigen, NMR spectroscopy, O-specific polysaccharide, O-Specific polysaccharide structure, Shigella dysenteriae
NCBI PubMed ID: 18695724Publication DOI: 10.1134/S1068162008040109Journal NLM ID: 9420101Publisher: Springer Science and Business Media
Correspondence: perepel@ioc.ac.ru
Institutions: Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia,TEDA School of Biological Sciences and Biotechnology, Nankai University, TEDA, China
Methods: 13C NMR, 1H NMR, methylation, GLC-MS, NMR-2D, sugar analysis, GLC, mild acid hydrolysis, alkaline degradation, Smith degradation, NMR-1D
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11. Compound ID: 8167
Structure type: monomer
Contained glycoepitopes: IEDB_136044,IEDB_137472,IEDB_141794,IEDB_190606,SB_165,SB_166,SB_187,SB_195,SB_7,SB_88
The structure is contained in the following publication(s):
- Article ID: 3573
Zdorovenko EL, Varbanets LD, Zatonsky GV, Kachala VV, Zdorovenko GM, Shashkov AS, Knirel YA "Structure of the O-specific polysaccharide of the lipopolysaccharide of Rahnella aquatilis 95 U003" -
Carbohydrate Research 343(14) (2008) 2494-2497
The O-polysaccharide of Rahnella aquatilis 95 U003 was obtained by mild acid degradation of the lipopolysaccharide and studied by sugar and methylation analyses, Smith degradation and (1)H and (13)C NMR spectroscopy, including 2D (1)H,(1)H COSY, TOCSY, ROESY, H-detected (1)H,(13)C HSQC and HMQC-TOCSY experiments. The O-polysaccharide was found to have a branched hexasaccharide repeating unit of the following structure: [carbohydrate structure: see text].
Lipopolysaccharide, O-antigen, bacterial polysaccharide structure, Rahnella aquatilis
NCBI PubMed ID: 18674754Publication DOI: 10.1016/j.carres.2008.07.001Journal NLM ID: 0043535Publisher: Elsevier
Correspondence: evelina@ioc.ac.ru
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, RussiaD.K. Zabolotny Institute of Microbiology and Virology, National Academy of Sciences of Ukraine, ul. Zabolotnogo 154, 03143 Kiev, Ukraine
Methods: 13C NMR, 1H NMR, methylation, NMR-2D, sugar analysis, GLC, mild acid hydrolysis, Smith degradation, NMR-1D
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12. Compound ID: 9285
Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_136044,IEDB_137472,IEDB_141794,IEDB_190606,SB_165,SB_166,SB_187,SB_195,SB_7,SB_88
The structure is contained in the following publication(s):
- Article ID: 3959
Varbanets LD, Skoklyuk LB, Zdorovenko EL, Shubchynskyy VV, Pokhil SI "Rahnella aquatilis 95U003 lipopolysaccharide" -
Mikrobiologiia = Microbiology [Russian] 79(5) (2010) 602-611
The lipopolysaccharide of a new species of Enterobacteriaceae, Rahnella aquatilis 95U003, was isolated and investigated. The structural components of the lipopolysaccharide molecule, lipid A, core oligosaccharide, and Ospecific polysaccharide, were isolated by mild acidic hydrolysis. In lipid A, 3hydroxytetradecanoic (64.3%) and tetradecanoic (22.3%) acids were found to be predominant fatty acids. In fractions 1 and 2 of the core oligosaccharides, galactose (36.6 and 43.6%), mannose (35.5 and 23.5%), and glucose (42.1 and 25.3%) were shown to be the major monosaccharides. The O-specific polysaccharide consisted of regularly repeating hexasaccharide units of the following structure: (formula, see text).
Lipopolysaccharide, Rahnella aquatilis, O-specific polysaccharide composition and structure
Publication DOI: 10.1134/S0026261710050048Journal NLM ID: 0376652Publisher: Moskva: Izdatelstvo Nauka
Correspondence: varbanets@serv.imv.kiev.ua
Institutions: Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia, Zabolotny Institute of Microbiology and Virology, National Academy of Sciences of Ukraine, str.. Zabolotnogo 154, Kyiv, D 03680 Ukraine, Mechnikov Institute of Microbiology and Immunology, Academy of Medical Sciences, ul. Pushkinskaya 1416, Kharkiv, 61057 Ukraine
Methods: 13C NMR, 1H NMR, methylation, GLC-MS, NMR-2D, SDS-PAGE, sugar analysis, GLC, mild acid hydrolysis, Smith degradation, serological methods
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13. Compound ID: 11978
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a-L-QuipNAc-(1-3)-a-D-GlcpNAc-(1-2)-Subst-(1-3)-D-Ery-onic
Subst = 1-((1,3-dihydroxypropan-2-yl)oxy)propane-1,2,3-triol = SMILES O{1}C(OC(CO)CO){2}C(O)CO |
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Structure type: oligomer
Compound class: O-polysaccharide
Contained glycoepitopes: IEDB_137340,IEDB_141807,IEDB_151531
The structure is contained in the following publication(s):
- Article ID: 4782
Perepelov AV, Wang Q, Senchenkova SN, Qian Y, Shashkov AS, Wang L, Knirel YA "Structural and genetic studies of the O-antigen of Escherichia coli O163" -
Carbohydrate Research 404 (2015) 34-38
An acidic O-polysaccharide (O-antigen) of Escherichia coli O163 was obtained by mild acid hydrolysis of the lipopolysaccharide and studied by sugar analysis and Smith degradation along with 1D and 2D (1)H and (13)C NMR spectroscopy. The following structure of the linear tetrasaccharide repeating unit was established, which is unique among known structures of bacterial polysaccharides: →2)-β-D-Manp-(1→4)-β-D-GlcpA-(1→3)-α-L-QuipNAc-(1→3)-α-D-GlcpNAc-(1→. Functions of genes in the O-antigen gene cluster of E. coli O163 were tentatively assigned by comparison with sequences in the available databases and found to be in agreement with the O-polysaccharide structure. Relationships between O-antigen structures and gene clusters of E. coli O163 and Salmonella enterica O41 are discussed.
Lipopolysaccharide, O-antigen, Escherichia coli, bacterial polysaccharide structure, O-antigen gene cluster
NCBI PubMed ID: 25665776Publication DOI: 10.1016/j.carres.2014.11.006Journal NLM ID: 0043535Publisher: Elsevier
Correspondence: perepel@ioc.ac.ru (A.V. Perepelov)
Institutions: N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia, TEDA School of Biological Sciences and Biotechnology, Nankai University, TEDA, Tianjin, China.
Methods: 13C NMR, 1H NMR, methylation, NMR-2D, sugar analysis, DNA techniques, GLC, mild acid hydrolysis, Smith degradation, NMR-1D, GPC, function analysis of gene clusters
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14. Compound ID: 12268
Structure type: oligomer
Trivial name: heparosan (K5-antigen)
Compound class: CPS
Contained glycoepitopes: IEDB_137340,IEDB_141807,IEDB_151531
The structure is contained in the following publication(s):
- Article ID: 4882
Senchenkova SN, Zhang Y, Perepelov AV, Guo X, Shashkov AS, Liu B, Knirel YA "Structure and biosynthesis gene cluster of the O-antigen of Escherichia coli O12" -
Biochemistry (Moscow) 81(4) (2016) 401-406
Two polysaccharides were isolated from Escherichia coli O12, the major being identified as the O12-antigen and the minor as the K5-antigen. The polysaccharides were studied by sugar analysis, Smith degradation, and one- and two-dimensional (1)H and (13)C NMR spectroscopy. As a result, the following structure of the O12-polysaccharide was elucidated, which, to our knowledge, has not been hitherto found in bacterial carbohydrates: →2)-β-d-Glcp-(1→6)-α-d-GlcpNAc-(1→3)-α-l-FucpNAc-(1→3)-β-d-GlcpNAc-(1→. The →4)-β-d-GlcpA-(1→4)-α-d-GlcpNAc-(1→ structure established for the K5-polysaccharide (heparosan) is previously known. Functions of genes in the O-antigen biosynthesis gene cluster of E. coli O12 were assigned by comparison with sequences in the available databases and found to be consistent with the O12-polysaccharide structure.
Escherichia coli, glycosyltransferase, O-antigen gene cluster, O-Polysaccharide structure
NCBI PubMed ID: 27293097Publication DOI: 10.1134/S0006297916040106Journal NLM ID: 0376536Publisher: Nauka/Interperiodica
Correspondence: yknirel@gmail.com
Institutions: Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia, Nankai University, TEDA Institute of Biological Sciences and Biotechnology,300457 Tianjin, P. R. China
Methods: 13C NMR, 1H NMR, NMR-2D, sugar analysis, acid hydrolysis, GLC, Smith degradation, NMR-1D, GPC, mild acid degradation, function analysis of gene clusters
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15. Compound ID: 13038
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R-Pyr-(2-6:2-4)-+
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S-3HOBut-(1-4)-b-D-QuipNAc4N-(1-2)-b-D-Galp-(1-3)-b-D-GlcpNAc-(1-3)-L-Ery-onic |
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Structure type: oligomer
Trivial name: type K20 CPS
Compound class: CPS
Contained glycoepitopes: IEDB_135813,IEDB_136044,IEDB_137340,IEDB_137472,IEDB_1391962,IEDB_141794,IEDB_141807,IEDB_142078,IEDB_143794,IEDB_150899,IEDB_151531,IEDB_151771,IEDB_190606,SB_137,SB_165,SB_166,SB_187,SB_195,SB_29,SB_7,SB_88
The structure is contained in the following publication(s):
- Article ID: 5166
Kasimova AA, Kenyon JJ, Arbatsky NP, Shashkov AS, Popova AV, Shneider MM, Knirel YA, Hall RM "Acinetobacter baumannii K20 and K21 capsular polysaccharide structures establish roles for UDP-glucose dehydrogenase Ugd2, pyruvyl transferase Ptr2 and two glycosyltransferases" -
Glycobiology 28(11) (2018) 876-884
Infections caused by Acinetobacter baumannii isolates from the major global clones, GC1 and GC2, are difficult to treat with antibiotics, and phage therapy, which requires extensive knowledge of the variation in the surface polysaccharides, is an option under consideration. The gene clusters directing the synthesis of capsular polysaccharide (CPS) in A. baumannii GC1 isolate A388 and GC2 isolate G21 differ by a single glycosyltransferase (gtr) gene. They include genes encoding a novel UDP-glucose dehydrogenase (Ugd2) and a putative pyruvyl transferase (Ptr2). The composition and structures of the linear K20 and K21 tetrasaccharide repeats (K units) of the CPSs isolated from A338 and G21, respectively, were established by sugar analyses and Smith degradation along with 1D and 2D 1H and 13C NMR spectroscopy. The K20 and K21 CPSs are the first known to include GlcpA produced by Ugd2 and d-galactose with an (R)-configured 4,6-pyruvic acid acetal added by Prt2. The first sugar in the tetrasaccharide K units is 2-acetamido-4-amino-2,4,6-trideoxy-d-glucose (d-QuipNAc4N) that carries a 4-N-[(S)-3-hydroxybutanoyl] group in some K units and a 4-N-acetyl group in the others. Accordingly, K unit polymerases WzyK20 and WzyK21 form a β-d-QuipNAc4NR-(1→2)-d-Galp bond. The K20 and K21 units differ only in the configuration of the glycosidic linkages of d-GlcpNAc allowing the unique inverting glycosyltransferases Gtr43 and the retaining glycosyltransferase Gtr45 to be assigned to the formation of the β-d-GlcpNAc-(1→4)-d-GlcpA and α-d-GlcpNAc-(1→4)-d-GlcpA linkages, respectively.
Acinetobacter baumannii, capsular polysaccharide, glucuronic acid, Pyruvic acid acetal, K locus
NCBI PubMed ID: 30107435Publication DOI: 10.1093/glycob/cwy074Journal NLM ID: 9104124Publisher: IRL Press at Oxford University Press
Correspondence: johanna.kenyon@qut.edu.au
Institutions: M. M. Shemyakin & Y. A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia, State Research Center for Applied Microbiology and Biotechnology, Obolensk, Moscow Region, Russia, N. D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, 47 Leninskii prosp., Moscow, Russia, Higher Chemical College of the Russian Academy of Sciences, D. I. Mendeleev University of Chemical Technology of Russia, 9 Miusskaya pl., Moscow, Russia, School of Molecular Bioscience, The University of Sydney, Cnr of Maze Cres and Butlin Ave, Darlington Campus, Sydney, Australia, Institute of Health and Biomedical Innovation, School of Biomedical Sciences, Faculty of Health, Queensland University of Technology, 60 Musk Ave, Kelvin Grove, Brisbane, Australia, Moscow Institute of Physics and Technology, 9 Institutskii per., Dolgoprudny, Moscow Region, Russia, School of Life and Environmental Sciences, The University of Sydney, Cnr of Maze Cres and Butlin Ave, Darlington Campus, Sydney, Australia
Methods: 13C NMR, 1H NMR, NMR-2D, sugar analysis, acid hydrolysis, GLC, Smith degradation, GPC, bioinformatic analysis (BLASTp)
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