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Glycosciences.DB structure entry #22742: LS-Tetrasaccharide c / LST c
a-D-Neup5Ac-(2-6)-b-D-Galp-(1-4)-b-D-GlcpNAc-(1-3)-b-D-Galp-(1-4)-b-D-Glcp
[][B-D-GLCP]{[(4+1)][B-D-GALP]{[(3+1)][B-D-GLCPNAC]{[(4+1)][B-D-GALP]{[(6+2)][A-D-NEUP5AC]{}}}}}
RES
1b:b-dglc-HEX-1:5
2b:b-dgal-HEX-1:5
3b:b-dglc-HEX-1:5
4s:n-acetyl
5b:b-dgal-HEX-1:5
6b:a-dgro-dgal-NON-2:6|1:a|2:keto|3:d
7s:n-acetyl
LIN
1:1o(4+1)2d
2:2o(3+1)3d
3:3d(2+1)4n
4:3o(4+1)5d
5:5o(6+2)6d
6:6d(5+1)7n
<?xml version="1.0" encoding="UTF-8"?>
<sugar version="1.0">
<residues>
<basetype id="1" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
<basetype id="2" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dgal-HEX-1:5">
<stemtype id="1" type="dgal" />
</basetype>
<basetype id="3" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
<substituent id="4" name="n-acetyl" />
<basetype id="5" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dgal-HEX-1:5">
<stemtype id="1" type="dgal" />
</basetype>
<basetype id="6" anomer="a" superclass="non" ringStart="2" ringEnd="6" name="a-dgro-dgal-NON-2:6|1:a|2:keto|3:d">
<stemtype id="1" type="dgro" />
<stemtype id="2" type="dgal" />
<modification type="a" pos_one="1" />
<modification type="keto" pos_one="2" />
<modification type="d" pos_one="3" />
</basetype>
<substituent id="7" name="n-acetyl" />
</residues>
<linkages>
<connection id="1" parent="1" child="2">
<linkage id="1" parentType="o" childType="d">
<parent pos="4" />
<child pos="1" />
</linkage>
</connection>
<connection id="2" parent="2" child="3">
<linkage id="2" parentType="o" childType="d">
<parent pos="3" />
<child pos="1" />
</linkage>
</connection>
<connection id="3" parent="3" child="4">
<linkage id="3" parentType="d" childType="n">
<parent pos="2" />
<child pos="1" />
</linkage>
</connection>
<connection id="4" parent="3" child="5">
<linkage id="4" parentType="o" childType="d">
<parent pos="4" />
<child pos="1" />
</linkage>
</connection>
<connection id="5" parent="5" child="6">
<linkage id="5" parentType="o" childType="d">
<parent pos="6" />
<child pos="2" />
</linkage>
</connection>
<connection id="6" parent="6" child="7">
<linkage id="6" parentType="d" childType="n">
<parent pos="5" />
<child pos="1" />
</linkage>
</connection>
</linkages>
</sugar>

1 - 1 of 1 entries with matching glycan part

a-D-Neup5Ac-(2-6)-b-D-Galp-(1-4)-b-D-GlcpNAc-(1-3)-b-D-Galp-(1-4)-b-D-Glcp-(1-1)-Ceramide
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Taxons: 3 |
- GSL core, neolacto-type (Show) (Search Database)
- LSTc
- LST c
- LS-Tetrasaccharide c
Superclasses:
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Residues:
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1 - 5 of 7 PDB entries

PDB ID 5xrs:
Crystal structure of A/Minnesota/11/2010 (H3N2) influenza virus hemagglutinin in complex with LSTc
Description: Hemagglutinin
Source: Influenza A virus (A/swine/Minnesota/A01134337/2010(H3N2))
Experimental method: X-RAY DIFFRACTION
Resolution: 2.907Å
Release date: 2018-07-25
Entry features 12 distinct glycan structures [32 instances].

PDB ID 4x13:
JC Polyomavirus genotype 3 VP1 in complex with LSTc pentasaccharide
Description: JC polyomavirus VP1 from a genotype 3 strain
Source: JC polyomavirus type 3
Experimental method: X-RAY DIFFRACTION
Resolution: 2Å
Release date: 2015-04-22
Entry features 2 distinct glycan structures [3 instances].

PDB ID 2yp4:
Haemagglutinin of 2004 Human H3N2 Virus in Complex with Human Receptor Analogue LSTc
Description: HEMAGGLUTININ
Source: INFLUENZA A VIRUS
Experimental method: X-RAY DIFFRACTION
Resolution: 1.85Å
Release date: 2012-11-07
Entry features 4 distinct glycan structures [7 instances].

PDB ID 2ypg:
Haemagglutinin of 1968 Human H3N2 Virus in Complex with Human Receptor Analogue LSTc
Description: HEMAGGLUTININ HA1 CHAIN, HEMAGGLUTININ HA2 CHAIN
Source: Influenza A virus (A/X-31(H3N2))
Experimental method: X-RAY DIFFRACTION
Resolution: 2.85Å
Release date: 2012-11-07
Entry features 7 distinct glycan structures [17 instances].

PDB ID 3nxd:
JC polyomavirus VP1 in complex with LSTc
Description: Major capsid protein VP1
Source: JC polyomavirus
Experimental method: X-RAY DIFFRACTION
Resolution: 2Å
Release date: 2010-11-17
Entry features 1 distinct glycan structures [2 instances].
1 - 5 of 7 literature references

Reference #21986
Zhang J; Zhang Z; Holst S; Blöchl C; Madunic K; Wuhrer M; Ten Dijke P; Zhang T
Transforming growth factor-β challenge alters the N-, O-, and glycosphingolipid glycomes in PaTu-S pancreatic adenocarcinoma cells.
Published 2022 in J Biol Chem, 298: 101717
Reference contains 26 structures

Reference #22508
Munday RJ; Coradin T; Nimmo R; Lad Y; Hyde SC; Mitrophanos K; Gill DR
Sendai F/HN pseudotyped lentiviral vector transduces human ciliated and non-ciliated airway cells using α 2,3 sialylated receptors.
Published 2022 in Mol Ther Methods Clin Dev, 26: 239-252
Reference contains 7 structures

Reference #21814
Roderer D; Bröcker F; Sitsel O; Kaplonek P; Leidreiter F; Seeberger PH; Raunser S
Glycan-dependent cell adhesion mechanism of Tc toxins.
Published 2020 in Nat Commun, 11: 2694
Reference contains 13 structures

Reference #20425
Macchi E; Rudd TR; Raman R; Sasisekharan R; Yates EA; Naggi A; Guerrini M; Elli S
Nuclear Magnetic Resonance and Molecular Dynamics Simulation of the Interaction between Recognition Protein H7 of the Novel Influenza Virus H7N9 and Glycan Cell Surface Receptors.
Published 2016 in Biochemistry, 55: 6605-6616
Reference contains 2 structures

Reference #19169
Ströh LJ; Maginnis MS; Blaum BS; Nelson CD; Neu U; Gee GV; O'Hara BA; Motamedi N; DiMaio D; Atwood WJ; Stehle T
The Greater Affinity of JC Polyomavirus Capsid for α2,6-Linked Lactoseries Tetrasaccharide c than for Other Sialylated Glycans Is a Major Determinant of Infectivity.
Published 2015 in J. Virol., 89: 6364-75
Reference contains 5 structures
1 - 4 of 4 literature references from PDB entries

Reference #20561
Bangaru S; Zhang H; Gilchuk IM; Voss TG; Irving RP; Gilchuk P; Matta P; Zhu X; Lang S; Nieusma T; Richt JA; Albrecht RA; Vanderven HA; Bombardi R; Kent SJ; Ward AB; Wilson IA; Crowe JE
A multifunctional human monoclonal neutralizing antibody that targets a unique conserved epitope on influenza HA.
Published 2018 in Nat Commun, 9: 2669

Reference #18379
Lin YP; Xiong X; Wharton SA; Martin SR; Coombs PJ; Vachieri SG; Christodoulou E; Walker PA; Liu J; Skehel JJ; Gamblin SJ; Hay AJ; Daniels RS; McCauley JW
Evolution of the receptor binding properties of the influenza A(H3N2) hemagglutinin.
Published 2012 in Proc. Natl. Acad. Sci. U.S.A., 109: 21474-9

Reference #16388
Gamblin SJ; Haire LF; Russell RJ; Stevens DJ; Xiao B; Ha Y; Vasisht N; Steinhauer DA; Daniels RS; Elliot A; Wiley DC; Skehel JJ
The structure and receptor binding properties of the 1918 influenza hemagglutinin.
Published 2004 in Science, 303: 1838-42

Reference #15985
Ha Y; Stevens DJ; Skehel JJ; Wiley DC
X-ray structures of H5 avian and H9 swine influenza virus hemagglutinins bound to avian and human receptor analogs.
Published 2001 in Proc. Natl. Acad. Sci. U.S.A., 98: 11181-6
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