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Glycosciences.DB structure entry #22460:
a-D-neup5ac-(2-3)-b-D-Galp-(1-3)-b-D-GalpNAc-(1-4)-b-D-Galp-(1-4)-b-D-Glcp
|
a-D-Neup5ac-(2-8)-a-D-Neup5ac-(2-3)+
[][B-D-GLCP]{[(4+1)][B-D-GALP]{[(3+2)][A-D-NEUP5AC]{[(8+2)][A-D-NEUP5AC]{}}[(4+1)][B-D-GALPNAC]{[(3+1)][B-D-GALP]{[(3+2)][A-D-NEUP5AC]{}}}}}
RES
1b:b-dglc-HEX-1:5
2b:b-dgal-HEX-1:5
3b:a-dgro-dgal-NON-2:6|1:a|2:keto|3:d
4s:n-acetyl
5b:a-dgro-dgal-NON-2:6|1:a|2:keto|3:d
6s:n-acetyl
7b:b-dgal-HEX-1:5
8s:n-acetyl
9b:b-dgal-HEX-1:5
10b:a-dgro-dgal-NON-2:6|1:a|2:keto|3:d
11s:n-acetyl
LIN
1:1o(4+1)2d
2:2o(3+2)3d
3:3d(5+1)4n
4:3o(8+2)5d
5:5d(5+1)6n
6:2o(4+1)7d
7:7d(2+1)8n
8:7o(3+1)9d
9:9o(3+2)10d
10:10d(5+1)11n
<?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="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="4" name="n-acetyl" />
<basetype id="5" 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="6" name="n-acetyl" />
<basetype id="7" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dgal-HEX-1:5">
<stemtype id="1" type="dgal" />
</basetype>
<substituent id="8" name="n-acetyl" />
<basetype id="9" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dgal-HEX-1:5">
<stemtype id="1" type="dgal" />
</basetype>
<basetype id="10" 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="11" 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="2" />
</linkage>
</connection>
<connection id="3" parent="3" child="4">
<linkage id="3" parentType="d" childType="n">
<parent pos="5" />
<child pos="1" />
</linkage>
</connection>
<connection id="4" parent="3" child="5">
<linkage id="4" parentType="o" childType="d">
<parent pos="8" />
<child pos="2" />
</linkage>
</connection>
<connection id="5" parent="5" child="6">
<linkage id="5" parentType="d" childType="n">
<parent pos="5" />
<child pos="1" />
</linkage>
</connection>
<connection id="6" parent="2" child="7">
<linkage id="6" parentType="o" childType="d">
<parent pos="4" />
<child pos="1" />
</linkage>
</connection>
<connection id="7" parent="7" child="8">
<linkage id="7" parentType="d" childType="n">
<parent pos="2" />
<child pos="1" />
</linkage>
</connection>
<connection id="8" parent="7" child="9">
<linkage id="8" parentType="o" childType="d">
<parent pos="3" />
<child pos="1" />
</linkage>
</connection>
<connection id="9" parent="9" child="10">
<linkage id="9" parentType="o" childType="d">
<parent pos="3" />
<child pos="2" />
</linkage>
</connection>
<connection id="10" parent="10" child="11">
<linkage id="10" parentType="d" childType="n">
<parent pos="5" />
<child pos="1" />
</linkage>
</connection>
</linkages>
</sugar>

1 - 2 of 2 entries with matching glycan part

a-D-Neup5Ac-(2-3)-b-D-Galp-(1-3)-b-D-GalpNAc-(1-4)+
|
b-D-Galp-(1-4)-b-D-Glcp-(1-1)-Ceramide
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a-D-Neup5Ac-(2-8)-a-D-Neup5Ac-(2-3)+
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Taxons: 16 |

a-D-Neup5Ac-(2-3)-b-D-Galp-(1-3)-b-D-GalpNAc-(1-4)+
|
b-D-Galp-(1-4)-b-D-Glcp-(1-O)-<BSA>
|
a-D-Neup5Ac-(2-8)-a-D-Neup5Ac-(2-3)+
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Taxons |
- GSL core, ganglio-type (Show) (Search Database)
Chemical Formula: | ||
Molec. Weight: | ||
# Atoms: | ||
# Residues: | 7 | |
# Heavy Atoms: |
Superclasses:
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Residues:
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1 - 5 of 98 literature references

Reference #21775
Jayaprakash NG; Surolia A
Spike Protein and the Various Cell-Surface Carbohydrates: An Interaction Study.
Published 2021 in ACS Chem Biol, : epub ahead of print
Reference contains 32 structures

Reference #15422
Ogushi KI; Wada A; Niidome T; Okuda T; Llanes R; Nakayama M; Nishi Y; Kurazono H; Smith KD; Aderem A; Moss J; Hirayama T
Gangliosides act as co-receptors for Salmonella enteritidis FliC and promote FliC-induction of human b-defensin-2 expression in Caco-2 cells.
Published 2004 in J Biol Chem, :
Reference contains 2 structures

Reference #15417
Ahn-Yoon S; DeCory TR; Durst RA
Ganglioside-liposome immunoassay for the detection of botulinum toxin.
Published 2004 in Anal Bioanal Chem, 378: 68-75
Reference contains 1 structure

Reference #15423
Tringali C; Papini N; Fusi P; Croci G; Borsani G; Preti A; Tortora P; Tettamanti G; Venerando B; Monti E
Properties of recombinant human cytosolic sialidase HsNEU2. The enzyme hydrolyzes monomerically dispersed GM1 ganglioside molecules.
Published 2004 in J Biol Chem, 279: 3169-3179
Reference contains 4 structures

Reference #15421
Rummel A; Mahrhold S; Bigalke H; Binz T
The HCC-domain of botulinum neurotoxins A and B exhibits a singular ganglioside binding site displaying serotype specific carbohydrate interaction.
Published 2004 in Mol Microbiol, 51: 631-643
Reference contains 1 structure
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