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Glycosciences.DB structure entry #1:
b-D-Glcp-(1-6)+
|
b-D-Glcp-(1-6)-b-D-Glcp-(1-6)+
| |
b-D-Glcp-(1-3)+ b-D-Glcp-(1-6)-D-Glc
|
b-D-Glcp-(1-3)+
[][D-GLC]{[(6+1)][B-D-GLCP]{[(3+1)][B-D-GLCP]{}[(6+1)][B-D-GLCP]{[(6+1)][B-D-GLCP]{[(3+1)][B-D-GLCP]{}[(6+1)][B-D-GLCP]{}}}}}
RES
1b:x-dglc-HEX-x:x
2b:b-dglc-HEX-1:5
3b:b-dglc-HEX-1:5
4b:b-dglc-HEX-1:5
5b:b-dglc-HEX-1:5
6b:b-dglc-HEX-1:5
7b:b-dglc-HEX-1:5
LIN
1:1o(6+1)2d
2:2o(3+1)3d
3:2o(6+1)4d
4:4o(6+1)5d
5:5o(3+1)6d
6:5o(6+1)7d
<?xml version="1.0" encoding="UTF-8"?>
<sugar version="1.0">
<residues>
<basetype id="1" anomer="x" superclass="hex" ringStart="-1" ringEnd="-1" name="x-dglc-HEX-x:x">
<stemtype id="1" type="dglc" />
</basetype>
<basetype id="2" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
<basetype id="3" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
<basetype id="4" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
<basetype id="5" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
<basetype id="6" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
<basetype id="7" anomer="b" superclass="hex" ringStart="1" ringEnd="5" name="b-dglc-HEX-1:5">
<stemtype id="1" type="dglc" />
</basetype>
</residues>
<linkages>
<connection id="1" parent="1" child="2">
<linkage id="1" parentType="o" childType="d">
<parent pos="6" />
<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="2" child="4">
<linkage id="3" parentType="o" childType="d">
<parent pos="6" />
<child pos="1" />
</linkage>
</connection>
<connection id="4" parent="4" child="5">
<linkage id="4" parentType="o" childType="d">
<parent pos="6" />
<child pos="1" />
</linkage>
</connection>
<connection id="5" parent="5" child="6">
<linkage id="5" parentType="o" childType="d">
<parent pos="3" />
<child pos="1" />
</linkage>
</connection>
<connection id="6" parent="5" child="7">
<linkage id="6" parentType="o" childType="d">
<parent pos="6" />
<child pos="1" />
</linkage>
</connection>
</linkages>
</sugar>

Chemical Formula: | C42H72O36 | #C | #H | #O | |
Molec. Weight: | 1152 | 42 | 72 | 36 | |
# Atoms: | 150 | ||||
# Residues: | 7 | ||||
# Heavy Atoms: | 78 |
Superclasses:
|
Residues:
|
1 - 5 of 15 literature references

Reference #12889
Cote F; Cheong JJ; Alba R; Hahn MG
Characterization of binding proteins that recognize oligoglucoside elicitors of phytoalexin synthesis in soybean
Published 1995 in Physiol Plant, 93: 401-410
Reference contains 18 structures

Reference #1509
Hahn MG; Cheong JJ; Alba R; Cote F
Characterization of hepta-.beta.-glucoside elicitor-binding protein(s) in soybean
Published 1994 in Biochem Soc Trans, 22: 408-414
Reference contains 17 structures

Reference #13343
Cheong JJ; Alba R; Cote F; Enkerli J; Hahn MG
Solubilization of functional plasma membrane-localized hepta-.beta.-glucoside elicitor-binding proteins from soybean
Published 1993 in Plant Physiol, 103: 1173-1182
Reference contains 8 structures

Reference #13928
Verduyn R; Douwes M; van der Klein PAM; Mosinger EM; van der Marel GA; Van Boom JH
Synthesis of a methyl heptaglucoside: Analogue of the phytoalexin elicitor from Phytophthora megasperma
Published 1993 in Tetrahedron, 49: 7301-7316
Reference contains 1 structure

Reference #12881
Svalheim O; Robertsen B
Elicitation of H2O2 production in cucumber hypocotyl segments by oligo-1,4-.alpha.-D-galacturonides and an oligo-.beta.-glucan preparation from cell walls of Phytophthora megasperma f.sp. glycinea
Published 1993 in Physiol Plant, 88: 675-681
Reference contains 2 structures
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