Journal:Acta Cryst F:S2053230X25003905

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<b>Molecular Tour</b><br>
<b>Molecular Tour</b><br>
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Agaricus bisporus mannose-binding protein (Abmb, 150 residues) is a ricin B-like type lectin, which has a beta-trefoil fold. Previously reported recombinant C-terminal His-tagged Abmb (additional 12 residues + 6 x His-tag, Abmb168h) showed specific binding activity to mannose and mannitol in surface plasmon resonance analysis. The structure of a recombinant Abmb including additional six residues at the C-terminus after cleavage by TEV protease (Abmb156, PDB code: 5EHA) has been reported, however, carbohydrate binding site of Abmb has not yet been determined.
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Agaricus bisporus mannose-binding protein (Abmb, 150 residues) is a ricin B-like type lectin, which has a beta-trefoil fold. Previously reported recombinant C-terminal His-tagged Abmb (additional 12 residues + 6 x His-tag, Abmb168h) showed specific binding activity to mannose and mannitol in surface plasmon resonance analysis. The structure of a recombinant Abmb including additional six residues at the C-terminus after cleavage by TEV protease (Abmb156, PDB code: [[5EHA]]) has been reported, however, carbohydrate binding site of Abmb has not yet been determined.
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The present structure of a recombinant Abmb with a longer C-terminal region (14 residues + 6 x His-tag, Abmb170h, PDB code: 9UDY) showed high flexibility of several surface loop regions including C-terminal tail. This recombinant Abmb170h did not show binding affinity toward alpha-D-mannose but showed weak binding affinity toward GalNAc and beta-D-galactose in glycan search assay.
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The present structure of a recombinant Abmb with a longer C-terminal region (14 residues + 6 x His-tag, Abmb170h, PDB code: [[9UDY]]) showed high flexibility of several surface loop regions including C-terminal tail. This recombinant Abmb170h did not show binding affinity toward alpha-D-mannose but showed weak binding affinity toward GalNAc and beta-D-galactose in glycan search assay.
The structure of Abmb170h reveals that the C-terminal region has an impact on the sugar binding and would be important to the mannose binding affinity.
The structure of Abmb170h reveals that the C-terminal region has an impact on the sugar binding and would be important to the mannose binding affinity.
<b>References</b><br>
<b>References</b><br>

Revision as of 05:37, 3 May 2025

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