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Fucosylated inhibitors of recently identified bangle lectin from Photorhabdus asymbiotica

G. Paulíková, J. Houser, M. Kašáková, B. Oroszová, B. Bertolotti, K. Parkan, J. Moravcová, M. Wimmerová,

. 2019 ; 9 (1) : 14904. [pub] 20191017

Jazyk angličtina Země Velká Británie

Typ dokumentu časopisecké články, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/bmc20028788

A recently described bangle lectin (PHL) from the bacterium Photorhabdus asymbiotica was identified as a mainly fucose-binding protein that could play an important role in the host-pathogen interaction and in the modulation of host immune response. Structural studies showed that PHL is a homo-dimer that contains up to seven L-fucose-specific binding sites per monomer. For these reasons, potential ligands of the PHL lectin: α-L-fucopyranosyl-containing mono-, di-, tetra-, hexa- and dodecavalent ligands were tested. Two types of polyvalent structures were investigated - calix[4]arenes and dendrimers. The shared feature of all these structures was a C-glycosidic bond instead of the more common but physiologically unstable O-glycosidic bond. The inhibition potential of the tested structures was assessed using different techniques - hemagglutination, surface plasmon resonance, isothermal titration calorimetry, and cell cross-linking. All the ligands proved to be better than free L-fucose. The most active hexavalent dendrimer exhibited affinity three orders of magnitude higher than that of standard L-fucose. To determine the binding mode of some ligands, crystal complex PHL/fucosides 2 - 4 were prepared and studied using X-ray crystallography. The electron density in complexes proved the presence of the compounds in 6 out of 7 fucose-binding sites.

Citace poskytuje Crossref.org

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$a A recently described bangle lectin (PHL) from the bacterium Photorhabdus asymbiotica was identified as a mainly fucose-binding protein that could play an important role in the host-pathogen interaction and in the modulation of host immune response. Structural studies showed that PHL is a homo-dimer that contains up to seven L-fucose-specific binding sites per monomer. For these reasons, potential ligands of the PHL lectin: α-L-fucopyranosyl-containing mono-, di-, tetra-, hexa- and dodecavalent ligands were tested. Two types of polyvalent structures were investigated - calix[4]arenes and dendrimers. The shared feature of all these structures was a C-glycosidic bond instead of the more common but physiologically unstable O-glycosidic bond. The inhibition potential of the tested structures was assessed using different techniques - hemagglutination, surface plasmon resonance, isothermal titration calorimetry, and cell cross-linking. All the ligands proved to be better than free L-fucose. The most active hexavalent dendrimer exhibited affinity three orders of magnitude higher than that of standard L-fucose. To determine the binding mode of some ligands, crystal complex PHL/fucosides 2 - 4 were prepared and studied using X-ray crystallography. The electron density in complexes proved the presence of the compounds in 6 out of 7 fucose-binding sites.
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$a Houser, Josef $u Central European Institute of Technology, Masaryk University, Brno, Czech Republic. National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Brno, Czech Republic.
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$a Kašáková, Martina $u Department of Chemistry of Natural Compounds, University of Chemistry and Technology, Prague, Czech Republic.
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$a Oroszová, Beáta $u Department of Chemistry of Natural Compounds, University of Chemistry and Technology, Prague, Czech Republic.
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$a Bertolotti, Benedetta $u Department of Chemistry of Natural Compounds, University of Chemistry and Technology, Prague, Czech Republic.
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$a Parkan, Kamil $u Department of Chemistry of Natural Compounds, University of Chemistry and Technology, Prague, Czech Republic.
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$a Moravcová, Jitka $u Department of Chemistry of Natural Compounds, University of Chemistry and Technology, Prague, Czech Republic.
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$a Wimmerová, Michaela $u Central European Institute of Technology, Masaryk University, Brno, Czech Republic. michaw@chemi.muni.cz. National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Brno, Czech Republic. michaw@chemi.muni.cz. Department of Biochemistry, Faculty of Science, Masaryk University, Brno, Czech Republic. michaw@chemi.muni.cz.
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