Synthesis of heparosan oligosaccharides by Pasteurella multocida PmHS2 single-action transferases

Pasteurella multocida heparosan synthase PmHS2 is a dual action glycosyltransferase that catalyzes the polymerization of heparosan polymers in a non-processive manner. The two PmHS2 single-action transferases, obtained previously by site-directed mutagenesis, have been immobilized on Ni(II)-nitrilot...

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Veröffentlicht in:Applied microbiology and biotechnology 2012-09, Vol.95 (5), p.1199-1210
Hauptverfasser: Chavaroche, Anaïs A. E., van den Broek, Lambertus A. M., Boeriu, Carmen, Eggink, Gerrit
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Sprache:eng
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Zusammenfassung:Pasteurella multocida heparosan synthase PmHS2 is a dual action glycosyltransferase that catalyzes the polymerization of heparosan polymers in a non-processive manner. The two PmHS2 single-action transferases, obtained previously by site-directed mutagenesis, have been immobilized on Ni(II)-nitrilotriacetic acid agarose during the purification step. A detailed study of the polymerization process in the presence of non-equal amounts of PmHS2 single-action transferases revealed that the glucuronyl transferase (PmHS2-GlcUA + ) is the limiting catalyst in the polymerization process. Using experimental design, it was determined that the N -acetylglucosaminyl transferase (PmHS2-GlcNAc + ) plays an important role in the control of heparosan chain elongation depending on the number of heparosan chains and the UDP-sugar concentrations present in the reaction mixture. Furthermore, for the first time, the synthesis of heparosan oligosaccharides alternately using PmHS2-GlcUA + and PmHS2-GlcNAc + is reported. It was shown that the synthesis of heparosan oligosaccharides by PmHS2 single-action transferases do not require the presence of template molecules in the reaction mixture.
ISSN:0175-7598
1432-0614
DOI:10.1007/s00253-011-3813-2