| Literature DB >> 24945729 |
Katharina Schmölzer1, Christiane Luley-Goedl1, Tibor Czabany2, Doris Ribitsch1, Helmut Schwab3, Hansjörg Weber4, Bernd Nidetzky5.
Abstract
Bacterial sialyltransferases of the glycosyltransferase family GT-80 exhibit pronounced hydrolase activity toward CMP-activated sialyl donor substrates. Using in situ proton NMR, we show that hydrolysis of CMP-Neu5Ac by Pasteurella dagmatis α2,3-sialyltransferase (PdST) occurs with axial-to-equatorial inversion of the configuration at the anomeric center to release the α-Neu5Ac product. We propose a catalytic reaction through a single displacement-like mechanism where water replaces the sugar substrate as a sialyl group acceptor. PdST variants having His(284) in the active site replaced by Asn, Asp or Tyr showed up to 10(4)-fold reduced activity, but catalyzed CMP-Neu5Ac hydrolysis with analogous inverting stereochemistry. The proposed catalytic role of His(284) in the PdST hydrolase mechanism is to facilitate the departure of the CMP leaving group.Entities:
Keywords: Bacterial sialyltransferase; Donor substrate hydrolysis; Glycosyltransferase family GT-80; His(284) mutant; In situ(1)H NMR analysis; Inverting mechanism
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Year: 2014 PMID: 24945729 DOI: 10.1016/j.febslet.2014.05.053
Source DB: PubMed Journal: FEBS Lett ISSN: 0014-5793 Impact factor: 4.124