Literature DB >> 15843594

Processive lipid galactosyl/glucosyltransferases from Agrobacterium tumefaciens and Mesorhizobium loti display multiple specificities.

Georg Hölzl1, Martina Leipelt, Claudia Ott, Ulrich Zähringer, Buko Lindner, Dirk Warnecke, Ernst Heinz.   

Abstract

The glycosyltransferase family 21 (GT21) includes both enzymes of eukaryotic and prokaryotic organisms. Many of the eukaryotic enzymes from animal, plant, and fungal origin have been characterized as uridine diphosphoglucose (UDP-Glc):ceramide glucosyltransferases (glucosylceramide synthases [Gcs], EC 2.4.1.80). As the acceptor molecule ceramide is not present in most bacteria, the enzymatic specificities and functions of the corresponding bacterial glycosyltransferases remain elusive. In this study, we investigated the homologous and heterologous expression of GT21 enzymes from Agrobacterium tumefaciens and Mesorhizobium loti in A. tumefaciens, Escherichia coli, and the yeast Pichia pastoris. Glycolipid analyses of the transgenic organisms revealed that the bacterial glycosyltransferases are involved in the synthesis of mono-, di- and even tri-glycosylated glycolipids. As products resulting from their activity, we identified 1,2-diacyl-3-(O-beta-D-galacto-pyranosyl)-sn-glycerol, 1,2-diacyl-3-(O-beta-D-gluco-pyranosyl)-sn-glycerol as well as higher glycosylated lipids such as 1,2-diacyl-3-[O-beta-D-galacto-pyranosyl-(1-->6)-O-beta-D-galacto-pyranosyl]-sn-glycerol, 1,2-diacyl-3-[O-beta-D-gluco-pyranosyl-(1-->6)-O-beta-D-galacto-pyranosyl]-sn-glycerol, 1,2-diacyl-3-[O-beta-D-gluco-pyranosyl-(1-->6)-O-beta-D-gluco-pyranosyl]-sn-glycerol, and the deviatingly linked diglycosyldiacylglycerol 1,2-diacyl-3-[O-beta-D-gluco-pyranosyl-(1-->3)-O-beta-D-galacto-pyranosyl]-sn-glycerol. From a mixture of triglycosyldiacylglycerols, 1,2-diacyl-3-[O-beta-D-galacto-pyranosyl-(1-->6)-O-beta-D-galacto-pyranosyl-(1-->6)-O-beta-D-galacto-pyranosyl]-sn-glycerol could be separated in a pure form. In vitro enzyme assays showed that the glycosyltransferase from A. tumefaciens favours uridine diphosphogalactose (UDP-Gal) over UDP-Glc. In conclusion, the bacterial GT21 enzymes differ from the eukaryotic ceramide glucosyltransferases by the successive transfer of up to three galactosyl and glucosyl moieties to diacylglycerol.

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Year:  2005        PMID: 15843594     DOI: 10.1093/glycob/cwi066

Source DB:  PubMed          Journal:  Glycobiology        ISSN: 0959-6658            Impact factor:   4.313


  18 in total

1.  Expression and characterization of a Mycoplasma genitalium glycosyltransferase in membrane glycolipid biosynthesis: potential target against mycoplasma infections.

Authors:  Eduardo Andrés; Núria Martínez; Antoni Planas
Journal:  J Biol Chem       Date:  2011-08-11       Impact factor: 5.157

Review 2.  Biosynthesis and immunogenicity of glucosylceramide in Cryptococcus neoformans and other human pathogens.

Authors:  Ryan Rhome; Travis McQuiston; Talar Kechichian; Alicja Bielawska; Mirko Hennig; Monica Drago; Giulia Morace; Chiara Luberto; Maurizio Del Poeta
Journal:  Eukaryot Cell       Date:  2007-08-10

3.  Functional differences between galactolipids and glucolipids revealed in photosynthesis of higher plants.

Authors:  Georg Hölzl; Sandra Witt; Amélie A Kelly; Ulrich Zähringer; Dirk Warnecke; Peter Dörmann; Ernst Heinz
Journal:  Proc Natl Acad Sci U S A       Date:  2006-04-28       Impact factor: 11.205

4.  Accumulation of novel glycolipids and ornithine lipids in Mesorhizobium loti under phosphate deprivation.

Authors:  Hannah Diercks; Adrian Semeniuk; Nicolas Gisch; Hermann Moll; Katarzyna A Duda; Georg Hölzl
Journal:  J Bacteriol       Date:  2014-11-17       Impact factor: 3.490

5.  A processive glycosyltransferase involved in glycolipid synthesis during phosphate deprivation in Mesorhizobium loti.

Authors:  Emanuel A Devers; Vera Wewer; Isabel Dombrink; Peter Dörmann; Georg Hölzl
Journal:  J Bacteriol       Date:  2011-01-14       Impact factor: 3.490

6.  Glucosylceramide transferase in Giardia preferentially catalyzes the synthesis of galactosylceramide during encystation.

Authors:  Leobarda Robles-Martinez; Tavis L Mendez; Jennifer Apodaca; Siddhartha Das
Journal:  Mol Biochem Parasitol       Date:  2016-11-10       Impact factor: 1.759

7.  Tryptophan residues promote membrane association for a plant lipid glycosyltransferase involved in phosphate stress.

Authors:  Changrong Ge; Alexander Georgiev; Anders Öhman; Åke Wieslander; Amélie A Kelly
Journal:  J Biol Chem       Date:  2010-12-14       Impact factor: 5.157

8.  Structural Analysis of Glycosylglycerolipids Using NMR Spectroscopy.

Authors:  Wiebke Knaack; Georg Hölzl; Nicolas Gisch
Journal:  Methods Mol Biol       Date:  2021

9.  Thin-Layer Chromatography.

Authors:  Georg Hölzl; Peter Dörmann
Journal:  Methods Mol Biol       Date:  2021

10.  A bifunctional glycosyltransferase from Agrobacterium tumefaciens synthesizes monoglucosyl and glucuronosyl diacylglycerol under phosphate deprivation.

Authors:  Adrian Semeniuk; Christian Sohlenkamp; Katarzyna Duda; Georg Hölzl
Journal:  J Biol Chem       Date:  2014-02-20       Impact factor: 5.157

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