Glycosyltransferases in S-Layer Glycan Assembly (P18013-B10)
- Forschungscluster "Nanobiotechnologien"
Abstract
Glycosyltransferases in S-Layer Glycan Assembly Glycosyltransferases play an important role in the assembly process of glycan chains of glycoproteins. In general, they are involved in the transfer of nucleotide-activated carbohydrate intermediates into growing glycan chains. While their mode of action is well-established for many eukaryotic glycoproteins, the data available from prokaryotic glycoproteins is still scarce. The aim of the proposed research project is the expression and functional characterization of the glycosyltransferases involved in the assembly and translocation of the S-layer glycan chains of the S-layer glycoprotein from Geobacillus stearothermophilus NRS 2004/3a. For this organism and also for related Aneurinibacillus thermoaerophilus strains, now the first completely sequenced slg (surface layer glycosylation) gene clusters are available. Although the glycan chains of G. stearothermophilus NRS 2004/3a S-layer protein SgsE consist only of L-rhamnose-containing homopolymers, different rhamnosyltransferases have been identified in the slg gene cluster by data base sequence comparison. Therefore, the characterization of their specificities is of major importance for the understanding of the entire glycan assembly process. Since L-rhamnose is not present in higher organisms, the corresponding transferases may be interesting canditates for the development of defense strategies against prokaryotes with rhamnose-containing polysaccharides. Motif search in the deduced amino acid sequences of other genes from the slg gene cluster of G. stearothermophilus NRS 2004/3a indicated the presence of different glycosyltransferase domains. These putative proteins might be involved in chain length determination and translocation process of the S-layer glycans across the cytoplasmic membrane. The presence of an ATP-dependent ABC-2 transporter system implies growth of the S-layer glycan at the non-reducing end of the chain. Since the investigated Gram-positive bacteria of interest have not been transformable so far, the expression and functional characterization of the putative gene products will be performed in heterologous systems such as Escherichia coli and Lactococcus lactis. In addition, exploratory experiments are planned for a modification of the genuine glycan structure of the S layer glycoprotein of G. stearothermophilus NRS 2004/3a. The proposed investigations are expected to provide eventually foundations for the production of modified S-layer glycoproteins by “carbohydrate engineering” that are useful for nanobiotechnological and biomedical applications.
S-layer glycoproteins: new tools for nanoengineering
Autoren: Schäffer, C., Novotny, R., Steiner, K., Giry-Laterriere, M., Scheberl, A., Zayni, S., Messner, P. Jahr: 2005
Conference & Workshop proceedings, paper, abstract
:Novel biocatalysts based on S-layer self-assembly of Geobacillus stearothermophilus NRS 2004/3a: a nanobiotechnological approach.
Autoren: Schäffer, C; Novotny, R; Küpcü, S; Zayni, S; Scheberl, A; Friedmann, J; Sleytr, UB; Messner, P; Jahr: 2007
Journal articles
Biosynthesis of dTDP-3-acetamido-3,6-dideoxy-alpha-D-glucose.
Autoren: Pföstl, A; Zayni, S; Hofinger, A; Kosma, P; Schäffer, C; Messner, P Jahr: 2008
Journal articles
New insights into the glycosylation of the surface layer protein SgsE from Geobacillus stearothermophilus NRS 2004/3a.
Autoren: Steiner, K; Pohlentz, G; Dreisewerd, K; Berkenkamp, S; Messner, P; Peter-Katalinic, J; Schäffer, C Jahr: 2006
Journal articles
Characterization of outer membrane vesicles released by the psychrotolerant bacterium Pseudoalteromonas antarctica NF3.
Autoren: Nevot, M; Deroncelé, V; Messner, P; Guinea, J; Mercadé, E Jahr: 2006
Journal articles
Functional characterization of the initiation enzyme of S-layer glycoprotein glycan biosynthesis in Geobacillus stearothermophilus NRS 2004/3a.
Autoren: Steiner, K; Novotny, R; Patel, K; Vinogradov, E; Whitfield, C; Valvano, MA; Messner, P; Schäffer, C Jahr: 2007
Journal articles
Sequencing of O-glycopeptides derived from an S-layer glycoprotein of Geobacillus stearothermophilus NRS 2004/3a containing up to 51 monosaccharide residues at a single glycosylation site by fourier transform ion cyclotron resonance infrared multiphoton dissociation mass spectrometry.
Autoren: Bindila, L; Steiner, K; Schäffer, C; Messner, P; Mormann, M; Peter-Katalinic, J Jahr: 2007
Journal articles
S-layer-based nanoarrays
Autoren: Messner, P., Küpcü, S., Scheberl, A., Zayni, S., Friedmann, J., Sleytr, U.B., Schäffer, C. Jahr: 2007
Conference & Workshop proceedings, paper, abstract
:Crystalline bacterial cell surface layers (S-layers)
Autoren: Sleytr, U.B., Messner, P. Jahr: 2007
Chapter in collected volumes
:S-layer nanoglycobiology of bacteria.
Autoren: Messner, P; Steiner, K; Zarschler, K; Schäffer, C; Jahr: 2008
Journal articles
Functional characterization of S-layer glycoprotein glycan biosynthesis in Geobacillus stearothermophilus NRS 2004/3a
Autoren: Steiner, K., Werz, D.B., Zarschler, K., Seeberger,P.H., Kosma, P., Messner, P., Schäffer, C. Jahr: 2008
Conference & Workshop proceedings, paper, abstract
:Molecular basis of S-layer glycoprotein glycan biosynthesis in Geobacillus stearothermophilus.
Autoren: Steiner, K; Novotny, R; Werz, DB; Zarschler, K; Seeberger, PH; Hofinger, A; Kosma, P; Schäffer, C; Messner, P Jahr: 2008
Journal articles
Recombinant glycans on an S-layer self-assembly protein: a new dimension for nanopatterned biomaterials.
Autoren: Steiner, K; Hanreich, A; Kainz, B; Hitchen, PG; Dell, A; Messner, P; Schäffer, C Jahr: 2008
Journal articles
The glycosylation mechanism of the surface (S-) layer protein of Paenibacillus alvei
Autoren: Zarschler, K., Janesch, B., Schäffer, C., Messner, P. Jahr: 2008
Conference & Workshop proceedings, paper, abstract
:Identification of gly¬cosylation sites on bacterial surface layer proteins
Autoren: Steiner, K., Peter-Kataliniæ, J., Schäffer, C., Messner, P. Jahr: 2008
Conference & Workshop proceedings, paper, abstract
:Occurrence, structure, chemistry, genetics, morphogenesis, and functions of S-layers
Autoren: Messner, P., Schäffer, C., Egelseer, E.M., Sleytr, U.B. Jahr: 2010
Chapter in collected volumes
:S-Layers, Microbial, Biotechnological Applications
Autoren: Egelseer, E.M., Ilk, N., Pum, D., Messner, P., Schäffer, C., Schuster, B., Sleytr, U.B. Jahr: 2010
Chapter in collected volumes
:Nanobiotechnological Applications of S-Layers
Autoren: Sleytr, U.B., Egelseer, E.M., Ilk, N., Messner, P., Schäffer, C., Pum, D., Schuster, B. Jahr: 2010
Chapter in collected volumes
:Virus engineered colloidal particles - a surface display system
Autoren: Fischlechner, M; Toellner, L; Messner, P; Grabherr, R; Donath, E Jahr: 2006
Journal articles
:S-layer glycoproteins. Proc. Wien, p. 20, abstract ST-II.
Autoren: Novotny, R., Steiner, K., Zarschler, K., Giry-Laterriere, M., Zayni, S., Scheberl, A., Schäffer, C., Messner, P. Jahr: 2005
Conference & Workshop proceedings, paper, abstract
:Is an ABC-transporter responsible for the export of the cytoplasmatically syntesized surface layer (S-layer) glycan to the cell surface Geobacillus Stearothermophilus NRS 2004/3a?
Autoren: Zarschler, K., Novotny, R., Steiner, K., Messner, P., Schäffer, C. Jahr: 2006
Conference & Workshop proceedings, paper, abstract
:RmlC, a C3' and C5' carbohydrate epimerase, appears to operate via an intermediate with an unusual twist boat conformation.
Autoren: Dong, C; Major, LL; Srikannathasan, V; Errey, JC; Giraud, MF; Lam, JS; Graninger, M; Messner, P; McNeil, MR; Field, RA; Whitfield, C; Naismith, JH Jahr: 2007
Journal articles
Glycosylation of bacterial surface layer proteins: new aspects
Autoren: Schäffer, C., Steiner, K., Zarschler, K., Giry-Laterriere, M., Novotny, R., Messner, P. Jahr: 2006
Conference & Workshop proceedings, paper, abstract
:A temperature-sensitive expression system based on the Geobacillus stearothermophilus NRS 2004/3a sgsE surface-layer gene promoter.
Autoren: Novotny, R; Berger, H; Schinko, T; Messner, P; Schäffer, C; Strauss, J Jahr: 2008
Journal articles
The dTDP-4-dehydro-6-deoxyglucose reductase encoding fcd gene is part of the surface layer glycoprotein glycosylation gene cluster of Geobacillus tepidamans GS5-97T.
Autoren: Zayni, S; Steiner, K; Pföstl, A; Hofinger, A; Kosma, P; Schäffer, C; Messner, P Jahr: 2007
Journal articles
S-layer protein glycosylation: from basics to neoglycosylated self-assembly proteins for nanobiotechnology
Autoren: Ristl, R., Steiner, K., Messner, P., Schäffer, C. Jahr: 2008
Conference & Workshop proceedings, paper, abstract
:S-layer glycoproteins – a versatile tool in nanobiotechnology
Autoren: Messner, P., Steiner, K., Zarschler, K., Prchal, M., Hanreich, A., Zayni, S., Scheberl, A., Sleytr, U.B., Schäffer, C Jahr: 2007
Journal articles
:“Intelligent” glycoprotein self-assembly systems: novel strategies for nanobiotechnology
Autoren: Messner, P., Steiner, K., Zarschler, K., Prchal, M., Zayni, S., Scheberl, A., Sleytr, U.B., Schäffer, C. Jahr: 2007
Journal articles
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Mitarbeiter*Innen
Paul Messner
Ao.Univ.-Prof.i.R. Dipl.-Ing.Dr.nat.techn. Paul Messner
paul.messner@boku.ac.at
Project Leader
01.04.2005 - 31.05.2008
Christina Schäffer
Univ.Prof. Dipl.-Ing.Dr.nat.techn. Christina Schäffer
christina.schaeffer@boku.ac.at
Tel: +43 1 47654-80203
Sub Projectleader
01.04.2005 - 31.05.2008

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