Christoph Mayer
Christoph Mayer
Bestätigte E-Mail-Adresse bei uni-tuebingen.de
TitelZitiert vonJahr
The E358S mutant of Agrobacterium sp. β‐glucosidase is a greatly improved glycosynthase
C Mayer, DL Zechel, SP Reid, RAJ Warren, SG Withers
FEBS letters 466 (1), 40-44, 2000
1412000
Peptidoglycan turnover and recycling in Gram-positive bacteria
J Reith, C Mayer
Applied microbiology and biotechnology 92 (1), 1, 2011
1192011
β-N-acetylhexosaminidase: a target for the design of antifungal agents
M Horsch, C Mayer, U Sennhauser, DM Rast
Pharmacology & therapeutics 76 (1-3), 187-218, 1997
1171997
The trimeric periplasmic chaperone Skp of Escherichia coli forms 1: 1 complexes with outer membrane proteins via hydrophobic and electrostatic interactions
J Qu, C Mayer, S Behrens, O Holst, JH Kleinschmidt
Journal of molecular biology 374 (1), 91-105, 2007
1142007
Directed evolution of new glycosynthases from Agrobacterium β-glucosidase: a general screen to detect enzymes for oligosaccharide synthesis
C Mayer, DL Jakeman, M Mah, G Karjala, L Gal, RAJ Warren, SG Withers
Chemistry & biology 8 (5), 437-443, 2001
1122001
Directed evolution of new glycosynthases from Agrobacterium β-glucosidase: a general screen to detect enzymes for oligosaccharide synthesis
C Mayer, DL Jakeman, M Mah, G Karjala, L Gal, RAJ Warren, SG Withers
Chemistry & biology 8 (5), 437-443, 2001
1122001
Cell wall-associated enzymes in fungi
DM Rast, D Baumgartner, C Mayer, GO Hollenstein
Phytochemistry 64 (2), 339-366, 2003
1102003
Mechanism of action and identification of Asp242 as the catalytic nucleophile of Vibrio furnisii N-acetyl-β-D-glucosaminidase using 2-acetamido-2-deoxy-5-fluoro-α-L …
DJ Vocadlo, C Mayer, S He, SG Withers
Biochemistry 39 (1), 117-126, 2000
992000
Solid-phase oligosaccharide and glycopeptide synthesis using glycosynthases
JF Tolborg, L Petersen, KJ Jensen, C Mayer, DL Jakeman, RAJ Warren, ...
The Journal of organic chemistry 67 (12), 4143-4149, 2002
932002
Structural and kinetic analysis of Bacillus subtilis N-acetylglucosaminidase reveals a unique Asp-His dyad mechanism
S Litzinger, S Fischer, P Polzer, K Diederichs, W Welte, C Mayer
Journal of Biological Chemistry 285 (46), 35675-35684, 2010
862010
Planctomycetes do possess a peptidoglycan cell wall
O Jeske, M Schüler, P Schumann, A Schneider, C Boedeker, M Jogler, ...
Nature communications 6, 7116, 2015
792015
Cytokine induction by Gram-positive bacteria
C Draing, S Sigel, S Deininger, S Traub, R Munke, C Mayer, L Hareng, ...
Immunobiology 213 (3-4), 285-296, 2008
782008
Bacterial lipopolysaccharides
H Mayer, UR Bhat, H Masoud, J Radziejewska-Lebrecht, C Widemann, ...
Pure and Applied Chemistry 61 (7), 1271-1282, 1989
781989
Muropeptide rescue in Bacillus subtilis involves sequential hydrolysis by β-N-acetylglucosaminidase and N-acetylmuramyl-L-alanine amidase
S Litzinger, A Duckworth, K Nitzsche, C Risinger, V Wittmann, C Mayer
Journal of bacteriology 192 (12), 3132-3143, 2010
632010
Enzymatic Synthesis of Carbon− Fluorine Bonds
DL Zechel, SP Reid, O Nashiru, C Mayer, D Stoll, DL Jakeman, ...
Journal of the American Chemical Society 123 (18), 4350-4351, 2001
622001
Increased cell wall teichoic acid production and D-alanylation are common phenotypes among daptomycin-resistant methicillin-resistant Staphylococcus aureus (MRSA) clinical isolates
U Bertsche, SJ Yang, D Kuehner, S Wanner, NN Mishra, T Roth, M Nega, ...
PLoS One 8 (6), e67398, 2013
612013
Characterization of a β‐N‐acetylhexosaminidase and a β‐N‐acetylglucosaminidase/β‐glucosidase from Cellulomonas fimi
C Mayer, DJ Vocadlo, M Mah, K Rupitz, D Stoll, RAJ Warren, SG Withers
The FEBS journal 273 (13), 2929-2941, 2006
572006
Scission of the lactyl ether bond of N-acetylmuramic acid by Escherichia coli “etherase”
T Jaeger, M Arsic, C Mayer
Journal of Biological Chemistry 280 (34), 30100-30106, 2005
512005
Synthesis of γ-halogenated and long-chain β-hydroxy-α-amino acids and 2-amino-1, 3-diols using threonine aldolases
J Steinreiber, K Fesko, C Mayer, C Reisinger, M Schürmann, H Griengl
Tetrahedron 63 (34), 8088-8093, 2007
502007
MurQ etherase is required by Escherichia coli in order to metabolize anhydro-N-acetylmuramic acid obtained either from the environment or from its own cell wall
T Uehara, K Suefuji, T Jaeger, C Mayer, JT Park
Journal of bacteriology 188 (4), 1660-1662, 2006
502006
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