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Carbohydrate Research|May 4, 2012
The structure of the wall teichoic acid isolated from Enterococcus faecalis strain 12030Christian Theilacker, Otto Holst, Buko Lindner, et al.Biological Chemistry|September 5, 2012
The structure of the extracellular teichoic acids from the allergy-protective bacterium Lactococcus lactis G121Kathleen Fischer, Evgueny Vinogradov, Buko Lindner, et al.The Journal of Biological Chemistry|January 2, 2003
Folding and insertion of the outer membrane protein OmpA is assisted by the chaperone Skp and by lipopolysaccharidePaula V Bulieris, Susanne Behrens, Otto Holst, et al.The New Phytologist|April 15, 2021
Suppression of an elicitor-induced oxidative burst reaction in Medicago sativa cell cultures by Sinorhizobium meliloti lipopolysaccharidesUlrike Albus, Ruth Baier, Otto Holst, et al.The Journal of Biological Chemistry|November 13, 2002
Novel bacterial polar lipids containing ether-linked alkyl chains, the structures and biological properties of the four major glycolipids from Propionibacterium propionicum PCM 2431 (ATCC 14157T)Mariola Paściak, Otto Holst, Buko Lindner, et al.International Journal of Molecular Sciences|January 1, 2021
The Lipid A from the Lipopolysaccharide of the Phototrophic Bacterium Rhodomicrobium vannielii ATCC 17100 RevisitedIwona Komaniecka, Katarzyna Susniak, Adam Choma, et al.Chemotherapy|October 8, 2010
Low endotoxin release from Escherichia coli and Bacteroides fragilis during exposure to moxifloxacinMatthias Trautmann, Cordula Scheibe, Nele Wellinghausen, et al.Journal of Molecular Biology|October 12, 2007
The trimeric periplasmic chaperone Skp of Escherichia coli forms 1:1 complexes with outer membrane proteins via hydrophobic and electrostatic interactionsJian Qu, Christoph Mayer, Susanne Behrens, et al.Biochemistry|September 29, 2009
The periplasmic chaperone Skp facilitates targeting, insertion, and folding of OmpA into lipid membranes with a negative membrane surface potentialGeetika J Patel, Susanne Behrens-Kneip, Otto Holst, et al.Chemistry (Weinheim an Der Bergstrasse, Germany)|June 30, 2006
Lipopolysaccharides from Serratia marcescens possess one or two 4-amino-4-deoxy-L-arabinopyranose 1-phosphate residues in the lipid A and D-glycero-D-talo-oct-2-ulopyranosonic acid in the inner core regionEvgeny Vinogradov, Buko Lindner, Guntram Seltmann, et al.Pageof 14