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Glycobiology|November 20, 2015
Structure and gene cluster of the O-antigen of Escherichia coli O165 containing 5-N-acetyl-7-N-[(R)-3-hydroxybutanoyl]pseudaminic acidSof'ya N Senchenkova, Yuanyuan Zhang, Andrei V Perepelov, et al.Carbohydrate Research|July 4, 2017
Structures and gene clusters of the O-antigens of Escherichia albertii O3, O4, O6, and O7Olesya I Naumenko, Han Zheng, Sof'ya N Senchenkova, et al.Microbiology (Reading, England)|February 27, 2010
Structure of the O-antigen of Salmonella O66 and the genetic basis for similarity and differences between the closely related O-antigens of Escherichia coli O166 and Salmonella O66Bin Liu, Andrei V Perepelov, Dan Li, et al.Carbohydrate Research|April 3, 2018
Studies on the O-polysaccharide of Escherichia albertii O2 characterized by non-stoichiometric O-acetylation and non-stoichiometric side-chain l-fucosylationOlesya I Naumenko, Han Zheng, Yanwen Xiong, et al.Journal of Bacteriology|April 24, 2012
Effects of lipopolysaccharide biosynthesis mutations on K1 polysaccharide association with the Escherichia coli cell surfaceNatalia Jiménez, Sofya N Senchenkova, Yuriy A Knirel, et al.Journal of Bacteriology|February 14, 2012
Biochemical characterization of the CDP-D-arabinitol biosynthetic pathway in Streptococcus pneumoniae 17FQuan Wang, Yanli Xu, Andrei V Perepelov, et al.Carbohydrate Research|April 25, 2006
Structure of the O-polysaccharide from the lipopolysaccharide of Providencia alcalifaciens O29Ivan S Bushmarinov, Olga G Ovchinnikova, Nina A Kocharova, et al.Carbohydrate Research|March 1, 2008
The O-polysaccharide of Escherichia coli O112ac has the same structure as that of Shigella dysenteriae type 2 but is devoid of O-acetylation: a revision of the S. dysenteriae type 2 O-polysaccharide structureAndrei V Perepelov, Andrej Weintraub, Bin Liu, et al.Glycobiology|July 27, 2012
Characterization of the CDP-D-mannitol biosynthetic pathway in Streptococcus pneumoniae 35AQuan Wang, Yanli Xu, Andrei V Perepelov, et al.Research in Microbiology|March 5, 2021
A novel ItrA4 d-galactosyl 1-phosphate transferase is predicted to initiate synthesis of an amino sugar-lacking K92 capsular polysaccharide of Acinetobacter baumannii B8300Sof'ya N Senchenkova, Alexander S Shashkov, Mikhail M Shneider, et al.Pageof 44