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      Structural and functional characterization of a modified legionaminic acid involved in glycosylation of a bacterial lipopolysaccharide

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          Abstract

          Nonulosonic acids (NulOs) are a diverse family of α-keto acid carbohydrates present across all branches of life. Bacteria biosynthesize NulOs among which are several related prokaryotic-specific isomers and one of which, N-acetylneuraminic acid (sialic acid), is common among all vertebrates. Bacteria display various NulO carbohydrates on lipopolysaccharide (LPS), and the identities of these molecules tune host–pathogen recognition mechanisms. The opportunistic bacterial pathogen Vibrio vulnificus possesses the genes for NulO biosynthesis; however, the structures and functions of the V. vulnificus NulO glycan are unknown. Using genetic and chemical approaches, we show here that the major NulO produced by a clinical V. vulnificus strain CMCP6 is 5- N-acetyl-7- N-acetyl- d-alanyl-legionaminic acid (Leg5Ac7AcAla). The CMCP6 strain could catabolize modified legionaminic acid, whereas V. vulnificus strain YJ016 produced but did not catabolize a NulO without the N-acetyl- d-alanyl modification. In silico analysis suggested that Leg5Ac7AcAla biosynthesis follows a noncanonical pathway but appears to be present in several bacterial species. Leg5Ac7AcAla contributed to bacterial outer-membrane integrity, as mutant strains unable to produce or incorporate Leg5Ac7AcAla into the LPS have increased membrane permeability, sensitivity to bile salts and antimicrobial peptides, and defects in biofilm formation. Using the crustacean model, Artemia franciscana, we demonstrate that Leg5Ac7AcAla-deficient bacteria have decreased virulence potential compared with WT. Our data indicate that different V. vulnificus strains produce multiple NulOs and that the modified legionaminic acid Leg5Ac7AcAla plays a critical role in the physiology, survivability, and pathogenicity of V. vulnificus CMCP6.

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          Author and article information

          Journal
          J Biol Chem
          J. Biol. Chem
          jbc
          jbc
          JBC
          The Journal of Biological Chemistry
          American Society for Biochemistry and Molecular Biology (11200 Rockville Pike, Suite 302, Rockville, MD 20852-3110, U.S.A. )
          0021-9258
          1083-351X
          7 December 2018
          12 October 2018
          : 293
          : 49
          : 19113-19126
          Affiliations
          From the Departments of []Biological Sciences and
          [§ ]Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716 and
          the []Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110
          Author notes
          [3 ] To whom correspondence should be addressed: Dept. of Biological Sciences, 341 Wolf Hall, University of Delaware, Newark, DE 19716. Tel.: 302-831-1088; E-mail: fboyd@ 123456udel.edu .
          [1]

          Funded by a University of Delaware graduate fellowship award.

          [2]

          Supported by National Institutes of Health Chemistry-Biology Interface (CBI) Training Grant 5T32GM008550.

          Edited by Chris Whitfield

          Article
          PMC6295735 PMC6295735 6295735 RA118.004966
          10.1074/jbc.RA118.004966
          6295735
          30315110
          20834869-a918-45f0-9bd9-36f97149b209
          © 2018 McDonald et al.

          Published under exclusive license by The American Society for Biochemistry and Molecular Biology, Inc.

          History
          : 19 July 2018
          : 7 October 2018
          Funding
          Funded by: National Science Foundation (NSF) , open-funder-registry 10.13039/100000001;
          Award ID: DEB-0844409
          Funded by: HHS | National Institutes of Health (NIH) , open-funder-registry 10.13039/100000002;
          Award ID: 5T32GM008550
          Funded by: HHS | NIH | National Institute of General Medical Sciences (NIGMS) , open-funder-registry 10.13039/100000057;
          Award ID: 5 P30 GM110758–02
          Award ID: P20GM104316–01A1
          Award ID: P20 GM103446
          Categories
          Glycobiology and Extracellular Matrices

          glycosylation,carbohydrate biosynthesis,nonulosonic acid,lipopolysaccharide (LPS),sialic acid,Vibrio vulnificus,bacterial cell wall,carbohydrate structure,legionaminic acid,glycan

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