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Metabolic Usage and Glycan Destinations of GlcNAz in E. coli.
Eddenden, Alexander; Dooda, Manoj K; Morrison, Zachary A; Shankara Subramanian, Adithya; Howell, P Lynne; Troutman, Jerry M; Nitz, Mark.
Afiliação
  • Eddenden A; Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.
  • Dooda MK; Department of Chemistry, University of North Carolina at Charlotte, Charlotte, North Carolina 28223-0001, United States.
  • Morrison ZA; Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.
  • Shankara Subramanian A; Program in Molecular Medicine, The Hospital for Sick Children, Toronto, Ontario M5G 0A4, Canada.
  • Howell PL; Department of Biochemistry, University of Toronto, Toronto, Ontario M5G 0A4, Canada.
  • Troutman JM; Program in Molecular Medicine, The Hospital for Sick Children, Toronto, Ontario M5G 0A4, Canada.
  • Nitz M; Department of Biochemistry, University of Toronto, Toronto, Ontario M5G 0A4, Canada.
ACS Chem Biol ; 19(1): 69-80, 2024 01 19.
Article em En | MEDLINE | ID: mdl-38146215
ABSTRACT
Bacteria use a diverse range of carbohydrates to generate a profusion of glycans, with amino sugars, such as N-acetylglucosamine (GlcNAc), being prevalent in the cell wall and in many exopolysaccharides. The primary substrate for GlcNAc-containing glycans, UDP-GlcNAc, is the product of the bacterial hexosamine pathway and a key target for bacterial metabolic glycan engineering. Using the strategy of expressing NahK, to circumvent the hexosamine pathway, it is possible to directly feed the analogue of GlcNAc, N-azidoacetylglucosamine (GlcNAz), for metabolic labeling in Escherichia coli. The cytosolic production of UDP-GlcNAz was confirmed by using fluorescence-assisted polyacrylamide gel electrophoresis. The key question of where GlcNAz is incorporated was interrogated by analyzing potential sites including peptidoglycan (PGN), the biofilm-related exopolysaccharide poly-ß-1,6-N-acetylglucosamine (PNAG), lipopolysaccharide (LPS), and the enterobacterial common antigen (ECA). The highest levels of incorporation were observed in PGN with lower levels in PNAG and no observable incorporation in LPS or ECA. The promiscuity of the PNAG synthase (PgaCD) toward UDP-GlcNAz in vitro and the lack of undecaprenyl-pyrophosphoryl-GlcNAz intermediates generated in vivo confirmed the incorporation preferences. The results of this work will guide the future development of carbohydrate-based probes and metabolic engineering strategies.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Lipopolissacarídeos / Escherichia coli Idioma: En Revista: ACS Chem Biol Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Canadá

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Lipopolissacarídeos / Escherichia coli Idioma: En Revista: ACS Chem Biol Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Canadá