DOI: 10.1098/rsob.250369 ISSN: 2046-2441

Structural insights into the polytopic Escherichia coli phosphoglycosyl transferase WbaP

Miriam Weckener, Audrey Le Bas, Philip N. Ward, Bradley R. Clarke, Peter J. Harrison, Stephen A. McMahon, Huanting Liu, Alice Eddershaw, Andrew M. Giltrap, Els Pardon, Abirami Lakshminarayanan, Jan Steyaert, Benjamin G. Davis, Chris Whitfield, James H. Naismith

Abstract

Host–pathogen interactions frequently depend on key components of the bacterial cell surface, such as capsules and lipopolysaccharides in Gram-negative bacteria. The first step in the synthesis of lipid-linked polysaccharides is the substitution of a uridine diphosphate (UDP)-sugar by a lipid monophosphate catalysed by a phosphoglycosyl transferase (PGT). We report the 3.0 Å cryo-electron microscopy apo-structure of the PGT enzyme WbaP from Escherichia coli, a UDP-galactose:undecaprenolphosphate galactose-1-phosphoryl transferase. The structure is a dimer with each monomer formed of four N-terminal transmembrane helices, a small α/β domain with a distinctive β-hairpin that inserts into the other monomer, and a catalytic domain, which sits perpendicular to the transmembrane domain. A complex of WbaP with the UDP-galactose substrate shows binding of the UDP moiety by R319 and R377. Mutations of R319 and R377, along with K331 and R401, highlighted the essential nature of these residues for the catalytic activity of the protein, as confirmed by an in vivo functional assay. Our results provide new insights into the PGT family of enzymes.

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