Role of pagL and lpxO in Bordetella bronchiseptica Lipid A Biosynthesis

Author:

MacArthur I.1,Jones J. W.23,Goodlett D. R.2,Ernst R. K.4,Preston A.5

Affiliation:

1. Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario, Canada

2. Department of Medicinal Chemistry, University of Washington, Seattle, Washington

3. Present address: Jones Environmental, Fullerton, CA.

4. Department of Microbial Pathogenesis, School of Dentistry, University of Maryland—Baltimore, Baltimore, Maryland

5. School of Veterinary Science, University of Bristol, Langford, United Kingdom

Abstract

ABSTRACT PagL and LpxO are enzymes that modify lipid A. PagL is a 3-O deacylase that removes the primary acyl chain from the 3 position, and LpxO is an oxygenase that 2-hydroxylates specific acyl chains in the lipid A. pagL and lpxO homologues have been identified in the genome of Bordetella bronchiseptica , but in the current structure for B. bronchiseptica lipid A the 3 position is acylated and 2-OH acylation is not reported. We have investigated the role of B. bronchiseptica pagL and lpxO in lipid A biosynthesis. We report a different structure for wild-type (WT) B. bronchiseptica lipid A, including the presence of 2-OH-myristate, the presence of which is dependent on lpxO . We also demonstrate that the 3 position is not acylated in the major WT lipid A structures but that mutation of pagL results in the presence of 3-OH-decanoic acid at this position, suggesting that lipid A containing this acylation is synthesized but that PagL removes most of it from the mature lipid A. These data refine the structure of B. bronchiseptica lipid A and demonstrate that pagL and lpxO are involved in its biosynthesis.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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