Literature DB >> 15044493

Enzymatic synthesis of lipid A molecules with four amide-linked acyl chains. LpxA acyltransferases selective for an analog of UDP-N-acetylglucosamine in which an amine replaces the 3"-hydroxyl group.

Charles R Sweet1, Allison H Williams, Mark J Karbarz, Catherine Werts, Suzanne R Kalb, Robert J Cotter, Christian R H Raetz.   

Abstract

LpxA of Escherichia coli catalyzes the acylation of the glucosamine 3-OH group of UDP-GlcNAc, using R-3-hydroxymyristoyl-acyl carrier protein (ACP) as the donor substrate. We now demonstrate that LpxA in cell extracts of Mesorhizobium loti and Leptospira interrogans, which synthesize lipid A molecules containing 2,3-diamino-2,3-dideoxy-d-glucopyranose (GlcN3N) units in place of glucosamine, do not acylate UDP-GlcNAc. Instead, these LpxA acyltransferases require a UDP-Glc-NAc derivative (designated UDP 2-acetamido-3-amino-2,3-dideoxy-alpha-d-glucopyranose or UDP-GlcNAc3N), characterized in the preceding paper, in which an amine replaces the glucosamine 3-OH group. L. interrogans LpxA furthermore displays absolute selectivity for 3-hydroxylauroyl-ACP as the donor, whereas M. loti LpxA functions almost equally well with 10-, 12-, and 14-carbon 3-hydroxyacyl-ACPs. The substrate selectivity of L. interrogans LpxA is consistent with the structure of L. interrogans lipid A. The mechanism of L. interrogans LpxA appears to be similar to that of E. coli LpxA, given that the essential His(125) residue of E. coli LpxA is conserved and is also required for acyltransferase activity in L. interrogans. Acidithiobacillus ferrooxidans (an organism that makes lipid A molecules containing both GlcN and GlcN3N) has an ortholog of LpxA that is selective for UDP-GlcNAc3N, but the enzyme also catalyzes the acylation of UDP-GlcNAc at a slow rate. E. coli LpxA acylates UDP-GlcNAc and UDP-GlcNAc3N at comparable rates in vitro. However, UDP-GlcNAc3N is not synthesized in vivo, because E. coli lacks gnnA and gnnB. When the latter are supplied together with A. ferrooxidans lpxA, E. coli incorporates a significant amount of GlcN3N into its lipid A.

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Year:  2004        PMID: 15044493      PMCID: PMC2597548          DOI: 10.1074/jbc.M400597200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  36 in total

Review 1.  Lipopolysaccharide endotoxins.

Authors:  Christian R H Raetz; Chris Whitfield
Journal:  Annu Rev Biochem       Date:  2001-11-09       Impact factor: 23.643

2.  A Chlamydia trachomatis UDP-N-acetylglucosamine acyltransferase selective for myristoyl-acyl carrier protein. Expression in Escherichia coli and formation of hybrid lipid A species.

Authors:  C R Sweet; S Lin; R J Cotter; C R Raetz
Journal:  J Biol Chem       Date:  2001-03-08       Impact factor: 5.157

3.  Leptospiral lipopolysaccharide activates cells through a TLR2-dependent mechanism.

Authors:  C Werts; R I Tapping; J C Mathison; T H Chuang; V Kravchenko; I Saint Girons; D A Haake; P J Godowski; F Hayashi; A Ozinsky; D M Underhill; C J Kirschning; H Wagner; A Aderem; P S Tobias; R J Ulevitch
Journal:  Nat Immunol       Date:  2001-04       Impact factor: 25.606

4.  Crystal structure of UDP-N-acetylglucosamine acyltransferase from Helicobacter pylori.

Authors:  Byung Il Lee; Se Won Suh
Journal:  Proteins       Date:  2003-11-15

5.  Relaxed acyl chain specificity of Bordetella UDP-N-acetylglucosamine acyltransferases.

Authors:  Charles R Sweet; Andrew Preston; Elinor Toland; Suzanne M Ramirez; Robert J Cotter; Duncan J Maskell; Christian R H Raetz
Journal:  J Biol Chem       Date:  2002-03-11       Impact factor: 5.157

6.  Structural variability and originality of the Bordetella endotoxins.

Authors:  M Caroff; L Aussel; H Zarrouk; A Martin; J C Richards; H Thérisod; M B Perry; D Karibian
Journal:  J Endotoxin Res       Date:  2001

7.  Structure of the Bordetella pertussis 1414 endotoxin.

Authors:  M Caroff; J Brisson; A Martin; D Karibian
Journal:  FEBS Lett       Date:  2000-07-14       Impact factor: 4.124

8.  Structure of the lac operon galactoside acetyltransferase.

Authors:  Xing-Guo Wang; Laurence R Olsen; Steven L Roderick
Journal:  Structure       Date:  2002-04       Impact factor: 5.006

9.  Unique physiological and pathogenic features of Leptospira interrogans revealed by whole-genome sequencing.

Authors:  Shuang-Xi Ren; Gang Fu; Xiu-Gao Jiang; Rong Zeng; You-Gang Miao; Hai Xu; Yi-Xuan Zhang; Hui Xiong; Gang Lu; Ling-Feng Lu; Hong-Quan Jiang; Jia Jia; Yue-Feng Tu; Ju-Xing Jiang; Wen-Yi Gu; Yue-Qing Zhang; Zhen Cai; Hai-Hui Sheng; Hai-Feng Yin; Yi Zhang; Gen-Feng Zhu; Ma Wan; Hong-Lei Huang; Zhen Qian; Sheng-Yue Wang; Wei Ma; Zhi-Jian Yao; Yan Shen; Bo-Qin Qiang; Qi-Chang Xia; Xiao-Kui Guo; Antoine Danchin; Isabelle Saint Girons; Ronald L Somerville; Yu-Mei Wen; Man-Hua Shi; Zhu Chen; Jian-Guo Xu; Guo-Ping Zhao
Journal:  Nature       Date:  2003-04-24       Impact factor: 49.962

10.  A methylated phosphate group and four amide-linked acyl chains in leptospira interrogans lipid A. The membrane anchor of an unusual lipopolysaccharide that activates TLR2.

Authors:  Nanette L S Que-Gewirth; Anthony A Ribeiro; Suzanne R Kalb; Robert J Cotter; Dieter M Bulach; Ben Adler; Isabelle Saint Girons; Catherine Werts; Christian R H Raetz
Journal:  J Biol Chem       Date:  2004-03-24       Impact factor: 5.157

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  17 in total

1.  A Leptospira interrogans enzyme with similarity to yeast Ste14p that methylates the 1-phosphate group of lipid A.

Authors:  Middleton Boon Hinckley; C Michael Reynolds; Anthony A Ribeiro; Sara C McGrath; Robert J Cotter; Fanny N Lauw; Douglas T Golenbock; Christian R H Raetz
Journal:  J Biol Chem       Date:  2005-06-30       Impact factor: 5.157

2.  Altered linkage of hydroxyacyl chains in lipid A of Campylobacter jejuni reduces TLR4 activation and antimicrobial resistance.

Authors:  Andries van Mourik; Liana Steeghs; Jacoline van Laar; Hugo D Meiring; Hendrik-Jan Hamstra; Jos P M van Putten; Marc M S M Wösten
Journal:  J Biol Chem       Date:  2010-03-29       Impact factor: 5.157

Review 3.  Lipid A structural modifications in extreme conditions and identification of unique modifying enzymes to define the Toll-like receptor 4 structure-activity relationship.

Authors:  Alison J Scott; Benjamin L Oyler; David R Goodlett; Robert K Ernst
Journal:  Biochim Biophys Acta Mol Cell Biol Lipids       Date:  2017-01-17       Impact factor: 4.698

4.  Structure of acyl carrier protein bound to FabI, the FASII enoyl reductase from Escherichia coli.

Authors:  Salma Rafi; Polina Novichenok; Subramaniapillai Kolappan; Christopher F Stratton; Richa Rawat; Caroline Kisker; Carlos Simmerling; Peter J Tonge
Journal:  J Biol Chem       Date:  2006-09-29       Impact factor: 5.157

Review 5.  Biosynthesis and structure-activity relationships of the lipid a family of glycolipids.

Authors:  Xirui Xiao; Karthik Sankaranarayanan; Chaitan Khosla
Journal:  Curr Opin Chem Biol       Date:  2017-09-20       Impact factor: 8.822

6.  The origin of 8-amino-3,8-dideoxy-D-manno-octulosonic acid (Kdo8N) in the lipopolysaccharide of Shewanella oneidensis.

Authors:  Samuel G Gattis; Hak Suk Chung; M Stephen Trent; Christian R H Raetz
Journal:  J Biol Chem       Date:  2013-02-14       Impact factor: 5.157

Review 7.  Analysis of carbohydrates and glycoconjugates by matrix-assisted laser desorption/ionization mass spectrometry: An update for 2003-2004.

Authors:  David J Harvey
Journal:  Mass Spectrom Rev       Date:  2009 Mar-Apr       Impact factor: 10.946

8.  Quantitative comparison of catalytic mechanisms and overall reactions in convergently evolved enzymes: implications for classification of enzyme function.

Authors:  Daniel E Almonacid; Emmanuel R Yera; John B O Mitchell; Patricia C Babbitt
Journal:  PLoS Comput Biol       Date:  2010-03-12       Impact factor: 4.475

9.  Structural basis for the sugar nucleotide and acyl-chain selectivity of Leptospira interrogans LpxA.

Authors:  Lori I Robins; Allison H Williams; Christian R H Raetz
Journal:  Biochemistry       Date:  2009-07-07       Impact factor: 3.162

Review 10.  Lipid A modification systems in gram-negative bacteria.

Authors:  Christian R H Raetz; C Michael Reynolds; M Stephen Trent; Russell E Bishop
Journal:  Annu Rev Biochem       Date:  2007       Impact factor: 23.643

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