Gene products required for de novo synthesis of polysialic acid in Escherichia coli K1

被引:38
作者
Andreishcheva, EN [1 ]
Vann, WF [1 ]
机构
[1] US FDA, Lab Bacterial Toxins, Ctr Biol Evaluat & Res, Bethesda, MD 20892 USA
关键词
D O I
10.1128/JB.188.5.1786-1797.2006
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Escherichia coli K1 is responsible for 80% of E. coli neonatal meningitis and is a common pathogen in urinary tract infections. Bacteria of this serotype are encapsulated with the alpha(2-8)-polysialic acid NeuNAc(alpha 2-8), common to several bacterial pathogens. The gene cluster encoding the pathway for synthesis of this polymer is organized into three regions: (i) kpsSCUDEF, (ii) neuDBACES, and (iii) kpsMT. The K1 polysialyltransferase, NeuS, cannot synthesize polysialic acid de novo without other products of the gene cluster. Membranes isolated from strains having the entire K1 gene cluster can synthesize polysialic acid de novo. We designed a series of plasmid constructs containing fragments of regions 1 and 2 in two compatible vectors to determine the minimum number of gene products required for de novo synthesis of the pollysialic acid from CMP-NeuNAc in K1 E. coli. We measured the ability of the various combinations of region 1 and 2 fragments to restore polysialyltransferase activity in vitro in the absence of exogenously added pollysaccharide acceptor. The products of region 2 genes neuDBACES alone were not sufficient to support de novo synthesis of polysialic acid in vitro. Only membrane fractions harboring NeuES and KpsCS could form sialic polymer in the absence of exogenous acceptor at the concentrations formed by wild-type E. coli K1 membranes. Membrane fractions harboring NeuES and KpsC together could form small quantities of the sialic polymer de novo.
引用
收藏
页码:1786 / 1797
页数:12
相关论文
共 38 条
[1]  
ADLAM C, 1987, FEMS MICROBIOL LETT, V42, P23, DOI 10.1111/j.1574-6968.1987.tb02293.x
[2]   NUCLEOTIDE-SEQUENCE AND GENETIC-ANALYSIS OF THE NEUD AND NEUB GENES IN REGION-2 OF THE POLYSIALIC ACID GENE-CLUSTER OF ESCHERICHIA-COLI-K1 [J].
ANNUNZIATO, PW ;
WRIGHT, LF ;
VANN, WF ;
SILVER, RP .
JOURNAL OF BACTERIOLOGY, 1995, 177 (02) :312-319
[3]  
BOVRE K, 1983, NIPH (National Institute of Public Health) Annals (Oslo), V6, P65
[4]   NeuD plays a role in the synthesis of sialic acid in Escherichia coli K1 [J].
Daines, DA ;
Wright, LF ;
Chaffin, DO ;
Rubens, CE ;
Silver, RP .
FEMS MICROBIOLOGY LETTERS, 2000, 189 (02) :281-284
[5]   Transcriptome analysis of Neisseria meningitidis during infection [J].
Dietrich, G ;
Kurz, S ;
Hübner, C ;
Aepinus, C ;
Theiss, S ;
Guckenberger, M ;
Panzner, U ;
Weber, J ;
Frosch, M .
JOURNAL OF BACTERIOLOGY, 2003, 185 (01) :155-164
[6]   Genetic basis for nongroupable Neisseria meningitidis [J].
Dolan-Livengood, JM ;
Miller, YK ;
Martin, LE ;
Urwin, R ;
Stephens, DS .
JOURNAL OF INFECTIOUS DISEASES, 2003, 187 (10) :1616-1628
[7]  
Downs F, 1976, METHODS CARBOHYDRATE, VVII, P233
[8]   MOLECULAR ANALYSIS OF THE BIOSYNTHESIS PATHWAY OF THE ALPHA-2,8 POLYSIALIC ACID CAPSULE BY NEISSERIA-MENINGITIDIS SEROGROUP-B [J].
EDWARDS, U ;
MULLER, A ;
HAMMERSCHMIDT, S ;
GERARDYSCHAHN, R ;
FROSCH, M .
MOLECULAR MICROBIOLOGY, 1994, 14 (01) :141-149
[9]   STRUCTURAL STUDIES ON SIALIC-ACID POLYSACCHARIDE ANTIGEN OF ESCHERICHIA-COLI STRAIN BOS-12 [J].
EGAN, W ;
LIU, TY ;
DOROW, D ;
COHEN, JS ;
ROBBINS, JD ;
GOTSCHLICH, EC ;
ROBBINS, JB .
BIOCHEMISTRY, 1977, 16 (16) :3687-3692
[10]   BIOSYNTHESIS OF THE ESCHERICHIA-COLI K5 POLYSACCHARIDE, A REPRESENTATIVE OF GROUP-II CAPSULAR POLYSACCHARIDES - POLYMERIZATION INVITRO AND CHARACTERIZATION OF THE PRODUCT [J].
FINKE, A ;
BRONNER, D ;
NIKOLAEV, AV ;
JANN, B ;
JANN, K .
JOURNAL OF BACTERIOLOGY, 1991, 173 (13) :4088-4094