| Literature DB >> 24987616 |
Angelika Miko1, Marta Rivas2, Adriana Bentancor3, Sabine Delannoy4, Patrick Fach4, Lothar Beutin1.
Abstract
More than 400 serotypes of Shiga toxin-producing Escherichia coli (STEC) have been implicated in outbreaks and sporadic human diseases. In recent years STEC strains belonging to serogroup O178 have been commonly isolated from cattle and food of bovine origin in South America and Europe. In order to explore the significance of these STEC strains as potential human pathogens, 74 German and Argentinean E. coli O178 strains from animals, food and humans were characterized phenotypically and investigated for their serotypes, stx-genotypes and 43 virulence-associated markers by a real-time PCR-microarray. The majority (n = 66) of the O178 strains belonged to serotype O178:H19. The remaining strains divided into O178:H7 (n = 6), O178:H10 (n = 1), and O178:H16 (n = 1). STEC O178:H19 strains were mainly isolated from cattle and food of bovine origin, but one strain was from a patient with hemolytic uremic syndrome (HUS). Genotyping of the STEC O178:H19 strains by pulsed-field gel electrophoresis revealed two major clusters of genetically highly related strains which differ in their stx-genotypes and non-Stx putative virulence traits, including adhesins, toxins, and serine-proteases. Cluster A-strains including the HUS-strain (n = 35) carried genes associated with severe disease in humans (stx2a, stx2d, ehxA, saa, subAB1, lpfAO113 , terE combined with stx1a, espP, iha). Cluster B-strains (n = 26) showed a limited repertoire of virulence genes (stx2c, pagC, lpfAO113 , espP, iha). Among O178:H7 strains isolated from deer meat and patients with uncomplicated disease a new STEC variant was detected that is associated with the genotype stx1c/stx2b/ehxA/subAB2/espI/[terE]/espP/iha. None of the STEC O178 strains was positive for locus of enterocyte effacement (LEE)- and nle-genes. Results indicate that STEC O178:H19 strains belong to the growing group of LEE-negative STEC that should be considered with respect to their potential to cause diseases in humans.Entities:
Keywords: E. coli O178; PFGE; STEC; Shiga toxins; genotyping; real-time PCR micro array; virulence
Mesh:
Substances:
Year: 2014 PMID: 24987616 PMCID: PMC4060028 DOI: 10.3389/fcimb.2014.00078
Source DB: PubMed Journal: Front Cell Infect Microbiol ISSN: 2235-2988 Impact factor: 5.293
Characteristic traits of the .
| CB10181 | 19 | beef | Germany | 2005 | + | + | + | + | − | nd | + | − | − | − | |
| CB10542 | 19 | ground beef | Germany | 2006 | + | + | + | + | − | nd | + | − | − | − | |
| CB10545 | 19 | ground beef | Germany | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| CB10659 | 19 | ground lamb | Germany | 2006 | + | + | + | + | − | + | − | + | − | ||
| CB10751 | 19 | meat, deer | Germany | 2007 | + | + | + | + | − | + | − | + | − | ||
| CB10836 | 19 | ground beef/pork | Germany | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| CB11017 | 19 | ground beef | Germany | 2007 | + | + | + | + | − | + | − | − | − | ||
| CB11536 | 19 | ground beef/pork | Germany | 2008 | + | + | + | + | − | nd | + | + | − | − | |
| CB11726 | 19 | ground beef | Germany | 2008 | + | + | + | + | − | + | − | + | − | ||
| CB12008 | 19 | raw milk | Germany | 2009 | + | + | + | + | − | + | + | − | − | ||
| CB12145 | 19 | ground beef | Germany | 2009 | + | + | + | + | − | nd | + | + | − | − | |
| CB12220 | 19 | beef | Germany | 2009 | + | + | + | + | − | + | + | − | − | ||
| CB13785 | 19 | beef | Germany | 2011 | + | + | + | + | − | nd | + | − | − | − | |
| CB13787 | 19 | beef | Germany | 2011 | + | + | + | + | − | nd | + | − | − | − | |
| CB14014 | 19 | ground beef | Germany | 2012 | + | + | + | + | − | nd | + | + | − | − | |
| CB14018 | 19 | cattle | Germany | 2012 | − | + | + | − | − | nd | + | − | + | − | |
| CB14051 | 19 | cattle | Germany | 2012 | + | + | + | + | − | nd | + | − | − | − | |
| 188/06 30 | 19 | cattle | Argentina | 2006 | + | + | + | + | − | nd | + | + | − | − | |
| 276 | 19 | dog | Argentina | 2005 | − | + | + | − | − | nd | + | − | + | − | |
| 377ii | 19 | dog | Argentina | 2005 | − | + | + | − | − | nd | + | − | + | − | |
| 489/06 16 | 19 | cattle | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| 489/06 24 | 19 | cattle | Argentina | 2006 | + | + | + | + | − | nd | + | + | − | − | |
| 489/06 36 | 19 | cattle | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| 612/06 21 | 19 | cattle | Argentina | 2006 | + | + | + | + | − | nd | + | + | − | − | |
| 612/06 33 | 19 | cattle | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| 612/06 35 | 19 | cattle | Argentina | 2006 | + | + | + | + | − | nd | + | + | − | − | |
| 612/06 9 | 19 | cattle | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| 96/00 | 19 | human (HUS) | Argentina | 2000 | + | + | + | + | − | + | − | − | − | ||
| C11 | 19 | ground beef | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| C18iii | 19 | ground beef | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| C22 | 19 | ground beef | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| C27 | 19 | ground beef | Argentina | 2006 | + | + | + | + | − | + | − | − | − | ||
| C39 | 19 | ground beef | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| C42 | 19 | ground beef | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| FP−001 | 19 | cattle | Argentina | 2006 | − | + | + | − | − | nd | + | − | + | − | |
| FP−023 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| FP−024 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | + | − | − | − | ||
| FP−065 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | nd | + | + | − | − | |
| FP−067 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | nd | + | + | − | − | |
| FP−070 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | + | − | − | − | ||
| FP−073 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | + | − | − | − | ||
| FP−075 | [19] | cattle | Argentina | 2007 | + | + | + | + | − | + | − | − | − | ||
| FP−080 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | − | − | − | − | ||
| FP−082 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | + | + | − | |
| FP−087 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | + | − | − | − | ||
| FP−089 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| FP−090 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | + | + | − | |
| FP−100 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | + | − | + | − | ||
| FP−110 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | nd | + | + | − | − | |
| FP−112 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| FP−113 | 19 | cattle | Argentina | 2009 | − | + | + | − | − | nd | + | − | + | − | |
| FP−116 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| FP−134 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| FP−163 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| FP−194 | 19 | cattle | Argentina | 2008 | − | + | + | − | − | nd | + | + | + | − | |
| FP−203 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | nd | + | − | − | − | |
| FP−229 | [19] | cattle | Argentina | 2008 | − | + | + | − | − | nd | + | − | + | − | |
| FP−245 | 19 | cattle | Argentina | 2008 | − | + | + | − | − | nd | + | − | + | − | |
| I−005 | 19 | cattle | Argentina | 2006 | + | + | + | + | − | + | − | − | − | ||
| I−011 | [19] | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| I−023 | [19] | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| I−039 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | + | + | + | − | ||
| I−058 | 19 | cattle | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| I−073 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | nd | + | − | − | − | |
| I−115 | 19 | cattle | Argentina | 2007 | + | + | + | + | − | + | − | − | − | ||
| P5a | [19] | dog | Argentina | 2007 | − | + | + | − | − | nd | + | − | + | − | |
| CB06224 | [7] | human (D) | Germany | 1996 | + | + | + | − | + | + | − | − | |||
| CB06571 | [7] | human (AS) | Germany | 1996 | + | + | + | − | + | + | + | − | |||
| CB09017 | [7] | human (E) | Germany | 2001 | − | − | − | − | − | − | nd | + | − | − | − |
| CB10124 | [7] | meat, deer | Germany | 2005 | + | + | + | − | + | + | − | − | |||
| CB11675 | [7] | meat, deer | Germany | 2008 | + | + | + | − | + | + | + | − | |||
| CB12072 | 7 | cattle | Germany | 2009 | − | − | − | − | − | − | nd | + | − | − | − |
| CB11890 | 10 | meat, deer | Germany | 2009 | − | + | + | − | − | + | − | − | − | ||
| CB12372 | 16 | salad | Germany | 2009 | − | − | − | − | − | − | nd | + | − | − | − |
HUS, hemolytic uremic syndrome; D, diarrhea; E, enteritis; AS, asymptomatic carrier; +, the gene is present; −, the gene is absent.
The genes encode the following proteins: ehxa, enterohemolysin; espP, serine protease (EspP); iha; iron-regulated gene A homolog adhesin (Iha); saa, STEC autoagglunating adhesin (Saa); subAB, subtilase-like serine protease toxin (SubAB); tia, invasion determinant described in enterotoxigenic E. coli; lpfA.
Twenty eight of the LEE- or OI-encoded virulence-associated genes (eae, espG [LEE], ent, nleB, nleE, efa1, efa2 [OI-122], nleF, nleH1-2, nleA, nleG, espM1, ecs1822 [OI-71], ureD [OI-43/48] (marker für ure cluster), ecs1763, espN, espM2, espX2, espX7, espO1-1, espY4-2, espX6, espW, espY1, espY3, nleH1-1, nleD-2, and espJ) as well as the plasmid pO157-encoded genes katP, etpD, and toxB as well as the lpfA.
[] indicates nonmotile strains that were analyzed for their fliC genotypes by PCR/RFLP of HhaI-digested fliC PCR products.
The standardized Stx nomenclature published by Scheutz et al. (.
Two variants of the subAB were detected; subAB1 indicates subAB.
Encoded by the locus of protease and adherence (LPA) which is located in the chromosome (Schmidt et al., .
The EPEC O178:H7 strain CB09017 revealed genes eae, espG, and espF (LEE-encoded) and genes ent/espL2, nleB, nleE, efa1, efa2, nleF, nleH1-2, ecs1763, espM2, espW, espX1, nleH1-1, espR1, and espJ (OI-encoded).
.
| PagC-like membrane protein | OI-122 | |
| Ankyrin repeats | OI-122 | |
| Non-LEE-encoded type III effector | OI-122 | |
| NleE | OI-122 | |
| EHEC factor for adherence | OI-122 | |
| EHEC factor for adherence | OI-122 | |
| Non-LEE-encoded type III effector | OI-71 | |
| Non-LEE-encoded type III effector | OI-71 | |
| Non-LEE-encoded type III effector | OI-71 | |
| NleG | OI-71 | |
| Non-LEE-encoded type III effector | OI-71 | |
| Hypothetical protein | OI-71 | |
| Urease-associated protein UreD | OI-43 | |
| Tellurite resistance cluster | OI-43 | |
| iron regulated gene A homolog adhesin | OI-43 | |
| Pentapetide repeats | OI-1 | |
| SopD N-terminal domain | ||
| Non-LEE-encoded type III effector | OI-26 | |
| NleH | OI-36 | |
| NleD | OI-36 | |
| Non-LEE-encoded type III effector | OI-37 | |
| AvrA | OI-44 | |
| Leucine-rich repeats | OI-50 (prophage CP-933N) | |
| non-LEE-encoded type III effector | OI-50 | |
| OspE family | OI-50 | |
| CNF | OI-50 | |
| Hypothetical protein | OI-57 | |
| Leucine-rich repeats | OI-62 | |
| EspJ | OI-79 | |
| IpgB | OI-108 | |
| HopW | OI-108 | |
| Long polar Fimbrial protein LpfA | OI-141 & OI-154 | |
| intimin | LEE | |
| EspG | LEE | |
| EspF (secreted effector) | LEE | |
| Catalase peroxidase | EHEC-plasmid | |
| Adhesin | EHEC-plasmid | |
| Type II effector | EHEC-plasmid | |
| Enterohemolysin | EHEC-plasmid[ | |
| Serine protease EspP | EHEC-plasmid[ | |
| STEC autoagglunating adhesin Saa | aEHEC-plasmid | |
| Subtilase cytotoxin SubAB | aEHEC-plasmid |
Nomenclature of ORFs refers to sequence of E. coli O157:H7 EDL933 (GenBank AE005174).
Plasmid pO157 EDL933 (Genbank NC_007414).
Plasmid pO113 (GenBank NC_007365); PAI, pathogenicity island.
Figure 1Alignment of the amino acid sequences of the C-terminal ends of the A-subunits and B-subunits of 8 . Amino acid sequences in bold show the activatable tail in the A-subunit and the END motif in the B-subunit. Amino acid sequences which contain both motifs, thus correspond to the mucus-activatable stx2d variant, are shaded. The following sequences were used as references: stx2a (GenBank accession no. X07865), stx2b (AF043627), stx2c (M59432), and stx2d (AF479829). Amino acid sequences underlined indicate double peaks in the chromatogram which reveal multiple stx2-toxin types in these strains. aPosition in mature toxin sequence.
Figure 2PFGE-based clustering of 66 STEC O178:H19 strains investigated in this study. Clusters A–E were defined using a cut-off value of 80% similarity and are indicated by different colors. The degree of similarity (%) is shown on the scale at the top left of the figure. stx2d*, mucus-activatable stx2d. All STEC O178:H19 strains possessed espP and iha, and all except strain FP-080 lpfAO113. None of the STEC O178:H19 strains possessed katP, etpD, and toxB.