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S Hertwig

Publications and source records attributed to S Hertwig.

10 recordsLinked to original sources

Characterization of enterocoliticin, a phage tail-like bacteriocin, and its effect on pathogenic Yersinia enterocolitica strains.

Yersinia enterocolitica 29930 (biogroup 1A; serogroup O:7,8) produces a bacteriocin, designated enterocoliticin, that shows inhibitory activity against enteropathogenic strains of Y. enterocolitica belonging to serogroups O:3, O:5,27 and O:9. Enterocoliticin was purified, and electron micrographs of enterocoliticin preparations revealed the presence of phage tail-like particles. The particles did not contain nucleic acids and showed contraction upon contact with susceptible bacteria. Enterocoliticin addition to logarithmic-phase cultures of susceptible bacterial strains led to a rapid dose-dependent reduction in CFU. Calorimetric measurements of the heat output of cultures of sensitive bacteria showed a complete loss of cellular metabolic activity immediately upon addition of enterocoliticin. Furthermore, a dose-dependent efflux of K(+) ions into the medium was determined, indicating that enterocoliticin has channel-forming activity.

Animals↗

Isolation of a lysogenic bacteriophage carrying the stx(1(OX3)) gene, which is closely associated with Shiga toxin-producing Escherichia coli strains from sheep and humans.

A specific PCR for the detection of a variant of the gene encoding Shiga toxin 1 (stx(1)) called stx(1(OX3)) (GenBank accession no. Z36901) was developed. The PCR was used to investigate 148 Stx(1)-producing Escherichia coli strains from human patients (n = 72), cattle (n = 27), sheep (n = 48), and a goat (n = 1) for the presence of the stx(1(OX3)) gene. The stx(1(OX3)) gene was present in 38 Shiga toxin-producing E. coli (STEC) strains from sheep belonging to serogroups O5, O125, O128, O146, and OX3 but was absent from Stx(1)-positive ovine STEC O91 strains. The stx(1(OX3)) gene was also detected in 22 STEC strains from humans with nonbloody diarrhea and from asymptomatic excreters. Serotypes O146:H21 and O128:H2 were most frequently associated with stx(1(OX3))-carrying STEC from sheep and humans. In contrast, Stx(1)-producing STEC strains from cattle and goats and 50 STEC strains from humans were all negative for the stx(1(OX3)) gene. The stx(1(OX3))-negative strains belonged to 13 serotypes which were different from those of the stx(1(OX3))-positive STEC strains. Moreover, the stx(1(OX3)) gene was not associated with STEC belonging to enterohemorrhagic E. coli (EHEC) serogroups O26, O103, O111, O118, O145, and O157. A bacteriophage carrying the stx(1(OX3)) gene (phage 6220) was isolated from a human STEC O146:H21 strain. The phage was able to lysogenize laboratory E. coli K-12 strain C600. Phage 6220 shared a similar morphology and a high degree of DNA homology with Stx(2)-encoding phage 933W, which originates from EHEC O157. In contrast, few similarities were found between phage 6220 and Stx(1)-encoding bacteriophage H-19B from EHEC O26.

Animals↗

The Insertion/Deletion Polymorphism of the Angiotensin-Converting Enzyme Gene and the Risk for Restenosis After PTCA.

The therapeutic benefit of percutaneous transluminal coronary angioplasty (PTCA) is limited by restenosis in about 30% of patients. The underlying mechanisms are currently not well understood. Besides clinical and angiographic variables, genetic factors may be involved. We determined the angiotensin I-converting enzyme (ACE) I/D genotype as a possible risk factor for restenosis in 511 consecutive patients who had undergone successful PTCA and follow-up angiography. Clinical and angiographic variables were also considered as possible predictors of restenosis. One hundred sixty patients had restenosis as defined by a greater than 50% progression of residual stenosis of the dilated segment at follow-up angiography. There were significantly more patients with the ACE DD genotype in the restenosis than in the no-restenosis group. This difference did not remain statistically significant in an analysis of covariance that included genetic and clinical variables. Patients who subsequently developed restenosis had a higher degree of stenosis and more severe lesions before PTCA as well as less residual stenosis immediately after PTCA. We conclude that the ACE DD genotype is not an independent risk factor for restenosis after PTCA.

Journal Article↗

Comparative study of temperate bacteriophages isolated from Yersinia.

170 Yersinia strains belonging to various species were investigated for the presence of temperate bacteriophages. By induction with mitomycin C seven phages were isolated from Y. enterocolitica strains and one phage from a Y. frederiksenii strain. The phages were characterized on the basis of their morphology, host range, genome size, DNA homology, and protein composition. They belong to different phage families and reveal narrow to moderate wide host ranges. Some of the isolated phages were able to infect pathogenic as well as nonpathogenic strains of Y. enterocolitica. The genomes of all isolated phages were found to be composed of double stranded DNA ranging from about 40 to 60 kb. In addition to the analysed phages, a number of putative phages were induced in strains of Y. frederiksenii, Y. kristensenii, Y. intermedia, and Y. mollaretii. The putative phages were identified by isolation of phage DNA from cell free lysates but could not be propagated on indicator strains. Southern hybridization experiments revealed relationships between phages belonging to different families. Moreover, DNA homologies were observed between phages isolated from nonpathogenic Yersinia strains and a phage which was isolated from a pathogenic Y. enterocolitica serogroup O:3 strain.

Bacteriophage Typing↗

The angiotensinogen gene 235T variant is associated with an increased risk of restenosis after percutaneous transluminal coronary angioplasty.

The therapeutic benefit of percutaneous transluminal coronary angioplasty (PTCA) is limited by restenosis in 30-40% of patients. The underlying mechanisms are currently not well understood. Besides clinical and angiographic variables, genetic factors may be involved. In the present study, we investigated the associations between the angiotensinogen T174M and M235T, the angiotensin I-converting enzyme (ACE) I/D and the angiotensin II type 1 receptor A1166C gene polymorphisms and restenosis in 511 patients who had undergone successful PTCA (without stenting) and follow-up angiography. Clinical and angiographic variables were also considered as possible predictors of restenosis. Stenosis severity was estimated by visual inspection of the angiograms. Altogether, 160 patients had restenosis, as defined by a greater than 50% reduction in the diameter of the dilated segment at follow-up angiography compared with the findings immediately following angioplasty. There were significantly more carriers of the angiotensinogen 235T allele and more patients with the ACE DD genotype in the restenosis group than in the no restenosis group, but only the angiotensinogen 235T allele (and not the ACE DD genotype) remained significantly associated with restenosis following multifactorial analyses. No differences between the two groups were found with respect to the other gene polymorphisms. Patients who subsequently developed restenosis had a higher degree of stenosis and more severe lesions before PTCA, as well as less residual stenosis immediately after PTCA. We conclude that the angiotensinogen M235T gene polymorphism may be an independent predictor of restenosis after PTCA.

Alleles↗

Generalized transduction of small Yersinia enterocolitica plasmids.

To study phage-mediated gene transfer in Yersinia, the ability of Yersinia phages to transduce naturally occurring plasmids was investigated. The transduction experiments were performed with a temperate phage isolated from a pathogenic Yersinia enterocolitica strain and phage mixtures isolated from sewage. Small plasmids (4.3 and 5.8 kb) were transduced at a frequency of 10(-5) to 10(-7)/PFU. However, we could not detect the transduction of any indigenous virulence plasmid (ca. 72 kb) in pathogenic Yersinia strains. Transductants obtained by infection with the temperate phage were lysogenic and harbored the phage genome in their chromosomes.

Animals↗

Is natural genetic transformation a mechanism of horizontal gene transfer in Yersinia?

We investigated the capacity of different Yersinia strains with emphasis to Yersinia enterocolitica to take up and incorporate DNA by natural genetic transformation. Our studies were initiated by the observation of partial homology between the virulence plasmid of a pathogenic Y. enterocolitica strain (O: 3, biovar 4) and plasmids indiginous to different a pathogenic Y. enterocolitica biovar 1A strains revealed by hybridization studies. Furthermore, an observation of natural genetic transformation in a strain of Y. enterocolitica has been published by CALLAHAN and KOROMA (1979). To detect an uptake and incorporation of DNA, we incubated potential recipient strains with naked DNA under varying experimental conditions. The parameters tested were--the recipient strain,--the markers used to detect a DNA transfer,--the condition of the transforming DNA,--the nutrient availability,--the temperature,--the growth phase, and--the influence of stress. In our experiments, we could not identify conditions under which Y. enterocolitica could be naturally transformed. We thus conclude that natural transformation is unlikely to be an important mechanism for horizontal gene transfer in Yersinia.

Electroporation↗

Purification and characterization of the lytic activity induced by the prolate-headed bacteriophage P001 in Lactococcus lactis.

The lytic activity induced by the lactococcal bacteriophage P001 was isolated from phage lysates of Lactococcus lactis by a four-step purification procedure. Two proteins lytic for L. lactis were identified with molecular weights of 28 kDA and 8 kDa, respectively. The N-terminal amino acid sequences of the two proteins were determined and degenerated oligonucleotide probes corresponding to these sequences were synthesized. DNA hybridization experiments with phage P001-DNA and lactococcal DNA revealed that both proteins were apparently encoded by a single lysin gene located on the phage P001 genome. This was confirmed by alignment of the determined N-terminal amino acid sequences with nucleotide sequences which were deduced from cloned Lactococcus bacteriophage lysin genes.

Bacteriophages↗

Comparison of plasmids of strains of Yersinia enterocolitica biovar 1A with the virulence plasmid of a pathogenic Y. enterocolitica strain.

The plasmid content of apathogenic Y. enterocolitica biovar 1A strains was determined and the plasmids were compared with the virulence plasmid of a pathogenic Y. enterocolitica strain. About 38% of the selected biovar 1A strains contained plasmids of different sizes ranging from 2.7 kb to more than 70 kb. Some of the larger plasmids had a size similar to that of the virulence plasmid of a pathogenic reference strain. The restriction patterns of these plasmids were different from the restriction pattern of the virulence plasmid of the pathogenic reference strain. Differences were also observed in hybridization studies with the virulence plasmid. The plasmids from 15 out of 16 biovar 1A strains showed no homology, whereas the plasmid of one biovar 1A strain partially hybridized to the virulence plasmid.

Animals↗