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Biomedical subjects

M Rhen

Publications and source records attributed to M Rhen.

At least 55 records · Page 3Linked to original sources

Localization by insertion mutagenesis of a virulence-associated region on the Salmonella typhimurium 96 kilobase pair plasmid.

The virulence-associated plasmid pEX102 of Salmonella typhimurium line TML R66 was tagged with the transposon Tn5 and the virulence of the mutants obtained was assayed in the mouse salmonellosis model. Out of 36 independent insertion mutants tested two isolates had clearly reduced virulence in (CBA x C57B1/6)F1 mice. The corresponding Tn5 elements were positioned on the restriction endonuclease map of pEX102 and found to be some 4 kilobases apart (kb) on the 96 kb virulence plasmid.

Animals↗

Identification and genetic analysis of mkaA--a gene of the Salmonella typhimurium virulence plasmid necessary for intracellular growth.

Salmonella typhimurium, like many other Salmonella serovars, harbours a large plasmid required for mouse virulence and growth of bacteria in host cells. The nature of one virulence-abolishing Tn5 insertion (zzx-2556::Tn5) in the plasmid was characterized. A 3.7 kb insert harbouring this region was cloned in pBR325. Plasmid-directed protein synthesis in minicells indicated that the transposon had eliminated the expression of a 70 kDa protein encoded by the virulence plasmid. Nucleotide sequence analysis of the corresponding wild type DNA region showed a 1773 bp open reading frame (mkaA), encoding a protein of 591 amino acid residues and a predicted molecular mass of 60.6 kDa; zzx-2556::Tn5 was situated within mkaA.

Base Sequence↗

Mutations in cloned Escherichia coli P fimbriae genes that makes fimbriae-production resistant to suppression by trimethoprim.

The effect of sublethal concentrations of trimethoprim on the expression of P fimbriae was tested in Escherichia coli HB101 recombinant strains. Fimbriation was inhibited at trimethoprim concentrations down to at least 1/64 of the minimal inhibitory concentration. However, the expression of the P fimbrillin by recombinant plasmids containing deletions in front of the fimbrillin gene did not respond to the inhibitory effect of trimethoprim indicating that trimethoprim may act at the level of gene regulation.

Agglutination Tests↗

Plasmid-associated virulence of Salmonella enteritidis.

Plasmid-associated virulence of Salmonella enteritidis was studied using plasmid-cured and plasmid-reintroduced strains. The plasmidless strain was unable to grow in the liver of mice after intravenous inoculation. Reintroduction of the plasmid pEX106 from the original S. enteritidis fully restored its capacity to grow in the mice. The plasmid pEX102 of Salmonella typhimurium introduced into the plasmid-cured S. enteritidis had a similar effect. The smooth lipopolysaccharide character of the S. enteritidis strains was not affected by the presence or absence of the plasmid, and the same was true of their high resistance to complement in guinea-pig serum as such or with added antibody.

Animals↗

The role of the traT gene of the Salmonella typhimurium virulence plasmid for serum resistance and growth within liver macrophages.

The role of the traT gene of the Salmonella typhimurium virulence plasmid for the serum resistance of the bacteria and their growth within mouse liver macrophages was investigated. The gene product, the TraT protein, increased the serum resistance in E. coli HB101, which naturally does not carry traT. It also contributed to the serum tolerance of S. typhimurium. The capacity of an isogenic S. typhimurium TML strain triplet, differing in their ability to express TraT and in the quality of the traT gene expressed, to grow in vivo in the mouse liver indicated that, although TraT was dispensable for the net growth of the bacteria within the liver, the expression of a mutated traT gene reduced the growth rate. The traT gene was mapped on the virulence plasmid outside previously defined virulence determinants suggesting that other regions of the virulence plasmid are mainly responsible for the growth within mouse liver macrophages in S. typhimurium.

Animals↗

Nucleotide sequence analysis of a P fimbrial regulatory element of the uropathogenic Escherichia coli strain KS71 (04:K12).

The nucleotide sequence of a trans-acting P-fimbrial regulatory element obtained from the uropathogenic Escherichia coli strain KS71 (04:K12) was determined. The regulatory element was found to contain an open reading frame of 231 nucleotide residues that showed 95.2% homology with papl, a functionally analogous regulatory gene of E. coli strain J 96.

Amino Acid Sequence↗

Organization of genes expressing the blood-group-M-specific hemagglutinin of Escherichia coli: identification and nucleotide sequence of the M-agglutinin subunit gene.

The organization of genes encoding the blood group M-specific hemagglutinin (M-agglutinin) of Escherichia coli strain IH11165 was studied with a cloned 6.5-kb DNA segment. This DNA segment contains at least five genes which code for the polypeptides of 12.5, 30, 80, 18.5 and 21 kDa. The 30-, 80- and 21-kDa polypeptides are synthesized as precursors that are approximately 2 kDa larger. The 21-kDa polypeptide was identified as the M-agglutinin subunit by its reactivity with anti-M-agglutinin serum. Nucleotide sequence analysis of the corresponding gene showed that the M-agglutinin precursor had a 24-amino acid (aa) signal sequence, while the mature protein is 146 aa residues long. Although the organization of the M-agglutinin gene cluster resembles those of other E. coli adhesins, there is no significant sequence homology between the M-agglutinin subunit and the subunits of the other potentially related proteins in E. coli.

Amino Acid Sequence↗

Location of adhesion sites for P-fimbriated and for 075X-positive Escherichia coli in the human kidney.

High-affinity binding sites for P-fimbriated and for 075X-positive Escherichia coli were located in the human kidney. Frozen sections of normal human kidney were double-stained first with fluorochrome-labelled bacteria and then with fluorochrome-labelled nephron site-specific lectins or antibodies. The P-fimbriate recombinant E. coli strain used showed specific adherence to glomerular structures, to the lumen of proximal and sital tubules and to vascular endothelium but did not adhere to collecting ducts or to peritubular sites. Two E. coli strains having the 075X adhesin showed specific adherence to renal interstitium, to glomerular elements and to Bowman's capsule. The method described allows the detailed determination of tissue-substructure specificity of bacterial adhesion. Our results demonstrate tissue tropism in the adhesion of E. coli to human kidneys and suggest a pathogenetic role for X adhesins.

Bacterial Adhesion↗

Fimbriation and P-antigen recognition of Escherichia coli strains harbouring mutated recombinant plasmids encoding fimbrial adhesins of the uropathogenic E. coli strain KS71.

Deletion mutants of recombinant plasmids encoding the KS71B fimbrial antigens of the uropathogenic Escherichia coli strain KS71 (O4:K12) were constructed. The effects of these mutations were tested by transforming the mutated plasmids into non-fimbriated E. coli HB101 cells and testing the transformants for fimbriation and haemagglutination. A deletion transcriptionally upstream from the fimbrial subunit gene increased the expression of KS71B fimbriae. Deletion of the fimbrial subunit gene resulted in non-fimbriated but haemagglutinating transformants, whereas a deletion 6 kb transcriptionally downstream from the subunit gene resulted in non-haemagglutinating but fimbriate transformants, indicating that fimbriation and haemagglutination were genetically separable. We also present evidence suggesting that the fimbrillin and haemagglutinin are physically associated in the wild-type KS71 strain.

Adhesins, Escherichia coli↗

Analysis of P fimbriae on Escherichia coli O2, O4, and O6 strains by immunoprecipitation.

P fimbriae on Escherichia coli O2, O4, and O6 strains were analyzed by immunoprecipitation. Fimbrial extracts were prepared from a total of 35 strains and tested for precipitation with four anti-P-fimbria sera. The overall fimbrial composition of the strains was related to the O:K:H serotype, and two to three P fimbrial variants per strain were found on most of the O4 and some of the O6 strains. The O2 strains, in contrast, showed only one antigenic variant of P fimbriae per strain, which was serologically unrelated to those of the O4 and O6 strains. The results stress the multiplicity and serological complexity of E. coli P fimbriae.

Animals↗

Binding of Escherichia coli S fimbriae to human kidney epithelium.

Purified S fimbriae and an Escherichia coli strain carrying the recombinant plasmid pANN801-4 that encodes S fimbriae were tested for adhesion to frozen sections of human kidney. The fimbriae and the bacteria bound to the same tissue domains, and in both cases the binding was specifically inhibited by the receptor analog of S fimbria, sialyl(alpha 2-3)lactose. S fimbriae bound specifically to the epithelial elements in the kidneys; to the epithelial cells of proximal and distal tubules as well as of the collecting ducts and to the visceral and parietal glomerular epithelium. In addition, they bound to the vascular endothelium of glomeruli and of the renal interstitium. No binding to connective tissue elements was observed. The results suggest that the biological function of S fimbriae is to mediate the adhesion of E. coli to human epithelial and vascular endothelial cells.

Adenocarcinoma↗

Identification of two new hemagglutinins of Escherichia coli, N-acetyl-D-glucosamine-specific fimbriae and a blood group M-specific agglutinin, by cloning the corresponding genes in Escherichia coli K-12.

Genes encoding the Escherichia coli IH11165 hemagglutinins with specificity for terminal N-acetyl-D-glucosamine and blood group M antigen, respectively, were cloned by a cosmid cloning procedure. A 22-kilobase-pair subclone expressed both hemagglutination specificities in the nonhemagglutinating E. coli HB101 recipient strain. Derivatives obtained by insertion and deletion mutagenesis expressed either one of the two hemagglutination specificities. Both agglutinins were purified; the agglutinin recognizing terminal N-acetyl-D-glucosamine was associated with a new type of fimbria (G fimbria) with an apparent subunit molecular mass of 19.5 kilodaltons, whereas the blood group M agglutinin (M agglutinin) was nonfimbrial and had an apparent subunit mass of 21 kilodaltons.

Acetylglucosamine↗

Comparison of the nucleotide sequences of the genes encoding the KS71A and F7(1) fimbrial antigens of uropathogenic Escherichia coli.

DNA fragments encompassing the genes for the KS71A and F7(1) fimbrial subunits of Escherichia coli strains KS71 (O4:K12) and AD110 (O6:K2), respectively, have been subjected to DNA sequencing. The nucleotide sequences of the two fimbrillin genes were identical and they encode a polypeptide of 187 amino acids of which 21 amino acids probably will constitute the signal sequence. The primary structure of these fimbrillins showed significant homology with the primary structure of other E. coli fimbrillins.

Agglutination Tests↗

Complementation and regulatory interaction between two cloned fimbrial gene clusters of Escherichia coli strain KS71.

Complementation experiments with cloned DNA fragments encoding either the KS71A, the KS71B or the KS71C fimbriae of the pyelonephritogenic Escherichia coli strain KS71 were used to localise the P-fimbrillin genes and to demonstrate regulatory interactions between the cloned genes. The structural genes of the KS71A and KS71B fimbriae were located within a common 1.1 kilobase pair ClaI-SmaI fragment, and it was shown that the gene clusters for these fimbriae could complement each other in trans. The gene cluster encoding the KS71C fimbriae did not complement for the other KS71 fimbriae. A DNA fragment, located near the KS71A fimbrillin gene, was found to enhance the production of the KS71B fimbriae in trans.

Agglutination↗

Characterization of DNA fragments encoding fimbriae of the uropathogenic Escherichia coli strain KS71.

Recombinant plasmids were constructed that expressed the KS71A, KS71B and KS71C fimbrial antigens of the pyelonephritogenic Escherichia coli strain KS71 (O4:K12) in E. coli HB101. The KS71C-encoding genes were located on a 6.4 kb HindIII-XhoI fragment obtained from the recombinant cosmid pKTH145 that expresses this antigen. Spontaneous KS71C-mutants were isolated that contained a 0.8 kb insert in a specific restriction fragment of KS71C-encoding recombinant plasmids. The KS71B-encoding segment was located on a 11.5 kb deletable DNA fragment of recombinant cosmid pKTH144. A DNA fragment encoding the KS71A fimbria was obtained on a 12 kb EcoRI fragment of the recombinant cosmid expressing this antigen in E. coli HB101 and closely resembled the KS71B-encoding fragment. In the recombinant cosmid, the KS71B-expressing region was flanked by homologous DNA segments. A similar stretch of DNA was found close to the KS71A-expressing DNA region.

Cloning, Molecular↗

Organization of fimbriate cells in colonies of Escherichia coli strain 3040.

Immunofluorescence staining with fimbria-specific antibodies was used to study the organization of fimbriate cells in colonies of Escherichia coli strain 3040. The strain has both type-1 and S fimbriae and shows fast phase variation between the fimbrial types. Colonies stained in sectors whose length and number per colony were dependent on the fimbrial phase of progeny cells. It is proposed that such sectors result from fimbrial phase variation.

Escherichia coli↗

Occurrence of type-1C fimbriae on Escherichia coli strains isolated from human extraintestinal infections.

Two monoclonal antibodies specific for type-1C fimbriae of Escherichia coli were produced. In enzyme-linked immunosorbent assay and immunoblotting the antibodies, which were of the IgG1 isotype, reacted with type-1C, but not with P or type-1 fimbriae of E. coli strain KS71. Immunoblotting and immunoprecipitation of crude fimbrial extracts from 25 strains invariably gave an apparent molecular weight of 17 000 for the type-1C fimbrillin. A total of 313 E. coli strains, isolated from patients with extraintestinal infection or from faeces of healthy children, were screened for the presence of type-1C fimbriae using both the monoclonal and polyclonal antibodies. Of these, 45 (14%) strains had type-1C fimbriae, with the highest frequency (27%) on strains isolated from patients with pyelonephritis. No faecal strain had type-1C fimbriae, and the frequency on the other diagnostic groups ranged from 11 to 15%. Thus, no direct correlation between type-1C fimbriae and bacterial virulence in human extraintestinal infections was found. Type-1C fimbriae were detected on only a few E. coli serotypes, notably on all O6:K2:H1 and O22:K13:H1 strains tested.

Animals↗