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S Falkow

Publications and source records attributed to S Falkow.

At least 217 records · Page 12Linked to original sources

Nucleotide sequence homology between the immunoglobulin A1 protease genes of Neisseria gonorrhoeae, Neisseria meningitidis, and Haemophilus influenzae.

Isolated DNA fragments encoding the immunoglobulin A1 (IgA1) protease of Neisseria gonorrhoeae were used as hybridization probes to search for homologous sequences in whole cell DNA from Neisseria meningitidis and Haemophilus influenzae. Significant homology was detected. That the detected homology represented IgA1 protease-specific sequences was confirmed by the cloning of these sequences in Escherichia coli HB101 and demonstrating the expression of IgA1 protease by these transformed cells. Molecular probing of commensal Neisseria and Haemophilus species, which do not elaborate IgA1 protease activity, revealed that they were devoid of sequence homology with the cloned IgA1 protease gene DNA.

Base Sequence↗

Characterization of common virulence plasmids in Yersinia species and their role in the expression of outer membrane proteins.

The virulence plasmids pYV019, pYV8081, and pIB1 from Yersinia pestis, Yersinia enterocolitica, and Yersinia pseudotuberculosis, respectively, were characterized by restriction endonuclease analysis. The three plasmids exhibited a region of common DNA previously shown to encode determinants which confer Ca2+ dependence. The plasmids from Y. pestis and Y. pseudotuberculosis were similar throughout their genomes. In contrast, a region of the plasmid from Y. enterocolitica which contained an origin of replication differed from the other two plasmids as determined by DNA homology and replication properties. Plasmid-associated outer membrane proteins from all three species of Yersinia were characterized by polyacrylamide gel electrophoresis. There were no differences in the outer membrane protein profiles between plasmid-containing and homogenic strains lacking the plasmid after growth at 28 degrees C. After growth at 37 degrees C, both Y. enterocolitica and Y. pseudotuberculosis showed at least four major plasmid-associated outer membrane proteins. Y. pestis did not show any discernible changes after growth at 37 degrees C. It was shown by using E. coli minicell analysis that the plasmid DNA from all three species of Yersinia contained the coding capacity for production of the novel outer membrane proteins.

Bacterial Outer Membrane Proteins↗

Characterization of Escherichia coli hemolysins conferring quantitative differences in virulence.

Recombinant plasmids encoding hemolysins (hly) isolated from four different Escherichia coli strains were found to be very similar by restriction endonuclease fragment analysis within the hemolysin region. Each of the four recombinant plasmids were used to transform a nonhemolytic fecal strain of E. coli. The comparative virulence of the transformants was tested in a rat model of peritonitis. Despite the physical similarity among the hemolysin recombinant plasmids, each conferred different normally avirulent fecal E. coli strain. Reciprocal exchange of similar restriction endonuclease fragments enabled the construction of hybrid hemolysin determinants with two hemolysins of disparate extracellular hemolysin production and relative virulence levels. The hybrid plasmids were introduced into the standard avirulent fecal strain and tested in the rat peritonitis model. The region conferring quantitative differences in extracellular hemolysin production and virulence was found to be within a region of less than 1 kilobase where the hly c cistron is encoded as well as the probable transcription initiation ares for the entire hemolysin operon. A 750-base pair (bp) AvaI fragment from this region was isolated from a virulent hemolysin recombinant and inserted into a common AvaI site present in an avirulent hemolysin plasmid. This insertion resulted in an increase in the amount of extracellular hemolysin activity and the associated virulence when in the fecal E. coli background.

Animals↗

Genetic analysis of phase change in Bordetella pertussis.

Avirulent-phase derivatives of Bordetella pertussis (those which have simultaneously lost the ability to synthesize several virulence-associated factors) and the genetic mechanism of the phase change were studied. Increased tolerance to erythromycin was shown to be an avirulent-phase marker. By the use of efficiency of plating on erythromycin, the proportion of avirulent-phase (Vir) variants in a virulent-phase (Vir+) population was determined to be between 10(-3) and 10(-6), depending on the strain. We showed that the phase shift is reversible and detected a complete Vir- to Vir+ to Vir- to cycle. In other experiments, hybridization studies with avirulent-phase mutants obtained by Tn5 mutagenesis suggested that a single region located at a unique site in the B. pertussis chromosome controls the phase change. One of the avirulent Tn5 mutants was used as a recipient in a conjugative cross with a virulent-phase donor. All recombinants which had reacquired the virulence-associated factors also lost Tn5, indicating the loss of Tn5 was required to restore the Vir+ phenotype. The Tn5 avirulent-phase mutants behave as if the insertion interrupted the function of a transacting gene product which is required for the expression of the other virulent-phase genes. A model of the molecular basis of the phase regulation is presented.

Anti-Bacterial Agents↗

Gene clusters governing the production of hemolysin and mannose-resistant hemagglutination are closely linked in Escherichia coli serotype O4 and O6 isolates from urinary tract infections.

The genes encoding alpha-hemolysin and mannose-resistant hemagglutination were shown to be closely linked in cloned DNA from two Escherichia coli urinary tract isolates of serotypes O4 (J96) and O6 (C1212). DNA hybridization experiments demonstrated that the hly and mrh gene clusters of other E. coli O6 serotypes were also linked. Colony hybridizations showed that most normal fecal E. coli do not contain hly and mrh DNA but much of the intervening DNA between these two gene clusters is common among all E. coli. We have further demonstrated that there is a small (about 1 kilobase) region of homology located on both sides of the hly sequence and present elsewhere in the C1212 strain. We suggest that linkage of hly and mrh occurred through a transposition event, and we discuss the potential significance of this linkage in the acquisition of virulence determinants by these bacteria.

Base Sequence↗

Frequency of gene sequences necessary for pyelonephritis-associated pili expression among isolates of Enterobacteriaceae from human extraintestinal infections.

Bacteria representing eight genera of the Enterobacteriaceae were collected from human extraintestinal infections and examined to determine whether they contained gene sequences necessary for expression of a pili type often associated with bacteria causing human pyelonephritis. Escherichia coli isolated from most of the extraintestinal sites were frequently found to possess pap-related DNA sequences. Isolates which possessed these sequences were often found to exhibit D-mannose-resistant hemagglutination of human erythrocytes and to have surface antigens related to P pili.

Animals↗

Cloning and expression of an afimbrial adhesin (AFA-I) responsible for P blood group-independent, mannose-resistant hemagglutination from a pyelonephritic Escherichia coli strain.

The uropathogenic Escherichia coli KS52 strain expresses a mannose-resistant hemagglutinin involving an erythrocyte recognition site distinct from the alpha-digalactoside glycosphingolipid receptor identified for the uropathogenic E. coli strains specifying a P adhesin. The KS52 strain showed three major properties. (i) It agglutinated human erythrocytes of all tested blood groups. (ii) Hemagglutinin activity was found both in the supernatant fluid L-broth cultures and in cells grown on L-agar plates. (iii) No fimbriae in organisms grown on L-agar plates were detected by electron microscopy. Whole-cell DNA from the KS52 strain was size fractionated and cloned into the pHC79 cosmid vector. Three recombinant cosmids expressing a mannose-resistant hemagglutination (MRHA) phenotype were characterized and used to subclone the smallest DNA fragment able to confer the same MRHA properties as the parent strain. A 6.7-kilobase chromosomal DNA fragment cloned in pBR322 (pIL14) was shown to be necessary for host-cell MRHA expression and uroepithelial cell adherence. The insert encoded the production of a 16,000-dalton hemagglutinin. This polypeptide could be detected in culture supernatant fluids, in E. coli minicells harboring the pIL14 plasmid, and, by immunoblotting, in the KS52 strain and E. coli whole cells harboring the pIL14 plasmid. No homology was detected by Southern hybridization between the cloned insert and the DNA of the operon responsible for MRHA in the P-specifying, fimbriate strains (pap operon).

Adhesins, Escherichia coli↗

Nucleotide sequence of the papA gene encoding the Pap pilus subunit of human uropathogenic Escherichia coli.

The papA gene of the uropathogenic strain Escherichia coli J96, coding for the Pap pili subunit, was subjected to DNA sequencing, and found to code for an 185-amino acid-long polypeptide with a 22-amino acid-long signal peptide. Here we present the primary sequence, the hydrophilicity profile, and the predicted polypeptide secondary structure of the Pap pili subunit.

Amino Acid Sequence↗

Organization and expression of genes responsible for type 1 piliation in Escherichia coli.

The genetic organization of a segment of recombinant DNA conferring the capacity of synthesize E. coli type 1 pili was examined. This 11.2-kilobase (kb) segment of DNA, derived from a clinical isolate, conferred a piliated phenotype (Pil+) on a nonpiliated (Pil-) strain of E. coli K-12 that lacked DNA homologous to the 11.2-kb region. Insertional mutagenesis, deletion mutagenesis, and subcloning of various regions of the 11.2-kb fragment allowed the localization of five genes, each encoding a polypeptide, that were associated with pilus expression. Three gene products, 17, 86, and 30 kilodaltons (kd) in size, were involved in pilus assembly; assembly of the 17-kd structural (pilin) protein into pili was not seen in mutants lacking either the 86- or 30-kd proteins, but pilin synthesis and proteolytic processing were not affected. The fourth polypeptide, 23 kd in size, appeared to be involved in the regulation of pilus expression because mutants lacking this protein exhibited a 40-fold increase in the amount of pilin antigen per cell. The last protein, 14 kd in size, was not associated with piliation by genetic criteria; however, the 14-kd protein was immunoprecipitated with pili, suggesting an association with pili or immunological cross-reactivity with pilin. Immunoprecipitates of minicell transcription translation products revealed that pilus polymerization was taking place in minicells. This may facilitate the study of the molecular steps in pilus biosynthesis and, as a consequence, provide clues to the assembly of supramolecular structures in general.

Chromosome Deletion↗

Identification and characterization of a gene product that regulates type 1 piliation in Escherichia coli.

The recombinant plasmid pSH2 confers type 1 piliation (Pil+) on a nonpiliated (Pil-) strain of Escherichia coli K-12. At least four plasmid-encoded gene products are involved in pilus biosynthesis and expression. We present evidence which indicates that one gene encodes an inhibitor of piliation. Hyperpiliated (Hyp) mutants were isolated after Tn5 insertion mutagenesis of pSH2 and introduction of the plasmid DNA into a Pil- strain of E. coli as unique small, compact colonies. Also, Hyp mutants clumped during growth in static broth and were piliated under several cultural conditions that normally suppressed piliation. Electron microscopic examination of Hyp mutants associated an observed 40-fold increase in pilin antigen with an increase in the number and length of pili per cell. All Hyp mutants examined failed to produce a 23-kilodalton protein that was encoded by a gene adjacent to the structural (pilin) gene for type 1 pili, and all Tn5 insertion mutations that produced the Hyp phenotype mapped in this region (hyp). Piliation in Hyp mutants could be reduced to near parental levels by introducing a second plasmid containing a parental hyp gene. Thus the 23-kilodalton (hyp) protein appears to act in trans to regulate the level of piliation.

Base Sequence↗

Mannose-sensitive and Gal-Gal binding Escherichia coli pili from recombinant strains. Chemical, functional, and serological properties.

Chromosomal genes encoding the MS and Gal-Gal binding properties have been cloned into separate recombinants and their respective pili characterized. Hapten inhibition of hemagglutination with synthetic carbohydrate receptor analogues and carbohydrate-adsorbed latex agglutination studies indicate that Gal-Gal and MS pili collectively exhibit the binding properties of the parent strain. MS pili migrated in SDS-PAGE with an Mr of 19 kdaltons and 17 kdaltons; the Mr of Gal-Gal pili was 17.5 kdaltons. The pili are chemically similar by amino acid composition and when the N-terminal cysteines are aligned, 8 of the 13 residues between positions 9 and 22 are homologous. Further, carboxy-terminal sequence homology was inferred from the carboxypeptidase digestion of a MS pili and the sequence of a carboxy-terminal tryptic peptide from Gal-Gal pili.

Agglutination Tests↗

Genetic analysis of essential plasmid determinants of pathogenicity in Yersinia pestis.

The role of the Yersinia pestis virulence-associated plasmid, pYV019, in the expression of Ca++ dependence, virulence, and the production of the V antigen was investigated. Derivatives of bacteriophage P1 were used to deliver the transposon Tn5 into Y pestis strain EV76. Ca++-independent mutants in which transposon Tn5 had been inserted into plasmid pYV019 were isolated, the resulting plasmids--pYV019::Tn5--were transformed into an Escherichia coli K12 derivative, and the site of insertion of transposon Tn5 was mapped with restriction endonucleases. The plasmids were then transduced by bacteriophage P1 into avirulent strain 195-P1 of Y pestis. The transductants were analyzed for expression of Ca++ dependence, virulence in mice, and the expression of the V antigen. Introduction of plasmid pYV019 with insertions outside of the Ca++ dependence loci restored strain 195-P1 to full virulence, while disruption of plasmid genes associated with Ca++ dependence led to loss of virulence. Using Western blotting analysis and E coli minicells, it was shown that genes specific for the V antigen are plasmid encoded.

Animals↗

DNA hybridization technique for the detection of Neisseria gonorrhoeae in men with urethritis.

A technique to detect Neisseria gonorrhoeae directly in clinical specimens was developed using a modified DNA-hybridization method. It uses the gonococcal cryptic plasmid as the radiolabeled probe, can detect as few as 100 colony-forming units of N gonorrhoeae or as little as 0.1 pg of purified gonococcal plasmid DNA, and is highly specific. This technique for differentiating between gonococcal and nongonococcal urethritis was evaluated in men with symptomatic urethritis in Seattle. Sixty-three (89%) of 71 who had cultures positive for N gonorrhoeae were also positive by DNA hybridization, and all 42 whose cultures were negative were also negative by DNA hybridization. Five of six isolates from patients who were positive by culture but negative by hybridization lacked the gonococcal cryptic plasmid and belonged to a unique auxo-type which requires proline, citrulline, and uracil for growth.

DNA, Bacterial↗

Recombinant DNA risk assessment studies in humans: efficacy of poorly mobilizable plasmids in biologic containment.

Recombinant DNA risk assessment studies quantitated the mobilizability of "safe" plasmid pBR325, in comparison with readily mobilizable plasmid pJBK5 (chloramphenicol and tetracycline resistant). Of 15 volunteers who became colonized after ingestion of 5 X 10(10) Escherichia coli HS-4, a normal human flora strain containing pJBK5 and daily oral tetracycline, nine manifested transfer of pJBK5 to normal flora by means of triparental mating. In contrast, none of 12 other volunteers cocolonized with HS-4 bearing "safe" pBR325 and normal flora showed transfer (P = 0.001), despite ingestion of tetracycline. To accomplish transfer directly, E coli HS-4 containing both pBR325 and a derepressed, conjugative plasmid (F-amp) was fed to two groups of volunteers. Transfer of pBR325 to normal flora occurred in 13 of 18 volunteers taking daily tetracycline but in none of eight who did not (P less than 0.002). Nor were transconjugants detected, despite tetracycline ingestion, in five volunteers who ingested and excreted E coli K12 (pBR325 plus F-amp).

Adult↗

Isolation and nucleotide sequence determination of a gene encoding a heat-stable enterotoxin of Escherichia coli.

A gene encoding a heat-stable enterotoxin (ST) from an Escherichia coli strain isolated from a human with diarrhea was cloned and characterized by nucleotide sequence analysis. The gene was found to be partially homologous to a previously characterized ST gene from an E. coli strain of bovine origin. Hybridization studies showed that most ST-producing strains of E. coli isolated from humans with diarrhea possess genes highly homologous to either the ST gene from the bovine strain or the ST gene characterized in the present study.

Bacterial Toxins↗

Contribution of adhesion to bacterial persistence in the mouse urinary tract.

The affinity of uropathogenic Escherichia coli to kidneys and bladders of experimentally infected mice was shown to be determined in part by the adhesive properties of the infecting bacteria. Mice were infected with various pairwise combinations of two homogeneic sets of bacteria: (i) mutants derived from a human pyelonephritis E. coli isolate which were selected to express either or both adhesins specific for globoseries glycolipid receptors or for "mannosides"; and (ii) transformants of a normal fecal isolate which harbored recombinant plasmids encoding the genes for one or the other adhesin or which harbored only the vector plasmid. The relative efficiency of survival of the strains to be compared was evaluated in each animal by plating on selective media of samples of homogenized kidneys and bladders taken 24 h after intravesical inoculation. The presence of adhesins specific for globoseries glycolipid receptors, which mediate the in vitro mannose-resistant attachment to human and mouse uroepithelial cells, enhanced bacterial recovery from both kidneys and bladders of infected animals. The addition to the infecting strain of adhesins binding mannoside residues further improved bacterial recovery from the bladder, but not from the kidney. The mutants and transformants with adhesins binding only mannosides were recovered in higher numbers from the bladder than those expressing adhesins specific for the globoseries glycolipids only. There was apparent selection in vivo decreasing expression of mannoside binding adhesins in the kidneys, but not in the bladders, of animals infected with the mutant expressing both types of adhesins. Regardless of adhesive properties, the mutants of the pyelonephritis isolate were recovered in significantly higher numbers than the fecal isolate with adhesins encoded on recombinant plasmids. We conclude that the adhesive properties in part determine the localization and retention of bacteria in the mouse urinary tract. However, the addition of adhesins to a commensal E. coli strain was not sufficient to confer colonization capacity comparable to that of a pyelonephritis strain.

Adhesins, Escherichia coli↗

Genetics of digalactoside-binding adhesin from a uropathogenic Escherichia coli strain.

The uropathogenic strain Escherichia coli J96 mediates mannose-resistant hemagglutination owing to production of a digalactoside-binding adhesin. A cosmid clone from this strain has been isolated that, when harbored in E. coli K-12, expressed Pap pili and this adhesin (R. Hull et al., Infect. Immun. 33:933-938, 1981). By transposon mutagenesis and by the construction of a number of hybrid plasmid derivatives, we have demonstrated that about 8.5 kilobases of DNA is required to generate a mannose-resistant hemagglutination-positive phenotype in E. coli K-12 strain P678-54. The structural gene for the Pap pili monomer, papA, has been identified and mapped close to the promotor-proximal end of the Pap operon. Although strain P678-54 that harbored a Tn5 insertion within papA showed a mannose-resistant hemagglutination-positive phenotype, it was negative in a competitive enzyme-linked immunosorbent assay with anti-Pap pilus serum. This could mean that a Pap adhesin is encoded by a region on the Pap operon that is distinct from papA.

Adhesins, Escherichia coli↗