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Biomedical subjects

R Curtiss

Publications and source records attributed to R Curtiss.

At least 145 records · Page 8Linked to original sources

Isolation and characterization of Streptococcus mutans mutants with altered cellular morphology or chain length.

A nitrosoguanidine-induced mutant, designated UAB90, of Streptococcus mutans PS14 (serotype c) strain UAB62, was identified on the basis of its unique colony morphology and isolated on brain heart infusion agar. Other mutants displaying similar colony morphologies on brain heart infusion agar were isolated after ethyl methane sulfonate mutagenesis of UAB62 and S. mutans 6715 (serotype g) strains UAB61 and UAB66, and these were found to exhibit abnormalities in cell morphology, chain length, or both. All mutants were examined further for (i) adherence and aggregation after overnight growth in medium containing sucrose, (ii) growth and aggregation in brain heart infusion broth and medium containing glucose, (iii) aggregation of nongrowing cells in the presence of 2 mg of sucrose per ml or 200 mug of dextran per ml, (iv) dextranase activity, and (v) ease of cell lysis. Mutants isolated included several with long chains of enlarged cocci, and two of these strains, UAB261 and UAB433, along with UAB90, were more susceptible to cell lysis than were their parents. UAB261, isolated from UAB62, maintained other parental characteristics, whereas UAB433, isolated from UAB66, lost its ability to aggregate in the presence of either sucrose or dextran. The "fragile" mutant UAB90 was particularly useful in the isolation of high-molecular-weight DNA for early gene cloning experiments by our laboratory. Two other cell morphology mutants, UAB272 from UAB66 and UAB289 from UAB61, did not lyse better than their parents, but both lacked measurable dextranase activity. A final mutant, UAB276 from UAB66, displayed only increased chain length without apparent cell morphology variations. Chains produced by this mutant were up to 10 times longer than those produced by UAB66. UAB276 lysed slightly less well than its parent but retained all other wild-type characteristics examined.

Adhesiveness↗

Characterization of the Streptococcus mutans plasmid pva318 cloned into Escherichia coli.

We further characterized the cryptic plasmid pVA318 of Streptococcus mutans. It had a contour length of 5.64 +/- 0.26 kilobases and a guanine-plus-cytosine content of 32 to 34 mol %. Upon cloning the pVA318 plasmid into the vector pBR322 in Escherichia coli, we made the following observations. The expression of tetracycline resistance by HindIII-cloned chimeras, where the insert was in the tetracycline resistance promotor, depended on the orientation of the pVA318 insert. Both HindIII-cloned chimeras segregated from polA(Ts) cells at a nonpermissive temperature. Chimeric molecules cloned with PstI initially showed much instability; the reason for this is unknown, although stable variants were obtained. Both HindIII-cloned variants and a PstI-cloned chimera produced a pVA318-specific protein of approximately 20,000 molecular weight in E. coli minicells. The biological function of this protein is not known; it had no bacteriocin activity against S. mutans or group A Streptococcus indicator strains, and it did not appear in the E. coli periplasm. We constructed a map of pVA318 for restriction endonucleases HindIII, HpaI, PstI, and HaeIII. A previously reported BamHI site in pVA318 did not appear in the pVA318 portion of any of our chimeric clones.

Cloning, Molecular↗

Isolation and characterization of Streptococcus mutans mutants defective in adherence and aggregation.

A method was developed which enriched for mutants of Streptococcus mutans that exhibit defects in adherence to glass, aggregation, or both. Mutants were isolated from derivatives of strains PS14 (serotype c) and 6715 (serotype g) after mutagenesis with either ethyl methane sulfonate or nitrous acid. Cell survival after mutagenesis was kept above 1 to 2% to enhance the probability that mutants resulted from single mutational events. A total of 117 mutants were isolated; they also displayed non-wild-type colony morphology on mitis salivarius agar. These mutants were examined for (i) adherence and aggregation after overnight growth in sucrose-containing medium, (ii) aggregation of nongrowing cells in the presence of 200 microgram of sucrose per ml or 20 microgram of dextran per ml, and (iii) dextranase production on blue dextran agar plates. Although we isolated mutants which exhibited a variation from the parent strain in only one of the traits tested, the majority of mutants exhibited defects in two or more characteristics. Thirty-eight stable mutants of independent origin were categorized into 13 separate phenotypic groups.

Cell Adhesion↗

Role of ribonucleic acid synthesis in conjugational transfer of chromosomal and plasmid deoxyribonucleic acids.

A strain of Escherichia coli K-12 containing mutations that allow for the experimental control of RNA and DNA syntheses was constructed to investigate the role that RNA synthesis plays in conjugational DNA transfer when DNA replication is inhibited. The mutations possessed by this strain and its donor derivatives include: (i) thyA, which blocks synthesis of dTMP, causing a requirement for thymine; (ii) deoC, which blocks breakdown of deoxyribose 5-phosphate, permitting growth with low levels of thymine; (iii) pyrF, which blocks synthesis of UMP from OMP, imposing a requirement for uridine; (iv) cdd and pyrG, which block the deamination of cytidine to uridine and the synthesis of CTP from UTP, respectively, causing a requirement for cytidine; (v) codA and codB, which block the deamination of cytosine to uracil and cytosine transport, respectively, preventing the substitution of cytosine for cytidine; and (vi) dnaB, which blocks vegetative but not conjugational DNA replication at 42 degrees C. DNA synthesis can be blocked in the donor strains by the addition of excess uridine when exogenous thymine is not present. We found that RNA synthesis can also be blocked by addition of excess uridine when exogenous cytidine is not present. Blocking RNA synthesis prior to mating, under conditions in which DNA synthesis either is or is not inhibited, depresses DNA transfer. However, under conditions in which DNA synthesis is inhibited, the blocking of RNA synthesis immediately after mating has commenced had no effect on continued conjugational transfer of DNA. Thus, RNA synthesis is needed to initiate but not to continue conjugational DNA transfer.

Conjugation, Genetic↗

Mutator bacteriophage D108 and its DNA: an electron microscopic characterization.

Three types of phage particles were observed on CsCl step gradients when D108 was purified from lysates prepared by induction of a prophage. These particle types were identified to be the mature phage, tailless DNA-filled heads, and a form of nucleoprotein aggregates. The nucleoprotein aggregates banded at a density (rho) of greater than 1.6. DNA molecules isolated from mature phage particles were (38.305 +/- 1.226) kilobases (kb) in length. Denaturation and renaturation of D108 DNA resulted in the formation of linear double-stranded molecules with variable-length single-stranded tails at one end. About 30% of the annealed molecules also carried an internal nonhomology, which was shown to be the region called the G-loop in Mu and P1 DNAs. Following the notation used for different regions of denatured, annealed Mu DNA, we measured the lengths of the equivalent D108 DNA regions to be as alpha-D108 = (32.178 +/- 1.370) kb; G-D108 = (3.07 +/- 0.382) kb; beta-D108 = (2.291 +/- 0.306) kb; SE-D108 = (0.966 +/- 0.433) kb. Formation of D108; Mu heteroduplexes disclosed the presence of five nonhomologies, two of which were partial. One of the partial heterologies was in the G-loop region. The largest nonhomology, (1.393 +/- 0.185) kb in size, was near the c end (immunity region) and probably spans the c and the ner genes of Mu. beta-D108 was shown to carry a (0.556 +/- 0.097)-kb insertion close to its right end. A short 100-base-pair region appeared to have been conserved at the ends of D108 and Mu. Occasionally, a 50-to 100-base-pair-long unpaired region was also observed at the left end of D108: Mu heteroduplexes. These sequences were presumably of bacterial DNA. Taken together, our results complement and extend our earlier genetic studies which established that D108 was a mutator phage heteroimmune to Mu with a host range different from Mu's.

Bacteriophage mu↗

Virulence of Streptococcus mutans: restoration of pathogenesis of a glucosyltransferase-defective mutant (C4).

Previous studies have shown that a mutant (designated C4) of Streptococcus mutans 6715 wild type (WT) is defective in glucosyltransferase (GTF)-synthesized insoluble glucan and is avirulent in gnotobiotic rats. This study investigated the factors which would render this mutant virulent in gnotobiotic rats. Microbial analysis of plaque from gnotobiotic rats (45 days old) infected with a mixture of C4 and virulent S. mutans PS-14 (approximately 15,000 C4 organisms to each S. mutans PS-14) yielded higher numbers of C4 organisms than S. mutans PS-14. These animals exhibited significantly lower caries scores than did gnotobiotic rats (age, 45 days) monoassociated with S. mutans PS-14. Similar mixed infection studies using C4 and an avirulent, aggregation-defective mutant of S. mutans 6715 WT (designated UAB 165) which exhibits GTF activity similar to that of the parent strain resulted in plaque consisting almost exclusively of UAB 165 and low caries activity. However, high levels of both C4 and UAB 165 in plaque and high caries activity were observed in gnotobiotic rats infected at weaning with C4 followed by UAB 165 3 days later. When dried S. mutans 6715 WT culture supernatant containing GTF activity was mixed with diet provided rats monoassociated with C4, significant caries activity was observed. Insoluble glucan supplemented in diet did not restore C4 to virulence; however, admixture of suboptimal GTF-rich supernatant with insoluble glucan and C4 resulted in high caries activity in gnotobiotic rats. These results suggest that in vivo restoration of pathogenesis of a GTF-defective mutant of S. mutans can be achieved either by complementation with a mutant defective in aggregation properties or by providing exogenous GTF and glucan from the parent S. mutans 6715 WT.

Animals↗

Bactericidal activity of human serum against Escherichia coli chi1776.

Escherichia coli chi1776 is a host strain providing the EK2 level of biological containment. Laboratories equipped to use this strain may be located near medical care facilities where patients prone to infection may be found. We have therefore documented the marked susceptibility of chi1776 to killing by human serum from normal as well as ill individuals.

Adrenal Cortex Hormones↗

Modification of bacterial serum susceptibility by rifampin.

A subinhibitory concentration of rifampin converted a strain of Escherichia coli from serum resistant to serum susceptible. When continually cultured in nutrient broth containing 1.5 microgram of rifampin per ml, this strain of E. coli became susceptible to killing by both normal human serum and normal rabbit serum. Copared to the original strain, the rifampin-treated E. coli displayed no detectable change in adherence capability, but appeared less virulent in the rabbit model of endocarditis. A rifampin-resistant mutant of the E. coli strain was not found to undergo conversion to serum susceptibility upon culture in rifampin.

Animals↗

Genetic characterization of Mu-like bacteriophage D108.

Infection of Escherichia coli by bacteriophage D108 was shown to result in the generation of apparently random chromosomal mutations. Approximately 1% of the cells lysogenized by D108, as with Mu, acquired new auxotrophic mutations. D108-induced mutations were nonreverting and were most probably the result of insertion of the D108 genome into regions of genetic function. D108 and Mu shared many similar properties but were heteroimmune and had different host ranges. Lytic infections of Mu lysogens with D108 and D108 lysogens with Mu resulted in 100-fold increases in release of phage with prophage markers over those due to spontaneous induction. Phenotypic mixing was common, with most phage carrying the prophage immunity being packaged in particles with the host range of the superinfecting phage. A fraction of the superinfecting phage genomes were, however, packaged in particles with the prophage-specified host range. Although 10% of the prophage progeny were D108-Mu genetic hybrids, superinfecting phage-induced release of the prophage with reciprocal phenotypic mixing occurred in recA hosts, in which the frequency of D108-Mu genetic hybrids was reduced 100-fold.

Coliphages↗

Degradation of DNA by nucleases in intestinal tract of rats.

Strains of Escherichia coli K12 have been constructed as safer hosts for use in recombinant DNA research, These strains are unable to survive passage through the intestinal tracts of rats because of a constellation of mutations conferring bile sensitivity and requirements for diaminopimelic acid and thymine. Since death caused by diaminopimelic acid deprivation could release recombinant DNA before DNA is degraded because of thymine starvation, it is important to determine the "survival potential" of the released DNA's. Bacterial and plasmid DNA's extracted from bacterial cells are rapidly degraded when added to low dilutions of rat intestinal contents. This observation, coupled with the stringent requirements necessary for in vitro transformation or transfection, make in vivo transmission of naked recombinant DNA in the rat intestinal tract highly improbable.

Animals↗

Isolation and characterization of conjugation-deficient mutants of Escherichia coli K-12.

Conjugation-deficient mutants (Con-) of Escherichia coli K-12 have been isolated by a variety of indirect selective techniques. Mutants with mutations conferring ampicillin resistance, fosfomycin resistance, an alanine requirement, and a failure of ferment a number of carbohydrates were selected because the impaired functions occur in association with cell wall and cell membrane defects. The integrity of these catalytic or structural elements is postulated to have a role in conjugation. The mutants could be divided into at least six general categories corresponding to their defectiveness in the following postulated recipient cell functions: (i) specific-union formation, (ii) effective-union formation, (iii) deoxyribonucleic acid transfer, (iv) plasmid establishment, (v) plasmid maintenance, and (vi) recombination. The availability of these mutants should contribute to the description of the molecular events involved in each of these conjugation steps and the elucidation of these genetic control over the inheritance of conjugationally transferred deoxyribonucleic acid.

Alanine↗