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Genetic transformation of pilation and virulence into Neisseria gonorrhoeae T4.

Genetic transformation of nonpilated strains of Neisserai gonorrhoeae to pilated forms is described. The transformants displayed phenotypic T1 and T2 colonial morphology on agar and possessed pili visualized by electron microscopy. When T1 or T2 transformant cells were injected into 11-day-old chicken embryos, they exhibited virulence characteristics only slightly less than the parental donor strains, though the parental recipient strains were avirulent. Competence was maximal in the late log phase of growth, and the frequency of transformation of clonal T4s to pilation and virulence approached 2%. DNA extracted from transformants could be used to transform other T4 cells. In the course of this work, a shift to a novel colonial type, designated T2-T3 wrinkled, was observed as a consequence of growth of T4 in presence of enzymatic digests of either DNA or RNA, nucleases or individual deoxy- or ribonucleosides. In sharp distinction to the parental T4, these novel organisms were very pilated; however, they were only minimally virulent. Various nucleic acid analogs could neither induce nor inhibit this population shift. Additionally, DNA extracted from this T2-T3 wrinkled variant could be used to transform genetically both T1 and T4 gonococci to the new morphology.

Conjugation, Genetic

[The role of a protonmotive force in genetic transformation of Bacillus subtilis].

The hypothesis on the role of protonmotive force in the transport of DNA through the membrane of Bac. subtilis cell during initial stages of genetic transformation was tested. A genetic transformation of arsenate-treated cells was observed. Treatment of cells by the protonophorous uncoupler of oxidative phosphorylation-carbonylcyanide dichlorophenyl--hydrazone-led to the inhibition of initial stages of genetic transformation having no significant effect on the level of intracellular ATP concentration and on the viability of cells. The dissipation of protonmotive force by means of K+ and H+ fluxes catalyzed by valinomycin and nigericin also caused the inhibition of initial stages of genetic transformation. The inhibitory effect of cationic penetrant tetraphenyl phosphonium was observed, the effect being potentiated by low concentrations of anionic penetrant phenyldicarbaundecaborate. The value of the membrane potential in the energized valinomycin-treated cells calculated from the distribution of K+ was within the range of 70--100 mV (inside minus). These results support the conception that a protonmotive force drives DNA transport through the membrane of Bac. subtilis cells.

Adenosine Triphosphate

Factors affecting genetic transformation of Neisseria gonorrhoeae.

Piliated gonococci were competent in genetic transformation in all stages of growth in minimal and enriched media, but nonpiliated cells were almost totally incompetent. Uptake of deoxyribonucleic acid into a deoxyribonuclease-insensitive state was observed only in competent piliated cells. Competence was not affected by washing of competent cells or treatment of competent cells with proteolytic enzymes. Expression of competence required presence of any of several different monovalent or divalent cations, as well as a utilizable source of energy. Efforts to produce genotypically or phenotypically competent derivatives of nonpiliated cells were unsuccessful. These experiments are consistent with the idea that pili may play a role in the irreversible uptake of transforming deoxyribonucleic acid by the gonococcus, but fail to provide evidence for other types of competence factors.

Cations, Divalent

Hybridization of DNA's from Neurospora crassa strains may indicate base sequence alterations as a consequence of genetic transformation.

Deoxyribonucleic acids of Neurospora crassa strains involved in genetic transformation experiments were studied by means of DNA-DNA hybridization. No significant difference was detected in the extent of hybridization reassociating 32P-DNA of an inositol-requiring recipient strain with an excess amount of unlabelled homologous DNA and that of the transformed, spontaneous revertant and wild-type strains. Studies on the thermal stability of hybrids revealed 1.2-1.7% heterology between the recipient and transformant DNA's. The spontaneous revertant and wild-type strains proved to be homologous with the recipient strain. We suppose that the heterology we measured is the result of the alteration of the nucleotide sequences caused by the multilocal integration of transforming DNA into the recipient genome.

Base Sequence

Lethal effect of protamine and histone on competent Bacillus subtilis cells. Inhibition of genetic transformation by protamine in sublethal concentration.

Under experimental conditions of genetic transformation, protamine and total histone were bactericidal for Bacillus subtilis cells. The abilities to cause lethality were very similar for both, either protamine or histone, with no antagonistic effects amongst these natural polycations. With both basic proteins acting simultaneously the enhancement was higher than a summation of the separate lethal effects. Sublethal concentration of protamine added at the beginning of transformation time, produced a strong inhibition of transforming efficiency. The same concentration added later than 10 min from the start of transformation had no inhibitory effect. These facts together with the absence of inhibition by simple pretreatment of DNA alone as well as the cell protection by protamine against lytic activity of lysozyme, suggest a protamine-cell surface interaction which impedes DNA uptake events.

Bacillus subtilis

Restriction and modification in Bacillus species: genetic transformation of bacteria with DNA from different species, part I.

Host specific restriction was detected in 13 Bacillus strains, when 63 strains of Bacillus subtilis and 15 other Bacillus strains were tested with phage phi 105C. These 13 strains were classified into 8 groups (M,H,C,N,E,F,G,P) by the type of restriction. M-type strains (B. subtilis Marburg 168, its derivatives, and two other strains) showed relatively weak restriction, restricting phi 105C from other groups of Bacillus by ratios of 10(-1) to 10(-3). Strains of groups H,C,N,E,F,G, and P restricted phi 105C from other groups by ratios of 10(-2) to 10(-8). It was confirmed with some of the strains that type-specific modification was endowed only by the last host. Furthermore, we isolated one restriction deficient mutant of B. subtilis Marburg 168-YS11, which had also lost its modification phenotype.

Bacillus

A possibility to achieve genetic transformation in the platyfish-swordtail system (Platypoecilus maculatus - Xiphophorus helleri).

In order to determine how informative homologous donor DNA might be made available to propigment cells of the recipient Xiphophorus helleri for transformation, labelled heterologous DNA from E. coli was injected into the neural crest region or the yolk sac of embryos of the recipient. On the basis of the degradation rate of the donor DNA and the incorporation rate of radioactivity into the recipient DNA, it is concluded that injection into the neural crest region may be a suitable method to make available informative homologous donor DNA for transformation.

Animals

Prevention of cell agglutination and competence in a genetically transformable strain of Pneumococcus by D-glucosamine and D-galactosamine.

In the presence of amino sugars D-glucosamine and D-galactosamine no spontaneous competence could be observed in the highly transformable R6bd strain of Pneumococcus or it was decreased by several orders of magnitude. The highest inhibition of competence was detected when the amino sugar at a concentration 5 mg/ml of the medium was added not only to the transformation but also to the pretransformation medium. After a 150 min growth in the transformation medium in the presence of the amino sugar a 3--4-fold greater number of cells (as a viable count) could be detected as compared with the control without the amino sugar. It was found microscopically that the amino sugar prevents natural agglutination, which normally occurs in the competent culture. The role of specific amino sugar determinants for binding of the competence factor on the cell surface and the resulting inhibitory effect of these sugars on the development of competence are discussed.

Agglutination

Genetic transformation in Methylobacterium organophilum.

Several mutants have been isolated from the facultative methylotroph, Methylobacterium organophilum, using either N-methyl-N'-nitro-N-nitrosoguanidine or ultraviolet light as mutagens. One of these isolates, a glutamate auxotroph lacking isocitrate dehydrogenase, has been transformed to prototrophy, using wild-type DNA, at a frequency of 0-5%. Competence and DNA uptake occur only in cultures which are near the end of exponential growth, and maximal transformation requires a DNA concentration of 100 mug ml-1.

DNA, Bacterial

Constitution of the cell envelope of Haemophilus influenzae in relation to competence for genetic transformation.

Cell envelopes of Haemophilus influenzae have been prepared by breakage in a French pressure cell followed by differential centrifugation. The envelope fraction may be resolved into an inner-membrane (light) and an outer-membrane (heavy) fraction on density gradients. Envelopes from competent cells possess elevated levels of lipopolysaccharide with a composition different from that of log-phase cell envelopes. Three apparently new polypeptides have been observed in envelopes from competent cells by gel electrophoresis in sodium dodecyl sulfate; additional quantitative alterations in the profiles of membrane polypeptides also company the development of the capacity to transport deoxyribonucleic acid. Most of the polypeptide changes are confined to the outer membrane; one new polypeptide is associated with the inner cytoplasmic membrane of competent cells. Protein synthesis during competence developement is rquired for the change in lipopolysaccharides and in the envelope polypeptides to occur.

Bacterial Proteins

Synthesis of envelope polypeptides by Haemophilus influenzae during development of competence for genetic transformation.

Six polypeptides with apparent molecular weights of 95,000, 90,000, 80,000, 67,000, 64,000, and 43,000 were found to be characteristic of the cell envelopes of competent Haemophilus influenzae, and were synthesized entirely during the period of competence development. Two polypeptides with apparent molecular weights of 58,500 and 40,500 were synthesized during growth as well as during competence development, but were only associated with the envelope fraction of cells that had developed competence. The kinetics of synthesis of the competence-related envelope polypeptides showed a lag period of approximately 20 min. The observation of this lag period raises the question as to whether some of these competence-related polypeptides might be involved in the process of deoxyribonucleic acid uptake, since the development of this property also exhibits a sigmoid time course during competence development.

Bacterial Proteins