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Number of transformable units per cell in Diplococcus pneumoniae.

Analysis of frequencies of single and random multiple transformations in Diplococcus pneumoniae showed that there are at least two transformable units per cell of the total population in highly competent cultures. If 100% of the cells are competent in these cases, the units may be interpreted as the strands of one duplex deoxyribonucleic acid recipient chromosome. The theory is developed to allow for extension to more complex situations.

Chromosomes, Bacterial↗

Alterations in thyroid hormone economy during acute infection with Diplococcus pneumoniae in the rhesus monkey.

In order to study the alterations in thyroid hormone economy that accompany an acute bacterial infection, rhesus monkeys were inoculated i.v. with a virulent Diplococcus pneumoniae culture containing approximately 10(8) organisms per dose. This was found to produce a well-defined febrile illness followed in most instances by spontaneous recovery, thereby permitting sequential observations to be made during progression from the healthy state through acute infection into convalescence. During the acute febrile period of the infection, the clearance of both exogenously labeled L-thyroxine (T(4)) and 3,3',5-triiodo-L-thyronine (T(3)) from their peripheral pools was accelerated. This alteration was often evident by 8 hr after inoculation with the virulent culture and could not be ascribed to a decrease in extracellular binding. Despite the accelerated hormonal clearance, the concentrations of both endogenously labeled thyroid hormone and stable T(4) in the sera of the surviving monkeys remained essentially unchanged or increased, indicating that hormonal secretion must have increased during this period. During the convalescent period, hormonal clearance was similar to preinfection control values. Leukocytes isolated from blood obtained 6 hr after inoculation with the virulent culture displayed enhanced T(4)-deiodinative activity.

Acute Disease↗

Evidence for enhanced cellular uptake and binding of thyroxine in vivo during acute infection with Diplococcus pneumoniae.

Previous work has demonstrated that acute pneumococcal infections in man and in the rhesus monkey are accompanied by accelerated metabolic disposal of L-thyroxine (T(4)). In order to study the influence of acute pneumococcal infection on the kinetics of hormone distribution, the early cellular uptake of T(4) (CT(4)), reflecting the net effect of plasma and cellular binding factors, was assessed in rhesus monkeys from the differences in instantaneous distribution volumes of T(4)-(131)I and albumin-(125)I during the first 60 min after their simultaneous injection. Hepatic and renal uptakes of (131)I were also determined. Plasma binding of T(4) was assessed by measuring the per cent of free T(4) (% FT(4)) in serum. Six monkeys were studied 12 hr (INF-12) and seven 24 hr (INF-24) after intravenous inoculation with Diplococcus pneumoniae; seven controls were inoculated with a heat-killed culture. CT(4) at 60 min as per cent administered dose was 31.5 +/-2.0 (mean +/-SE) in INF-12 and 33.0+/-0.8 in INF-24, values significantly greater than control (22.4+/-1.3). By contrast, mean% FT(4) was identical in control and INF-12 (0.028 +/-0.002 and 0.028 +/-0.001) and variably increased in INF-24 (0.034 +/-0.003). Thus, in the infected monkeys CT(4) and% FT(4) were not significantly correlated. The increased CT(4) in the infected monkeys could not be ascribed to an increase in vascular permeability and did not correlate with the magnitude of fever. Although the increased CT(4) could not be accounted for by increased hepatic or renal uptake of hormone, hepatic and renal T(4) spaces were increased, results consistent with increased binding by these tissues. Our data indicate that the cellular uptake of T(4) is increased early in acute pneumococcal infection and suggest that this results from a primary enhancement of cell-associated binding factors for T(4).

Animals↗

Bacterial growth in vivo. An important determinant of the pulmonary clearance of Diplococcus pneumoniae in rats.

Lung clearance of Diplococcus pneumoniae was markedly reduced in rats with acute hemorrhagic pulmonary edema produced by instillation of hydrochloric acid. Bacterial clearance was enhanced in both control and acid-instilled animals by pretreatment with a bacteriostatic antibiotic, tetracycline, 30 mg/kg. From these data the contributions of bacterial multiplication and bacterial elimination to net lung bacterial clearance were estimated. In control animals the constant for exponential bacterial elimination was -1.4283 (fractional clearance = 76% per h), and the doubling time for the pneumococcus was 170 min. In acid-instilled rats the elimination constant was -0.5336 (fractional clearance = 41% per h), and the doubling time of the pneumococcus was 47 min, approximating the doubling time of 42 min observed with pneumococci grown in broth. These results indicate that, in the case of pneumococci, both bacterial elimination and bacterial growth contribute to lung bacterial clearance in normal animals as well as animals with damaged lungs. In the present study changes in both parameters were required to explain the observed results in acid-instilled animals. The pulmonary pathogenicity of some bacterial species may be determined by their capacity for growth in the lung, since infection of the lung occurs when bacterial multiplication exceeds the rate of elimination of viable organisms.

Aerosols↗

Purification and properties of an endo-alpha-N-acetyl-D-galactosaminidase from Diplococcus pneumoniae.

An enzyme that hydrolyzes the O-glycosidic linkage between alpha-N-acetyl-D-galactosamine and serine or threonine in mucins and mucin-type glycoproteins was purified by chromatography on an Affi-Gel 202 column or isoelectric focusing from filtrates of Diplococcus pneumoniae cultures. The final preparations were free of protease and a wide range of other glycosidase activities. The preparation obtained by isoelectric focusing was shown to consist of a single protein by gel filtration and sodium dodecyl sulfate-gel electrophoresis. This preparation had an apparent molecular weight of about 160,000, determined by gel filtration, an optimum pH of 7.6, and an isoelectric point in the range pH 8 to 9. The enzyme releases the disaccharide Gal-GalNAc from a variety of glycopeptide and glycoprotein substrates and appears to have a specific requirement for an unsubstituted galactose in the nonreducing terminus and an alpha linkage between N-acetylgalactosamine and the aglycone. This is the only endoenzyme known capable of cleaving the linkage between a carbohydrate and serine or threonine residues in glycoproteins. The ability of this enzyme to act on macromolecular substrates and its pH optimum makes it ideally suited to explore the distribution and function of mucin-type glycoproteins on normal and cancer cell surfaces.

Acetylglucosaminidase↗

Diplococcus pneumoniae. Cellulitis in drug addicts.

Cellulitis caused by Diplococcus pneumoniae was diagnosed in two heroin users. To our knowledge, this medical emergency, clinically indistinguishable from deep fasciitis of pyomyositis, has not previously been reported as having been caused by the agent identified in these two patients.

Adult↗

A deoxyribonuclease of Diplococcus pneumoniae specific for methylated DNA.

A deoxyribonuclease specific for methylated DNA was isolated from Diplococcus pneumoniae. The enzyme, an endonuclease, degrades DNA for Escherichia coli to fragments of average molecular weight about half a million; it forms discrete fragments from phage lambda DNA. Methyl-deficient E. coli DNA is not attacked, neither is DNA from Micrococcus radiodurans, which contains no methylated adenine or cytosine. Nor is DNA from D. pneumoniae or phage T7 attacked. However, DNA from M. radiodurans, D. pneumoniae, and T7 is attacked after methylation with and E. coli extract. Methylated T7 DNA is degraded to discrete fragments. Although the genetic transforming activity of normal DNA from D. pneumoniae is not affected by the enzyme, transforming activity of methylated DNA is destroyed. The enzyme is designated endonuclease R Dpn I. Under certain conditions another enzyme of complementary specificity can be isolated. This enzyme, designated endonuclease R Dpn II, produces a similar pattern of fragments from the DNA of T7 without prior methylation of the DNA. It also degrades normal DNA for D. pneumoniae. It is suggested that this pair of enzymes plays a role in some unknown control process, which would involve a large fraction of the specific base sequences that are methylated in E. coli DNA and are present but not methylated in DNA from other sources.

Chromatography, Gel↗

DNA topoisomerase I from Diplococcus pneumoniae.

A type I topoisomerase has been purified from Diplococcus pneumoniae using phosphocellulose and hydroxylapatite chromatography. The purified enzyme catalyses the relaxation of negatively supercoiled DNA. The relaxation requires Mg2+ and is favoured by 0.2 M monovalent cations. The enzyme does not exhibit catenating or supercoiling activities. Using circular pBR322 DNA from dam+- and dam- -hosts as substrates for the enzyme, the relaxation reaction proceeds with somewhat higher efficiency with plasmids containing methylated adenine in GATC sequences. Plasmids from dcm+- and dcm- -hosts show no difference in reactivity.

Chromatography↗

Transglycosylation and transfer reaction activities of endo-alpha-N-acetyl-D-galactosaminidase from Diplococcus (Streptococcus) pneumoniae.

Endo-alpha-N-acetyl-D-galactosaminidase from Diplococcus pneumoniae was shown to have transglycosylation and transfer reaction (reversed hydrolysis) activities. Treatment of asialoglycoproteins having Gal beta 1----3GalNAc alpha 1----Ser/Thr linkages with enzyme preparations containing glycerol resulted in formation of nonreducing trisaccharides. The structure of the main trisaccharide (approximately 80%) was deduced to be Gal beta 1----3GalNAc alpha 1----1(3)-glycerol by analysis of sugar composition and the results of exoglycosidase treatment and periodate oxidation. The ability of the endoglycosidase to catalyze transfer of Gal beta 1----3GalNAc to various acceptors was also demonstrated by incubation of the enzyme with the disaccharide and the test compound. The following were found to show acceptor activity: glycerol, Tris, p-nitrophenol, threonine, serine, D-glucose, D-galactose, D-fucose, and 6-O-methylgalactose. Transfer to the primary hydroxyl groups of glycerol and hexoses appears to be favored since the major glycerol product was 1(3)-substituted and transfer to D-fucose and 6-O-methyl-D-galactose was less than that to D-galactose. In order to avoid spurious results, it is necessary to carry out incubations with this enzyme in the absence of glycerol and other hydroxy compounds. The potential use of this endoglycosidase in the synthesis of glycosides is indicated by our studies.

Galactose↗

[Comparative study of neuraminidases from "Diplococcus pneumoniae" and "Clostridium perfringens"].

Neuraminidases have been purified from the culture medium of two microorganisms, one aerobic, Diplococcus neumoniae, the other anaerobic, Clostridium perfringens. The enzymatic properties of the 2 neuraminidases have been studied (pH optimum; effect of cations; activity toward different substrates: neuraminyllactose, dilactaminyllacto-N-tetraose, gangliosides, alpha1-acid glycoprotein, Collocalia glycoprotein, ovine submaxillary mucin, porcin intestinal and human bronchial mucins).

Cations, Divalent↗

Diplococcus pneumoniae type 16 in laboratory rats.

An acute respiratory disease in a colony of Wistar-derived rats is described. The infection, due to Diplococcus pneumoniae type 16, has apparently not been described previously in the rat. Rigid sanitary measures and treatment with penicillin were effective in controlling the disease.

Animals↗

Type 3 diplococcus pneumonia in laboratory rats.

An acute respiratory disease, due to Diplococcus pneumoniae type 3, affecting Wistar and Sprague-Dawley rats is described. The infection was experimentally transmitted to Sprague-Dawley rats. The zoonotic potential of the condition dictated euthanasia of affected animals and instigation of rigid sanitary measures.

Animals↗

Purification and characterization of an endo-beta-galactosidase produced by Diplococcus pneumoniae.

An endo-beta-galactosidase acting on blood group A and B substances was found in the culture fluid of Diplococcus pneumoniae. The enzyme was purified 1000-fold, and its properties were studied in detail. The enzyme preparation, thus obtained, was practically free from various exoglycosidases, endo-beta-N-acetylglucosaminidase and proteases. The enzyme releases trisaccharides from blood group A and B active mucins purified from ovarian cyst fluid. The structures of the trisaccharides liberated from A and B active mucins were elucidated to be GalNAcalpha1 leads to 3(Fucalpha1 leads to 2)Gal and Galalpha1 leads to 3(Fucalpha1 leads to 2)Gal, respectively. The enzyme also hydrolyzes blood group A and B active oligosaccharides composed of type 2 chains, yielding the same products as in the case of ovarian cyst blood group substances. An H active mucin from ovarian cyst fluid, H active oligosaccharides, and A and B active oligosaccharides with type 1 chains were not hydrolyzed by the enzyme. Consequently, the enzyme catalyzes the following reaction, resulting in the degradation of blood type A and B determinants. (see article).

ABO Blood-Group System↗