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W Reichardt

Publications and source records attributed to W Reichardt.

At least 37 records · Page 2Linked to original sources

Purification and characterization of hyaluronidase from Streptococcus agalactiae.

Hyaluronidase from two different strains of Streptococcus agalactiae was purified and characterized. The purification was performed successively by chromatography and rechromatography on phenylsepharose, gel filtration with FPLC on Superdex G 200 and isoelectric focusing. The purified hyaluronidase had an isoelectric point of 8.75 and a molecular weight of approximately 116,000 D. It showed maximal enzyme activity at pH 6.30 and 40 degrees C. The Michaelis constant was estimated to be 8.17 x 10(-2) mg/ml. Hyaluronidase was stimulated only by Mg++ and inhibited by Zn++, Al , Cu++ and Fe++ at a final concentration of 10 mmol/l, respectively. The enzyme splitted hyaluronic acid and in low amounts dermatan sulphate and chondroitin sulphate A. Additionally, synthetic polyanions (like polymers of gentisic acid with formaldehyde and hydroxy sulphonic acid with formaldehyde) turned out to be also potent inhibitors of the enzyme.

Hyaluronoglucosaminidase↗

Separation of mitogenic and pyrogenic activities from so-called erythrogenic toxin type B (Streptococcal proteinase).

It is well-established that three types of erythrogenic toxins (ETA, ETB, ETC) are produced by Streptococcus pyogenes (group A streptococci) strains. Culture filtrate concentrates from Streptococcus pyogenes strains T19P (T19, ETA+, ETB+, ETC-), 27337 (T12, B3264, ETA-, ETB+, ETC+), 27252 (T4, ETA-, ETB+, ETC+) and 27195 (T8, ETA-, ETB+, ETC-) were analyzed by preparative isoelectric focusing. These concentrates and the purified erythrogenic toxin type B (ETB) isolated by ion exchange chromatography had mitogenic and pyrogenic activity. Now, it has been found that the mitogenic activity and the pyrogenic activity of this ETB can be separated by preparative isoelectric focusing in Sephadex gels. This means that ETB is not a superantigen as described in literature. The mitogenic and biological activity is caused by traces of ETA (strain T19P), ETC (strains 27252 and 27337) and/or by unknown mitogen(s) (MX, strain 27195) which preferentially stimulate V beta 8+ T cells. The differentiation between ETA (stimulating V beta 12+ but not V beta 8+ or V beta 2+), ETC (stimulating V beta 2+ but not V beta 8+), and MX (stimulating V beta 8+) was done using established leukemic cell lines.

Animals↗

Kinetics of growth and product formation in cultures from streptococci of groups A and C.

During growth of streptococci of Lancefield groups A and C in a culture medium containing glucose, yeast extract and peptone, two main growth phases occur: growth phase I and growth phase II (diauxic growth). They are separated by a short stationary phase (1st stationary phase). The diauxic growth is caused by transient limitations as well as the availability of new sources of the amino acids L-serine and L-arginine. Growth phase I consists of an exponential and a nearly linear part. These growth kinetics are reflected by the kinetics of gas metabolism as well as by product formation. Hyaluronic acid is formed during the nearly linear phase whereas the enzyme alkaline phosphatase, is exclusively excreted in the 1st stationary phase. Also carbon dioxide and L-lactate are mainly produced in a growth phase-dependent mode. In the late stationary phase (2nd stationary phase) more oxygen is consumed whereas the demand for oxygen in the 1st stationary phase is nearly zero.

Amino Acids↗

Streptococcal erythrogenic toxin type C is not a phosphorylated protein. Description of two different purification procedures and investigation of its phosphorylation state.

Erythrogenic toxin type C (ETC) from different streptococcal group A strains was successively purified by absorption on phenylsepharose, acidic dialysis of the eluate at 40% saturated ammonium sulphate solution, CM-Sepharose chromatography, finally by immunoaffinity chromatography on monoclonal antibodies. Second, after growing of bacteria in the presence of [32P]orthophosphate to phosphorylate ETC, the ETC was purified with phenylsepharose following immunoaffinity chromatography. The occurrence of phosphoamino acids in the purified ETC was investigated by an immunoassay. No phosphoamino acids could be detected in the ETC molecule. Also after radiolabelling with 32P it was not possible to demonstrate a radioactive signal. The treatment with alkaline phosphatase has no influence on the mitogenicity or position of ETC in isoelectric focusing. The results obtained led to the conclusion that in contrast to the literature, ETC is not a phosphorylated protein.

Amino Acid Sequence↗

Blue-green pigmented symbionts of echiurids from polar marine environments.

Burrowing echiurid worms from marine sediments including sulfidic habitats of both the Antarctic Ocean and the Norwegian Sea were partly colonized by blue-green prokaryotic symbionts. These resembled free-living Prochlorophytes and contained 2-vinylpheophorbide-a5 as the only pigment being detectable by HPLC. The potential biogeochemical significance of these epizoic symbionts is discussed.

Animals↗

Erythrogenic toxin type A (ETA): epidemiological analysis of gene distribution and protein formation in clinical Streptococcus pyogenes strains causing scarlet fever and the streptococcal toxic shock-like syndrome (TSLS).

Erythrogenic toxin type A (ETA) is assumed to play a causative role in both scarlet fever and the streptococcal toxic shock-like syndrome (TSLS). For a molecular epidemiological analysis of the gene of erythrogenic toxin type A (speA) we used altogether 497 clinical isolates of Streptococcus pyogenes belonging to three groups: a) isolates from patients with scarlet fever, b) isolates from cases with TSLS, c) isolates from patients with other streptococcal infections (like otitis media, tonsillitis, impetigo) (general group). We found that less than 50% of the scarlet fever-associated strains possessed the speA gene as compared to 25% of the general group. Only 5 to 30% of these strains secreted the toxin under experimental conditions in very low quantities. Among strains isolated from TSLS, 67% appeared to contain the speA gene. The amount of ETA secreted into the medium was also extremely low. Southern hybridization patterns proved to be the same with an speA-specific probe in all three groups of streptococcal isolates (HaeIII, HindIII). Increased occurrence of the speA gene among scarlet fever and TSLS-associated strains does not seem to be sufficient to support the hypothesis that ETA may have a causative role in both diseases since a considerable number of strains in these groups did not possess the speA gene.

Bacterial Proteins↗

Susceptibility of chicken embryos to group A streptococci: correlation with fibrinogen binding.

One problem in investigating group A streptococcal infections and virulence is the lack of appropriate in vivo models. In this study we introduce the chicken embryo model for determining virulence of Streptococcus pyogenes. We found that M protein positive strains, if administered intravenously, were highly virulent for 12-day-old chicken embryos. The LD50 of the strains tested could be correlated directly with the amount of cell wall exposed M protein, which has been determined by the capacity of streptococci to bind fibrinogen and by the ability of streptococci to survive in fresh normal human blood. The number of colony forming units (cfu) of M+ strains necessary to kill 50% of embryonated eggs was significantly lower (< 10(2) cfu) than for M-variants (> 10(4) cfu). Albumin and/or IgG binding streptococcal cells, which can also take place in proteins of the M protein family which do not bind to fibrinogen, did not show that clear correlation to the virulence in chicken embryos that did fibrinogen binding. Application of anti-streptococcal M protein antisera from chicken and rabbit reduced the lethality of the chicken embryos. In contrast, no correlation was found between lethality of chicken embryos and the in vitro production of erythrogenic toxins by the administered strains. Thus the results indicate that the presence of M-protein with its fibrinogen binding activity on the streptococcal cell surface is necessary for virulence of group A streptococci in the chicken embryo model.

Animals↗

Erythrogenic toxins A, B and C: occurrence of the genes and exotoxin formation from clinical Streptococcus pyogenes strains associated with streptococcal toxic shock-like syndrome.

We report the study of 53 clinical isolates of group A streptococci, all from patients with streptococcal toxic shock-like syndrome. The strains were analysed for the occurrence of the genes of erythrogenic toxins (pyrogenic exotoxins) types A, B and C and in vitro production of these toxins. In contrast to reports indicating that 85% of the toxic shock-like syndrome-associated isolates contained the erythrogenic toxin A gene, only 58.5% of our strains harboured this gene. The erythrogenic toxin C gene was detected in 22.6% of the isolates. Erythrogenic toxin A and erythrogenic toxin B were produced by 68.7% and 58.3% of the strains containing either gene. For all group A streptococci, irrespective of clinical association, the erythrogenic toxin B gene was detected in all the isolates tested. Thus, it is difficult to define a specific role for erythrogenic toxin B in toxic shock-like syndrome as there was no clear correlation between this disease and the presence of toxin genes. Our results suggest the existence of other pathogenic factor(s) produced by group A streptococci which may stimulate human peripheral T lymphocytes in a manner similar to that of erythrogenic toxins, thus explaining different observations in previous epidemiological genetic studies.

Amino Acid Sequence↗

[The determination of protein content of milk, cheese, and meat with the use of the biuret reaction].

A review is given of the different composition of biuret test solutions and experiments with the estimation of protein content of milk, cheese and meat by means of the biuret method are reported. The pure protein and the casein content of skimmed milk and the protein content of whole milk could be determined with biuret test solutions containing potassium hydroxide and a detergent. The use of the biuret method is advantageous in the case of cheese and meat, which are dissolved in potash lye or alkaline detergent solutions. Disturbances of the biuret method caused by lactose, fat or turbidity were eliminated after addition of hydrogen peroxide, by means of extraction or of additional measurements with a copper-free, zinc-containing biuret reagent. Deviations of the color intensity of biuret complexes were compensated by inclusion of standards in the measurement series.

Animals↗

Scarlet fever and types of erythrogenic toxins produced by the infecting streptococcal strains.

Group A streptococcal strains were isolated from the throats of 46 children suffering from scarlet fever. For detection of erythrogenic toxins (ETs), the culture supernatants were concentrated 100 times by ethanol precipitation and solubilisation in acetate buffer. ELISA was used to identify ETA and double immunodiffusion to identify ETB and ETC. The presence of the ETA gene was detected by a specific DNA probe. ETA (alone or in combination with ETB and/or ETC) was found in 51.9% of the strains, ETB (alone or in combination with ETA and/or ETC) in 76.9% and ETC (in combination with ETA and ETB) in 28.9%. Only 5.8% of strains did not produce any detectable ET. In SDS-PAGE, supernatants of ETB-producing strains showed a pronounced band in either the region of the proteinase zymogen or the active proteinase. There was no correlation between the type of erythrogenic toxin and the serological M or T type of the producing strain. The mitogenic potency of culture supernatants did not differ significantly irrespective of the toxin type(s) present. Culture supernatants of strains without a detectable amount of the known ETs were highly mitogenic, indicating the production of other streptococcal mitogens. A correlation with clinical symptoms was determined with regard to exanthema and fever. Strains producing two or three toxins caused a more intense exanthema. Patient temperature was higher (greater than or equal to 38 degrees C) when the infecting strain produced ETB. The toxin-producing patterns of the strains of this study were compared with those isolated during the last epidemic outbreak of scarlet fever in East Germany.

Bacterial Proteins↗

Phospholipids and a novel glycine-containing lipoamino acid in Cytophaga johnsonae Stanier strain C21.

Two-dimensional thin-layer chromatography revealed that Cytophaga johnsonae contains at least 10 kinds of lipid, 2 of which are phospholipids, namely, phosphatidylethanolamine and phosphatidylcholine. One of the remaining lipids is a novel lipid that contains an amino acid. The structure of this unusual lipid (lipoamino acid) was resolved by chemical and physicochemical methods. The fatty acyl moiety of this lipid was diverse. The structure of the major molecular species of the lipid was determined as iso-3-hydroxy heptadecanoic acid, amide linked to glycine and esterified to isopentadecanoic acid. This type of glycine-containing lipid is a novel biological material which we have called cytolipin, basing this nomenclature on the genus of the bacterium. This is the first report of the lipid composition of C. johnsonae.

Amino Acids↗

[Several methods for determining total titers of free alpha-amino acids in body fluids].

Comparisons were made among different variants of ninhydrin reaction to determine overall titres of free alpha amino acids in body fluids. Included were para-benzoquinone, 2,4,6-trinitrobenzene sulphonic acid, and 2,4-dinitro-1-fluorobenzene (DNFB). The best reproducibility of results was recorded from DNFB which can be used, as well, for analysis of milk or rumen juice.

Amino Acids↗