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Isolation and identification of Peptococcus saccharolyticus from human skin.

Peptococcus saccharolyticus was a numerically important organism on the forehead and the antecubital fossa of the arm of ca. 20% of the subjects studied. It was best detected by prolonged (4- to 7-day) anaerobic incubation on a suitably enriched medium but also appeared in smaller numbers in aerobic primary cultures after 4 to 7 days. Initial screening was based on growth patterns in shake cultures and on the relative amounts of growth on aerobic and anaerobic streak plates. The organism was nonhemolytic and usually catalase positive. It produced acid anaerobically from glucose, fructose, and glycerol, but not from maltose, and did not produce lactic acid from glucose.

Aerobiosis↗

Peptocoagulase: clotting factor produced by bovine strains of Peptococcus indolicus.

The production of a clotting factor (peptocoagulase) by bovine clinical isolates of Peptococcus indolicus and its nature were investigated. Extracellular peptocoagulase was demonstrated in culture filtrates of 93% and cell associated with washed cell suspensions of 100% of the 75 isolates tested. Both citrated and heparinized plasma were clotted. Crude peptocoagulase was nondialyzable, precipitated with (NH4)2SO4 at 40% saturation, somewhat resistant to heating at both neutral and acid pH, and chloroform insoluble. Culture filtrate did not contain proteolytic activity with albumin and casein, as substrates and no esterase activity was detected with tosylarginine and benzoylarginine methyl esters as substrates. The clotting reaction required peptocoagulase, prothrombin, and fibrinogen. The activation of prothrombin appeared to involve a stoichiometric reaction with peptocoagulase, possibly by formation of a stable complex.

Animals↗

Infection of the foot with Peptococcus magnus.

Peptococcus magnus was the predominant organism in severe infections of the feet in three diabetic patients. In one patient the organism was found also in blood culture, and in two it was repeatedly recovered from the feet, usually in pure culture.

Aged↗

Infection of total hip prostheses by Peptococcus magnus: an immunofluorescence and ELISA study of two cases.

In two cases of infected total hip replacements, Peptococcus magnus was isolated in pure culture from the implant when it was removed. Fluorescent antibody and ELISA studies have shown that both patients developed an antibody response to this anaerobic coccus soon after the replacement operation. These results suggest that the organism is a true infective agent, which was probably responsible for the failure of the arthroplasty operation.

Aged↗

Structure of Peptococcus aerogenes ferredoxin. Refinement at 2 A resolution.

The model for ferredoxin from Peptococcus aerogenes, derived from a 2.8-A resolution map, has been refined with a 2-A resolution data set. The conventional index, R, decreased from 0.449 for the initial model to 0.188 for the unconstrained one and 0.206 for the constrained one. The standard deviations of the iron and sulfur atoms are 0.04 to 0.05 A and for the oxygen, nitrogen, and carbon atoms they range from 0.14 to 0.26 A. One hundred forty-six water oxygen atoms were included in the solvent part of the model and were checked by a highly selective criterion, suggesting that most of them represented water molecules.

Ferredoxins↗

Bacteremia caused by Peptococcus prevotii in an immunocompromised host.

A case of bacteremia caused by Peptococcus prevotii in an immunocompromised patient is described. A specific antibiotic therapy was successful. Details of the isolation procedures, biochemical pattern and Minimal Inhibitory Concentrations (MICs) related to the pathogen strain are reported.

Aged↗

Susceptibility to erythromycin of anaerobes of the genera Bacteroides, Fusobacterium, Sphaerophorus, Veillonella, Clostridium, Corynebacterium, Peptococcus, Peptostreptococcus.

The minimal inhibitory concentrations (MIC) of erythromycin were determined by broth dilution tests for 313 anaerobic strains, most of which were clinical isolates. All the gram-positive anaerobes tested (84 Peptococcaceae, including 21 Peptostreptococcus anaerobius and 15 Peptococcus variabilis; 65 Corynebacterium acnes and 29 Clostridium strains, including 13 C. perfringens) were sensitive (MIC values 0.012 through 3.12 microgram erythromycin/ml); so were 111 cultures of gram-negative anaerobes (52 Bacteroides fragilis, 12 B. thetaiotaomicron, 7 B. vulgatus, 13 B. oralis, 4 B. melaninogenicus, 10 Sphaerophorus necrophorus, 2 Veillonella sp., 11 members of other species). Erythromycin at concentrations of 6.25 through 200.0 microgram/ml was active against 24 strains (1 B. fragilis, 4 Fusobacterium fusiforme, 9 Sph. freundi, 10 Sph. varius). The present results are compared to the limited number of reports existing with regard to the susceptibility of anaerobes to erythromycin.

Bacteroides↗

Studies on the mechanism of formyltetrahydrofolate synthetase. The Peptococcus aerogenes enzyme.

Two conflicting mechanisms have been proposed for formyltetrahydrofolate synthetase (EC 6.3.4.3). Detailed studies with a clostridial enzyme support a sequential mechanism, while a stepwise mechanism with formation of a dissociable intermediate has been proposed for the Peptococcus aerogenes synthetase. However, the data supporting the P. aerogenes mechanism were obtained using synthetase of questionable purity and the results supporting the mechanism could be attributed to contaminating activities. Consequently, uncertainty still exists with regard to the enzyme mechanism. To resolve this uncertainty, the P. aerogenes formyltetrahydrofolate synthetase has been purified to homogeneity and used in experiments to reinvestigate the reaction mechanism. The results of P1:ATP, ADP:ATP, and formate:10-formyltetrahydrofolate exchange experiments as well as a steady state kinetic analysis revealed no difference in the mechanisms of the P. aerogenes or clostridial synthetases. The results are inconsistent with a stepwise mechanism involving a dissociable intermediate and consistent only with a sequential mechanism.

Clostridium↗

Assignment of the cysteinyl 13C nuclear magnetic resonances and comparison of other aliphatic amino acid resonances of Clostridium acidi-urici, Clostridium pasteurianum, and Peptococcus aerogenes ferredoxins.

13C NMR spectra of Clostridium acidi-urici, Clostridium pasteurianum, and Peptococcus aerogenes ferredoxins show that some 13C resonances of the aliphatic amino acid residues are shifted significantly from their corresponding resonance positions in the spectra of model polypeptides or apoferredoxin. Thirteen 13C resonances are shifted into the 80- to 120-ppm (from CS2) region, and have been assigned to the cysteinyl alpha and beta carbon atoms. The remaining shifted resonances in the 120- to 190-ppm region are tentatively assigned to amino acid residues that may be close to [4Fe-4S] clusters of the oxidized and reduced ferredoxins. The similarity in the shift pattern of the corresponding 13C resonances of the cysteinyl alpha and beta carbon atoms in the three ferredoxins studied suggests that the three-dimensional amino acid environments of the corresponding [4Fe-4S] clusters in each protein are similar.

Amino Acids↗

NH---S hydrogen bonds in Peptococcus aerogenes ferredoxin, Clostridium pasteurianum rubredoxin, and Chromatium high potential iron protein.

Results from refinement of the crystal structures of P. aerogenes ferredoxin and C. pasteurianum rubredoxin determined by x-ray diffraction show that there are 15-18 NH---S bonds in the former and six in the latter with lengths in the range 3.1-3.9 A. Earlier tritium exchange experiments are consistent with the presence of these hydrogen bonds in the ferredoxin structure and show that more peptide hydrogen atoms are available for exchange in apoferredoxin than in intact ferredoxin. Four types of NH---S bonds are observed and two of these are geometrically similar to the two types of 3(10) NH---O bonds. The existence of more NH---S bonds in ferredoxin than in high potential iron protein suggests why the -2 form of the Fe4S4 cluster is preferred in ferredoxin over the -1 form found in high potential iron protein. From comparison of Cys-X-Y-Cys sequences in rubredoxin, ferredoxin, and high potential iron protein we suggest that two Cys-X-Y-Cys-Z sequences, where Z may have conformation angles similar to glycine, are required to make a one-iron cluster, no more than one Cys-X-Y-Cys-Z-Gly sequence is required to form a Fe2S2 ferredoxin, and a Cys-X-Y-Cys-Gly sequence where Y has a conformation such that the cysteines bond to different iron atoms is necessary to form the tetrameric cluster.

Binding Sites↗