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Biomedical subjects

W C Schmidt

Publications and source records attributed to W C Schmidt.

33 records · Page 2Linked to original sources

Purification and characterization of a Streptomyces albus endo-N-acetylmuramidase lytic for group A and other beta haemolytic streptococci.

The purification and characterization of the streptolytic exo-enzyme from the Maxted-McCarty strain of Streptomyces albus is described. This enzyme was shown to be an endo-N-acetylmuramidase with a molecular weight of 10 to 12,000 and optimal activity at pH 8 and 45 degrees C. The enzyme is lytic for streptococci of various groups, Micrococcus lysodeikticus, Staphylococcus aureus, as well as Escherichia coli. It closely resembles the F1 endo-N-acetylmuramidase described by Ghuysen et al. (1966) except for small differences in the products of lysis of streptococcal cell walls and the resistance of Escherichia coli to lysis by the F1 enzyme. Lysates of group A and A variant streptococcal cell walls prepared with purified Streptomyces albus muramidase contained serologically active M protein and C carbohydrate-peptidoglycan complexes. The chemical and immunological characteristics of these enzymmatic products of streptococcal cell walls are reported and their utility as immunologic reagents is described.

Bacterial Proteins↗

Bacteriophage typing of Proteus mirabilis, Proteus vulgaris, and Proteus morganii.

A bacteriphage typing scheme for differentiating Proteus isolated from clinical specimens was developed. Twenty-one distinct patterns of lysis were seen when 15 bacteriophages isolated on 8 Proteus mirabilis, 1 P. vulgaris, and 1 P. morganii were used to type 162 of 189 (85.7%) P. mirabilis and P. vulgaris isolates. Seven phages isolated on 3 P. morganii were used to type 13 of 19 (68.4%) P. morganii isolates. Overall, 84.1% of the 208 isolates were lysed by at least 1 phage at routine test dilution (RTD) or 1,000 x RTD. Fifty isolates, retyped several weeks after the initial testing, showed no changes in lytic patterns. The phages retained their titers after storage at 4 C for several months. A computer analysis of the data showed that there was no relationship between the source of the isolate and bacteriophage type. This bacteriophage typing system may provide epidemiological information on strains involved in human infections.

Bacteriological Techniques↗

Inhibition of macrophage migration by nucleotide-containing streptococcal preparations.

Certain extracts of streptococcal cell walls are known to inhibit macrophage migration in vitro. In this study, we attempted to identify the streptococcal components responsible for this phenomenon. Trypsinized cell walls and cytoplasm from groups A and B streptococci were extracted with hot formamide followed by acetone precipitation. Subsequent gel filtration in aqueous solutions yielded a fraction devoid of C-carbohydrate and containing mostly oligonucleotides, apparently derived from streptococcal cytoplasm. This fraction significantly inhibited the migration of peritoneal exudate cells from rats sensitized to groups A and B streptococci. It was noteworthy that no inhibition of migration was observed with cells from nonsensitized animals or control rats injected with BCG or complete Freund adjuvant. Similarly, no inhibition was obtained with formamide extracts of calf thymus RNA. Although the inhibition does not show specificity for streptococcal groups, it seems to have immunological specificity since prior sensitization with streptococci is required for migration inhibition.

Animals↗