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L Wannamaker

Publications and source records attributed to L Wannamaker.

5 recordsLinked to original sources

Potentiation of opsonization and phagocytosis of Streptococcus pyogenes following growth in the presence of clindamycin.

Streptococcus pyogenes, bearing M-protein on its surface, resists opsonization by normal human serum and subsequent phagocytosis by human polymorphonuclear leukocytes. Previous studies have shown that M-protein positive organisms are poorly opsonized by the alternate pathway of complement. In an attempt to define further the role of the surface components of S. pyogenes in this process, we examined the ability of clindamycin, an antibiotic that inhibits protein biosynthesis, to alter bacterial opsonization. An M-protein positive strain of S. pyogenes was grown in varying concentrations of clindamycin at levels lower than those which inhibited growth, i.e., at levels less than the minimal inhibitory concentration. These bacteria were incubated with purified human polymorphonuclear leukocytes and peripheral blood monocytes. Significant enhancement of bacterial opsonization, phagocytosis, and killing resulted. Measurement of complement consumption and binding of the third component of complement (C3) onto the bacterial surface demonstrated that organisms grown in the presence of clindamycin activated complement more readily and fixed more C3 on their surface. Electron microscopy revealed the probable basis for these findings. Streptococci exposed to clindamycin during growth were largely denuded of surface "fuzz," the hairlike structures bearing M-protein. We conclude that the incorporation of clindamycin at concentrations that fail to inhibit growth of S. pyogenes nevertheless causes significant changes in the capacity of these bacteria to resist opsonization by serum complement. These findings support the hypothesis that M-protein inhibits bacterial opsonization by interfering with effective complement activation on the bacterial surface.

Antigens, Bacterial↗

Heterogeneity of group A type-specific antibodies.

Extracting type 6 group A streptococcai with dilute nitrous acid releases an antigen that exhibits type-specific precipitating properties with anti-M6 serum but fails to neutralize the type-specific bactericidal reaction or to absorb the bactericidal antibody from anti-M6 serum. These studies suggest that the precipitating and antiphagocytic properties of the M protein are attributable to different antigenic determinants. The antigenic determinant responsible for bactericidal antibody is more sensitive to the deleterious effect of nitrous acid than is the moiety responsible for the precipitin reaction. Use of the indirect fluorescent technique with anti-M sera absorbed with lyophilized nitrous acid extracts permits the possible differentiation of the two M-protein determinants in situ on the surface of streptococcal cells.

Antibodies, Bacterial↗

Genetic variation in the M antigen of group A streptococci: reassortment of type-specific markers and possible antigenic drift.

The phylogenetic relationships of 73 strains of group A Streptococcus isolated over a six-year period from a population with a high prevalence of streptococcal infections were analyzed with use of four serotype-specific markers: the serum opacity factor (OF), the T antigen, the determinant of the M antigen that precipitates with antibody, and the M antiphagocytic determinant. OF inhibition tests divided the strains into five subtypes: a, b, c, d, and e. Strains within subtypes a, b, and c shared a previously unidentified M precipitin. The identification of this new common M precipitin was based on absorption studies, double agar immunodiffusion, and immunoelectrophoresis analysis. Antisera directed against representative strains from subtypes a, b, and c contained cross-reactive bactericidal antibody, and absorption studies indicated that determinants of the M precipitins were identical, whereas determinants of resistance to phagocytosis were closely related but not identical. The association of a common M precipitin with three different OF antigens, two different T antigens, and three different, yet similar, antiphagocytic determinants is discussed in light of the possibility that the genes that code for these antigens have reassorted or recombined. Moreover, the possibility that differences in the antiphagocytic determinants of these strains have resulted from antigenic drift in a common gene is considered.

Absorption↗

Genetic instability of M protein and serum opacity factor of group A streptocci: evidence suggesting extrachromosomal control.

The M antigen, a primary determinant of virulence in group A streptococci that is expressed biologically as resistance to phagocytosis, is known to undergo a variety of phenotypic changes both in vivo and in vitro. These changes are nonrandom and can occur at a high frequency. Using the previously described relationship between the serum opacity reaction (associated with certain strains) and the presence of the M antigen, the phenotypic instability of the M antigen was analyzed. The results support the conclusion that M protein synthesis and the serum opacity reaction are directly or indirectly controlled by the same gene or by genes which are linked and can segregate as a unit. Moreover, growth conditions and the curing agents rifampin and ethidium bromide had a discernible influence on the segregation of clones unable to exhibit serum opacity factor and to resist phagocytosis by human leukocytes. Serial transfer of stationary-phase cultures of four strains of group A streptococci significantly increased the number of colonies negative for the serum opacity reaction and the M antigen. For two of four strains both ethidium bromide and rifampin also increased the segregation of colonies with this phenotype. In light of these experiments and the necessary controls, the possible influence of plasmids or bacteriophage in regulating M protein synthesis is discussed.

Antigens, Bacterial↗