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Biomedical subjects

E D Gray

Publications and source records attributed to E D Gray.

At least 19 recordsLinked to original sources

Group A streptococcal pyrogenic exotoxin (scarlet fever toxin) type A and blastogen A are the same protein.

Group A streptococcal pyrogenic exotoxins A, B, and C (also known as scarlet fever toxins and erythrogenic toxins) were evaluated for relatedness to another streptococcus-derived lymphocyte mitogen, blastogen A. Streptococcal pyrogenic exotoxin A and blastogen A were immunologically cross-reactive and shared the same molecular weight, N-terminal amino acid sequence, and capacity to stimulate rabbit splenocyte proliferation nonspecifically.

Bacterial Proteins

Distribution of cells bearing "rheumatic" antigens in peripheral blood of patients with rheumatic fever/rheumatic heart disease.

Cell surfaces of some peripheral blood cells from individuals with a history of rheumatic fever/rheumatic heart disease (RHD) have been demonstrated by the use of monoclonal antibodies to be antigenically distinct from the majority of the population. Our study examines the distribution of cells bearing these "rheumatic" antigens in 23 subjects with rheumatic fever/RHD of Maori, Polynesian and Caucasian ancestry and 182 members of their families (rheumatic fever/RHD families) as well as in 46 members of families in which no member had been demonstrated to have had rheumatic fever/RHD (control families). Mononuclear cells from the blood of all cooperating family members were prepared and non-T cells isolated by sheep red blood cell rosette depletion. The binding of monoclonal antibodies 83S19.23 and D8103 to non-T cells was measured using an immunoperoxidase technique. Subjects with rheumatic fever/RHD had a significantly higher proportion of cells binding the antibodies than the unaffected members of all families. Unaffected members of rheumatic fever/RHD families had significantly higher levels of such rheumatic cells than control families. An increase in the proportion of rheumatic cells with age was noted in unaffected members of rheumatic fever/RHD families but not in rheumatic fever/RHD subjects of control families. A level of 13% 83S19.23 positive non-T cells optimally discriminated between rheumatic and nonrheumatic individuals. The relative risk for rheumatic fever/RHD with 13% or greater positive cells was 9.48. The negative predictive value of having less than 13% positive cells was 98.3%. In the population studied, 83S19.23 seems especially capable of identifying those with low risk for rheumatic fever/RHD.

Aging

Cytokines and immunoglobulin in rheumatic heart disease: production by blood and tonsillar mononuclear cells.

Rheumatic fever and rheumatic heart disease are considered to result from abnormal immune responses after Group A streptococcal pharyngitis. Production of interleukin 1 (IL-1), tumor necrosis factor-alpha (TNF), interleukin 2 (IL-2) and immunoglobulin (Ig) by blood and tonsillar mononuclear cells from rheumatic or healthy children was measured after stimulation in vitro by pokeweed mitogen (PWM) or the streptococcal extracellular product, blastogen A (BLA). Tonsillar cells from patients with rheumatic heart disease produced significantly less IL-1, TNF, IL-2, and Ig than control tonsillar cells. In contrast, blood mononuclear cell cultures from rheumatic children produced more TNF and IL-2 than controls. Our findings suggest that abnormal regulation of cytokine and Ig production may contribute to the pathogenesis of acute rheumatic fever and rheumatic heart disease.

Cells, Cultured

Cell surface markers and cellular immune response associated with rheumatic heart disease: complex segregation analysis.

A series of functional and cell surface markers associated with a significantly increased risk of rheumatic heart disease were analyzed for the contribution of genetic factors in their presence. Peripheral blood lymphocytes from nine large kindreds from the New Zealand Maori, Polynesian, and Caucasian populations were isolated, purified, and evaluated with lymphocyte surface markers (monoclonals 83S.19.23 and D8103), as well as studied for blastogenic response to a purified group A streptococcal extracellular product, blastogen A. Segregation analysis of blastogenic response and percent of cells positive for these cell surface markers was consistent with genetic control by single major genes; however, the contribution by polygenes varied by marker, indicating heterogeneity of genetic control of identification of cell surface glycoproteins and blastogenic response to streptococcal products.

Antibodies, Monoclonal

Multiple forms of rat kidney L-arginine:glycine amidinotransferase.

The relative amount of L-arginine:glycine amidinotransferase (transamidinase) protein in kidneys from rats fed a complete purified diet with and without the addition of creatine and/or glycine was determined by a monoclonal antibody-immunosorbent inhibition assay. Kidneys from the creatine-fed rats had 10% of the transamidinase activities and 78% of the monoclonal antibody immunoreactive transamidinase protein as kidneys from the control rats. An excellent correlation between transamidinase activities and protein was reported previously when the amounts of enzyme protein were determined by immunotitration with polyclonal antibodies. One possible explanation for the contrasting results was that multiple forms of transamidinase are present in rat kidneys. If so, the monoclonal antibody may have recognized forms of the enzyme that were not decreased in amounts commensurate with the decrease in enzyme activities as a result of creatine feeding. Evidence is presented in this report that multiple forms of transamidinase are present in rat kidneys. The distribution of the isoelectric points of the individual forms of transamidinase in kidneys of the control rats appeared to be dissimilar from that in the creatine-fed rats. Therefore, an alteration in the distribution of the individual forms of the enzyme may be a factor in the alteration of transamidinase activities in creatine-fed rats.

Amidinotransferases

Augmentation of cytotoxic activity by mitogens in rheumatic heart disease.

Natural killer cell activity and alterations in cytotoxicity after culture with streptococcal blastogen A and phytohemagglutinin (PHA) were examined in patients with inactive rheumatic heart disease (RHD) and control patients. Natural cytotoxic activity of mononuclear cells (MNC) did not differ between RHD and control patients with either peripheral blood or tonsils. In cultured blood MNC the level of cytotoxic activity stimulated by blastogen A was significantly greater in patients with RHD at all effector:target cell ratios. These differences in cytotoxic activity were not observed with cultured tonsillar MNC. In similar experiments with a different group of patients, culture with PHA or blastogen A both produced a significantly greater increase in cytotoxic activity in blood MNC from patients with RHD. The increase was significantly lower with PHA than with blastogen A. The ability of mitogens to differentially augment cytotoxic activity in cells from the blood of patients with RHD implies that a population of cells exists in these patients that could be activated during acute rheumatic fever to play a role in pathogenesis.

Adolescent

Compartmentalization of cells bearing "rheumatic" cell surface antigens in peripheral blood and tonsils in rheumatic heart disease.

Monoclonal antibodies that recognize "rheumatic" antigens of peripheral blood non-T cells were used to study the compartmentalization of such cells in peripheral blood and tonsils of individuals with rheumatic heart disease (RHD) and suitable control subjects. The peripheral blood of most (71%) of the 42 individuals with RHD contained cells reacting with monoclonal antibody 83S19.23 or 256S.10, whereas these cells were present in only 17% of the 41 control subjects (P less than .02). However, none of 21 individuals with RHD had such cells in their tonsils, although they were present in the tonsils of 50% of the 40 control subjects (P less than .03). These results may reflect a failure in RHD or organ-specific homing of cells with the epitopes recognized by the antibodies. The presence of these cells in tonsils may be important in the immune response to streptococcal pharyngeal infection, and their absence in RHD may be involved in the unusual immune responses characteristic of this disease.

Adolescent

Antibody response to bacteriophage hyaluronidase in acute glomerulonephritis after group A streptococcal infection.

In a test of the hypothesis that lysogeny of group A streptococci by a temperate bacteriophage might confer nephritogenicity, 283 sera from 69 patients were examined for IgG and IgM antibodies to M 49 streptococcal bacteriophage hyaluronidase. The IgG and IgM response to bacteriophage hyaluronidase was greatest in M 49 streptococci-infected individuals with nephritis, but M 49 streptococci-infected subjects without nephritis also had a greater immune response than did subjects infected with serotypes other than M 49. Although antibody to bacterial hyaluronidase was detected in all Streptococcus-infected groups, antibody to M 49 streptococcal bacteriophage hyaluronidase usually was found in only M 49 streptococci-infected patients. Although the greatest IgG and IgM antibody response to bacteriophage hyaluronidase can be demonstrated in individuals with glomerulonephritis, the antibody response does not indicate a direct relation of lysogeny and nephritis because subjects with and without nephritis after M 49 streptococcal infection all had a significant rise in antibody titer.

Antibodies, Bacterial

Lymphocyte subpopulations in rheumatic heart disease.

Monoclonal antibodies and indirect immunofluorescence techniques were used to compare the distribution of lymphocyte subpopulations of tonsil and peripheral blood from patients with rheumatic heart disease and age and socioeconomically matched patients undergoing tonsillectomy for chronic recurrent tonsillitis, but who had no evidence of rheumatic fever or rheumatic heart disease. The proportions of B cells (BA-1+), total T cells (Lyt-3), inducer/helper T cells (T4+) and cytotoxic/suppressor T cells (T8) were determined. No significant differences were apparent between rheumatic heart disease and control groups in resting cells from tonsils or blood. Cells undergoing proliferation in response to streptococcal blastogen A were identified by similar techniques. These tonsillar preparations from patients with rheumatic heart disease generated a smaller proportion of T8+ cultured cells and a greater T4/T8 ratio of cultured cells in response to group A streptococcal blastogen A than did nonrheumatic subjects.

Adenoids

Interference with granulocyte function by Staphylococcus epidermidis slime.

The interaction of Staphylococcus epidermidis slime with human neutrophils (PMN) was examined by using isolated slime and allowing bacteria to elaborate slime and other extracellular products in situ. S. epidermidis slime was found to contain a chemoattractant. Incubation of PMN with 50 micrograms or more of slime per ml inhibited subsequent chemotaxis of the PMN to n-formyl-methionyl-leucyl-phenylalanine by 27% and to zymosan-activated serum by 44 to 67% with increasing slime concentrations. S. epidermidis slime stimulated little degranulation of untreated PMN. After pretreatment of PMN with 5 micrograms of cytochalasin b per ml, slime predominantly induced release of specific granule contents (33.8% lactoferrin release by 250 micrograms of slime per ml versus 10% myeloperoxidase release by 250 micrograms of slime per ml). By a surface phagocytosis assay, PMN uptake of radiolabeled S. epidermidis which were incubated for 18 h on a plastic surface for slime expression was less than that for S. epidermidis adhered to the plastic for 2 h or grown in unsupplemented nutrient broth. These results suggest that S. epidermidis slime interaction with PMN may be potentially detrimental to host defense and may contribute to the ability of this organism to persist on surfaces of foreign bodies in the vascular or central nervous system.

Chemotaxis, Leukocyte

Enzyme-linked immunosorbent assay for identification and measurement of antibodies to group A streptococcal bacteriophage.

A sensitive enzyme immunoassay (ELISA) was developed to identify and measure antibodies to group A streptococcal bacteriophage hyaluronidase. With a purified preparation of bacteriophage hyaluronidase as the solid-phase antigen, the ELISA was shown to be as specific as and more sensitive than the standard bacteriophage neutralization test for measurement of antibody to bacteriophage. In rabbits immunized with bacteriophage, the ELISA detected antibody earlier than the neutralization assay (7 vs. 11 days) and was able to distinguish IgG and IgM class antibodies. A strong correlation was demonstrated between antibody titers measured by ELISA and bacteriophage neutralization (r = 0.88; P less than 0.001). Preliminary data using the ELISA, modified to measure human antibody to bacteriophage hyaluronidase, indicated that an antibody response of both IgG and IgM classes occurred in humans after group A streptococcal infection. This ELISA provided a sensitive method for detection and measurement of antibody to a specific bacteriophage antigen, which will be useful in the investigation of the role of bacteriophage in the pathogenesis of group A streptococcal infections.

Animals

Effect of extracellular slime substance from Staphylococcus epidermidis on the human cellular immune response.

Staphylococcus epidermidis infection of plastic catheters is often associated with heavy deposits of slime. To test whether this slime affects the human cellular immune response, its effect on the lympho-proliferative response of mononuclear cells to polyclonal stimulators was measured. Slime drastically reduces this response. Its inhibitory action was not immediate but took place over a few days and resulted in destruction of affected cells. The effect is dose related. This inhibition of cellular response may contribute to S epidermidis infection of implanted prostheses.

Adhesiveness

Investigation on extracellular slime substance produced by Staphylococcus epidermidis.

The extracellular slime substance produced by Staphylococcus epidermidis was investigated. Slime production was assessed by bacterial agglutination in the presence of concanavalin A (Con A) or poly-L-lysine and by bacterial adherence to polyethylene. Media for slime production was optimized using these criteria. A phenol-saline extract of crude slime was separated into four fractions on a DEAE-sepharose column. Total protein and sugar content and the monosaccharide constituents were determined. Crude slime and the phenol-saline extract showed a strong precipitation reaction with Con A and poly-L-lysine (double diffusion). Fractions I and II containing mannose as the most abundant sugar reacted with Con A and two other mannose-specific lectins (Lens culinaris, Pisum sativum). This reaction could be inhibited by mannose. Fractions III and IV were precipitated by poly-L-lysine, probably due to a reaction with glucuronic acid which was only present in these fractions. Precoating of polyethylene with crude slime, phenol-saline extract and fractions III and IV resulted in a marked inhibition of attachment of staphylococcal cells. Production of the extracellular slime substance was completely inhibited by subinhibitory concentrations of the glycosylation inhibitor tunicamycin, whereas penicillin had no influence. Extracellular slime substance produced by S. epidermidis seems to be a complex of glycoconjugate character and plays an important role in the attachment to synthetic polymers. The production of slime by staphylococci can be easily determined using mannose specific lectins and poly-L-lysine.

Adhesiveness

Isolation and characterization of cell-associated nucleases related to streptococcal extracellular deoxyribonuclease D.

A group of at least four distinct nucleases designated DcI through DcIV were isolated from cellular extracts of group A streptococcal strain S43 and shown to be antigenically similar to streptococcal extracellular deoxyribonuclease (DNase) D. These cellular endonucleases degraded single- and double-stranded deoxyribonucleic acid (DNA) as well as ribonucleic acid (RNA) to acid-soluble oligonucleotides. The products of digestion of DNA bore 5'-terminal phosphates, and in partial digests pdX-pdG linkages were most susceptible and pdA-pdX linkages were most resistant to nuclease action. The enzymes had pH optima of 8.0 to 8.5, were inhibited by NaCl, were unaffected by sulfhydryl modifying reagents, and absolutely required a divalent cation. Nucleases DcIII and DcIV were apparently hydrophobic in nature since they required the presence of detergents for migration on nondenaturing polyacrylamide gels. All four nucleases were electrophoretically distinct on such gels, from each other, and from DNase D. Molecular weights of DcI and DcII were similar to that of DNase D, suggesting that the mobility differences of these enzymes at least are reflections of differing net charges. It is suggested that the cellular nucleases represent a group of processing intermediates in the maturation and excretion of DNase D.

Deoxyribonucleases

Purification and properties of an extracellular blastogen produced by group A streptococci.

An extracellular product of group A streptococci which induces lymphocyte blastogenesis has been purified to homogeneity by DEAE-cellulose and CM-cellulose chromatography. The protein, termed streptococcal blastogen A, has a mol wt of approximately or equal to 17,500 and is inactivated by protease treatment and by heating at 100 degrees C. The purified blastogen gave rise to multiple protein bands on nondenaturing polyacrylamide gel electrophoresis, only two of which possessed blastogenic activity. Treatment of the protein with dithiothreitol before electrophoresis resulted in the apparent conversion of the multiple forms to a single active species. Blastogen A differs in electrophoretic mobility from the streptococcal pyrogenic exotoxins and its lymphocyte stimulating activity is not inhibited by rabbit antisera to the exotoxins. An enzyme immunoassay has been developed to measure human antibodies against blastogen A. A selection of sera with varying levels of anti-DNase B contained antiblastogen A-IgG.

Antibodies, Bacterial

Immunological properties of hyaluronidases associated with temperate bacteriophages of group A streptococci.

The antigenic relationships of hyaluronidases, bound and free, associated with temperate bacteriophages of group A streptococci were examined with antibody against purified whole phage and with antibody against phage-bound enzyme released by urea and purified to homogeneity. Studies performed by double diffusion in agar (ouchterlony) with antibody against the homologous purified enzyme from a temperate phage of a type 49 streptococcus indicated that the bound and free enzyme gave a single line of identity and that the free hyaluronidase activities in induced lysates of four strains of M type 49 streptococci were immunologically indistinguishable but different from the enzyme in induced lysates of a heterologous type. The four M type 49 strains were from widely different geographical or temporal sources and of different phage subtypes as determined by lyxic patterns. These findings were confirmed in studies that employed a functional assay of enzyme neutralization. An immunoglobulin preparation of antiserum against the purified enzyme as well as one against homologous purified whole phage neutralized the hyaluronidase activity produced by induction of the M type 49 strains and present either phage-bound or soluble in phage-free lysates. These immunoglobulin preparations had little effect on the hyaluronidase activities present in phage-lysates of other M types of group A streptococci. Inhibition of propagation of temperate phages by antibody against the purified phage hyaluronidase paralleled the neutralization of phage-associated enzyme activity by this antibody, indicating that antibody to the purified enzyme can inhibit phage infection. Antibody preparations against the purified phage-bound enzyme or against purified whole phage did not neutralize the extracellular hyaluronidase in the supernate of an uninduced culture of M type 4 streptococci. A human serum strongly inhibitory for the extracellular enzyme of this strain or on the purified phage enzyme from an M type 49 strain. The results support the view that the hyaluronidases associated with the temperate bacteriophages from various M types of group A streptococci do not share common antigenic determinants but that an immunological specificity exists that parallels the serologic specificity of the M protein of the host strains.

Antibody Specificity

Bactericidal effect of oleic acid on group A streptococci: mechanism of action.

In contrast to Staphylococcus aureus and coagulase-negative staphylococci, group A streptococci are infrequently present on normal human skin, except in certain populations with endemic impetigo. This has been attributed to differences in susceptibility to the bactericidal effect of skin surface lipids, particularly unsaturated fatty acids. When an M type 6 strain group A streptococcus was exposed to 500 mug of oleic acid per ml, viable counts decreased by 4 logs in 5 min. The rank order of killing was 35 > 20 > 4 degrees C. Oleic acid did not kill a strain of S. aureus, a strain of coagulase-negative staphylococcus, or a strain of Escherichia coli, but bound rapidly to these bacteria as well as to the group A streptococcus. The loss of [(3)H]uridine from labeled oleic acid-treated group A streptococcal cells was greater than 100 times that of controls. There was no loss of [(3)H]-thymidine from group A streptococci or of [(3)H]uridine or [(3)H]thymidine from identically exposed coagulase-negative staphylococci. When [(3)H]uridine was added to group A streptococci during mid-log-phase growth, cessation of uptake occurred within 5 min of addition of 50 mug of oleic acid per ml. Electron microscopic changes seen within 5 min included condensation of the nucleoid and distortion of the streptococcal surface by numerous clumps and blebs. Coagulase-negative staphylococci, S. aureus, and E. coli similarly exposed showed no comparable electron microscopic changes. We propose that oleic acid kills group A streptococci by altering the integrity of the cell membrane with resulting loss of ribonucleic acid but not deoxyribonucleic acid.

Escherichia coli