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A Sher

Publications and source records attributed to A Sher.

At least 253 records · Page 14Linked to original sources

gp72, the 72 kilodalton glycoprotein, is the membrane acceptor site for C3 on Trypanosoma cruzi epimastigotes.

We examined the interaction of complement component C3 with surface molecules on Trypanosoma cruzi. Five- to six-fold more C3 was bound to epimastigotes (Epi) than to metacyclic trypomastigotes (CMT) of strain M88. Epi and CMT were surface iodinated, then incubated in C8-deficient serum, and detergent lysates were applied to anti-C3 antibody that had been coupled to Sepharose. We found that 9.20-10.24% of applied 125I-Epi protein bound to anti-C3-sepharose, compared to 2.64% binding of 125I-CMT protein. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed that C3 was attached to 125I-Epi protein by a covalent bond. Samples eluted from anti-C3-sepharose with hydroxylamine revealed a single, major, 72 kD band, suggesting that C3b attaches almost exclusively to the 72 kD glycoprotein of Epi by a hydroxylamine-susceptible ester bond. An antiserum was prepared from lysates of serum-treated Epi that had been affinity-purified on anti-C3-sepharose. This antiserum immunoprecipitated a single 72 kD component (gp72) from surface-iodinated Epi, and specifically recognized only gp72 from Epi in immunoblots. In contrast to the results with Epi, gp72 on CMT was not found to be an efficient acceptor molecule for C3 deposition. The results are the first to evaluate the acceptor site for C3 deposition on a parasite, and they show that gp72 on Epi, but not gp72 on CMT, serves as the preferential acceptor for C3 during antibody-independent alternative complement pathway activation.

Adult↗

The respiratory burst is not required for killing of intracellular and extracellular parasites by a lymphokine-activated macrophage cell line.

The macrophage cell line, IC-21, was found to be incapable of producing the oxygen products associated with the respiratory burst. However, IC-21 cells were activated by lymphokine (LK) to kill intracellular (Leishmania donovani amastigotes) and extracellular (Schistosoma mansoni larvae) parasites, as well as tumor cells. In each case, the cytotoxicity exhibited by activated IC-21 cells and activated peritoneal macrophages was indistinguishable. However, nonactivated IC-21 cells were unable to kill L. donovani log-growth phase promastigotes, while nonactivated peritoneal macrophages destroyed greater than 90% of the initial infection. These results indicate that amastigotes and schistosome larvae are susceptible to killing by nonoxidative cytotoxic mechanism induced by lymphokine activation but, on the other hand, support the concept that the killing of log-growth phase promastigotes by nonactivated cells is dependent upon the respiratory burst. We propose that the IC-21 cell line may be a useful model for studying nonoxidative killing functions of activated macrophages.

Animals↗

Expression in Escherichia coli of two Schistosoma mansoni genes that encode major antigens recognized by immune mice.

Two clones which contain genes encoding Schistosoma mansoni proteins recognized by immune mouse sera were chosen from cDNA lambda gt11 expression vector library by preselecting clones from the library with rabbit antisera against adult worm phosphate-buffered saline (PBS)-soluble antigens. One clone, MAC 182, codes for part of a Mr 70 000 protein; the other clone, MAC 184, codes for a Mr 27 000 protein. The insert sizes of MAC 182 and MAC 184 are 400 bp and 800 bp, respectively. Both clones express S. mansoni beta-galactosidase fusion proteins as products of the construct. Antibodies from either chronically infected mice or mice vaccinated with irradiated cercariae recognize the MAC 182 fusion protein (MAC 182fp) but not the MAC 184 fusion protein (MAC 184fp). Rabbit antibodies prepared against MAC 182fp immunoprecipitate a Mr 70 000 in vitro translation product from adult mRNA and react in Western blot with a corresponding Mr 70 000 protein present in eggs, cercariae and adult worms but absent in schistosomula. Although the MAC 184fp is not recognized directly by chronic infection or vaccinated mouse antibodies, antisera prepared against the purified fusion protein immunoprecipitate a Mr 27 000 in vitro translation product which also reacts with mouse chronic infection sera. The same Mr 27 000 protein appears to be present in eggs, cercariae, schistosomula and adults as determined by Western blots with rabbit antisera against the MAC 184fp. These results suggest that the S. mansoni polypeptide encoded by the MAC 184 gene, when expressed within a fusion protein, fails to present epitopes normally recognized during natural infection. We propose that these epitopes are conformationally determined and are destroyed when the MAC 184 protein is expressed within beta-galactosidase. This abrogation of conformational epitopes may explain the failure of antibodies from chronically infected or vaccinated mice and rabbits to effectively recognize gene products of certain lambda gt11-fusion protein clones.

Animals↗

Immunopathology of Schistosoma japonicum and S. mansoni infection in B cell depleted mice.

To investigate the role of antibody in the pathogenesis of hepatic granulomas around schistosome eggs, mice were depleted of B cells by treatment from birth with anti-IgM serum and were subsequently infected with Schistosoma japonicum or S. mansoni. Anti-IgM treatment did not affect the development or fecundity of the worms or the larvae within the egg shells. Normal circumoval granulomas were present in the livers of B cell depleted mice 7 or 8 weeks after infection clearly indicating that antibody and immune complexes have no necessary role in the formation of granulomas. Hepatic fibrosis was also similar in B cell depleted and untreated mice at these times. Ten weeks after infection the size of S. japonicum egg granulomas in untreated mice had decreased but no change in the size of granulomas had occurred in B cell depleted mice, and hepatic fibrosis was more marked in treated than in untreated mice. Similar changes were noted in S. mansoni infected mice, assayed at 8 and at 12-13.5 weeks after infection. The effects of B cell depletion in the more chronic infections may be related to the absence of antibody but could also be caused by an influence on B cell-dependent suppressor T cells.

Age Factors↗

Defective immunoglobulin M responses to vaccination or infection with Schistosoma mansoni in xid mice.

Mice vaccinated with irradiated Schistosoma mansoni cercariae develop a persistent immunoglobulin M (IgM) antischistosomulum antibody response. To investigate the possible role of antilarval IgM antibodies in the effector mechanism of vaccine-induced immunity, CBA/N mice, which have an X-linked genetic defect resulting in impaired IgM antibody responses to certain antigens, were analyzed for their resistance to a challenge infection. When either infected with unattenuated parasites or vaccinated with irradiated cercariae, mice of this inbred strain failed to produce detectable IgM antibodies to schistosomulum surface membrane and soluble worm antigens. To analyze the effect of this IgM deficiency on immunity, F1 hybrids were constructed between CBA/N females and nondefective C57BL/6J males. As expected, vaccinated (CBA/N X C57BL/6J)F1 females, as well as (CBA/J X C57BL/6J)F1 males and females, produced normal IgM antibodies to both surface antigens and worm antigen extracts. However, such antibodies were not produced by (CBA/N X C57BL/6J)F1 males (hemizygous for xid). Nevertheless, (CBA/N + C57BL/6J)F1 males displayed the same high levels of immunity to challenge infection as (CBA/N X C57BL/6J)F1 females and (CBA/J X C57BL/6J)F1 males and females. These results indicate that vaccine-induced immunity is not dependent on an IgM response to schistosome antigens.

Animals↗

Evidence against the existence of specific Schistosoma mansoni subpopulations which are resistant to irradiated vaccine-induced immunity.

When mice are immunized with irradiated Schistosoma mansoni cercariae a proportion of the subsequent cercarial challenge always escapes killing and matures to egg-laying adults. This report investigates the possibility that incomplete immunity in this system is governed by a genetically-determined insusceptibility of a particular schistosome subpopulation. To do this we tested whether more immunoresistant schistosomes would develop following successive passages of progeny of the resistant worms through immunized mice. Mice were immunized with 500 50 Krad-irradiated cercariae, and challenged with normal cercariae when immunity was at its peak. After five successive passages through snails and immune mice, progeny of those parasites which escaped immune killing were no more refractory to vaccine-induced resistance than the original stock maintained in nonimmune mice. Additionally, the "passaged" isolates did not differ from the original stock in their ability to induce protection following irradiation. Our results indicate that with this model of acquired resistance incomplete immunity is unlikely to be due to a subpopulation of the parasites possessing a genetically-determined insusceptibility to killing.

Animals↗

The fate of challenge schistosomula in the murine anti-schistosome vaccine model.

Mice exposed to irradiated cercariae of Schistosoma mansoni develop a partial resistance to subsequent parasite challenge. In this study we utilized histopathologic methods to investigate the fate of both the immunizing and challenge cercariae in C57BL/6J mice. After immunization by percutaneous infection, a large number of the 50 Kr irradiated organisms could be detected in tissue sections of lung. However, as early as 2 weeks after immunization, the majority of these schistosomula apparently had died, leaving residual inflammatory foci. The numbers of these foci then gradually declined during the next 4 weeks of examination. Cercarial challenge of mice vaccinated 4 weeks previously provoked an intense eosinophil-enriched inflammatory response in percutaneously exposed ear pinnae. Despite these pronounced tissue reactions, no evidence of significant parasite damage or attrition was detected in this migration site. In contrast, schistosomula arriving in the lungs of vaccinated mice produced a greater number of residual inflammatory foci than did larvae appearing in the lungs of normal mice. In addition, challenge schistosomula were cleared from the lungs of vaccinated mice at a slower rate than they were from the lungs of control mice. These observations suggest that the lung is a major site of parasite attrition for both immunizing and challenge infections in the mouse irradiated vaccine model.

Animals↗

Molecular mimicry of a carbohydrate epitope on a major surface glycoprotein of Trypanosoma cruzi by using anti-idiotypic antibodies.

The use of anti-idiotypic antibodies (Ab2) to induce anti-microbial immunity might be particularly advantageous with respect to responses directed against carbohydrate determinants, because it may not be feasible to reproduce these epitopes by recombinant DNA technology. In the present studies, rabbit Ab2 were produced against a recurrent BALB/c idiotype defined by a monoclonal antibody (WIC 29.26) with specificity for a carbohydrate epitope of a major surface glycoprotein of Trypanosoma cruzi. The Ab2 induced specific antibodies in mice, rabbits, and guinea pigs, and reacted with parasite-induced anti-T. cruzi antibodies from mice and rabbits as well as humans. The behavior of this Ab2 is therefore consistent with that of the antigen itself, and suggests that molecular mimicry of carbohydrate epitopes can be easily achieved.

Animals↗

Identification of cell surface carbohydrate and antigenic changes between noninfective and infective developmental stages of Leishmania major promastigotes.

Differentiation of Leishmania major promastigotes from a noninfective to an infective stage has been demonstrated for promastigotes growing within axenic culture and within the sandfly vector. We have been attempting to identify specific biochemical or antigenic changes that are associated with the development of infective-stage promastigotes. In this report we demonstrate that during growth, cultured L. major promastigotes undergo selective changes in surface carbohydrates, determined by their agglutination by plant lectins. Thus, although all promastigotes from logarithmic (log)-phase cultures were agglutinated by the two-D-galactose-binding lectins, peanut agglutinin (PNA) and Ricinus communis, identical concentrations of these lectins failed to agglutinate approximately 50% of L. major promastigotes from the stationary-phase cultures. These changes in lectin-agglutinating properties are consistent with the fact that log-phase promastigotes represent a homogeneous population of noninfective parasites, whereas up to 50% of the stationary-phase organisms appear to be transformed into infective-stage promastigotes, as determined by their ability to survive within normal resident mouse peritoneal macrophages in vitro. The identities of the populations defined by infectivity and PNA agglutination were confirmed by the purification of PNA-unagglutinated promastigotes from stationary-phase cultures, which demonstrated that 100% of these promastigotes were able to establish intracellular infections. Lectin-purified, infective-stage promastigotes from the stationary phase were compared with noninfective promastigotes from the log phase for the purpose of identifying stage-specific antigens. On the basis of Western blot analysis and the immunoprecipitation of surface-labeled organisms, we have identified an antigen of roughly 116,000 Mr that is expressed on the surface of infective but not noninfective promastigotes.

Agglutination Tests↗

Induction of protective immunity against Schistosoma mansoni by a non living vaccine. I. Partial characterization of antigens recognized by antibodies from mice immunized with soluble schistosome extracts.

A single intradermal injection of frozen and thawed schistosomula in conjunction with the bacterial adjuvant Mycobacterium bovis strain Bacille Calmette Guerin, Phipps substrain (BCG) induced significant levels of resistance to challenge Schistosoma mansoni infection in C57BL/6 mice. Immunization with the aqueous fraction remaining after 100,000 X G centrifugation of the larval lysate was also protective under these conditions, suggesting that some immunogenic determinants may not be membrane associated. Frozen-thawed cercariae and soluble components of adult worms also protected against challenge infection in these experiments. These observations indicate that soluble immunogens are present in both early and late developmental stages of the parasite, and therefore may be good candidate antigens for an immunochemically defined vaccine against schistosomiasis. Induction of humoral reactivity against soluble or membrane antigens was examined in mice protected against cercarial challenge by prior exposure to frozen-thawed larvae, soluble larval, or soluble adult antigens plus BCG. Animals that were immunized with frozen-thawed larvae produced low but significant levels of antibodies against larval surface antigens when examined by indirect immunofluorescence or by immunoprecipitation of surface-labeled schistosomula. Mice immunized with soluble antigens, however, showed negligible antibody reactivity against surface membrane antigens. Because mice immunized with soluble antigens were resistant to challenge infection, these results strongly suggest that anti-surface membrane reactivity is not required in the mechanism of protective immunity in this model. Sera from mice immunized with either total freeze-thaw larval lysate or soluble schistosome extracts all showed strong reactivity against soluble antigens, as detected by ELISA. Western blot analysis showed these antisera to react with a restricted number of high m.w. antigens that were present both in schistosomula and in adult worms. These antigens are therefore likely to play a major role in the development of resistance in this model as immunogens and/or as targets of protective immune response.

Adaptation, Physiological↗

Dichotomy in the tissue origin of schistosome acquired class I and class II major histocompatibility complex antigens.

Schistosoma mansoni schistosomula recovered from the lungs of mice have previously been shown to express host-derived class I and class II major histocompatibility complex (MHC) antigens. To investigate the tissue origin of parasite-acquired MHC products, lung-stage schistosomula were obtained from a series of parent leads to F1 and F1 leads to parent bone marrow chimeras and the parasites typed by immunofluorescence for the presence of haplotype-specific K region and I region MHC determinants. The results of these experiments indicated that, despite their intravascular residence in the host, schistosomula derive all of their class I antigen from a nonhemapoietic tissue source. In contrast, the class II antigens expressed on the surface of schistosomula were found to originate from bone marrow-derived donor cells. These results support the hypothesis that MHC product acquisition by schistosomes involves selective and specific interactions with host tissue and, in the case of class I antigens, suggest that the endothelium may be a major site of host molecule uptake for the parasite.

Animals↗

Strains and clones of Trypanosoma cruzi differ in their expression of a surface antigen identified by a monoclonal antibody.

Four Trypanosoma cruzi strains and 50 clones derived from a total of 10 strains were assayed with a monoclonal antibody, WIC 29.26 Ab, for expression of an epitope previously demonstrated to be on the carbohydrate portion of a 72 000 Da surface glycoprotein of Y strain epimastigotes. WIC 29.26 Ab bound to only 2 of the 4 strains and 23 of the 50 clones tested. A group of 10 cloned isolates from one strain contained both reactive and non-reactive clones. Competitive inhibition studies with soluble extracts of the reactive and non-reactive isolates suggested that in addition to being absent from the surface membrane, the antigenic determinant is not synthesized by the non-reactive parasites. These data indicate that the epitope recognized by WIC 29.26 Ab is not present on all T. cruzi epimastigotes, and provide the first demonstration of clone-specific differences in a parasite antigen detected by a monoclonal antibody. No correlation was found between the reactivity of isolates with WIC 29.26 Ab and the previously investigated parameters of growth rate and modal volume.

Animals↗

Differentiation of schistosomes by species, strain, and sex by using cloned DNA markers.

We have detected species, strain, and sex-specific genetic markers for the genus Schistosoma by Southern blot analysis of its DNA using cloned DNA segments of the Schistosoma mansoni ribosomal gene as probes. Restriction analysis of DNA from eight different strains of S. mansoni, from Africa and the Caribbean, revealed that the predominant or major DNA fragment containing the ribosomal gene unit was the same in each but that low copy number or minor fragments containing the gene varied. It was shown that the detection of these minor fragments could serve as the basis for both strain differentiation and the analysis of individual differences within a strain. Analysis of the parents and progeny of a genetic cross revealed sex-linked markers and suggested that these markers are inherited in a Mendelian fashion. DNAs from the species Schistosoma haematobium and Schistosoma japonicum were also analyzed. Differences in the length of the major repeating unit of the ribosomal gene served to distinguish each species. Furthermore, an array of minor bands was detected in each species, suggesting that strains of S. haematobium and S. japonicum could be differentiated in the same manner as S. mansoni strains.

Animals↗