Search PubMed⌕ Search

Biomedical subjects

S Z Shapiro

Publications and source records attributed to S Z Shapiro.

At least 37 records · Page 2Linked to original sources

Differential protein synthesis during the life cycle of the protozoan parasite Trypanosoma brucei.

Two-dimensional polyacrylamide gel electrophoresis has been used to analyze changes in protein content and protein synthesis in three stages of the life cycle of the protozoan parasite Trypanosoma brucei. The stages examined were slender and stumpy mammalian bloodstream forms and procyclic forms, which are analogous to the tsetse fly midgut stage. Two-dimensional gels of 35S-methionine-labeled proteins were examined by autoradiography to analyze newly synthesized protein, and gels were stained with ammoniacal silver to analyze proteins present. Several stage-specific molecules were noted. The most obvious was the variant surface glycoprotein, which was only present in bloodstream forms. Some other proteins were also bloodstream form specific; they had molecular weights of 120,000 and 38,000. Proteins of 52,000, 46,000, 25-30,000, and 16,000 daltons were present both in stumpy forms and procyclics but not in slender-form trypanosomes. Several proteins (molecular weights of 50-70,000, 43,000, 40,000, 26-24,000, 20-25,000, and 15,000) were present only in one of the three stages. One protein, a molecule of about 18,000 daltons present in both slender and stumpy parasites, did not appear to be synthesized in the stumpy stage. In vitro translation products of mRNA purified from the three stages were also examined. The abundance of mRNA encoding a protein of about 40,000 daltons appeared to be greater in slender than in stumpy parasites although the stumpy forms contained more of the protein and synthesized it at a higher rate.

Animals↗

Trypanosoma brucei: release of variant surface glycoprotein during the parasite life cycle.

African trypanosome variant surface antigen, which was released from the Trypanosoma brucei parasite at two stages in its life cycle, has been characterized by sodium dodecyl sulfate-polyacrylamide gel electrophoresis in the presence of 4 M urea. Variant surface antigen released as exoantigen into the bloodstream of infected rats resembled the soluble form of the surface antigen. Variant surface antigen released from parasites undergoing transformation to the uncoated procyclic stage was detected as two molecular species: soluble variant surface antigen and a cleavage product of variant surface antigen. The data presented are consistent with enzymatic cleavage of the variant surface antigen C-terminal hydrophobic moiety operating to release parasite surface coat from living parasites.

Animals↗

Regulation of parasite-specific antibody responses in resistant (C57BL/6) and susceptible (C3H/HE) mice infected with Trypanosoma (trypanozoon) brucei brucei.

After infection with 10(3) T. brucei GUTat 3.1, C57BL/6 mice produced antibody responses and controlled the first parasitaemic wave whereas C3H/He mice did not. The inability of C3H/He mice to control parasitaemia resulted from an impaired ability of parasite-induced antibody-containing cells to secrete immunoglobulin. Antibody-containing cells in infected C3H/He mice regained the ability to secrete antibody within 24 h after trypanosome elimination by treatment with Berenil, suggesting that the block in antibody secretion was maintained by living parasites or short-lived components of degenerating parasites. Infected C3H/He mice also had an impaired ability to produce a rabbit erythrocyte-specific antibody response on challenge with rabbit erythrocytes and this response recovered when parasites were eliminated from the blood 24 h before analysis. It was not possible to inhibit secretion of antibody by rabbit erythrocyte-induced plasma cells either by incubating them with serum from infected C3H/He mice or by injecting large numbers of living trypanosomes into C3H/He mice already responding to rabbit erythrocytes. The process leading to failure of parasite and rabbit erythrocyte-induced antibody-containing cells to become high rate antibody-secreting cells was not identified but did not appear to correlate with any obvious change in the intra-cellular morphology of the antibody-containing cells.

Animals↗

Lesions and saliva-specific antibody responses in rabbits with immediate and delayed hypersensitivity reactions to the bites of Glossina morsitans centralis.

Rabbits exposed to feeding tsetse flies developed cutaneous hypersensitivity responses to fly bites. These responses had characteristics of immediate and delayed type hypersensitivity. Saliva components from the tsetse fly Glossina morsitans centralis were electrophoretically separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Major salivary proteins of 160, 92, 66, 64, 55, 42, 33, 28, and 15 kilodaltons were identified. Separated salivary components were transferred to nitrocellulose filters and probed with lectins and with whole sera and purified IgG from rabbits which had been exposed, via fly feeding, to tsetse antigens for variable periods. Many of the salivary proteins were identified as glycoproteins. Several major salivary proteins were recognized by antibodies from sensitized rabbits.

Animals↗

Tick antigens recognized by serum from a guinea pig resistant to infestation with the tick Rhipicephalus appendiculatus.

Immune resistance to infestation by an ixodid tick, Rhipicephalus appendiculatus, the vector of the cattle disease East Coast Fever, was induced in a guinea pig by repeated tick infestation. This resistance is expressed as the ability of the host to interfere with tick feeding. Resistance to ixodid tick feeding is an acquired response mediated by host antibody. We report the use of antibodies from a resistant host animal, in immunoblotting, to characterize the tick antigens recognized. The major tick antigens identified had molecular weights of 120,000, 94,000, 88,000, 77,000, 58,000, 46,000, 35,000, 31,000, 28,000, 25,000, 20,000 and 16,000. Most of these antigens were found in tick salivary glands. The presence and concentration of many tick salivary antigens appeared to vary with relation to the tick feeding cycle. Many of the antigens present in salivary glands were also detected in tick cement. Tick gut extract, although a poorer source of antigens, contained more of the 31,000 dalton antigen than salivary glands. Larval and nymphal tick extract lacked many of the antigens present in adult ticks. The data suggest that tick resistance is a complex phenomenon probably elicited by several different tick antigens.

Animals↗

Identification of a surface antigen on Theileria parva sporozoites by monoclonal antibody.

A mouse monoclonal antibody (mAbD1) that neutralizes sporozoites of different stocks of the protozoan parasite Theileria parva has been used to localize and identify a sporozoite antigen. Protein A-colloidal gold was used to localize bound mAbD1 in immunoelectron microscopic studies. mAbD1 bound to sporozoite antigen, which was evenly spread over the surface of all sporozoites. Immune complexes were obtained by incubation of sporozoite suspensions with mAbD1 followed by Zwittergent 3-14 extraction and precipitation with protein A-Sepharose. One- and two-dimensional NaDodSO4/polyacrylamide gel electrophoretic analyses were performed on these complexes, and a major protein with a molecular size of 68 kDa was identified. Other related components of 52 kDa, 47 kDa, and 28 kDa were also detected. Since antibody to this antigen(s) neutralizes T. parva sporozoites from different stocks, the results could be of relevance to the development of a broad spectrum vaccine against the cattle disease East Coast fever, which is caused by T. parva.

Animals↗

Analysis by flow cytometry of DNA synthesis during the life cycle of African trypanosomes.

DNA content, at different stages in the life cycle of the hemoprotozoan parasite Trypanosoma brucei, has been analysed with a fluorescence activated cell sorter. It was observed that the long slender bloodstream form stage and procyclic culture forms (analogous to the tsetse fly midgut stage) are dividing cell populations with cells in G1, S, G2 and mitosis. Short stumpy bloodstream form and metacyclic fly salivary gland form populations are composed of non-dividing parasites stabilized in G1 or G0 of the cell cycle. Haploids, possible sexual forms, were not detected. In response to transfer to a culture system which mimics the fly midgut, short stumpy bloodstream form parasites were readily able to initiate DNA synthesis and differentiate into dividing procyclic culture forms. This supports the suggested role of the short stumpy form as a transitional stage between the mammalian host and the tsetse fly vector. Analysis of early and late bloodstream populations of another salivarian trypanosome, Trypanosoma vivax, revealed a transition from dividing to stationary cell population similar to that observed with T. brucei. A hitherto unrecognized morphological form of T. vivax, analogous to the T. brucei short stumpy form, was detected. It is suggested that the long slender to short stumpy morphological transformation, long known in T. brucei, reflects a physiological transition from dividing to nondividing parasite relevant to the life cycle of all the salivarian trypanosomes.

Animals↗

Characterization of tick antigens inducing host immune resistance. I. Immunization of guinea pigs with Amblyomma americanum-derived salivary gland extracts and identification of an important salivary gland protein antigen with guinea pig anti-tick antibodies.

Guinea pigs immunized by subcutaneous injection of an emulsion of incomplete Freund's adjuvant (IFA) containing tick salivary gland extract antigens (SGA) from partially fed female ticks expressed a significant level of tick rejection when challenged 17 days later. This level of tick rejection was similar to animals actively sensitized by tick feeding and challenged at the same time. SGA emulsified with complete Freund's adjuvant (CFA) or administered with saline was ineffective. However, ticks that fed on animals immunized with SGA+IFA or SGA+CFA expressed significant reductions in engorgement weight. SGA was active when prepared with or without protease inhibitors. The minimum effective immunizing dose of SGA was between 100 and 280 micrograms per animal. Extracts made from salivary gland-derived cement material (CA) from partially fed female ticks administered at 50 micrograms in IFA induced levels of tick rejection comparable to animals immunized with 280 micrograms of SGA+IFA. Sodium dodecylsulfate polyacrylamide gel electrophoresis (SDS/PAGE) of 35S- and 125I-radiolabeled SGA and CA extracts immunoprecipitated by guinea pig anti-tick serum that transferred immune resistance demonstrated a unique protein of 20,000 m.w. Serum from animals immunized with SGA+IFA (successful immunization) recognized this same protein, whereas serum from animals immunized with SGA+CFA (unsuccessful immunization) did not. The results of this study suggest that a 20,000 m.w. protein derived from the tick salivary gland may be responsible for the induction and perhaps elicitation of host immune resistance responses to Amblyomma americanum ticks.

Animals↗

analysis of genomic rearrangements associated with two variable antigen genes of Trypanosoma brucei.

Some variable surface glycoprotein (VSG) genes of Trypanosoma brucei undergo duplication and transposition when they are expressed. We report here the cloning of cDNAs coding for two VSGs from the ILtar 1 repertoire. Analysis of the genomes of trypanosomes expressing these and other antigens shows that there is no additional copy of the sequences coding for eight VSG in expressing clones of trypanosomes, and reveals rearrangements analogous to those previously described for the gene for another VSG from this antigen repertoire. The data indicate that duplication does not accompany the expression of these VSG genes. Transposition to a specific expression site cannot be excluded, but would have to involve either a much larger segment of DNA, or movement to a region of much greater homology with the previous flanking sequences, than is observed for VSG genes that are duplicated when expressed. It is reasoned that the control of expression by coupled duplication and transposition is not sufficient to account for the selection of a single VSG gene for expression.

Animals↗

African trypanosome antigens recognized during the course of infection in N'dama and Zebu cattle.

The humoral immune responses to Trypanosoma brucei infection were examined in N'dama and in Zebu, two breeds of cattle recognized for their differing susceptibility to trypanosomiasis. Regardless of the clinical course, animals of both breeds produced antibodies to nonsurface trypanosome antigen(s) detectable by both immunodiffusion and immune fluorescence. As a new approach to assessment of the humoral response to trypanosome infection, protein antigens responded to were isolated by immune precipitation, and their molecular weights were determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. This allowed the detection of differences in the immune response which correlated with the clinical course of the disease. All cattle of both breeds which exhibited a capacity to control the disease recognized at least one of three specific antigens: protein of 110,000, 150,000, and 300,000 daltons. The N'dama, which proved less susceptible to the disease, generally responded to more of the three identified trypanosome protein antigens than did the Zebu. Animals which died of trypanosomiasis failed to produce detectable antibodies to any of the three specific proteins, although they sometimes exhibited antibodies to another trypanosome antigen.

Animals↗

An immunochemical method for mRNA purification. Application to messenger RNA encoding trypanosome variable surface antigen.

A simplified procedure for isolation of specific mRNA using Staphylococcus aureus protein A immunoadsorbent chromatography has been developed. This procedure has been applied to the mRNA encoding Trypanosoma brucei variable surface antigen. Trypanosome polyribosomes were reacted with antibodies isolated from an anti-variable antigen-specific serum by protein A-Sepharose column chromatography. Antibody-bound variable antigen-synthesizing polyribosomes were then separated from unbound polyribosomes also by protein A-Sepharose column chromatography. This simple protocol gave a greater than 50% yield of variable antigen-specific mRNA which appeared to be very highly purified as determined by translation in an mRNA-dependent reticulocyte lysate assay. The mRNAs encoding three different T. brucei surface antigens have been purified. The procedure described here should be useful in purification of other mRNAs.

Animals↗

Contextural genomic rearrangements of variable-antigen genes in Trypanosoma brucei.

We have described some rearrangements of a variable-antigen gene in T. brucei. We suggest that there are two copies of the ILTat 1.2 variable-antigen gene in each of a number of trypanosome clones closely related by sequential relapses. Both copies of the gene undergo rearrangements, apparently the result of insertion and deletion of lengths of DNA in a region at or beyond the 3' end of the coding sequence, giving rise to different-size restriction enzyme fragments in different clones of trypanosomes. No feature of these rearrangements can be correlated with expression of the gene. Our data differ from those of Hoeijmakers et al. (1980) in two important respects: (1) Neither copy of the gene remains in a constant genomic context in all trypanosome clones. (2) We do not see an extra copy associated with the expression of the gene. These observations do not suggest any obvious mechanism for the phenomenon of antigenic variation.

Animals↗

Analyses of variable antigen gene rearrangements in Trypanosoma brucei.

For the purpose of investigating the genetic basis of antigenic variation in Trypanosoma brucei, we have analyzed the structure of the genome surrounding the gene coding for one T. brucei variable antigen (ILTat 1.2) in several T. brucei clones expressing this and other variable antigens. In each case there are two copies of the gene. We found no evidence of an extra copy associated with the expression of this gene. Differences were found between the two copies in a single clone, and between the copies in different clones. The differences could be explained by insertion and deletion of various lengths of DNA in a region beyond the C-terminal end of the gene. Differences in genomic structure were found even between clones expressing the same antigen, whether ILTat 1.2 or another. Thus, no feature of the rearrangements observed can be correlated with the expression of a particular antigen.

Animals↗

Synthesis and cleavage processing of oncornavirus proteins during interferon inhibition of virus particle release.

The effect of interferon on the rate of synthesis and the cleavage processing of viral proteins in mouse cells, chronically infected with Rauscher murine leukemia virus, has been studied by immunoprecipitation of newly synthesized viral proteins from virus-infected cells pulse-labeled with [35S]methionine. Immuno-precipitated, labeled polypeptides were resolved by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate and then examined by autoradiography. Cleavage processing was studied in the same manner with cells that had been pulse-labeled and then incubated with non-radioactive media for a sufficient time to allow normal cleavage processing to occur. At a concentration that strongly inhibited the release of virus particles, interferon had no effect on the synthesis of proteins carrying antigenic determinants of the major core protein p30 or of the envelope glycoprotein gp69/71. Nor did it affect the post-translational cleavage processing of the precursors to these proteins. Similarly, interferon did not affect labeling or chasing of precursor protein carrying the p15 determinants; labeling of p15 itself could not be studied because it does not contain methionine.

Animals↗