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Biomedical subjects

R L Coppel

Publications and source records attributed to R L Coppel.

At least 109 records · Page 6Linked to original sources

Diversity of agglutinating phenotype, cytoadherence, and rosette-forming characteristics of Plasmodium falciparum isolates from Papua New Guinean children.

The relationship between antigenic variation, cytoadherence, rosette formation, and the pathogenesis of malaria has led to great interest in the diversity of these properties in Plasmodium falciparum isolates from different communities. In this study, we extend previous investigations by delineating the spectrum of agglutinating phenotypes, adherence to C32 melanoma cells, human umbilical vein endothelial cells (HUVEC), CD36, and intracellular adhesion molecule-1 (ICAM-1), and rosette-forming ability of a group of 20 P. falciparum isolates from Papua New Guinean children. Agglutination phenotypes were determined by using both the children's convalescent serum and a panel of adult immune sera. The wide range of variant antigenic types in the community was demonstrated by the failure of the agglutination assays to identify any two isolates with the same agglutinating phenotype in this, the largest study of its kind. Comparison of agglutination profiles from fresh and cryopreserved isolates demonstrated the general acceptability of cryopreservation before testing, but cautioned that some isolates may undergo selection and phenotypic change during the process. Nineteen isolates were able to bind to at least one of the four ligands studied and showed marked variation in both avidity and specificity of binding. The purified proteins ICAM-1 and CD36 proved to be the most useful assay ligands for investigating field isolates, with 18 isolates binding to at least one protein and 14 to both. No correlation was found between the binding of isolates to any two ligands nor between the binding of a standardized inoculum and the level of the patient's presenting parasitemia. All isolates from the study group were found to form rosettes (at a mean rate of 14.6% of cultured trophozoites involved in rosettes). A lack of correlation between rosette formation and CD36 binding suggests that the previously reported role of CD36 as a rosette formation receptor may not be important for isolates from Papua New Guinea.

Agglutination Tests↗

Protective immunity induced in squirrel monkeys with recombinant apical membrane antigen-1 of Plasmodium fragile.

Saimiri sciureus boliviensis monkeys were immunized with the Plasmodium fragile form of the merozoite apical membrane antigen-1 produced using the baculovirus expression system and combined with Montanide ISA 720 adjuvant. Following three immunizations, monkeys were challenged with 10,000 P. fragile trophozoite parasites. Antibody titers determined by fluorescence microscopy indicated an enhanced response following the second immunization. Four of five control animals had parasite counts > 5% 18-26 days following challenge. Four of five immunized monkeys had reduced levels of maximum parasitemia or delays in accumulated parasite counts, suggestive of protection. Rechallenge of the animals with P. falciparum resulted in three of four adjuvant control animals developing patent parasitemia whereas none of five immunized animals were infected, suggesting some level of heterologous protection.

Adjuvants, Immunologic↗

Heterogeneity of combinatorial human autoantibodies against PDC-E2 and biliary epithelial cells in patients with primary biliary cirrhosis.

The polyclonal nature of antimitochondrial autoantibodies and the limited success of generating human monoclonal antibodies have made analysis of fine specificity and antibody heterogeneity difficult to define. The major autoantigen of primary biliary cirrhosis is the E2 component of the pyruvate dehydrogenase pathway (PDC-E2). To address the relative importance of the region(s) in the PDC-E2 inner lipoyl domain to antibody binding, we report herein detailed profiles of 12 PDC-E2-specific antigen-binding fragments, SP1 through SP12, derived by screening of a combinatorial immunoglobulin library (derived from a primary biliary cirrhosis patient) with full-length native PDC-E2. All antigen-binding fragments are IgG isotypes and include a similar number of lambda- and kappa-chains. The antigen-binding fragments react specifically to PDC-E2 with high affinity (kappa a = 10(-7) to 10(-10) mol/L-1) and recognize a conformational epitope in the inner lipoyl domain of PDC-E2. Furthermore, the antibodies demonstrate substantial heterogeneity in recognition of different recombinant PDC-E2 fragments and differential recognition patterns against mutant constructs of the human PDC-E2 inner lipoyl domain (amino acid residues 91 to 227). In addition, five of the antigen-binding fragment clones (SP1, 3, 4, 8 and 12) demonstrate different staining patterns on biliary epithelial cells of patients with primary biliary cirrhosis but not control liver disease; some antigen-binding fragments specifically stained the apical region of biliary epithelium, a pattern distinct from that of typical mitochondrial staining. The response to the inner lipoyl domain is not, however, monospecific, and there is much more heterogeneity in fine specificity than could be accounted for by arbitrary reshuffling of variable immunoglobulin heavy and light chains into unnatural combinations.

Autoantibodies↗

Antibody specificities of Thai and Australian scleroderma sera with topoisomerase I recombinant fusion proteins.

Autoantibodies that react with the nuclear enzyme topoisomerase I (Topo I) are used as a diagnostic marker of diffuse scleroderma. To better define immune reactivity to Topo I, antibody epitopes in two patient populations were analyzed using recombinant Topo I proteins. Two overlapping partial cDNA clones encoding the complete amino acid sequence of Topo I were isolated from human placenta. Using the polymerase chain reaction, specific regions of Topo I were amplified and cloned into the pGEX expression vectors. To map Topo I epitopes, recombinant fusion proteins were analyzed by immunoblotting with 66 anti-Topo I sera from Thai and Australian patients with diffuse scleroderma. Six distinct epitope regions were identified along the length of the 765 amino acid enzyme. Almost all sera contained antibodies that recognized the midregion of Topo I (amino acids 453-560), as well as antibodies to one of more of the other epitope regions. Sixty percent of the sera contained antibodies that recognized a COOH-terminal epitope region (amino acids 658-765) encompassing the active site of the enzyme. This subset of Topo I antibodies could be responsible for the inhibition of enzymatic activity previously reported in vitro. Heterogeneous patterns of reactivity with the six Topo I epitope regions were observed, although over half the sera could be assigned to one of six distinct patterns. In general, antibodies in the Thai sera reacted more strongly with the six epitope regions. Furthermore, two of the epitope regions reacted exclusively with Thai sera, suggesting a degree of racial or geographical specificity in the autoantibody response to Topo I. The identification of multiple epitopes in Topo I conforms with the polyclonal autoantibody response to intracellular Ag found in other multisystem autoimmune diseases and is presumed to be driven by the presentation of multiple peptides from Topo I itself.

Amino Acid Sequence↗

Cloning from the thyroid of a protein related to actin binding protein that is recognized by Graves disease immunoglobulins.

Human actin binding protein (ABP) links specific membrane glycoproteins to cytoskeletal actin microfilaments. In human platelets and leukocytes, ABP directly links, respectively, the membrane glycoproteins GPIb and the high-affinity Fc receptor for IgG (Fc gamma IR) to cytoskeletal actin microfilaments. Similar interaction between the thyrotropin (TSH) receptor and ABP in endocrine cells might explain the rapid and profound disruption of actin microfilaments induced by TSH in cultured thyroid follicular cells. By screening a thyroid lambda gt11 cDNA expression library with serum from a Graves disease patient, we identified a clone encoding a protein, designated truncated ABP (TABP), that shares extensive homology (approximately 70%) with ABP. TABP is a truncated ABP-like protein with an open reading frame of 195 aa that encodes a protein of approximately 21 kDa. TABP lacks an actin binding domain but contains two predicted beta-sheet repeats within which is a putative dimerization domain and between which lies a putative glycoprotein binding site containing a consensus site for phosphorylation by Ca(2+)-calmodulin kinase II. TABP contains a unique C-terminal insertion within which lies a hydrophobic predicted membrane-associated region, absent from ABP. Although TABP mRNA is expressed widely, immunoblot analysis demonstrated the presence of TABP antibodies specifically in the sera of a minority of subjects with autoimmune thyroid disease. A 24-residue sequence of similarity was identified between the TSH receptor and platelet glycoprotein GPIb alpha that may represent a transmembrane ABP binding site. We suggest, therefore, that signal transduction by TSH in the thyroid involves direct linkage of the TSH receptor to actin microfilaments by ABP and that TABP may interact with ABP to mediate TSH-induced actin microfilament disruption.

Amino Acid Sequence↗

Combinatorial autoantibodies to dihydrolipoamide acetyltransferase, the major autoantigen of primary biliary cirrhosis.

mRNA from a regional lymph node of a patient with primary biliary cirrhosis (PBC) was used to construct a combinatorial immunoglobulin library in the lambda phage vector system. Six human monoclonal IgG Fab clones (LC1-LC6) specific for the major autoantigen of PBC--dihydrolipoamide acetyltransferase, the E2 subunit of the pyruvate dehydrogenase complex (PDC-E2)--were isolated, appearing at a frequency of 0.01% in the combinatorial immunoglobulin library. These Fab clones recognize human PDC-E2 with high affinity (Ka = 10(-7)-10(-9) M-1). Using both immunoblotting and ELISA, LC1-LC6 showed little cross-reactivity to any of the other autoantigens commonly recognized by PBC sera or to other antigens commonly recognized by PBC sera or to other antigens such as histone, calf thymus DNA, and bovine serum albumin. The Fab monoclonal antibodies show a typical anti-mitochondrial staining pattern in HEp-2 cells but react strongly with the luminal aspect of biliary epithelial cells of patients with PBC. Our results demonstrate that a recombinant combinatorial immunoglobulin library can be used to isolate high-affinity Fabs against a specific autoantigen. Such reagents will facilitate the analysis of immunoglobulin gene structure, idiotype, and antigen-antibody interactions in autoimmune disease.

Acetyltransferases↗

Molecular variation in Plasmodium falciparum: polymorphic antigens of asexual erythrocytic stages.

Numerous polymorphic antigens of the asexual erythrocytic stages of P. falciparum are now well characterized. Diversity in some of these antigens, including MSA-1, MSA-2 and the S-antigen is associated with changes in the repeat sequences which are frequently a prominent structural feature of malaria antigens. It is not known whether the variation in repeats causes allelic gene products to adopt different conformations but variation in and around the repeats in SPAM, a newly characterized secreted antigen, preserve the unusual alanine-heptad repeats which we assume generate a helical bundle in this protein. Mutations in non-repetitive regions of the S-antigen and in AMA-1, an antigen lacking repeats, are strongly biased towards those which alter the amino acid sequence. This and other evidence indicates the operation of biological selection but the role of immune responses as a selection pressure operating on these diverse antigens remains to be established.

Amino Acid Sequence↗

The S-antigen of Plasmodium falciparum: repertoire and origin of diversity.

S-antigens are heat-stable, highly polymorphic proteins released by Plasmodium falciparum at the time of schizont rupture. Previously determined S-antigen sequences allowed the proposal of a general gene structure consisting of 5 sequence blocks. The sequence of the central block of tandem repeats provides a useful means of distinguishing the S-antigen allele and also its serotype, whereas the amino and carboxy terminal sequences defined the S-antigen family, 4 of which have been described. We present the sequence of 3 new S-antigen alleles, for the isolates HB3, KF1916 and KF1917. The allele-defining repeat sequence is ETGPGKAGEQG for HB3, GDQTEGS(S/A)GGK for KF1917 and AGSNE(E/K) for KF1916. The sequences of these newly described S-antigens are consistent with the proposed general gene structure and all belong to defined families, although carboxy-terminal sequences appear to be much more variable within a family than previously realised.

Alleles↗

A fourth family of the Plasmodium falciparum S-antigen.

The S-antigen of Plasmodium falciparum is a highly diverse heat stable protein that is located in the parasitophorous vacuole of the mature asexual intraerythrocytic parasite. The gene for S-antigen exists within the parasite population as multiple alleles at a single locus. Its sequence contains a large central block of tandemly arranged peptides that are identical or very similar in one allele but differ widely in sequence, repeat length and number among different alleles, and consequently antigenic specificity. Thus, antibodies directed against the repeat region can be used to define the serotype of an S-antigen. Flanking this repeat block are 2 short regions of non-repetitive sequence which have been described as occurring in three different forms, each of which is used to define a single S-antigen family. We present the S-antigen sequence for the isolate 3D7 which defines not only a novel serotype but also a novel S-antigen family. The central repeat block is composed of 57 copies of an 8-residue peptide with consensus sequence ED(E/K)VSNG(R/G). Comparison of the four S-antigen families reveals that they differ considerably from each other with variation being most pronounced in the carboxy terminal-flanking region. This pattern of sequence variation differs considerably from that found for MSA-1 and MSA-2, the only other diverse proteins of P. falciparum for which sequence information is available.

Amino Acid Sequence↗

Repeat structures in a Plasmodium falciparum protein (MESA) that binds human erythrocyte protein 4.1.

The mature-parasite-infected erythrocyte surface antigen (MESA, also known as PfEMP-2 and pp300) of Plasmodium falciparum is a phosphoprotein of approx. 250-300 kDa that is exported from the parasite to the erythrocyte membrane skeleton where it binds to protein 4.1. Determination of the primary sequence of MESA reveals that it is encoded by 2 exons, a structure common to other exported proteins of P. falciparum. The MESA protein is heavily charged and contains 7 distinct repeat regions that compose over 60% of the protein. The predicted secondary structure suggests that MESA is a fibrillar protein and it shows similarity to a number of cytoskeletal and neurofilament proteins, including myosin, a protein that itself binds to protein 4.1.

Amino Acid Sequence↗

Comparative immunoreactive profiles of Japanese and American patients with primary biliary cirrhosis against mitochondrial autoantigens.

Primary biliary cirrhosis (PBC) has been described among various ethnic and racial populations in all parts of the world. However, the incidence and prevalence of PBC varies considerably in different geographic areas. It has the highest frequency in Northern Europe, is considerably lower in Japan and still lower in other parts of Asia. There has not hitherto been a detailed immunological profile of antimitochondrial antibodies according to geographic region. We have used recombinant or purified preparations from the 2-oxo-acid dehydrogenase enzyme complexes, the major mitochondrial autoantigens in PBC (PDC-E2, BCOADC-E2, OGDC, protein X and PDC-E1 alpha) to compare the reactivity of sera from either similarly staged sera from Japanese (n = 23) or American-Caucasian patients (n = 39) with PBC. In all cases, the first available sera following diagnosis was selected. Interestingly, only 65% of Japanese patients reacted by ELISA with PDC-E2 compared with more than 95% of the North American group. Moreover, the level of enzyme-inhibitory antibodies to PDC was lower in the Japanese. Our findings prompt the need for characterization of specific susceptibility genes and environmental factors in various parts of the world to clarify the etiology of PBC.

Antigen-Antibody Reactions↗

Structural diversity in the Plasmodium falciparum merozoite surface antigen 2.

Antigens associated with the surface of merozoites of the malaria parasite Plasmodium falciparum are directly accessible to immune attack and therefore are prime vaccine candidates. We have previously shown that one of the two known merozoite surface antigens (merozoite surface antigen 2; MSA-2) exhibits considerable sequence and antigenic diversity in different isolates. The sequences of MSA-2 from three isolates revealed a central domain composed of repeats that vary in number, length, and sequence, flanked in turn by nonrepetitive variable sequences and by conserved N- and C-terminal domains. We report here the sequences of a further four MSA-2 alleles, containing repetitive sequences that are related but not identical to each other. The seven alleles of MSA-2 can be divided into two distinct allele families on the basis of nonrepetitive sequences. Hybridization studies with repeat probes indicated that all of the 44 P. falciparum isolates examined contained repeat regions similar to those defined in known MSA-2 sequences.

Amino Acid Sequence↗