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R Hedstrom

Publications and source records attributed to R Hedstrom.

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Cloning of the proteinase that facilitates infection by schistosome parasites.

Four cDNA clones encoding a proteinase which facilitates skin invasion by schistosome parasites were isolated by screening a schistosome sporocyst cDNA library, using an oligonucleotide probe containing sequences complementary to predicted 5'-translated regions of its RNA. The amino acid sequence of the enzyme, as deduced from the DNA sequence of the clones, indicates that the enzyme is a serine protease which in many respects is similar to vertebrate pancreatic elastases, although regions outside of the putative active site, binding pocket, and amino-terminal cysteines differ significantly. Regulation of expression of the enzyme occurs at the level of mRNA transcription as well as posttranslationally, the latter involving the processing of a previously unidentified pre-proenzyme (zymogen) sequence. In situ hybridization of the cDNA clones to tissue sections of developing larvae indicates that the enzyme is synthesized within a discrete time frame in specialized cells of the organism.

Amino Acid Sequence

Schistosome heat-shock proteins are immunologically distinct host-like antigens.

Constitutively expressed schistosome homologues of heat-shock protein Hsp70 elicit a dominant antibody response in humans infected with either Schistosoma japonicum or Schistosoma mansoni; in each case the parasite antigens are immunologically distinct and noncrossreactive. The antigenic site of the homologues is located near their carboxyl terminus where phylogenetic divergence between Hsp70 proteins is greatest. Nucleotide sequence comparison between these regions predicts very few amino acid differences between the schistosome protein and that of their human host. Thus strikingly limited diversity is sufficient to elicit a discriminatory antibody response to these parasite host-like antigens.

Amino Acid Sequence

A major immunogen in Schistosoma mansoni infections is homologous to the heat-shock protein Hsp70.

A 70,000 mol wt protein of Schistosoma mansoni was shown to be a major immunogen that invariably elicited an antibody response in infected humans. The universality of the response to this abundant antigen was confirmed in experimental animals and included the antibody response associated with the protective irradiated cercarial vaccine. We identified the 70,000 mol wt antigen as an S. mansoni homologue of the major eukaryotic heat-shock protein hsp70 by DNA sequence analysis of a cDNA insert from a lambda gt11 clone expressing the antigen and located the immunodominant epitope near the COOH-terminus of the molecule. The antigenic relationship of hsp70 to schistosome infections suggested an important role for this protein in parasite development and pathogenesis.

Amino Acid Sequence

Schistosome elastases: biological importance, structure, function and stage-specific expression.

Larval schistosomes (Digenea: Trematoda) invade their definitive host by directly penetrating the skin. During the process they secrete a number of macromolecules, ostensibly to facilitate their entry. Among these we have identified and characterized a dominant proteolytic species: a serine protease capable of fragmenting keratin, types IV and VIII collagen, proteoglycan, fibronectin, laminin, and elastin. The enzyme exhibits the specificity characteristic of elastases, has a molecular mass of 30,000 Da and pI of 7.8, and is potently immunogenic in its native form. Specificity of the active site has been analysed, tetrapeptides having large hydrophobic or aromatic amino acids at size P1 serving as best substrates. The amino terminal 20 amino acids of the mature enzyme have been sequenced and the information derived has been used to construct an oligonucleotide (22-mer) complement of its corresponding mRNA. The latter has been used to establish, by Northern analysis, that expression of the enzyme is stage specific (differing in this respect from most schistosome immunogens), and under transcriptional control. Transcripts are encoded by a multigene family. Several cDNAs hybridizing to the oligonucleotide have been isolated, subcloned into bacteriophage M-13, and sequenced by the di-deoxy method. It is our expectation that this line of investigation will lead towards: (i) an anti-infection vaccine; (ii) a means for chemically preventing infection (using enzyme inhibitors), and/or (iii) a rapid diagnostic assay of prepatent infection.

Amino Acid Sequence