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Biomedical subjects

G Newport

Publications and source records attributed to G Newport.

12 recordsLinked to original sources

Schistosoma mansoni: cell-specific expression and secretion of a serine protease during development of cercariae.

Eukaryotic serine proteases are an important family of enzymes whose functions include fertilization, tissue degradation by neutrophils, and host invasion by parasites. To avoid damaging the cells or organisms that produced them, serine proteases must be tightly regulated and sequestered. This study elucidates how the parasitic blood fluke Schistosoma mansoni synthesizes, stores, and releases a serine protease during differentiation of its invasive larvae. In situ hybridization with a cDNA probe localized the protease mRNA to acetabular cells, the first morphologically distinguishable parasite cells that differentiate from the embryonic cell masses present in the intermediate host snail. The acetabular cells contained vimentin but not cytokeratins, consistent with a mesenchymal, not epithelial, origin. Antiprotease antibodies, localized by immunoperoxidase, showed that the protease progressively accumulated in these cells and was packaged in vesicles of three morphologic types. Extension of cytoplasmic processes containing protease vesicles formed "ducts" which reached the anterior end of fully differentiated larvae. During invasion of human skin, groups of intact vesicles were released through the acetabular cytoplasmic processes and ruptured within the host tissue. Ruptured protease vesicles were noted adjacent to degraded epidermal cells and dermal-epidermal basement membrane, as well as along the surface of the penetrating larvae themselves. These observations are consistent with the proposed dual role for the enzyme in facilitating invasion of host skin by larvae and helping to release the larval surface glycocalyx during metamorphosis to the next stage of the parasite.

Animals

Molecular cloning and DNA sequence analysis of the 37-kilodalton endoflagellar sheath protein gene of Treponema pallidum.

We have used a combination of nucleotide and N-terminal-amino-acid-sequence analyses to determine the primary structure of the 37-kilodalton (kDa) endoflagellar outer layer, or sheath, protein. Initially, a lambda gt11 clone (designated lambda A34) expressing a portion of the 37-kDa protein was selected from a Treponema pallidum genomic library with a murine monoclonal antibody (H9-2) directed against an epitope of the 37-kDa protein. The insert from lambda A34 provided a probe with which a chimeric plasmid (pR14) encoding all but the nine N-terminal amino acids of the entire protein was selected from a T. pallidum(pBR322) genomic library. The nine N-terminal amino acids determined by amino acid sequencing were combined with the DNA sequence encoded by pR14 to determine the primary structure of the entire 37-kDa protein; the combined sequence made up a polypeptide with a calculated molecular mass of 36,948 Da. Approximately one-third of the deduced sequence was confirmed by N-terminal amino acid analysis of tryptic peptides from the purified 37-kDa protein. Repeated attempts to clone upstream portions of the gene (flaA) by using a variety of strategies were unsuccessful, suggesting that unregulated expression of the intact sheath protein or of its most amino-terminal portions is toxic in Escherichia coli. These studies should provide the basis for further molecular investigations of the endoflagellar apparatus and of treponemal motility.

Amino Acid Sequence

Influence of inducers and inhibitors on the metabolism in vitro and neurochemical effects in vivo of MDMA.

(S)-(+)- and (R)-(-)-3,4-methylenedioxymethamphetamine (MDMA) were metabolized in vitro by rat liver microsomes via N-demethylation to 3,4-methylenedioxyamphetamine (MDA). Whereas no difference was found in the biotransformation of the two enantiomers in the male rat or in the phenobarbital (PB) treated animals of either sex, more than twice as much MDA was formed from (S)-(+)- than from (R)-(-)-MDMA in the untreated female rat. Although 3-methylcholanthrene (3MC) pretreated rat liver microsomes were less active than those from the untreated rats of the same sex, they formed more MDA from (+)- than from (-)-MDMA. The enantioselective metabolism thus appears to be associated with the relative abundance of individual cytochrome P-450 isozymes. (S)-(+)- and (R)-(-)-MDMA.HCl (20 mg/kg) were about equipotent in depleting serotonin (5-HT) levels in the frontal cortex at 3 hrs and 1 wk following oral administration to female rats. Pretreatment of rats with SKF-525A attenuated and that with PB enhanced the 5-HT depleting potential of either isomer at 3 hrs. The 5-HT depleting potency of (+)-MDMA was significantly greater than that of its (-)-antipode at 3 hr in PB pretreated, but not in SKF-525A pretreated animals. The results suggest that the neurochemical effects of MDMA are caused by the formation of an active metabolite in vivo, and since both enantiomers were N-demethylated in vitro to approximately the same extent by PB pretreated rat liver microsomes, the active metabolite may be other than MDA.

3,4-Methylenedioxyamphetamine

The Schistosomatium douthitti cercarial elastase is biochemically and structurally distinct from that of Schistosoma mansoni.

The cercarial acetabular gland proteinase of Schistosomatium douthitti, an agent of 'swimmer's itch', has been identified and characterized. Like the corresponding proteinase of Schistosoma mansoni, it has significant elastase activity and can degrade a model of dermal extracellular matrix. However, unlike the S. mansoni enzyme, it has a higher molecular weight (50,000 versus 30,000), is of a different proteinase class (metallo versus serine), and has no significant primary structure homology to the S. mansoni proteinase. While these findings indicate that the failure of S. douthitti to produce chronic schistosomiasis in humans is not due to its lacking, or having a less potent 'penetration proteinase' than S. mansoni, the proteolytic enzymes are sufficiently different to support the hypothesis that the Schistosomatium line diverged quite early from the main branch of Schistosoma evolution.

Animals

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

Molecular cloning and expression of Chlamydia trachomatis major outer membrane protein antigens in Escherichia coli.

DNA obtained from Chlamydia trachomatis (serovar L2) was partially digested with DNase I and inserted into the beta-galactosidase gene of bacteriophage lambda gt11. Seven recombinants were selected that produced immunoreactive fusion proteins which were detected with anti-C. trachomatis rabbit serum. One recombinant, designated lambda gt11/L2/33, reacted with various monoclonal antibodies that recognize species-, subspecies-, and type-specific determinants on the chlamydial major outer membrane protein (MOMP). Immunoblot analysis of a lambda gt11/L2/33 lysogen revealed a fusion protein that expressed a approximately 15,000-dalton carboxyl-terminal peptide of the chlamydial MOMP. This moiety of the MOMP possesses epitopes responsible for each of the unique reactivities demonstrated by anti-MOMP monoclonal antibodies. The lambda gt11/L2/33 recombinant contained a 1.1-kilobase DNA insert which hybridized to DNA isolated from each of the 15 C. trachomatis serovars.

Antibodies, Monoclonal

The IsTat 1.3 VSG multigene family in Trypanosoma brucei: retention of the expression linked copy through multiple antigenic switches.

In the IsTaR 1 serodeme of T. brucei the 3 variant surface glycoprotein (VSG) gene family contains about 10 members, one of which has a telomeric location on a minichromosome. The expression linked copy (ELC) of the 3 VSG gene which occurs in an antigenic variant expressing the 3 VSG, also has a telomeric location but unlike the minichromosomal 3 VSG gene has restriction sites upstream from the 5' barren region. This ELC is retained on the same telomere in a subsequent variant that expresses a telomeric 7 VSG ELC and in relapse variants and procyclic forms derived from variant antigenic types (VATs) 3 and 7. The 7 ELC has a restriction map upstream from the 5' barren region that differs from, but is similar to, that of the 3 ELC. These data indicate that the 3 and 7 ELCs are on different telomeres when expressed.

Animals

Molecular characterization of initial variants from the IsTat I serodeme of Trypanosoma brucei.

Variant surface glycoproteins (VSGs) were isolated from variant antigen types (VATs) of the IsTat 1 serodeme. Molecular weight and isoelectric focusing analysis demonstrate that seven early VSGs possess properties generally attributed to VSGs isolated from other trypanosome serodemes. Six of the seven VSGs characterized are distinct from one another, while two (D and 1) appear identical. The presence of VSG specific mRNA in corresponding VATs was demonstrated by in vitro translation of RNA from each of the VATs, followed by immunoprecipitation with homologous and heterologous antisera. Hybridization of VSG cDNA clones with RNA from each VAT confirm that VSG mRNA is present only in homologous VATs and verifies the transcriptional control of these VSG genes. The two VATs D and 1 express indistinguishable VSGs by a variety of biochemical criteria, as well as by reactivity with 24 monoclonal antibodies. The VSG mRNAs in VATs D and 1 also appear identical. However, this identity is not reflected at the genomic level. Data is presented which establishes that DNA rearrangements can occur around both expressed and non-expressed VSG genes without qualitatively affecting VSG gene expression.

Animals

Genomic organization of Trypanosoma brucei variant antigen gene families in sequential parasitemias.

cDNA libraries were made from mRNA purified from each of seven sequentially isolated variant antigen types (VATs) of the IsTat 1 serodeme. Plasmids containing variant surface glycoprotein (VSG) sequences corresponding to each of the isolates were used in Southern analyses to examine the genomic organization of VSG nucleotide sequences. In most cases, cells expressing a given VSG were shown to have an extra copy of the corresponding VSG gene. In one case an expression-linked copy (ELC) was not detectable. VSG gene rearrangements not obviously correlated with the expression of homologous sequences were detected in four of six VSG gene families. Thus, even cDNAs which detected an ELC revealed additional genomic reorganization in regions flanking VSG sequences. The cells used to initiate the chronic infection expressed the same VSG as those isolated from the first parasitemia. The extent of genomic rearrangement observed between these two sequentially derived populations was comparable to that observed between any of the other serially derived VATs. Thus, within a short period of time and in the absence of detectable antigenic variation, the amount of genetic flux in sequences associated with VSG genes can be substantial.

Animals