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J C Boothroyd

Publications and source records attributed to J C Boothroyd.

At least 91 records · Page 5Linked to original sources

A developmentally regulated gene of trypanosomes encodes a homologue of rat protein-disulfide isomerase and phosphoinositol-phospholipase C.

We have isolated and characterized a developmentally regulated gene in Trypanosoma brucei, arbitrarily termed BS2. BS2 mRNA is substantially more abundant in bloodstream-form trypanosomes than in procyclic culture forms. Its nucleotide sequence reveals a single contiguous open-reading frame of 497 codons and is predicted to encode a protein of approximately 55.5 kilodaltons. A search of the NBRF protein data base revealed that within the predicted amino acid sequence are two of the evolutionarily conserved redox sites typified by thioredoxin of bacteria. Of this family of proteins, the recently sequenced rat genes encoding protein-disulfide isomerase (PDI) and form I phosphoinositide-specific phospholipase C (PIPLC) showed homology extending over the length of all three proteins (i.e., between BS2, PDI, and PIPLC). Although this homology includes the acidic C-terminus characteristic of proteins localized to the lumen of the endoplasmic reticulum, the BS2 product is predicted to possess multiple sites for N-linked glycosylation while PDI and PIPLC have none. Possible roles of the BS2 gene product in trypanosome physiology are discussed.

Amino Acid Sequence↗

Synthesis of trypanosome hsp70 mRNA is resistant to disruption of trans-splicing by heat shock.

Synthesis of mRNA in trypanosomes involves an apparent trans-splicing reaction whereby a common 39-nucleotide mini-exon sequence is joined to the protein-coding exon of a mRNA precursor. We have previously shown (Muhich, M. L., and Boothroyd, J. C. (1988) Mol. Cell. Biol. 8, 3837-3846) that the trans-splicing pathway of Trypanosoma brucei is sensitive to disruption by severe heat shock. Here we demonstrate that the synthesis of heat shock protein 70 (hsp 70) mRNA in T. brucei is apparently resistant to the heat-induced disruption of splicing. The 5'-ends of hsp 70 mRNAs are shown to be identical for molecules synthesized at either normal or heat shock temperatures, and in both cases, the 5'-terminal mini-exon sequence is present. These results suggest that T. brucei has evolved a mechanism which directly compensates for the deleterious effects of heat shock on trans-splicing, one which allows for the continued mini-exon-dependent trans-splicing of selected pre-mRNAs.

Animals↗

The major surface antigen, P30, of Toxoplasma gondii is anchored by a glycolipid.

P30, the major surface antigen of the parasitic protozoan Toxoplasma gondii, can be specifically labeled with [3H]palmitic acid and with myo-[2-3H]inositol. The fatty acid label can be released by treatment of P30 with phosphatidylinositol-specific phospholipase C (PI-PLC). Such treatment exposes an immunological "cross-reacting determinant" first described on Trypanosoma brucei variant surface glycoprotein. PI-PLC cleavage of intact parasites metabolically labeled with [35S]methionine results in the release of intact P30 polypeptide in a form which migrates faster in polyacrylamide gel electrophoresis. These results argue that P30 is anchored by a glycolipid. Results from thin layer chromatography analysis of purified [3H] palmitate-labeled P30 treated with PI-PLC, together with susceptibility to mild alkali hydrolysis and to cleavage with phospholipase A2, suggest that the glycolipid anchor of T. gondii P30 includes a 1,2-diacylglycerol moiety.

Amino Acid Sequence↗

Cloning of cDNAs encoding a 28 kilodalton antigen of Toxoplasma gondii.

By screening cDNA libraries in lambda gt11 with antibodies raised against the previously described protective F3G3 antigen of Toxoplasma gondii, and subsequently screening with nucleic acid probes, we have isolated cDNA clones that encode a 28 kDa antigen of T. gondii that is likely one of the two antigenic components of the F3G3 antigen. The gene apparently exists as a single copy in the tachyzoite haploid genome of the three strains of T. gondii examined. Northern blot analyses revealed that the cDNAs hybridize with a major T. gondii RNA species of 1.1 kb. Together the cDNAs encompass 1051 bp of cDNA sequence containing an open reading frame with the capacity to encode a 28 kDa protein. Antibodies that were affinity purified using recombinant fusion proteins produced by two of the clones reacted on protein blots of whole T. gondii lysate with a single antigen having an apparent molecular mass of 28 kDa. Both recombinant fusion proteins reacted with IgG antibodies in sera of mice and humans infected with T. gondii and therefore might be useful for the development of diagnostic assays for T. gondii infection.

Amino Acid Sequence↗

Direct and sensitive detection of a pathogenic protozoan, Toxoplasma gondii, by polymerase chain reaction.

We applied the polymerase chain reaction to detection of the pathogenic protozoan Toxoplasma gondii based on our identification of a 35-fold-repetitive gene (the B1 gene) as a target. Using this procedure, we were able to amplify and detect the DNA of a single organism directly from a crude cell lysate. This level of sensitivity also allowed us to detect the B1 gene from purified DNA samples containing as few as 10 parasites in the presence of 100,000 human leukocytes. This is representative of the maximal cellular infiltration (10(5)/ml) in 1 ml of cerebrospinal fluid obtained from patients with toxoplasmic encephalitis. The B1 gene is present and conserved in all six T. gondii strains tested to date, including two isolates from patients with acquired immunodeficiency syndrome. No signal was detected by using this assay and DNAs from a variety of other organisms, including several which might be found in the central nervous system of an immunocompromised host. This combination of sensitivity and specificity should make detection of the B1 gene based on polymerase chain reaction amplification a very useful method for diagnosis of toxoplasmosis both in immunocompromised hosts and in congenitally infected fetuses.

Animals↗

Molecular analysis of the gene encoding the major surface antigen of Toxoplasma gondii.

The complete sequence of P30, the major surface Ag of the protozoan parasite, Toxoplasma gondii, has been deduced through the cloning and analysis of its gene. Using polyclonal serum specific for P30, we have isolated a P30 cDNA clone from a lambda gt11 cDNA expression library derived from tachyzoites of T. gondii (RH strain). This clone produces a beta-galactosidase fusion protein which reacts with several anti-P30 mAb. In addition, polyclonal anti-serum raised to the fusion protein reacts with purified P30 protein and exclusively with P30 in a whole cell lysate of T. gondii. This cDNA clone was used to isolate near full-length cDNA molecules and a cosmid clone containing the P30 gene. Sequence analysis of the cDNA reveals a single open reading frame with coding capacity for 34.7 kDa of primary translation product (consistent with the apparent Mr of P30 on SDS-acrylamide gels) including a presumptive hydrophobic signal sequence. The P30 primary translation product also has a carboxy-terminal hydrophobic tail which is predictive of a posttranslational cleavage and modification with a glycolipid anchor. We have identified the apparent 5' and 3' ends of the P30 mRNA transcript which is extremely abundant, 1500 nucleotides in length, and polyadenylated. The P30 gene is single copy and contains no introns.

Animals↗

Trypanosome trans-splicing utilizes 2'-5' branches and a corresponding debranching activity.

The 5' ends of trypanosome mRNAs consist of an identical sequence of 39 nucleotides which is derived from a discrete transcript of approximately 140 nucleotides (medRNA). It has been proposed that generation of chimeric mRNAs in trypanosomes occurs by the process of trans-splicing involving medRNA and an acceptor RNA. Part of the basis for this suggestion comes from the ability of HeLa cell extracts (known to contain debranching activity) to catalyze the release of the intron portion of medRNA (minRNA) implying a Y-branched intermediate in the splicing process. Here we provide direct chemical analysis that miniRNA is attached to higher mol. wt RNA molecules by a 2'-5' phosphodiester bond (i.e. as a branched structure). We also demonstrate that trypanosomes have substantial amounts of debranching activity which is similar in nature to that of HeLa cells. These results provide further evidence for trans-splicing in trypanosomes and highlights its similarity to cis-splicing in other eukaryotes.

Animals↗

The alpha- and beta-tubulins of Toxoplasma gondii are encoded by single copy genes containing multiple introns.

We have studied the fundamentals of gene expression in the protozoan parasite Toxoplasma gondii by analyzing, in detail, the genes encoding alpha- and beta-tubulin. Southern analysis and quantitation studies reveal that, unlike in other organisms studied thus far, both these genes are present as single copies in the haploid Toxoplasma genome. Sequencing of these genes indicates that they both contain multiple introns with conserved 5' and 3' splice site signals. We have found that HeLa cell nuclear extracts are able to accurately splice a Toxoplasma pre-mRNA construct. We have mapped, for the alpha-tubulin gene, the exact site of transcription initiation and the approximate site of poly A addition by primer extension and RNase protection assays. Trans-splicing, as demonstrated in the Kinetoplastida, is not involved in the formation of the mature alpha-tubulin transcript in T. gondii.

Amino Acid Sequence↗

The cap of both miniexon-derived RNA and mRNA of trypanosomes is 7-methylguanosine.

Most, if not all, trypanosome mRNAs have the same 35-base sequence at their 5' terminus which is derived from a short RNA (medRNA) probably by the process of trans-splicing. It is of interest, evolutionarily and mechanistically, to determine the chemical structure of the 5' terminus of the precursor (medRNA) and product (mRNA). We demonstrate here that the cap structure of both is most probably 7-methylguanosine in a 5',5' triphosphate linkage, consistent with a precursor/product relationship.

Animals↗

Polycistronic transcripts in trypanosomes and their accumulation during heat shock: evidence for a precursor role in mRNA synthesis.

Maturation of mRNA precursors in trypanosomes involves an apparent trans splicing event in which a 39-nucleotide miniexon sequence, common to all trypanosome mRNAs, is joined to the 5' end of a protein-coding exon. We demonstrate that the processing machinery responsible for the maturation of tubulin mRNA precursors in Trypanosoma brucei can be disrupted by heat shock. This results in an accumulation of polycistronic RNA species and a decrease in the abundance of branched splicing intermediates. At normal temperatures, tubulin polycistronic transcripts were also detected and were shown in pulse-chase experiments to be abundantly synthesized and very rapidly turned over. These results, combined with results of the heat shock experiments, suggest that these polycistronic transcripts are the precursors of the (monocistronic) tubulin mRNAs of trypanosomes.

Animals↗

Precise identification of cleavage sites involved in the unusual processing of trypanosome ribosomal RNA.

The large subunit ribosomal RNA (LSRNA) of Trypanosoma brucei is unusual in being cleaved at multiple sites to yield six stable fragments of RNA. We report here the complete nucleotide sequence of two regions of the ribosomal DNA repeat unit. The first sequence includes all of the processing sites involved in the generation of one of the small LSRNA fragments. The second region encodes the trypanosome 5.8 S RNA. By RNA sequencing and S1 nuclease mapping, we have identified the processing sites involved in the generation of both of these small RNAs. On the basis of predicted secondary structure models, we infer that all the cleavages apparently occur near the junction of single- and double-stranded regions. The sites involved in the novel LSRNA processing show a clear symmetry with respect to a conserved region of ten base-pairs. No such signals are evident for the processing sites that generate the 5.8 S RNA.

Animals↗

An unusually compact ribosomal DNA repeat in the protozoan Giardia lamblia.

The ribosomal RNA (rRNA) genes of the protozoan parasite Giardia lamblia have been analyzed with respect to size, composition and copy number. They are found to be remarkable in several respects. First, the rRNAs themselves are the smallest yet reported for any eukaryotic organism. Second, the genes encoding them are found as an exceptionally small tandemly repeated unit of only 5.4 kilobase-pairs. Third, the genes are extraordinarily G:C rich, even in regions which are highly conserved between all other eukaryotic rRNA genes. Finally, by analogy to other organisms, the 5.8S RNA appears to lack about 15 nucleotides from its 3'-end, a region previously thought to be essential for 5.8S RNA function. We also provide the first estimates of the genomic complexity and total G:C content of this important protozoan pathogen.

Animals↗

Evidence for trans splicing in trypanosomes.

The 5' ends of trypanosome mRNAs consist of an identical sequence of 35 nucleotides. This "mini-exon" sequence is derived from the 5' end of a 137 nucleotide RNA (medRNA). The remainder of each mRNA is derived from a protein-coding exon that is not linked to the mini-exon. We propose that medRNA is spliced in trans to de-novo-initiated transcripts of protein-coding genes. This trans splicing model predicts that the downstream portion of medRNA will be part of a branched structure and then be released as a free product (minRNA). We demonstrate that significant levels of minRNA exist in trypanosome RNA. Furthermore, minRNA can be released from high molecular weight RNA by a HeLa cell S100 "debranching" extract. We conclude that trans splicing is the physiological process by which mature mRNA molecules are synthesized in trypanosomes.

Animals↗

The 5'-limit of transposition and upstream barren region of a trypanosome VSG gene: tandem 76 base-pair repeats flanking (TAA)90.

We have cloned and sequenced a portion of the region upstream of an expressed VSG gene of Trypanosoma brucei. This "expression-linked copy" arose through the duplication and transposition of a silent, "basic copy" of the gene to an expression site. Comparison of the sequences surrounding the 5'-end of the transposed segment in the two loci indicates the 5'-limit of transposition lies within the first (3'-most) of three repeated segments found at this position in the basic copy locus. These highly conserved repeat segments which average 76 base-pairs in length are also found tandemly repeated upstream of the transposed segment in the expression site. In this latter site, however, they are more numerous (at least 17 repeats) and they are interrupted, within the middle of one repeat, by a 270 base-pair region consisting of (TAA)90. The possible roles of these unusual sequences in transposition and in a model proposing discontinuous transcription of VSG genes are discussed.

Animals↗

Comparison of the amino acid sequence of the major immunogen from three serotypes of foot and mouth disease virus.

Cloned cDNA molecules from three serotypes of FMDV have been sequenced around the VP1-coding region. The predicted amino acid sequences for VP1 were compared with the published sequences and variable regions identified. The amino acid sequences were also analysed for hydrophilic regions. Two of the variable regions, numbered 129-160 and 193-204 overlapped hydrophilic regions, and were therefore identified as potentially immunogenic. These regions overlap regions shown by others to be immunogenic.

Amino Acid Sequence↗