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Cloning and characterization of a species-specific repetitive DNA sequence from Onchocerca armillata.

Two clones, pOA1 and pOA5, have been isolated from a genomic DNA library prepared from pools of Onchocerca armillata adults in the plasmid vector pUC12. In dot-blot hybridisations, these two clones do not cross-hybridise significantly with total genomic DNA from O. volvulus, O. gutturosa, O. ochengi, O. gibsoni, O. lienalis, bovine, human, Culicoides nubeculosus, Simulium species or Brugia pahangi, but do hybridise with as little as 100 pg of DNA from two separate geographic isolates of O. armillata. The sequence of pOA1 and pOA5 has been determined and found to contain a repetitive DNA sequence 147 bp in length. These clones can be used as specific and sensitive DNA probes for the identification of O. armillata capable of identifying a single L3 larva.

Animals↗

Cloning of a polymorphic DNA fragment from the genome of Leishmania donovani.

Recombinant DNA clones, containing highly repetitive DNA sequences, have been isolated from a Leishmania donovani genomic DNA library prepared in the replacement vector lambda gt.WES.lambda B. Two clones, probably telomeric in location, have been characterised and show a restriction fragment size polymorphism. Evidence is presented which suggests that L. donovani is diploid for this cloned genomic locus.

Animals↗

Cloning and characterization of an Onchocerca volvulus specific DNA sequence.

A cloned sequence, pOvs134, was isolated from a genomic library prepared from Onchocerca volvulus of savanna origin in the plasmid pUC9. pOvs134 hybridizes to all the geographic isolates of O. volvulus tested from both the New and the Old World, but not to the species Onchocerca gibsoni, Onchocerca gutturosa, Onchocerca ochengi, Onchocerca cervicalis, the filarial parasites Brugia malayi, or Dirofilaria immitis, nor to human or simuliid DNA. As little as 250 pg of DNA can be detected on a dot blot hybridization, suggesting that pOvs134 is sensitive enough to detect a single third stage larva. DNA sequence analysis of the inserted DNA of pOvs134 revealed that it consisted of twelve examples of a 149-bp repeat. The sequence of this repeat is strikingly similar to that of two O. volvulus genomic clones previously described, one of which has been reported to be specific for forest form O. volvulus, and one of which hybridizes to genomic DNA of several species of Onchocerca. These results suggest that the 149-bp repeat sequence is highly repeated in the genome of O. volvulus, and that variants of this repeat with different specificities exist.

Animals↗

Characterization of cDNA clones for the alpha subunit of pyruvate dehydrogenase from Ascaris suum.

The pyruvate dehydrogenase complex of the adult parasitic nematode Ascaris suum functions in the reducing environment present in their anaerobic mitochondria. These organelles use fumarate and enoyl CoAs as terminal electron acceptors instead of oxygen. A lambda gt11 cDNA library was constructed from RNA isolated from adult ascarid muscle. Partial clones for the pyruvate dehydrogenase alpha subunit were isolated by screening the lambda gt11 library with a specific antiserum. Full-length clones (type I) were identified in a cDNA library prepared from RNA isolated from early embryos. During the hybridization screening, a second type of cDNA clone (type II) was identified. The nucleotide sequences of both clones are presented. The predicted amino acid sequences of the mature proteins are 91% identical to one another and about 55% identical to the predicted sequences of the alpha subunit of human pyruvate dehydrogenase. Northern blots were used to examine the expression of both mRNAs in various larval stages and in tissues of the adult. Type I sequences are found mainly in adult muscle. Type II sequences are abundant in third-stage larvae as well as in adult muscle.

Amino Acid Sequence↗

Structure and expression of a post-transcriptionally regulated malaria gene encoding a surface protein from the sexual stages of Plasmodium berghei.

The sexual stage-specific protein Pbs21 of the rodent malaria parasite Plasmodium berghei, expressed on the surface of zygotes and ookinetes, has been shown to induce an effective and long-lasting transmission blocking immunity. The gene encoding Pbs21 was cloned by screening a cDNA library prepared from enriched zygotes and ookinetes using the monoclonal antibody 13.1.15, which is capable of blocking subsequent parasite sexual development in the mosquito vector. The Pbs21 gene encoded a protein of 213 amino acids which contained a putative amino-terminal signal sequence and a putative carboxy-terminal hydrophobic membrane anchor. The amino-acid sequence was characterised by a large number of cysteine residues which were organized into 4 epidermal growth factor-like domains. The spacing of the cysteine residues was highly conserved when compared to the 25-kDa ookinete proteins of Plasmodium falciparum (Pfs25), Plasmodium reichenowi (Prs25) and Plasmodium gallinaceum (Pgs25) which were approximately 45%, 45% and 40% homologous to Pbs21 respectively. The gene is located on chromosome 5 and cross-hybridizes to a similarly defined gene unit in the other rodent malaria species Plasmodium chabaudi, Plasmodium vinckei and Plasmodium yoelii. The gene is internally disposed and not in the subtelomeric region of chromosome 5. The gene is transcribed in a stage-specific manner giving rise to an abundant 1.5-kb transcript. This mRNA is synthesised in the precursor cells to female gametes (gametocytes) however the protein is observed only after activation of the gametes, suggesting that translation of the mRNA is controlled by a post-transcriptional process. The Pbs21 gene and the P. berghei parasite system provide an excellent vehicle for the study of stage-specific transcriptional and post-transcriptional control in malaria.

Amino Acid Sequence↗

A cloned gene of Cryptosporidium parvum encodes neutralization-sensitive epitopes.

Two mAb, C6B6 and 7D10, each significantly reduced infection of mice by Cryptosporidium parvum and reacted with a 23-kDa glycoprotein (p23) of geographically disperse C. parvum isolates. The antibodies were used to identify plaques in a cDNA library prepared from C. parvum sporozoite mRNA. cDNA insert sequences from positive plaques were determined and used to isolate additional clones encoding p23 coding sequences. A consensus open reading frame of 333 base pairs, encoding 111 amino acids, was identified in this collection of cDNAs. The predicted amino acid sequence contained one N-glycosylation site, but lacked hydrophobic membrane spanning regions. Epitope mapping revealed that mAb 7D10 defines the linear epitope QDKPAD which occurs twice in the C terminal region of the peptide encoded by the ORF. This same C terminal peptide region contains a non-linear epitope bound by mAb C6B6. Serum from mice immunized with synthetic C terminal peptide reacted with sporozoite p23. The occurrence of neutralization-sensitive epitopes encoded by defined regions of the C. parvum genome suggests that recombinant proteins or synthetic peptides containing these epitopes may prove useful for inducing immune responses that diminish infection.

Amino Acid Sequence↗

Cloning in a cosmid vector of complete 37 kb and 25 kb ribosomal DNA repeat units from the chicken.

DNA fragments of up to 40 kb containing rRNA-coding sequences have been isolated from a chicken liver DNA library prepared in the cosmid pHC79. Characterization of the cloned DNA by R-loop and restriction mapping has shown that there are two size classes of repeat unit, one of 37 kb and one of 25 kb, the larger of which is a family of units which vary slightly in size. These two classes were shown to be present in the DNA of a single chicken. The size of the internal transcribed spacer in the chicken was measured to be 4.4 kb from analysis of R-loops and heteroduplexes between chicken and Xenopus laevis rDNAs. No introns were observed in either the 18 S or the 28 S coding sequences. The number of copies of the chicken rDNA unit was measured by titration against the cloned sequences to be 202 +/- 51 per haploid genome.

Animals↗

Characterization of a cDNA clone encoding the complete amino acid sequence of cotton isocitrate lyase.

A cDNA clone encoding the glyoxysomal enzyme isocitrate lyase (ICL) (EC 4.1.3.1) was isolated from a library prepared from cotton (Gossypium hirsutum L.) cotyledon poly(A)+ RNA. The clone is 1893 basepairs (bp) in length and contains a 1728 bp open reading frame encoding a polypeptide of 576 residues (Mr = 64,741). The deduced amino acid sequence of cotton ICL is 85.2%, 90.3% and 41.1% identical to ICL from rapeseed, castor bean and E. coli, respectively. Cotton ICL has a C-terminal tripeptide of A-R-M which is a putative trafficking signal for peroxisome (glyoxysome) proteins.

Amino Acid Sequence↗

A novel creatine kinase cDNA whose transcript shows enhanced testicular expression.

A cDNA (TCK1) encoding a creatine kinase (CK) subunit has been isolated from a cDNA library prepared from rainbow trout testis poly(A) + RNA. The predicted amino acid sequence for this CK subunit showed a novel amino-terminal coding region. Northern blot analyses demonstrated preferential expression of this CK subunit in testis relative to other CK containing organs. Southern blot analysis suggested a single copy number for this CK gene.

Amino Acid Sequence↗

Analysis of cDNAs encoding the two subunits of crotoxin, a phospholipase A2 neurotoxin from rattlesnake venom: the acidic non enzymatic subunit derives from a phospholipase A2-like precursor.

We report the sequences of three cDNAs encoding the two subunits (CA and CB) of crotoxin, a neurotoxic phospholipase A2 from the venom of the South-American rattlesnake Crotalus durissus terrificus. CB is a basic and toxic phospholipase A2 and CA is an acidic, non toxic and non enzymatic three chain containing protein which enhances the lethal potency of CB. Two cDNAs encoding precursors of CB isoforms have been isolated from a cDNA library prepared from one venom gland. Both precursors are made of the same 16 residues signal peptide followed by a polypeptide of 122 amino acid residues. The two mature sequences differ from each other at eight positions and are in good agreement with the previous polypeptide sequence reported for CB. In the case of CA, the cDNA encodes a signal peptide identical to those found in CB precursors, followed by a polypeptide of 122 amino acids clearly homologous to phospholipases A2 and including three regions which correspond to the three chains of mature CA. This demonstrates that CA is generated from a phospholipase A2-like precursor, called pro-CA, by the removal of three peptides, leaving unchanged the molecule core cross-linked by disulfide bridges. The 5'-untranslated tracts of cDNAs encoding CA and CB are nearly identical and the 3'-untranslated tracts are very similar, suggesting that the mRNAs encoding the two crotoxin subunits may result from the alternative splicing of a single gene or from the existence of a recent gene conversion. Data have been analysed in light of recent results on other phospholipases A2 from different origins.

Amino Acid Sequence↗

Nucleotide sequence of a cDNA for the alpha subunit of human mitochondrial ATP synthase.

A full length cDNA clone of the alpha subunit of mitochondrial ATP synthase (EC 3.6.1.34) has been isolated from a cDNA library prepared from LX-1 human tumor cells in the lambda-Zap vector. The clone is 1883 base pairs (bp) in length and contains a 1659 bp open reading frame encoding a polypeptide of 553 residues. The deduced amino acid sequence is highly homologous to ATP synthase from several other species.

Amino Acid Sequence↗

Characterizations of sea urchin fibrillar collagen and its cDNA clone.

Collagens were isolated from the adult test of the sea urchin species, Hemicentrotus pulcherrimus and Strongylocentrotus purpuratus, and their molecular properties were compared with those of Asthenosoma ijimai collagen. Collagens from H. pulcherrimus and S. purpuratus comprised two major alpha-chains (alpha 120 and alpha 90) and a minor chain (alpha 140), while collagen from A. ijimai contained four alpha-chains (alpha 1, alpha 2, alpha 3 and alpha 4). Based on their molecular and immunological properties, the alpha 90 chain of H. pulcherrimus and S. purpuratus, and the alpha 2 and alpha 4 chains of A. ijimai are grouped together, while the alpha 120 and alpha 140 chains of H. pulcherrimus and S. purpuratus, and the alpha 1 and alpha 3 chains of A. ijimai are classified into another group. It is likely that collagen molecules of sea urchins are heterotrimers composed of these two types of alpha-chains. A cDNA of collagen was cloned from the cDNA library prepared from mRNA of H. pulcherrimus test and denoted as Hpcol1. This clone contained sequences for uninterrupted triple helical domain (378 amino acids), carboxyl telopeptide (28 amino acids) and carboxyl propeptide (225 amino acids). This structure is characteristic for fibril-forming collagens and was shown to encode alpha 120 and alpha 140 chains of H. pulcherrimus collagen. Hpcol1-mRNA was expressed in embryos as early as the prism stage.

Amino Acid Sequence↗

Expression of calmodulin mRNA in rat olfactory neuroepithelium.

A calmodulin (CaM) cDNA was isolated by differential hybridization screening of a lambda gt10 library prepared from rat olfactory mucosa. This cDNA fragment, containing most of the open reading frame of the rat CaMI gene, was subcloned and used to characterize steady-state expression of CaM mRNA in rat olfactory neuroepithelium and bulb. Within the bulb mitral cells are the primary neuronal population expressing CaM mRNA. The major CaM mRNA expressed in the olfactory mucosa is 1.7 kb with smaller contributions from mRNAs of 4.0 and 1.4 kb. CaM mRNA was primarily associated with the olfactory neurons and, despite the cellular complexity of the tissue and the known involvement of CaM in diverse cellular processes, was only minimally evident in sustentacular cells, gland cells or respiratory epithelium. Following bulbectomy CaM mRNA declines in the olfactory neuroepithelium as does olfactory marker protein (OMP) mRNA. In contrast to the latter, CaM mRNA makes a partial recovery by one month after surgery. These results, coupled with those from in situ hybridization, indicate that CaM mRNA is expressed in both mature and immature olfactory neurons. The program regulating CaM gene expression in olfactory neurons is distinct from those controlling expression of B50/GAP43 in immature, or OMP in mature, neurons respectively.

Animals↗

A complementary DNA for human choline acetyltransferase induces two forms of enzyme with different molecular weights in cultured cells.

Complementary DNA (cDNA) clones containing the entire coding region of human choline acetyltransferase (ChAT) were isolated from cDNA libraries prepared from the autopsied spinal cord. In the human cDNA, the ATG codon assigned to the putative initiation codon for pig, rat and mouse ChAT cDNAs was replaced by ACG. The human cDNA contained an in-frame ATG codon 324 nucleotides upstream of the ACG codon. Therefore, human ChAT cDNA should code for a 748 amino acid polypeptide of 82.6 kDa. This deduced molecular weight was larger than that of ChAT protein purified from the human brain and placenta (64-70 kDa). The human ChAT cDNA containing the entire coding region was ligated to an expression vector and introduced into African green monkey kidney (COS) cells and Chinese hamster ovary (CHO) cells. The cells expressed high ChAT activity and produced two protein bands immunostained with an antibody to monkey ChAT. The molecular weight of the proteins was estimated to be approximately 70 and 80 kDa by polyacrylamide-SDS gel electrophoresis. When partial cDNAs that lacked the first ATG but contained the replaced ACG codon were introduced into COS cells, the cells expressed moderate ChAT activity and an immunoreactive protein band of 70 kDa. These results indicate that translation of human ChAT mRNA starts at two sites and produces two enzyme proteins with different molecular weights. It might be that the larger form of ChAT molecule is an enzyme precursor for processing or that the N-terminal extrapeptide is needed for subcellular localization of the enzyme.

Amino Acid Sequence↗

The structure of cDNA clones encoding the aromatase P-450 isolated from a rat Leydig cell tumor line demonstrates differential processing of aromatase mRNA in rat ovary and a neoplastic cell line.

The conversion of androgens to estrogens is catalyzed by a complex of enzymes that includes a specific cytochrome P-450 aromatase (P-450arom). In this paper we describe the high level expression of aromatase activity in the rat Leydig cell tumor line, R2C. We also report the isolation of cDNA clones encoding the rat aromatase P-450arom from a cDNA library prepared from this cell line. Analysis of these cDNA clones predicts a protein sequence with a high degree of sequence conservation when compared to the chicken and human P-450arom enzymes. Notably, four of the cDNA clones were found to lack the last coding exon that contains the heme-binding domain, a structural feature essential for aromatase activity. These clones were found to contain instead a segment of genomic DNA derived from an unspliced intron. Northern analysis using a fragment of the coding region of the rat P-450arom cDNA as probe revealed that three species of P-450arom mRNa are expressed in rat ovary that are similar to those identified in RNA samples prepared from the rat R2C cell line. Analysis of the same samples of RNA using a probe derived from the 3' terminal intron segment of the rat aromatase cDNA clones that lack the heme-binding domain indicates that two of the species of aromatase mRNA transcripts present in both rat ovary and R2C cell lack the heme-binding domain and thus must encode a nonfunctional aromatase protein. These findings have important implications for the measurement of aromatase mRNA and appear to explain why three sizes of rat P-450arom mRNA exist on Northern analysis and why previous studies failed to demonstrate a clear relationship between aromatase mRNA, protein, and enzymatic activity in the rat ovary.

Amino Acid Sequence↗

Cloning and in vivo expression of bovine growth hormone receptor mRNA.

A cDNA for the bovine growth hormone (bGH) receptor has been cloned out of a cDNA library prepared from liver of a pregnant Holstein heifer. The cDNA clone hybridizes to a single 4.5 kb mRNA species and shares a high degree of sequence homology with growth hormone receptors cloned from other species. Utilizing the bGH receptor cDNA as a probe, a relatively high level of bGH-receptor mRNA was detected in bovine liver. In comparison to liver values, lower concentrations of bGH-receptor mRNA were detected in bovine kidney, anterior pituitary, and mammary gland. Because specific binding sites for bGH have not been convincingly demonstrated in isolated cell membranes from whole bovine mammary tissue, mammary tissue from two pregnant heifers (separate experiments) was separated into fractions enriched for epithelium, stroma, and blood components. These fractions were then probed for growth hormone receptor mRNA using solution hybridization-nuclease protection assays performed on isolated RNA. The assay results indicated that a low level of bGH-receptor mRNA is relatively evenly distributed throughout the mammary tissues of the two cows studied. In contrast, experiments using a probe to bovine insulin-like growth factor-I (IGF-I) indicate that the IGF-I mRNA is localized in the stromal/blood component of the mammary gland. These data suggest a possible paracrine mechanism for bGH action in the mammary gland.

Amino Acid Sequence↗

A new approach for molecular cloning in cyanobacteria: cloning of an Anacystis nidulans met gene using a Tn901-induced mutant.

A new strategy for molecular cloning in the cyanobacterium Anacystis nidulans R-2 is described. This strategy involved the use of a transposon and was developed for the cloning of a gene encoding methionine biosynthesis. A met::Tn901 mutant was isolated. Chromosomal DNA fragments were cloned in the Escherichia coli plasmid vector pACYC184. A recombinant plasmid carrying the inactivated met::Tn901 gene was selected after transformation to E. coli. The cloned met::Tn901 DNA fragment was used as a probe to select the corresponding A. nidulans R-2 wild-type met gene from a gene library prepared in E. coli, using the newly constructed shuttle cosmid vector pPUC29. When transformed into A. nidulans Met- mutants, this cloned gene allowed the mutants to grow prototrophically.

Cloning, Molecular↗

Cloning of human adenosine deaminase cDNA and expression in mouse cells.

A previously isolated partial cDNA sequence encoding human adenosine deaminase (ADA) was used to probe a cDNA library prepared from human cultured cell mRNA. Clones containing a combined overlapping length of 1462 bp were isolated and sequenced. One of these was found to include the entire ADA coding region. An open reading frame consisting of 363 codons was identified, predicting a polypeptide of Mr 40762. A mammalian expression plasmid was constructed, positioning the ADA coding sequence to be under transcriptional control of the mouse metallothionein promoter. Transfection of cultured mouse L-cells with this plasmid resulted in the acute expression of human ADA enzymatic activity, as assayed by isoelectric focusing.

Adenosine Deaminase↗