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Biomedical subjects

J Ray

Publications and source records attributed to J Ray.

At least 109 records · Page 6Linked to original sources

Personality profile and affective state of patients with inflammatory bowel disease.

The Eysenck Personality Inventory and Hospital Anxiety and Depression scale were administered to 80 patients undergoing medical treatment for long standing inflammatory bowel disease: 22 patients were studied before the diagnosis was established and 40 patients with diabetes mellitus served as controls. High neuroticism and introversion scores were more prevalent in the patients with inflammatory bowel disease than controls (p less than 0.05) and these characteristics were as prominent in patients before diagnosis as in established cases. Introversion scores increased with the duration of disease (r = 0.51). Depression was uncommon, occurring only in patients with active chronic disease. Patients believed there was a close link between personality, stress and disease activity. Fifty six of the patients recognised factors that initiated the disease and in 42 this was thought to be a stressful life event or a 'nervous personality'.

Affect

Characterization and histologic localization of human growth hormone-variant gene expression in the placenta.

The human growth hormone-variant (hGH-V) gene is one of five highly similar growth hormone-related genes clustered on the short arm of chromosome 17. Although the pattern of expression of the adjacent normal growth hormone (hGH-N) and chorionic somatomammotropin (hCS) genes in this cluster are well characterized, the expression of the hGH-V gene remains to be defined. In previous studies, we have demonstrated that the hGH-V gene is transcribed in the term placenta and expressed as two alternatively spliced mRNAs: one is predicted to encode a 22-kD hormone (hGH-V), the other retains intron 4 in its sequence resulting in the predicted synthesis of a novel 26-kD hGH-V-related protein (hGH-V2). In the present report, we document the expression of both of these hGH-V mRNA species in the villi of the term placenta, demonstrate an increase in their concentrations during gestation, and directly sublocalize hGH-V gene expression to the syncytiotrophoblastic epithelium of the term placenta by in situ cDNA-mRNA histohybridization. The demonstrated similarity in the developmental and tissue-specific expression of the hGH-V gene with that of the related hCS gene suggests that these two genes may share common regulatory elements.

Animals

Glycosylated human growth hormone variant.

The human growth hormone variant (hGH-V) gene is expressed by the syncytiotrophoblastic layer of the human placenta in two forms: hGH-V mRNA encoding a 22 kD protein, and hGH-V2 mRNA which retains intron 4 and is expected to encode a 26 kD protein. There is a predicted N-linked glycosylation site in hGH-V at amino acid 140 that is absent in both hGH-V2 and in the highly homologous normal pituitary GH (hGH-N). Cell lines transfected with the hGH-N gene secrete 22 kD GH and the 20 kD product of an alternatively spliced mRNA, while cell lines transfected with the hGH-V gene secrete three proteins of 22, 24, and 26 kD. To determine whether any of these hGH-V isoforms are glycosylated, the cell lines were grown in the absence and presence of tunicamycin. In addition, conditioned medium from metabolically labelled hGH-V transfected cells was separately digested with peptide:N-glycosidase F and endoglycosidase H. The 26 and 24 kD bands were both absent from the media after tunicamycin treatment and were both sensitive to peptide:N-glycosidase F treatment. Endoglycosidase H digestion resulted in the selective loss of the 24 kD band. These results indicate that hGH-V is partially modified posttranslationally by N-linked glycosylation in a fibroblastic cell line.

Animals

Water-induced precipitation of cholesterol dissolved in organic solvents in the absence and presence of surfactants and salts.

The precipitation of cholesterol dissolved in organic solvents, viz. methanol, ethanol, n-propanol, isopropanol, acetone and 1,4-dioxane, by the addition of water has been studied. The effects of the solvents towards the precipitation follow the order: methanol greater than ethanol greater than acetone greater than dioxane greater than n-propanol greater than iso-propanol, the solvent dioxane however exhibits a change in the order at higher concentration. Additives like Triton X-100, sodium cholate, sodium deoxycholate, sodium dehydro cholate, sodium salicylate and sodium chloride have some protective action against precipitation, the maximum protection being that of Triton X-100. The additives have shown better protective action in propanols and dioxane than in methanol, ethanol and acetone. Analysis of solvent composition and dielectric constant has revealed specific solvent effects on the water-induced precipitation of cholesterol. Thermodynamic analysis of the precipitation phenomenon and the unique role of solvent structure on cholesterol precipitation has been discussed.

Bile Acids and Salts

Two distinct species of human growth hormone-variant mRNA in the human placenta predict the expression of novel growth hormone proteins.

We have sought direct evidence for the in vivo expression of the human growth hormone-variant (hGH-V) gene by screening a placental cDNA library with a hGH-V-specific oligonucleotide. Nine independent hGH-V cDNA clones were isolated and analyzed, and three distinct species were detected. Five of these hGH-V cDNAs represent mRNAs spliced and processed in a pattern analogous to that of the highly homologous human growth hormone and human chorionic somatomammotropin gene transcripts. Each of the remaining four hGH-V cDNAs contains an additional segment of 253 nucleotides corresponding in position and sequence to the fourth intron of the hGH-V gene. In addition, one of the mRNAs in this second group uses an alternative downstream polyadenylation site. The alternatively spliced hGH-V mRNA, which we refer to as hGH-V2 mRNA, constitutes approximately 30% of the hGH-V transcripts both in the human term placenta and in a stable mouse fibroblast line expressing the transfected hGH-V gene. The placental expression of the hGH-V gene is specific to villous tissue. The hGH-V2 mRNA is predicted to encode a protein which substitutes the 65 carboxyl-terminal amino acids of hGH-V with a new 104-residue carboxyl terminus resulting in significant divergence in their relative physical properties. The alternative splicing of the hGH-V transcripts to hGH-V and hGH-V2 mRNAs expands the potential complexity of the hGH-V gene's role in normal placental function.

Amino Acid Sequence

Identification and sequence determination of a cDNA clone for tomato pectin esterase.

Cell wall softening during tomato fruit ripening is brought about through the action of a number of pectolytic enzymes. We have reported previously the cloning and characterisation of the cDNA for the major cell wall softening (degrading) enzyme, polygalacturonase [Grierson, D., Tucker, G. A., Keen, J., Ray, J., Bird, C. R. and Schuch, W. (1986) Nucleic Acids Res. 14, 8595-8603]. We have now isolated a cDNA clone for tomato pectin esterase, an enzyme also implicated in cell wall softening. Here we report the structure of this cDNA and compare it with the structure of pectin esterase derived from amino acid sequence experiments [Markovic, O. and Jornvall, H. (1986) Eur. J. Biochem. 158, 455-462]. We have used the pectin esterase cDNA clone to analyse pectin esterase gene expression during development and ripening of normal and mutant fruit.

Amino Acid Sequence

Human growth hormone gene and the highly homologous growth hormone variant gene display different splicing patterns.

Stably transfected cell lines containing the normal human growth hormone (hGH-N) and human growth hormone-variant (hGH-V) genes have been established in order to study the expression of these two highly homologous genes. Each gene was inserted into a bovine papillomavirus shuttle vector under the transcriptional control of the mouse metallothionein gene promoter and the resultant recombinants were transfected into mouse C127 cells. The transfected cells containing the hGH-N gene secrete two hGH proteins, 91% migrating at 22 kD and 9% migrating at 20 kD, the same relative proportions synthesized in vivo by the human pituitary. S1 nuclease analysis of mRNA from these cells confirms that 20 kD hGH is encoded by an alternatively spliced product of the primary hGH-N gene transcript in which the normal exon 3 splice-acceptor site is bypassed for a secondary site 15 codons within exon 3. Although the hGH-V gene is identical to the hGH-N gene for at least 15 nucleotides on either side of the normal and alternative exon 3 AG splice-acceptor sites, hGH-V synthesizes only a 22-kD protein. Reciprocal exchange of exon 3 and its flanking intron sequences between the hGH-N gene and the hGH-V gene, eliminates the synthesis of the 20-kD protein in both resultant chimeric genes. These results directly demonstrate that both the major 22-kD and the minor 20-kD forms of pituitary hGH are encoded by the alternative splicing products of a single hGH-N gene transcript. This alternative splicing is neither species nor tissue-specific and appears to be regulated by at least two separate regions remote from the AG splice-acceptor site.

Animals

Structure and expression of an ethylene-related mRNA from tomato.

Messenger RNAs homologous to a cDNA clone (pTOM 13) derived from a ripe-tomato-specific cDNA library are expressed during tomato fruit ripening and after the wounding of leaf and green fruit material. Both responses involve the synthesis of the hormone ethylene. Accumulation of the pTOM 13--homologous RNA during ripening is rapid and sustained, and reaches its maximum level in orange fruit. Following mechanical wounding of tomato leaves a pTOM 13--homologous RNA shows rapid induction within 30 minutes, which occurs before maximal ethylene evolution (2-3 h). This RNA also accumulates following the wounding of green tomato fruit. Northern blot analysis of poly(A)+ RNA indicates that the length of the mRNA is about 1400 nucleotides. Nucleotide sequence analysis showed the cDNA insert to contain the complete coding region of the pTOM 13 protein (33.5 kD) and an unusual 5' structure of ten dT-nucleotides. Hybridisation of the pTOM 13 cDNA insert to Southern blots of tomato DNA indicates the presence of only a small number of homologous sequences in the tomato genome.

Amino Acid Sequence

Characterization of in vitro transcription and transcriptional products of measles virus.

Ribonucleoprotein complexes isolated from measles virus-infected HeLa cells contained an RNA-dependent RNA polymerase activity that catalyzed the incorporation of ribonucleotides into ribonucleic acid. The ribonucleoprotein complexes were composed of measles virus nucleoprotein, phosphoprotein, and a large protein, as well as viral RNA. The kinetics of RNA synthesis at different temperatures, time intervals, and protein, ribonucleotide, and mono- and divalent cation concentrations were analyzed. Enzyme activity was maximum at 4 h at 25 degrees C in the presence of 100 mM Na+-2.5 mM Mg2+-1 mM ribonucleotides. Actinomycin D and alpha-amanitin had no effect on the enzyme activity. Addition of cytoplasmic extracts from uninfected HeLa cells to the reaction mixture did not increase the incorporation of ribonucleotides into RNA. The in vitro synthesized RNAs were characterize by slot blot analysis and quantitated by densitometer scanning. All mRNAs coding for the structural proteins of measles virus were synthesized. Nucleoprotein RNA was the most abundant species made, followed by phosphoprotein, hemagglutinin, fusion protein, matrix protein, and large-protein RNAs. The system described here resulted in the first efficient transcription of measles virus RNA and analysis of products.

Amanitins

Sequencing and identification of a cDNA clone for tomato polygalacturonase.

The 2a isoenzyme of tomato polygalacturonase was purified from ripe fruit and characterised. The N-terminal amino acid sequence of the protein was determined in order to identify polygalacturonase cDNA clones. The nucleotide sequence of a ripening-related cDNA (pTOM 6) was determined and found to encode the N-terminal sequence of mature polygalacturonase 2a. The complete open reading frame encodes a polypeptide of molecular weight 50,051, including a putative pre-sequence of 71 amino acids.

Amino Acid Sequence

Synthesis of growth hormone-prolactin chimeric proteins and processing mutants by the exchange and deletion of genomic exons.

To test the feasibility of synthesizing recombinant peptide hormones by exon deletion and exchange, we have constructed and expressed hybrid human growth hormone (hGH)-rat prolactin (rPrl) genes in which the third and fourth exons of the hGH gene are deleted and separately replaced by the corresponding exons of the rPrl gene. These exon deletion and exon exchange genes were inserted into an SV40 viral vector, packaged, and expressed following acute viral infection of monkey kidney cells. Expression of the hGH gene lacking the third exon (hGHd3) was not detectable at the level of protein production. However, replacement of the deleted third exon in the hGHd3 gene with exon 3 of the rPrl gene (hGHP3) resulted in the efficient synthesis of a secreted chimeric protein. When the fourth exon of the hGH gene was deleted (hGHd4), the encoded protein was found only in the cytosol despite signal sequence processing. Replacement of the deleted fourth exon in this hGHd4 gene with exon 4 of rPrl resulted in the synthesis and secretion of both a chimeric protein (hGHP4) as well as a larger protein corresponding in size to prehGHP4. These results suggest that exon exchange among distantly related genes in the GH family may be used to produce high levels of chimeric GH-related proteins, and regions internal to the hGH protein may be critical in establishing normal protein processing and secretion.

Chimera

Allosteric sensitivity in hemoglobin at the alpha-subunit N-terminus studied by hydrogen exchange.

Allosteric structure change in human hemoglobin was studied by hydrogen-tritium-exchange methods. The functional labeling method used takes advantage of the change in H-exchange rate at allosterically involved sites to selectively label, with tritium, H-exchange sites that are fast in one protein state and slow in another. The position of the labeled sites can then be located by the medium-resolution fragmentation-separation method. These methods reveal 5 allosterically sensitive, H-bonded, peptide NH's within the first 12 residues of the alpha chain. All five exchange with solvent protons at similar rates in deoxyhemoglobin (T form), and all shift to a new rate, about 30-fold faster, in the liganded protein (R) form. This indicates a decrease in structural stability at the alpha-chain N-terminus in going from the T to the R form, consistent with the loss of stabilizing interactions in that segment. The results indicate a loss of perhaps 2 kcal/mol in stabilization free energy and thus document a significant role for changes at the alpha-chain N-terminus in the allosteric transition.

Allosteric Regulation

Expression and site-specific mutagenesis of the poliovirus 3C protease in Escherichia coli.

We have engineered a segment of the poliovirus genome (nucleotides 5438-6061) that encodes the 183 amino acid residues of the 3C region and 25 residues of the 3D region of the viral polyprotein into an Escherichia coli expression vector. The 3C region is a virus-specific protease, which, when expressed in E. coli, is shown to be active and autocatalytic. In our system, three poliovirus-specific proteins are produced: a precursor polyprotein (3C-3D), an internal initiation product, and the mature protease (3C). Mutants in the 3C region have been constructed by oligonucleotide-directed mutagenesis and their effect on the proteolytic activity has been assayed by the in vivo production of the mature protease. The mutation of highly conserved residues (cysteine-47 or histidine-161) produced an inactive enzyme, while the mutation of a nonconserved residue (cysteine-153) had a negligible effect on the proteolytic activity.

Cloning, Molecular

Main and interaction effects of metallic toxins on classroom behavior.

This study investigated the relationships of metal levels and metal combinations to children's classroom behavior. Hair-metal concentrations of lead, arsenic, mercury, cadmium, and aluminum were determined in 80 randomly selected elementary-age children, who were also rated by their classroom teacher on the Walker Problem Behavior Identification Checklist (WPBIC). Parents were interviewed to control for confounding variables that may have affected behavioral development. Regression analysis indicated that the set of metals was significantly related to increased scores on four of the five WPBIC subscales and on the total scale, with lead being a major contributor to four of the six dependent measures. Metal combinations were significantly related to increased scores on the WPBIC subscales measuring acting-out, disturbed peer relations, and immaturity, and on the total scale. A continuing reexamination of metal poisoning concentrations is needed because metal levels and metal combinations previously thought harmless may be associated with nonadaptive classroom behavior.

Aluminum