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Biomedical subjects

T J Higgins

Publications and source records attributed to T J Higgins.

At least 37 records · Page 2Linked to original sources

RNAs 4A and 5 are present in tomato aspermy virus and both subgroups of cucumber mosaic virus.

Primer extension analysis was used to determine the presence of RNAs 4A and 5 in tomato aspermy virus (TAV) and both subgroups of cucumber mosaic virus (CMV). RNAs 4A and 5 were detected in TAV and all CMV strains (representative of both subgroups) that were analysed, except for one subgroup I CMV strain which lacked detectable RNA 5. In subgroup II CMV strains the RNA 5 population was found to consist of two sequence variants. Comparison of the RNA 5 sequences from TAV and CMV indicated that TAV and subgroup II CMV RNA 5 share a much greater degree of sequence similarity than either has with subgroup I RNA 5. RNA 4A and the encoded 2b protein appear to be unique to the cucumovirus genus of the tripartite viruses, which share an otherwise common genome structure, and may have played a role in the evolutionary origin of this genus.

Cucumis sativus↗

Accumulation of a sulphur-rich seed albumin from sunflower in the leaves of transgenic subterranean clover (Trifolium subterraneum L.).

A gene encoding a sulphur-rich, sunflower seed albumin (23% cysteine plus methionine) was modified to contain the promoter for the 35S RNA of cauliflower mosaic virus, in order to obtain leaf expression in transgenic plants. In addition, a sequence encoding an endoplasmic reticulum-retention signal was added to the 3' end of the coding region so as to stabilize the protein by diverting it away from the vacuole. The modified gene was introduced into subterranean clover (T. subterraneum L.) and its expression was detected by northern and western blots and by immunogold localization. The albumin was accumulated in the lumen of the endoplasmic reticulum, and, among six independent, transformed lines, it accumulated in the leaves of T0 transgenic plants at varying levels up to 0.3% of the total extractable protein. The level of accumulation of the sunflower albumin increased with increasing leaf age, and in the older leaves of the most highly expressing plants of the T1 generation it reached 1.3% of total extractable protein. Expression of the SSA gene was stable in the first and second generation progeny. These results indicate that there is potential for significantly improving the nutritional value of subterranean clover for ruminant animals such as sheep by expressing genes that code for sulphur-rich, rumen-stable proteins in leaves.

Albumins↗

Expression of the isopentenyl transferase gene is regulated by auxin in transgenic tobacco tissues.

The isopentenyl transferase gene (ipt) from Agrobacterium tumefaciens was isolated and introduced, via a disarmed binary vector, into tobacco using the Agrobacterium tumefaciens-mediated gene transfer system. The expression of the ipt gene was monitored by RNA hybridization, western blotting and cytokinin analysis. The addition of auxin to the media rapidly reduced the level of cytokinins in the transgenic tissues and this was associated with a reduction in IPT mRNA and protein levels. It is concluded that the hormone auxin can regulate expression of a gene involved in biosynthesis of the second hormone cytokinin. Although exogenous benzyladenine did not directly affect ipt gene expression, it did antagonize the effect of auxin on levels of cytokinins and IPT mRNA and protein.

Agrobacterium tumefaciens↗

Accumulation and proteolytic processing of vicilin deletion-mutant proteins in the leaf and seed of transgenic tobacco.

Vicilin, a 7S globulin of Pisum sativum L. seed, accumulates in protein-storage vacuoles (protein bodies) of cotyledonary storage-parenchyma cells. The synthesis and proteolytic processing of various genetically engineered proteins within the leaf and seed of a heterologous (tobacco, Nicotiana tabacum L.) host was examined. A modified vicilin gene, in which the DNA sequence corresponding to the signal peptide was removed, resulted in a polypeptide of 50 kDa in the tobacco leaf and seed; none of the normal proteolytic cleavage products characteristic of expression of an unmodified vicilin gene were obtained. Likewise, no vacuolar accumulation of this mutant vicilin occurred in leaf protoplasts, which is also supportive of the predicted cytosolic localization for this protein. In-frame deletions were made within the region of the vicilin gene encoding the mature protein, to eliminate the N-terminal 28 and 121 amino acids and the C-terminal 69 residues, while maintaining an intact signal peptide. All of these "mature" deletion-mutant proteins were accumulated to only low levels in the host, but exhibited the predicted molecular weight and underwent some normal proteolytic processing in the seed. Mutant vicilin proteins having deletions in either the N-terminus (delta NT 121) or C-terminus (delta CT 69) were not found in appreciable amounts within the vacuolar fraction of transgenic tobacco leaf protoplasts, perhaps due to protein degradation in this compartment. Compared with the intact vicilin, oligomer assembly of the C-terminal deletion-mutant protein was disrupted in leaf cells, which may have further affected protein stability.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

A biotechnological approach to improving the nutritive value of alfalfa.

The postruminal supply of the sulfur-containing amino acids, methionine and cysteine, has been reported to be a major limitation to wool growth in sheep. We aim to improve the protein quality of forage for ruminants by introducing into alfalfa chimeric genes encoding a ruminally stable, sulfur amino acid-rich protein from sunflower seeds. Four gene constructs were transferred to Australian commercial cultivars of alfalfa using Agrobacterium tumefaciens-mediated transformation and selection with phosphinothricin (PPT). Modification of the sunflower seed albumin protein-coding region by addition of the coding information for an endoplasmic reticulum (ER) retention signal was found to greatly increase the level to which the sulfur amino acid-rich protein accumulated in the leaves of transgenic alfalfa plants. The Cauliflower Mosaic Virus (CaMV) 35S promoter and two light-regulated plant gene promoter regions were compared for their ability to direct high-level expression of the introduced genes in alfalfa leaves. The highest expression of sunflower seed albumin was found in transformants bearing a gene incorporating the promoter from the Arabidopsis thaliana ats1A gene, which encodes the ribulose bisphosphate carboxylase small subunit. The highest level of sunflower seed albumin found in transgenic alfalfa leaves was estimated to constitute .1% of soluble leaf protein. This level of accumulation of the foreign protein would be predicted to supply an extra 40 mg of sulfur amino acids daily to sheep fed the modified forage. Published studies in which wool growth rates were significantly increased employed supplementation of approximately 1 to 2 g of sulfur amino acids daily.

Agrobacterium tumefaciens↗

Evidence for eosinophil activation in cancer patients receiving recombinant interleukin-4: effects of interleukin-4 alone and following interleukin-2 administration.

Interleukin-4 (IL-4) is a T-cell-derived cytokine that may mediate murine tumor rejection through the activation of host eosinophils. In association with a Phase I clinical trial of IL-4 in cancer patients, we have examined changes in eosinophil counts and characterized systemic eosinophil degranulation. As previously reported, IL-4 administration induced a modest eosinophilia in all 17 evaluated patients. Here, we report that IL-4 therapy induced systemic eosinophil degranulation based on increases in serum major basic protein (MBP) (P = 0.018) and urine MBP (P = 0.031). The increase in serum MBP was IL-4 dose dependent (P = 0.001). Following the highest dose (600 microgram/m2/day) of IL-4 administered, mean serum MBP levels were >2000 ng/ml. Skin biopsies of rashes from patients receiving IL-4 revealed MBP deposition. Sera from eight patients receiving IL-4 at 360 and 600 microgram/m2/day exhibited eosinophil survival-enhancing activity (on days 3, 5, 7, and 9) significantly above pretreatment (on day 1) activity (P values 0. 0469, 0.0039, 0.0395, and 0.0313, respectively). This enhanced eosinophil survival could be neutralized by antibodies to IL-5, granulocyte-macrophage-colony-stimulating factor, and IL-3. The eosinophil activation demonstrated in this trial may be relevant to the clinical effects of IL-4 in cancer patients. Furthermore, an association between IL-4 and eosinophil activation should be explored in other disease states.

Analysis of Variance↗

High level expression and purification of the enzymatically active cytoplasmic region of human CD45 phosphatase from yeast.

The cytoplasmic region of human CD45 corresponding to residues 584-1281 was inserted downstream of the alcohol dehydrogenase promoter and transfected into a haploid strain of yeast. Expression of recombinant CD45 in yeast reached as high as 5% of the soluble protein. Following removal of cellular debris by centrifugation and an ammonium sulfate precipitation step, the enzyme was purified using phenyl-Sepharose chromatography, preparative gel filtration, Mono Q anion exchange chromatography and a final analytical gel filtration step. Enzymatically active material with a purity of > or = 98% was obtained with a yield approaching 50%. The final product gave a Km of 5.5 mM and a Vmax of 87.5 U/mg with p-nitrophenylphosphate and a Km and Vmax of 0.167 mM and 185 U/mg, respectively, with a phosphotyrosine peptide. The native enzyme purified from Jurkat cells showed comparable Kms with both substrates to the recombinant enzyme but displayed substantially lower Vmax values for both substrates.

Amino Acid Sequence↗

A sensitive, high-volume, colorimetric assay for protein phosphatases.

Protein phosphatases are intimately involved in a variety of cellular processes, many of which are of interest to the pharmaceutical industry. Phosphatase assays generally employ radioisotopes, making them tedious to perform, costly, and hazardous, while other procedures require antibodies and/or are unsuitable for mass screening efforts. To facilitate screening for inhibitors of the CD45 protein tyrosine phosphatase (PTPase), we have developed a sensitive colorimetric assay, using small volumes in 96-well microtiter plates and read on a standard ELISA plate reader. The assay was sensitive down to 0.5 nmol of released phosphate and can be easily run by robotics to assay thousands of compounds in a day. The assay is sparing of reagents and has been successfully used with all classes of phosphatases. The reagents are nonradioactive, readily obtainable, and minimal in cost. This assay should facilitate the search for specific inhibitors of phosphatases.

Amino Acid Sequence↗

Genetic engineering of grain and pasture legumes for improved nutritive value.

This review describes work aimed at the improvement of the nutritive value of grain and forage legumes using gene transfer techniques. Two traits which are amenable to manipulation by genetic engineering have been identified. These are plant protein quality and lignin content. In order to increase the quality of protein provided by the legume grains peas and lupins, we are attempting to introduce into these species chimeric genes encoding a sunflower seed protein rich in the sulphur-containing amino acids methionine and cysteine. These genes are designed to be expressed only in developing seeds of transgenic host plants. Chimeric genes incorporating a similar protein-coding region, but different transcriptional controls, are being introduced into the forage legumes lucerne and subterranean clover. In this case the genes are highly expressed in the leaves of transformed plants, and modifications have been made to the sunflower seed protein-coding sequences in order to increase the stability of the resultant protein in leaf tissue. Another approach to increasing plant nutritive value is represented by attempts to reduce the content of indigestible lignin in lucerne.

Amino Acid Sequence↗

Gingival hyperplasia in renal allograft recipients receiving cyclosporin-A and calcium antagonists.

Although it is established that the immunosuppressant cyclosporin-A (CsA) and calcium antagonists [Nifedipine (Nif) and Diltiazem (Dz)] can independently induce gingival enlargement, little has been documented on the significance of the salivary CsA levels and the combined effect of CsA and a calcium antagonist upon gingival tissues. In the present cross-sectional investigation, clinical periodontal parameters and the pharmacologic profiles of CsA, Nif, and Dz were determined for 66 renal transplant recipients. Subjects were divided into the following groups: Group (Gp) 1: CsA [n = 18]; Gp 2: CsA + Nif [n = 15]; Gp 3: CsA + Dz [n = 12] and a negative Control Gp 4: azathioprine [n = 21]. A gingival enlargement score was assessed for each patient from study models using a hyperplastic index (HI). Pharmacologic profiles included CsA whole blood and whole saliva levels as measured by fluorescence polarization immunoassay. The HI scores between Gp 1, 2 and 3 were not significantly different. However, when compared with controls (Gp 4), there was a significant difference in HI and all individual groups (Gp 1, 2, 3) (p < 0.05). Gingival hyperplasia was only weakly related to plaque and calculus but was unrelated to CsA dose (mg/kg/day), duration of CsA therapy (months), CsA blood or saliva levels (ng/ml), or the concurrent administration of a Nif or Dz. Gingival enlargement was found to occur in 49% of subjects who were either on CsA or CsA and a calcium antagonist. It is concluded that CsA alone or in combination with a calcium antagonist caused a significant increase in gingival enlargement compared with controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Safety of long-term use of lisinopril for congestive heart failure.

Early clinical experience with lisinopril suggested that it was well tolerated in congestive heart failure (CHF). An analysis of data from greater than 1,000 patients treated with lisinopril has been performed to examine the long-term safety of lisinopril in CHF. Of these, 620 have been studied for up to nearly 4 years, and a further 440 have been studied in comparative trials for 3 months. When patients who received lisinopril or placebo for the same period were compared, the proportion of lisinopril patients reporting an adverse event was 44.1% compared with 39.4% on placebo. Over a 4-year period, 205 patients (33.1%) discontinued treatment. About 33% of these died, 33% withdrew due to clinical adverse events, 21 (3.4%) were withdrawn because of adverse laboratory findings, and 56 (9.0%) withdrew for reasons unrelated to treatment. Sixteen patients (2.6%) withdrew because lisinopril was deemed ineffective. The most frequently reported drug-related adverse laboratory findings were increases in blood urea nitrogen, blood urea, serum creatinine, and plasma potassium. There appeared to be no differences in the pattern of adverse events with respect to the race of the patient. Elderly patients and those with the most severe forms of heart failure appeared to be at greater risk for an adverse event. Evaluation of the safety of lisinopril compared with enalapril, captopril, and digoxin in controlled clinical trials shows all the angiotensin-converting enzyme inhibitors to be equally well tolerated with a closely similar range of adverse events, suggesting that the satisfactory safety profile of lisinopril is shared by other drugs of this class.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Vicilin with carboxy-terminal KDEL is retained in the endoplasmic reticulum and accumulates to high levels in the leaves of transgenic plants.

Gene constructs were designed to test the effect of the endoplasmic reticulum (ER)-targeting signal, KDEL, on the level of accumulation of a foreign protein in transgenic plants. The gene for the pea seed protein vicilin was modified by the addition of a sequence coding for this tetrapeptide at its carboxyl terminus. The altered gene was placed under the control of a CaMV 35S promoter and its expression in the leaves of both tobacco and lucerne (alfalfa) was compared with that of an equivalent vicilin construct lacking the KDEL-coding sequence. The presence of the ER-targeting signal led to a greatly enhanced accumulation of the heterologous protein. In lucerne and tobacco leaves, the level of vicilin-KDEL protein was 20 and 100 times greater than that of the unmodified vicilin, respectively. These differences in expression level could not be explained by corresponding differences in the steady-state levels or the translatability of the mRNAs. However, when the stability of vicilin and vicilin-KDEL proteins was compared in their respective transgenic hosts, unmodified vicilin was found to be degraded with a half-life of 4.5 h while vicilin-KDEL was much more stable with a half-life of more than 48 h. Immunogold labelling of leaf tissues from transgenic lucerne and tobacco showed the presence of vicilin associated with large aggregates within the ER lumen of vicilin-KDEL plants. No such aggregates were detected in transgenic plants expressing wild-type vicilin. It is concluded that the carboxy-terminal KDEL caused the retention of the modified vicilin in the ER, and that this retention led to the increased stability and higher level of accumulation of vicilin-KDEL in leaves of transgenic plants.

Amino Acid Sequence↗

Effect of the hypoglycaemic drug (-)-AZ-DF-265 on ATP-sensitive potassium channels in rat pancreatic beta-cells.

1. It has previously been shown that the hypoglycaemic drug (-)-AZ-DF-265 stimulates insulin release from mouse islets; in the presence of 3 mM glucose it also inhibits 86Rb-efflux from 86Rb-loaded islets. Based on these data we tested the hypothesis that (-)-AZ-DF-265 inhibits ATP-sensitive potassium channels. 2. We voltage-clamped the plasma membrane of single rat pancreatic beta-cells in the whole-cell configuration and measured the current flowing through ATP-sensitive potassium channels. (-)-AZ-DF-265 was applied to the outside of the cell; it inhibited the current half-maximally at a concentration of 1.2 +/- 0.2 nM with a Hill coefficient of 0.7 +/- 0.1. The inhibition was reversible on washing. 3. In intact RINm5F cells, the sulphonylurea [3H]-glibenclamide bound with an affinity of 0.24 +/- 0.01 nM and a Hill coefficient of 2.1 +/- 0.4. Treatment with (-)-AZ-DF-265 led to the displacement of [3H]-glibenclamide; this effect was half-maximal at 8.6 +/- 1.7 nM and displayed a Hill coefficient of 0.53 +/- 0.01. Meglitinide and tolbutamide, which represent, respectively, the benzamido and sulphonylurea moieties of glibenclamide, showed Hill coefficients of 0.8 +/- 0.1 and 0.9 +/- 0.1, respectively. 4. At pH 7.4 and with phosphate/borate buffer, (-)-AZ-DF-265 had an apparent octanol/water partition coefficient of about 53, which is intermediate between the partition coefficients of glibenclamide and glipizide. Nevertheless, (-)-AZ-DF-265 bound only to a minor degree to glass and plastic.5. In conclusion, (-)-AZ-DF-265 inhibits ATP-sensitive potassium channels and displaces [3H]-glibenclamide from the sulphonylurea receptor.

Adenosine Triphosphate↗

Amino acid and cDNA sequences of a methionine-rich 2S protein from sunflower seed (Helianthus annuus L.).

The amino acid sequence of a methionine-rich 2S seed protein from sunflower (Helianthus annuus L.) and the sequence of a cDNA clone which codes for the entire primary translation product have been determined. The mature protein consists of a single polypeptide chain of 103 amino acids (molecular mass 12133 Da) which contains 16 residues of methionine and 8 residues of cysteine. The cDNA sequence established that the protein is synthesized as a precursor of 141 residues with a typical hydrophobic signal sequence of 25 residues followed by a further 13-residue hydrophobic pro-sequence which is presumably removed by post-translational cleavage. The sequence of the mature protein and that deduced from the cDNA were identical with no evidence of processing at the C-terminus. Comparison of the sunflower methionine-rich protein sequence with sequences of other seed 2S proteins from dicotyledons and monocotyledons showed limited but distinct sequence similarities; in particular the arrangement of the cysteine residues was conserved. The sunflower protein shows 34% identity with the methionine-rich Brazil nut 2S protein and the prepro regions of the precursors of these two proteins show about 50% identity. This similarity indicates that these methionine-rich 2S proteins have diverged as a subclass of the 2S superfamily of proteins which contain only 2-3% methionine. While the related 2S proteins from other dicotyledons are processed to a small and large subunit, the sunflower protein is not cleaved in this way.

2S Albumins, Plant↗

Developmental and environmental regulation of pea legumin genes in transgenic tobacco.

Two distinct legumin genes (LegA1 and LegA2) which encode a major class of seed storage protein in pea were isolated from a genomic library. The cloned fragments were introduced into tobacco via Agrobacterium-mediated transformation and the regenerated plants were used to study the expression characteristics of the genes in a heterologous host. It was found that both LegA1 and LegA2 were functional members of the pea legumin gene family and that their expression was similar in both pea and transgenic tobacco. Legumin was detected only in the seed of tobacco where the primary translation products were processed in a manner analogous to that which occurs in pea. Legumin gene expression was also shown to be temporally regulated during seed development. Legumin polypeptides and mRNA began to accumulate 16 days after flowering (DAF), in contrast to the endogenous tobacco storage proteins which were apparent at 13 DAF. It was also demonstrated that the legumin genes in tobacco were environmentally regulated to the nutritional status of the plant. As has been previously shown in pea, legumin accumulation in transgenic tobacco seed was progressively reduced when the plants were grown under conditions of increasing severity of sulphur-nutrient stress. The reduced accumulation of protein was correlated with lower levels of legumin mRNA in the developing seed. Despite encoding nearly identical subunits, nucleotide sequence data for LegA1 and LegA2 showed that the similarity of their respective 5'-flanking regions was restricted to several short elements mostly within 240 bp from the start of transcription. However, a deletion series using the LegA1 gene demonstrated that 237 bp of 5'-flanking sequence was insufficient to permit the expression of the legumin gene in tobacco. The data indicated that an as yet unidentified sequence element(s) located between positions -668 and -237 was essential in re-establishing the high level of regulated gene expression observed with the full-length LegA1 gene.

Base Sequence↗

Inhibition of ATP-sensitive K+ channels in pancreatic beta-cells by nonsulfonylurea drug linogliride.

Linogliride is a nonsulfonylurea drug that lowers blood glucose levels in nondiabetic and diabetic humans and animals. Linogliride also stimulates insulin release in vitro. In the perfused pancreas, pretreatment with tolbutamide desensitizes beta-cells to the action of linogliride. We tested the hypothesis that linogliride, like tolbutamide, affects the activity of ATP-sensitive K+ channels, which are thought to control insulin release. We used the whole-cell voltage-clamping technique to measure the K+ current through ATP-sensitive K+ channels in the plasma membrane of single rat beta-cells, which were dialyzed with 30 microM ATP. Linogliride (10-300 microM) inhibited the K+ current; half-maximal inhibition was observed at 6-25 microM, depending on how much time was allowed for equilibration of the drug. Reversal of the inhibition was slow (t1/2 approximately 4 min). In summary, linogliride leads to a decrease in the activity of ATP-sensitive K+ channels.

Adenosine Triphosphate↗