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Biomedical subjects

R M O'Brien

Publications and source records attributed to R M O'Brien.

At least 55 records · Page 3Linked to original sources

An immunogenetic analysis of the T-cell recognition of the major house dust mite allergen Der p 2: identification of high- and low-responder HLA-DQ alleles and localization of T-cell epitopes.

Cellular reactivity to Der p 2, a major allergen of the house dust mite (HDM) Dermatophagoides pteronyssinus, was studied in a group of 41 symptomatic HDM sensitive patients, using fresh peripheral blood mononuclear cells (PBMC) and assays of proliferation. Sixty per cent of the patients responded to Der p2, with reactivities being greater in patients with asthma as one of their clinical manifestations and also in those who had skin-test reactivity to a number of allergens. HLA-DR and -DQ serotyping was undertaken in 39 of the patients and the magnitude of T-cell proliferative responses to Der p 2 were found to be positively associated with DQ7 and negatively associated with DQ2. T-cell determinants within the Der p 2 molecule were identified by assays using a series of overlapping peptides (15- to 19-mers) spanning the entire protein. Fifty-nine per cent of the 41 HDM-sensitive patients responded to one or more of the peptides. All of the peptides were antigenic for at least one of the individuals, indicating the heterogeneity of the human repertoire reactive with Der p 2. There was a substantial variability in the number and location of epitopes recognized by T cells from the different allergic patients, the mean number per patient being 2.3 +/- 1.3 (SD). The most frequently recognized peptide was that spanning residues 111-129, being stimulatory in 66.7%, the other peptides were each recognized by between 8 to 25% of individuals. There was no correlation between the epitope recognized and the presence of particular HLA-DQ antigens.

Adolescent↗

Potential convergence of insulin and cAMP signal transduction systems at the phosphoenolpyruvate carboxykinase (PEPCK) gene promoter through CCAAT/enhancer binding protein (C/EBP).

Adenosine 3',5'-monophosphate (cAMP) stimulates phosphoenolpyruvate carboxykinase (PEPCK) gene transcription, whereas insulin has the opposite effect. In H4IIE cells, the effect of insulin is dominant since it represses cAMP-stimulated transcription. Discrete cis-acting elements in the PEPCK promoter that serve as an insulin response sequence (IRS) and cAMP response element (CRE) have been identified. Here we show that common proteins can bind both elements, since: (i) an almost identical pattern of protein binding is seen when oligonucleotides representing either the IRS or the CRE are used as the labeled probe in a gel retardation assay and (ii) the unlabeled wild-type, but not mutated, CRE oligonucleotide competes for protein binding to the labeled IRS probe, and vice versa. Six homo- and heterodimer complexes interact with these DNA elements; the complexes are composed of three individual protein species: (a) 42-kDa C/EBP alpha, (b) 30-kDa C/EBP alpha, and (c) an unidentified 20-kDa factor termed p20- CRE/IRS Binding Protein (p20-C/IBP). These proteins have a 30-fold greater affinity for the CRE at room temperature, a difference explained by the rapid dissociation rate of protein bound to the IRS, since the association rate of protein binding to both the IRS and CRE is the same. Protease digestion experiments suggest that the proteins bind to the CRE and IRS in different conformations. The IRS and CRE both function in the context of a heterologous promoter to mediate effects of insulin and cAMP, respectively, but, although the PEPCK IRS and CRE bind common proteins, the PEPCK CRE is not a functional IRS and the PEPCK IRS is not a functional CRE.

Animals↗

Comparison of the effects of insulin and okadaic acid on phosphoenolpyruvate carboxykinase gene expression.

Many hormones regulate the rate of synthesis of phosphoenolpyruvate carboxykinase (PEPCK), the enzyme that governs the rate-limiting step in gluconeogenesis. In H4IIE rat hepatoma cells, glucocorticoids, retinoic acid and cyclic AMP (cAMP) increase PEPCK gene transcription whereas insulin and phorbol esters have the opposite effect. Insulin and phorbol esters are dominant as they prevent cAMP- and glucocorticoid-stimulated PEPCK gene transcription. In contrast, insulin and phorbol esters both stimulate transcription of gene 33 in the same H4IIE cells, with the same time course as seen for their inhibitory effect on PEPCK gene transcription. We now report that the protein phosphatase inhibitor, okadaic acid, mimics the action of insulin and phorbol esters on expression of both gene 33 and PEPCK gene in H4IIE cells. Okadaic acid stimulates gene 33 mRNA accumulation whereas it inhibits cAMP- and glucocorticoid-stimulated PEPCK mRNA accumulation. The effect of okadaic acid on the PEPCK gene is mediated through the PEPCK promoter as, in a cell line, HL1C, stably transfected with a PEPCK-chloramphenicol acetyltransferase (CAT) fusion gene, okadaic acid inhibits cAMP- and glucocorticoid-stimulated CAT expression. Desensitization of the protein kinase C pathway by exposure to phorbol 12-myristate 13-acetate for 16 h abolishes the subsequent action of the phorbol ester but does not markedly affect the inhibition of cAMP- and glucocorticoid-stimulated CAT expression by insulin or okadaic acid. Even though insulin and okadaic acid appear to repress PEPCK gene expression through a pathway initially distinct from that used by phorbol esters, transient-transfection studies show that the final target of the action of okadaic acid, insulin and phorbol ester is the same DNA element.

Animals↗

An immunogenetic analysis of T-cell reactive regions on the major allergen from the house dust mite, Der p I, with recombinant truncated fragments.

Proliferation assays were used to localize the T-cell reactive sites on the major allergen from the house dust mite Dermatophagoides pteronyssinus, Der p I. Seven overlapping recombinant fragments of the Der p I molecule, synthesized with the pGEX expression vector system, were used to stimulate peripheral blood lymphocytes from 35 HDM-sensitive individuals. The fusion fragments were from 39 to 114 amino acids in length and spanned the entire Der p I molecule. Significant proliferative responses to one or more of the fragments were evident in 18 of the allergic individuals, and each of the fragments led to T-cell stimulation in at least one of the subjects. Although T-cell reactive regions were located throughout the molecule, in 12 of the 18 responsive individuals, major immunogenic sites were contained within the 56 amino acids of the N-terminus, and in 11 of these individuals T-cell reactive regions were only present between amino acid positions 1 and 94. In two individuals reactive sites could be mapped in the C-terminal half of the molecule, and in five subjects, epitopes were present in both N- and C-terminal regions. HLA class I and class II DR and DQ specificities were determined serologically in 16 of the 18 individuals, and no strong pattern of association between HLA type and the T-cell immunogenic region could be detected.

Animals↗

Immune reactivity to Der p I and Der p II in house dust mite sensitive patients attending paediatric and adult allergy clinics.

A comparison was made of immune responses to house dust mite allergens in symptomatic patients from paediatric and adult allergy clinics. IgE-specific immune reactivity to Dermatophagoides pteronyssinus was examined by Western blotting and, for Der p I and Der p II, by radioimmune dot-blot using purified allergens. Nineteen mite-sensitive children (mean age 9 years) and 26 adults (mean age 31 years) were compared. Positive IgE responses by dot-blot were found to Der p I and Der p II in 79% of children, whereas reactivity was only present in 23% and 19% respectively of adults, and densitometry indicated a weaker response. In children, Western blotting indicated that the majority of the serologic reactivity was directed to Der p II (17/19, 89%) or a 100 kDa fraction whereas in adults, reactivities were generally directed to other fractions with only 15/26 (58%) recognizing Der p II. Consistent with results of others, a fraction corresponding to Der p I was poorly detected on Western analysis despite positive dot-blots. To determine whether the relative lack of IgE serological immune reactivity in adults was associated with a similar lack of cellular recognition, T-cell proliferation studies were performed, also using purified allergens. Interestingly, these revealed that cellular responsiveness, without serological reactivity, was present in 29% of subjects to Der p I and 50% to Der p II. Proliferative responses were evident in all individuals with specific IgE.

Adolescent↗

Dermatophagoides pteronyssinus II-induced interleukin-4 and interferon-gamma expression by freshly isolated lymphocytes of atopic individuals.

Cytokines are known to play a major role in mediating many of the immunological and pathological features of allergic disease. Much of our understanding of cytokine production in response to allergens has come from studying allergen-specific T cell clones following long-term in vitro culture. This has largely been due to the lack of sufficiently sensitive assays to measure allergen-induced cytokine production by freshly isolated peripheral blood mononuclear cells (PBMCs). Here we have used the polymerase chain reaction to amplify reverse transcribed interleukin-4 (IL-4) and IFN gamma mRNA expressed by allergen-stimulated PBMCs from a variety atopic individuals. Using Der p II, a major allergen of the house dust mite (HDM) Dermatophagoides pteronyssinus, we have demonstrated that cells from HDM-sensitive atopic patients (n = 12), can be induced to express either IL-4 alone (three patients), IL-4 and IFN gamma (six patients), IFN gamma alone (two patients) or neither cytokine (one patient). Cells from 13 non-atopic control individuals were also stimulated with Der p II and cytokine mRNA production was studied. None expressed IL-4, while seven of 13 transcribed IFN gamma. Our results suggest that atopic individuals have allergen-reactive T cells at various stages of differentiation, with respect to the cytokines they produce. The use of this technique will aid in the further understanding of specific cellular hypersensitivity in allergic disease.

Animals↗

Contracting and chaining to improve the performance of a college golf team: improvement and deterioration.

Recent work with operant procedures in sports has shown that feedback, reinforcement, and chaining can be effective techniques in improving performance. In many cases, however, a problem remains in getting the participants to practice the appropriate responses. In the present study, 14 college golfers were put on successive contingency contracts over three weeks to go through the Total Golf chaining-mastery program of Simek and O'Brien. Rewards consisted of activities such as spots on the starting team and the opportunity to play better courses as well as tangible rewards such as new golf balls. After the first two weeks of training, through 19 steps backward from the green, the mean of three posttraining rounds for these 14 golfers was 3.4 strokes lower than the mean of their three rounds at baseline. At this point, the coach did not follow through with the rewards promised in the second contract. Having been placed on extinction, only three of the 14 players followed through on the third contract. In this return to baseline-like condition an average increase of over two strokes for the team as a whole was noted. The number of steps of the chain mastered in practice and the difference between mean scores at baseline and the last measurement period correlated .86, indicating that 74% of the improvement in golf scores was accounted for by performance on the mastery chain.

Adolescent↗

Dynamic aspects of DNA/protein interactions in the transcriptional initiation complex and the hormone-responsive domains of the phosphoenolpyruvate carboxykinase promoter in vivo.

Transcription initiation of the gene encoding phosphoenolpyruvate carboxykinase (PEPCK) is stimulated by glucocorticoids and glucagon, via cAMP, and dominantly inhibited by insulin in rat liver and H4IIE cells. Lysolecithin-permeabilized H4IIE cells recover completely and continue to multiply, yet are transiently penetrable by macromolecules. These cells, after various hormonal treatments, were utilized for in situ DNase I protection studies of the PEPCK promoter. Nearly all of the sites of protein interaction observed in vitro are protected in vivo as well as several additional sites. The DNase I protection pattern is the same in cells without or with any of the hormone treatments, suggesting that hormonal modulation of transcription does not involve addition or removal of factors from the hormone response elements of the promoter. We focused on the organization and stability of the transcription initiation complex as well as the dynamic nature of distal promoter factors in their interaction with DNA. The transcription initiation complex was detected, and it appears to be co-existent with a short region of naked single-stranded DNA over the TATA box on the template strand, as determined by potassium permanganate reactivity. This complex is quite stable, even under conditions of much reduced RNA synthesis, which suggests that the complex is not broken down and reformed with each round of initiation by RNA polymerase II. Other factors bind to the PEPCK promoter with half-lives ranging from a few minutes to more than 40 min. The cAMP response element apparently involves transcriptional modulation achieved through modification of a bound factor (presumably cAMP response element-binding protein), whereas the glucocorticoid/insulin-responsive region of the promoter functions through factors which are involved in a rapid exchange, suggesting quite different modes of transcriptional regulation.

Animals↗

Efficacy of rational emotive therapy (RET) with children: a critical re-appraisal.

Proponents of rational-emotive therapy (RET) advocate its use within the school curriculum to forestall future maladjustment through the early detection and eradication of irrational beliefs. A review of 33 unpublished dissertations and four published reports found RET effective in about 25% of comparisons with wait-list, placebo, and other treatment conditions. The major effects of RET were changes in scores on self-report measures of irrational beliefs, less on emotional distress, and little or no change in behavior; essentially the same pattern of effects previously found in a similar analysis of RET in adult populations. Little justification was found for continued use of RET in schools.

Adolescent↗

The efficacy of rational emotive therapy in adults: clinical fact or psychometric artifact?

The efficacy of Rational-Emotive Therapy (RET) in reducing maladjustment, while insistently touted by its advocates, has not been unambiguously demonstrated in outcome research. Previous reviews have generally been quite partisan and subjective, and have not reflected available research. The object of the present review was to determine the extent to which RET significantly improved adjustment of adult subjects on different outcome measures in comparison with wait-list, placebo, and other treatment conditions. In 75 outcome reports, RET was effective in only about 25% of comparisons. Its main effect was to reduce scores of self-reported irrationality and dysphoria. Little change was noted in behavioral measures. The few comparisons favoring RET could be attributed to psychometric artifacts rather than to the reduction of irrational beliefs.

Adaptation, Psychological↗

T cell responses to the purified major allergens from the house dust mite Dermatophagoides pteronyssinus.

Proliferation assays were used to determine peripheral blood T cell responses to affinity-purified Der p I, Der p II, and Der f II allergens. Patients studied were sensitive to the house dust mite (HDM) either alone or in combination with other allergens. Control subjects were both nonatopic and atopic non-HDM sensitive. In general, only HDM-sensitive patients responded to the mite allergens. Mean stimulation indices (SI) were 10.2 +/- 2.8 (SEM) for Der p I and 10.0 +/- 2.2 for Der p II in HDM-sensitive individuals, and 2.0 +/- 0.2 and 2.8 +/- 0.6 for non-HDM sensitive control subjects (p less than 0.001). Patients sensitive to HDM and other allergens had higher responses than subjects sensitive to HDM alone, and the degree of proliferation to Der p I and Der p II was well correlated in individual patients (r = 0.71; p less than 0.001). Total IgE levels were elevated in the allergic patients, and values were highly correlated with the SI for both Der p I and Der p II (p less than 0.001). Responses to Der p II and Der f II were equivalent in 82% of individuals; however, in 18%, there was a marked discordance with strong responses to Der p II only. SIs were compared between different clinical groups of patients, and patients with asthma had significantly higher values to both Der p I and Der p II than patients with rhinitis alone (17.0 +/- 5.4 versus 5.7 +/- 1.0 for Der p I, p less than 0.05; 14.3 +/- 6.8 versus 5.0 +/- 1.0 for Der p II, p less than 0.05).

Adult↗

Nucleotide sequences of the HLA-DRw12 and DRw8 B1 chains from an Australian aborigine.

To gain a more detailed understanding of the molecular structure of the HLA genes in Australian aborigines, the polymorphic first-domain sequences of the DR B alleles were determined in an aborigine who was tissue typed as HLA-DRw8 and a probable DRw12; DRw52; DQw1,7. Both peripheral blood leukocytes and a lymphoblastoid cell line were reactive with the majority of DRw12-specific sera, but also with half of the DRw11-specific sera. With the use of primers specific for the conserved regions flanking the first domain, the polymerase chain reaction technique was used to amplify first-strand synthesis products prepared from the cell line. Two distinct DRB1 sequences were obtained. One was virtually identical to the reported DRw8,Dw8.3 sequence present in an Asian haplotype, differing only by a single silent nucleotide substitution at the third position of codon 36 (A to G). A second DRB allele was closely related to two recently published and nearly identical sequences for DRw12, with amino acid differences at positions 67 and 85 of the first domain. DRB RFLP studies on this cell line using the Taq I restriction enzyme indicated bands previously described for the DRw8 and DRw12 haplotypes.

Amino Acid Sequence↗

Molecular physiology and genetics of NIDDM. Importance of metabolic staging.

Insulin resistance and beta-cell failure account for the complex clinical presentation of non-insulin-dependent diabetes mellitus (NIDDM). Insulin resistance primarily involves defective regulation of hepatic glucose production and the peripheral utilization of glucose. Considerable progress has been made in understanding the basic molecular biology, biochemistry, and physiology of these processes. Similarly, the mechanisms involved in insulin synthesis, processing, storage, and secretion are being elucidated. The relative contributions of insulin resistance and beta-cell failure are difficult to evaluate when the disease is fully established and clinically apparent but may be more obvious early, i.e., in people with impaired glucose tolerance or individuals at risk for developing the disease. The latter can be identified because there is a strong genetic determinant for NIDDM; the offspring of two diabetic parents have a markedly increased incidence of the disease. In addition to genetic factors, environmental components contribute to the multifactorial etiology of NIDDM. Efforts to establish the importance of these different factors will be assisted if a metabolic staging of NIDDM can be agreed on. This staging, which should correlate the pathophysiological events responsible for the transition from normal glucose tolerance to frank NIDDM with clinical status, would be based on what is known about insulin resistance and beta-cell function. Staging will also provide for a classification of the number of causes that lead to NIDDM, if indeed, there is more than one cause of the general phenotype. Strategies for defining the gene or genes responsible for NIDDM can be subsequently devised based on the temporal sequence of appearance of pathophysiological defects and what is known about the molecular biology of insulin action. Understanding the defective metabolic code that results in NIDDM will require the concerted efforts of investigators from various disciplines. This is used throughout the text to avoid confusion with those people who have impaired glucose tolerance but not NIDDM.

Base Sequence↗

IgE and IgG binding of peptides expressed from fragments of cDNA encoding the major house dust mite allergen Der p I.

Large peptides expressed from cDNA fragments of a clone encoding the mite allergen Der p I were able to bind IgE and IgG in sera from allergic individuals. The binding was found for peptides from sequences throughout the molecule, with at least five regions, comprising residues 1-56, 53-99, 98-140, 166-194, and 188-222. The only limitation was that more than 30 amino acid residues were required for consistent binding. Each of seven sera examined showed a different profile of antibody binding to the peptides. For the most part the pattern of IgE and IgG binding to the peptides for each serum was similar, demonstrating a concordant repertoire. In 5/7 sera, however, IgG bound to some peptides which had little or no IgE binding activity, thus showing more diverse specificities. It is suggested that some divergence of repertoire can develop during the maturation of the B cell response.

Allergens↗

Signal transduction convergence: phorbol esters and insulin inhibit phosphoenolpyruvate carboxykinase gene transcription through the same 10-base-pair sequence.

Phosphoenolpyruvate carboxykinase (PEPCK) governs the rate-limiting step in gluconeogenesis. Glucocorticoids and cAMP increase PEPCK gene transcription and gluconeogenesis, whereas insulin and phorbol esters have the opposite effect. Insulin and phorbol esters are dominant, since they prevent cAMP and glucocorticoid-stimulated transcription. Basal promoter elements and hormone response elements for cAMP, glucocorticoids, and insulin have been defined in previous studies. By using stable transfectants containing a variety of different PEPCK-chloramphenicol acetyltransferase fusion gene constructs, a phorbol ester response sequence, located between positions -437 and -402 relative to the transcription start site, was identified. This region coincides with the insulin response sequence that has recently been defined in the PEPCK promoter. Using a vector containing various wild-type and mutated sequences of this region ligated to the heterologous thymidine kinase promoter, we delineated the boundaries of both elements to the 10 base pairs between positions -416 through -407. Thus, although it has been previously shown that insulin and phorbol esters repress PEPCK gene transcription through distinct pathways, the final target of insulin and phorbol ester action is the same DNA element.

Animals↗