Search PubMed⌕ Search

Biomedical subjects

D Bosco

Publications and source records attributed to D Bosco.

At least 73 records · Page 4Linked to original sources

Protein kinase A-dependent phosphorylation of GLUT2 in pancreatic beta cells.

In pancreatic beta cells, cyclic AMP-dependent protein kinase regulates many cellular processes including the potentiation of insulin secretion. The substrates for this kinase, however, have not been biochemically characterized. Here we demonstrate that the glucose transporter GLUT2 is rapidly phosphorylated by protein kinase A following activation of adenylyl cyclase by forskolin or the incretin hormone glucagon-like peptide-1. We show that serines 489 and 501/503 and threonine 510 in the carboxyl-terminal tail of the transporter are the in vitro and in vivo sites of phosphorylation. Stimulation of GLUT2 phosphorylation in beta cells reduces the initial rate of 3-O-methyl glucose uptake by approximately 48% but does not change the Michaelis constant. Similar differences in transport kinetics are observed when comparing the transport activity of GLUT2 mutants stably expressed in insulinoma cell lines and containing glutamates or alanines at the phosphorylation sites. These data indicate that phosphorylation of GLUT2 carboxyl-terminal tail modifies the rate of transport. This lends further support for an important role of the transporter cytoplasmic tail in the modulation of catalytic activity. Finally, because activation of protein kinase A stimulates glucose-induced insulin secretion, we discuss the possible involvement of GLUT2 phosphorylation in the amplification of the glucose signaling process.

3-O-Methylglucose↗

Quantitative determination of tomato yellow leaf curl geminivirus DNA by chemiluminescent assay using digoxigenin-labeled probes.

A quantitative dot-blot hybridisation assay was developed for tomato yellow leaf curl geminivirus (TYLCV). The assay is based on chemiluminescent detection of viral and plasmid DNA using digoxigenin-labeled probes on nylon membranes. The response-error relationship was studied and a square root transformation was found to stabilise the variance of the response. An asymmetric sigmoid (gompertz) curve was used to describe the dose-response relationship. The detection limits and the precision profiles of the curves were studied. A method is suggested for setting an upper limit on the maximum DNA amount that can be discriminated from the upper asymptote. With respect to different times of exposure of an X-ray film to a membrane, the shortest times gave better upper limits and the longest times provided better detection limits. Purified virus and plasmid preparations were studied in various dilution media, such as TYLCV-free Bemisia tabaci (the whitefly vector) and tomato extracts, with particular attention to parallelism with standard calibration curves. Plasmid diluted in buffer was found useful for calibration of purified virus and virus in the vector, while extraction of known amounts of virus, in parallel with samples to be examined, was needed to quantify viral DNA in plant hosts.

DNA Probes↗

Induced hypotensive anesthesia for adolescent orthognathic surgery patients.

PURPOSE: This study compared blood loss, quality of surgical field, and duration of procedure with and without induced hypotensive anesthesia in adolescent orthognathic surgery patients. PATIENTS AND METHODS: Fifty orthognathic surgery patients were studied in a prospective, randomized, blocked, stratified, and single-blind fashion. All patients underwent either sagittal ramus split osteotomy or Le Fort I osteotomy or genioplasty. One group of patients (n = 25) had induced hypotension; the other group (n = 25) received anesthesia with no attempt to deliberately reduce blood pressure during the operation. The surgeon, unaware of to which group the patient had been assigned, rated the surgical field every 15 minutes. At completion of surgery, three different methods were used to estimate or calculate blood loss. Duration of the procedure was recorded from time of first incision to time of last suture placement. The data were analyzed using ANOVA, chi-squared, and linear regression, where appropriate. RESULTS: Estimated blood loss was significantly less when induced hypotensive anesthesia was used. The surgical field was better, but there was no significant difference in duration of the procedure with induced hypotensive anesthesia. CONCLUSION: Induced hypotensive anesthesia results in both reduced blood loss and improvement in surgical field.

Adolescent↗

Histiocytic necrotizing lymphadenitis (Kikuchi's disease).

We present a case report of a young asiatic women presenting Kikuchi's lymphadenitis, a suprahyoidea mass, pharyngitis, fever, weakness and lack of appetite. The clinical picture quickly improved after biopsy until complete remission within two months. Sierologic studies showed significant antibody titres revealing a previous EBV infection; they were also negative for Toxotest, HbsAg, HIV and serogroup 3 and 9 Yersinia Enterocolitica. Histological findings showed necrotic changes and large foci of infiltration in the cortex and/or paracortex. They consisted of variable numbers of small lymphocytes, immunoblasts, macrophages and so-called plasmacytoid monocytes, neutrophils were absent. Immunohistochemistry revealed within the lesion T-Lymphocytes displaying a phenotype CD4+ while T-Lymphocytes CD8+ were observed in the paracortex and in the peripheral region of the lesion.

Adult↗

Exogenous human immunodeficiency virus type-1 Tat protein selectively stimulates a phosphatidylinositol-specific phospholipase C nuclear pathway in the Jurkat T cell line.

We investigated the effect of extracellular Tat protein of human immunodeficiency virus-type 1 (HIV-1) on the phosphatidylinositol (PI) cycle, which represents a major signal transduction pathway in lymphoid cells. Recombinant Tat, recombinant HIV-1 p24 and cross-linked anti-CD3 monoclonal antibody (mAb) were added in culture for 1-60 min to Jurkat lymphoblastoid CD4+ T cells. The stimulation of T cell receptor by cross-linked anti-CD3 mAb resulted in a rapid increase of the phosphatidylinositol-specific phospholipase C (PI-PLC) activity in whole cell lysates. On the other hand, Tat protein, either alone or in combination with anti-CD3 mAb, showed little effect on the PI turnover of whole cell extracts. Tat, however, selectively stimulated a nuclear-specific PI-PLC with a peak of activity after 30 min from the addition in culture to Jurkat cells. Interestingly, this time corresponded to that required for the uptake and nuclear localization of recombinant Tat protein, as demonstrated by electron microscope immunocytochemistry experiments with anti-Tat mAb. Moreover, exogenous Tat reached the nucleus of Jurkat cells in a bioactive form, as shown in a HIV-1 long terminal repeat-chloramphenicol acetyl transferase transactivation assay. The specific increase of a nuclear PI-PLC activity was further demonstrated by the ability of Tat to stimulate PI turnover also when added directly to isolated nuclei. As a whole, these data demonstrate that Tat selectively stimulates a nuclear polyphosphoinositide hydrolysis, which appears to be independent of the cellular PI turnover. The relevance of these findings for a better understanding of the biological functions of extracellular Tat is discussed.

Biological Transport↗

Heterogeneous secretion of individual B cells in response to D-glucose and to nonglucidic nutrient secretagogues.

We used a hemolytic plaque assay for insulin to determine whether the same pancreatic B cells respond to D-glucose, 2-amino-bicyclo[2,2,1]heptane-2-carboxylic acid (BCH) and the association of this nonmetabolized analogue of L-leucine with either the monomethyl ester of succinic acid (SME) or the dimethyl ester of L-glutamic acid (GME). During a 30-min incubation in the absence of D-glucose, BCH alone (5 mM) had no effect on insulin release. In contrast, the combination of BCH with either SME (10 mM) or GME (3 mM) stimulated insulin release to the same extent observed in the sole presence of 16.7 mM D-glucose. The effects of BCH plus SME and BCH plus GME on both percentage of secreting B cells and total insulin output were little affected in the presence of D-glucose concentrations ranging from 0 to 16.7 mM. Varying the concentration of SME from 2 to 10 mM also did not influence these effects. In other experiments, the very same B cells were first exposed 45 min to 16.7 mM D-glucose, then incubated 45 min in the presence of only BCH and SME. Under these conditions, most (80.3 +/- 2.5%) of the cells contributing to insulin release did so during both incubation periods. Furthermore, virtually all cells responding to BCH and SME during the second incubation corresponded to cells also responsive to D-glucose during the first incubation. Similar observations were made when the sequence of the two incubations was reversed.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Heterogeneity and contact-dependent regulation of amylase release by individual acinar cells.

We have used a reverse hemolytic plaque assay to investigate the amylase release of single and aggregated pancreatic acinar cells. We have found that a minority of single acinar cells released detectable amounts of amylase under basal conditions and were modestly stimulated, in a dose-dependent manner, during a 30-min exposure to concentrations of carbamylcholine (CCh) ranging from 10(-8) to 10(-5) M. This stimulation was largely accounted for by the recruitment of additional secreting cells, rather than by a significant increase in their individual secretory output. We have also observed that aggregates comprising two to five acinar cells secreted more frequently and released more amylase than single acinar cells in the presence of each of the CCh concentrations tested. Under both basal conditions and following CCh stimulation, the proportion of secreting aggregates and their amylase output increased linearly with the aggregate size. Under basal conditions as well as in the presence of secretagogue concentrations in the 10(-8) - 10(-7) M range, individual cells contributed similarly to amylase secretion whether they were single or part of aggregates. By contrast, following stimulation by 10(-6) - 10(-5) M CCh, aggregated cells showed a much higher average secretion than single cells. Investigating the mechanism of this contact-dependent effect, we found that 10(-3) M heptanol did not significantly modify the secretion of single cells and markedly promoted the basal amylase release of acinar cell pairs. This effect was associated with a marked reduction in gap junctional communication between acinar cells, as evaluated by microinjection of Lucifer yellow, and was not observed during exposure to high concentrations of CCh, which also reduced junctional communication. These data show that pancreatic acinar cells are intrinsically heterogeneous in their ability to release amylase and that their basal as well as stimulated secretion are promoted by the establishment of direct intercellular contacts. Our experiments also suggest that junctional coupling contributes to the contact-dependent mechanism which enhances the recruitment of secreting cells and their individual output. These observations strengthen the view that direct interactions between acinar cells are essential in the control of pancreatic secretion.

Amylases↗

Interferon-gamma (IFN-gamma) induces programmed cell death in differentiated human leukemic B cell lines.

Interferons (IFNs) are cytokines that exert an antiviral effect on target cells and possess immunomodulatory and antitumor properties. In this study we have investigated the effects of human recombinant IFN-gamma on human leukemic B cell lines at different stages of maturation. Our data show that in Burkitt's lymphoma RAMOS-1 B cells IFN-gamma induces a reduction of cell growth and a clonal selection via programmed cell death; in contrast, IFN-gamma treatment of KM-3 pre-B cells does not induce biochemical and morphological changes as shown by electron microscope analysis and DNA gel electrophoresis.

Apoptosis↗

The behaviour of nuclear domains in the course of apoptosis.

Programmed cell death is activated, by different stimuli and in many cell types, to regulate cell population balance during tissue proliferation and embryogenesis. Its initial event seems to be, in most cases, the activation of a Ca(2+)-dependent endonuclease, causing DNA cleavage into nucleosomic fragments. Its morphological expression is characterized by deep nuclear changes, consisting of typical cap-shaped chromatin marginations, followed by nuclear fragmentation and final formation of numerous micronuclei. Cytoplasmic damage appears in a very late stage of the process and the greatest part of the phenomenon appears to take place despite good preservation of the plasma membrane and organellar component. In the present study we analyzed apoptosis in camptothecin-treated HL60 leukaemia cells, and in freshly isolated mouse thymocytes treated with dexamethasone. The process was first quantified and time monitored by flow cytometry. Subsequently the specimens were processed for morphological examination in order to investigate the behaviour of the different nuclear domains. To follow DNA and RNA localization, we utilized osmium ammine and DNase-colloidal gold cytochemical reactions. The concentration of most DNA in the cap-shaped structures was demonstrated by these reactions. Confocal microscopy of cells processed by in situ nick-translation suggested that DNA was firstly cleaved and subsequently condensed in cup-shaped structures. Despite the strong nuclear modifications, nucleoli could be clearly recognized until the late apoptotic stages.

Animals↗

Protease-nexin I as an androgen-dependent secretory product of the murine seminal vesicle.

A search for inhibitors of urokinase-type plasminogen activator (uPA) in the male and female murine genital tracts revealed high levels of a uPA ligand in the seminal vesicle. This ligand is functionally, biochemically and immunologically indistinguishable from protease-nexin I (PN-I), a serpin ligand of thrombin and uPA previously detected only in mesenchymal cells and astrocytes. A survey of murine tissues indicates that PN-I mRNA is most abundant in seminal vesicles, where it represents 0.2-0.4% of the mRNAs. PN-I is synthesized in the epithelium of the seminal vesicle, as determined by in situ hybridization, and is secreted in the lumen of the gland. PN-I levels are much lower in immature animals, and strongly decreased upon castration. Testosterone treatment of castrated males rapidly restores PN-I mRNA levels, indicating that PN-I gene expression is under androgen control.

Amyloid beta-Protein Precursor↗

Phorbol ester-induced effects on cell cycle progression and terminal deoxynucleotidyltransferase (TdT) activity in KM-3 pre-B cell line.

Phorbol myristic acetate (PMA) is a tumor-promoting agent that has been shown to induce differentiation of human leukemia cells and of normal lymphoid cells. We have investigated the ability of PMA to induce inhibition of cell growth of the human KM-3 pre-B leukemic cell line by multiparametric analysis. Our results show that PMA treatment induces cell differentiation with the disappearance of terminal deoxynucleotidyltransferase and a decrease of cell growth, as evaluated by [3H]thymidine uptake. Flow cytometric analysis of BrdU incorporation shows that PMA is able to induce a modification of the cell cycle with a sharp decrease of the percentage of S-phase cells, which is more evident after 24 h of treatment. Comparison between the cell growth kinetics and TdT synthesis and activity shows that differentiated cells are still able to proliferate to a certain extent and that the TdT disappearance and the initial decrease of cell proliferation are two independent effects of PMA.

B-Lymphocytes↗

Inositol lipid-mediated intranuclear signalling: a comparative analysis of in vivo labelling in interferon alpha-sensitive and -resistant Daudi lymphoma cells.

Changes in inositol lipid and diacylglycerol metabolism have been analysed in Daudi lymphoma cells treated up to 24 h with human DNA recombinant interferon alpha. Results showing a different response of nuclear phosphoinositides and diacylglycerol, compared to whole cells, suggest that the intranuclear signalling system activated by interferon in Daudi cells involves nuclear inositol lipid metabolism. A well-characterized clone of Daudi cells selected for resistance to the antiproliferative action of interferon provided controls for the specificity of results.

Adolescent↗

B-cell size influences glucose-stimulated insulin secretion.

To determine whether the heterogeneous B-cell response to glucose is related to a different metabolic handling of this sugar, we have compared rat B-cells differing in their redox response to glucose stimulation. To this end, a population of B-cells showing increased NAD(P)H autofluorescence after a 15-min exposure to 16.7 mM glucose was sorted from a population of B-cells that, under the very same conditions, failed to show detectable changes in basal NADP(H) autofluorescence. Insulin secretion was evaluated by a reverse hemolytic plaque assay in these two populations, referred to as high and low NAD(P)H, respectively. After a 30-min stimulation by 16.7 mM glucose, both populations comprised secreting B-cells and B-cells that did not release detectable amounts of insulin. However, the percentage of secreting B-cells and total insulin output were larger (P < 0.01-0.02) in the high- (77.9 +/- 6.5% and 141.7 +/- 27.4 microns2 x 10(3)) than in the low-NAD(P)H population (58.7 +/- 6% and 92.7 +/- 20.5 microns2 x 10(3)). The high-NAD(P)H population also comprised B-cells that, on average, had a larger (P < 0.001) profile area (142.9 +/- 2.3 microns2) than the B-cells of the low-NAD(P)H population (118.6 +/- 1.5 microns2). Glucose-induced insulin secretion was similar in the high- and low-NAD(P)H group when cells of similar sizes were compared and increased similarly in the two populations as a function of B-cell size. Analysis of variance revealed that insulin secretion was influenced (P < 0.005) by the size of B-cells and not by their NAD(P)H level.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

In vivo modulation of connexin 43 gene expression and junctional coupling of pancreatic B-cells.

We have explored the expression of gap junctional proteins and corresponding mRNAs by insulin-producing B-cells of native rat pancreas and of a transplantable rat insulinoma. By immunostaining cryostat sections (indirect immunofluorescence) and crude membrane preparations (Western blots) with antibodies against connexins 26, 32, and 43 and by hybridizing total islet and insulinoma RNA (Northern blot) with cRNAs for the latter two proteins, we have found that normal and tumoral B-cells express connexin 43 but do not show detectable levels of either connexin 32 or 26. By evaluating the conductance (dual patch-clamp whole-cell recording) and permeability of junctional channels (microinjection of Lucifer yellow), we have found that control B-cells show low levels of electrical and dye coupling in only a portion of the pairs studied. By studying B-cells of glibenclamide-treated rats, we have found that sustained stimulation of insulin release in vivo is associated with a two-fold increase in the level of connexin 43 gene transcripts and in the incidence of both ionic and dye coupling. These observations indicate that (1) connexin 43 is a major component of communicating channels between insulin-producing cells; (2) some but not all B-cells are electrically coupled by low conductance junctional channels; and (3) connexin 43 gene transcripts and incidence of junctional coupling are modulated in parallel during sustained stimulation of B-cell functioning in vivo.

Animals↗

Repeated glucose stimulation reveals distinct and lasting secretion patterns of individual rat pancreatic B cells.

To determine whether pancreatic B cells show a constant secretion pattern during repeated stimulations, we have used a sequential hemolytic plaque assay to monitor their individual insulin release during several successive 30-min incubations in the presence of 16.7 mM glucose. We have found that the total B cell secretion did not vary significantly in these successive glucose stimulations and that, under these conditions, the majority of B cells that were stimulated to release insulin during the first incubation also secreted during the second, third, and, when this was tested, during the fourth incubation. Similarly, most of the B cells that did not release detectable amounts of insulin during the first incubation did not secrete also during the two (or three) subsequent secretion tests. Together, the two groups of B cells that showed a constant secretory pattern, represented approximately 75% of the entire B cell population. The remaining 25% of B cells shifted from a secreting to a non-secreting state, or vice versa, from one incubation to another. These observations were made under three different time frames in which we tested single B cells as well as B cell clusters at rather different intervals. These findings support the existence of distinct B cell subpopulations differing lastingly in their ability to secrete insulin in response to glucose.

Animals↗

Actively synthesizing beta-cells secrete preferentially after glucose stimulation.

To establish whether the heterogeneous secretion of glucose-stimulated beta-cells correlates with a different biosynthetic activity, we have studied the secretion and biosynthesis of the very same beta-cells by combining a hemolytic plaque assay with autoradiography. After a 10-min incubation in 2.8 mM glucose, 52 +/- 2% of dispersed rat beta-cells incorporated [3H] leucine into newly synthesized proteins, as revealed by autoradiographic labeling. When the incubation was performed in 16.7 mM glucose, larger (P less than 0.02) proportions (92 +/- 4%) of plaque-forming, i.e. insulin-secreting, and nonplaque-forming beta-cells (74 +/- 4%) were autoradiographically labeled. Labeled and unlabeled beta-cells were stimulated to secrete insulin during a 30-min incubation in 16.7 mM glucose, as revealed by the larger (P less than 0.001) formation of hemolytic plaques. Under these conditions, autoradiographically labeled beta-cells were recruited preferentially (P less than 0.01) and secreted more (P less than 0.04) than unlabeled beta-cells. Analogous observations were made with beta-cell pairs. Under glucose stimulation, pairs comprising two autoradiographically labeled beta-cells secreted more (P less than 0.004) than pairs comprising one or no labeled beta-cells. The data indicate that under glucose stimulation, 1) secreting and nonsecreting beta-cells increase protein biosynthesis; 2) biosynthetically active and inactive beta-cells increase insulin secretion; 3) beta-cells synthesizing new proteins release insulin preferentially; and 4) contact decreases the biosynthetic and secretory heterogeneity of beta-cells.

Animals↗

Ion channels of glucose-responsive and -unresponsive beta-cells.

To assess whether different electrophysiological characteristics could account for the heterogeneous secretion of individual beta-cells in vitro, we used patch-clamp configurations to study currents in plaque-forming (insulin-secreting) and non-plaque-forming rat pancreatic beta-cells that were distinguished in a reverse hemolytic plaque assay (RHPA) after a 30-min stimulation by 16.7 mM glucose. RHPA showed that the population of single beta-cells under study was stimulated (P less than 0.01-0.001) to secrete insulin by 16.7 mM glucose, 100 microM tolbutamide, 20 microM glyburide, or 30 mM KCl but, under these conditions, also comprised beta-cells that did not secrete detectable amounts of insulin. Under current clamp conditions, secreting and nonsecreting beta-cells showed analogous resting membrane potentials (approximately 60 mV) and were similarly depolarized by 30 mm KCl and 100 microM tolbutamide. Under voltage-clamp conditions, total membrane conductance (approximately 6 nS) was also similar in the glucose-responsive and -unresponsive beta-cells, which, when monitored in the whole-cell configuration after RHPA, showed the following currents: a voltage-dependent Na+ current, a voltage-activated Ba2+ current, a voltage-dependent K+ delayed-rectifier current, a voltage-dependent Ca(2+)-activated K+ current, and a voltage-independent and tolbutamide-sensitive K+ current. In the cell-attached configuration and the presence of 2.8 mM glucose, secreting and nonsecreting beta-cells displayed a similar single-channel activity that was abolished when glucose concentration was raised to 16.7 mM. We conclude that beta-cells studied after RHPA have an electrically normal membrane whether they release insulin in response to 16.7 mM glucose or not.

Animals↗

Rapid and reversible secretion changes during uncoupling of rat insulin-producing cells.

To determine whether insulin secretion is affected by a blockage of gap junctions between B cells, we have studied the secretion of rat pancreatic islets of Langerhans, primary dispersed islet cells, and cells of the RINm5F line, during short-term exposure to heptanol. Within minutes, this alkanol blocked gap junctions between the B cells of intact islets and abolished their normal secretory response to glucose. These two changes were rapidly and fully reversible after return of the islets to control medium. We further found that heptanol had no significant effect on the glucose-stimulated secretion of single B cells but inhibited that of B cell pairs. In the clone of RINm5F cells, whose junctional coupling and D-glyceraldehyde-induced stimulation of insulin release by aggregated cells were also inhibited by heptanol, this alkanol did not perturb intracellular pH and Ca2+ and the most distal steps of the secretion pathway. In summary, a gap junction blocker affected the secretion of insulin-producing cells by a mechanism which is dependent on cell contact and is not associated with detectable pleiotropic perturbations of the cell secretory machinery. The data provide evidence for the involvement of junctional coupling in the control of insulin secretion.

1-Methyl-3-isobutylxanthine↗