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Biomedical subjects

M Zubiaur

Publications and source records attributed to M Zubiaur.

At least 19 recordsLinked to original sources

Signaling through CD38 induces NK cell activation.

Human CD38 is a signal transduction molecule, and, concurrently, an ectoenzyme catalyzing the synthesis and degradation of cyclic ADP-ribose (cADPR), a potent Ca2+ mobilizer. One facet of CD38 that has not yet been addressed is its role in NK cells. To this end, the events triggered by CD38 ligation with agonistic mAb were analyzed on freshly purified human NK cells. Ligation was followed by (i) a significant rise in the intracellular level of Ca2+, (ii) increased expression of HLA class II and CD25, and (iii) tyrosine phosphorylation of discrete cytoplasmic substrates. The phosphorylation cascade involved CD3-zeta and FcepsilonRIgamma chains, zeta-associated protein (ZAP)-70 and the proto-oncogene product c-Cbl. NK effector functions were then analyzed: CD38 signaling was able (iv) to induce release of IFN-gamma and, more prominently, of granulocyte macrophage colony stimulating factor, as assessed by measuring both mRNA and protein products; and, lastly, (v) to induce cytolytic effector functions on target cells after IL-2 activation, as shown both by cytotoxicity assays and ultrastructural changes. The tyrosine-phosphorylated substrates and all the effects mediated by CD38 were similar to those observed following triggering via CD16 (FcgammaRIIIA); moreover, Ca2+ mobilization via CD38 no longer operated in NK-derived cell lines lacking CD16. These results suggest that the activation signals transduced by CD38 in NK cells elicit relevant cellular events. The effects are similar to those elicited via CD16 and possibly rely on common signaling pathways.

ADP-ribosyl Cyclase↗

Complexation between tert-butyl ketones and beta-cyclodextrin. Structural study by NMR and MD simulations

A structural study (NMR and MD) of the complexation between tert-butyl ketones and beta-cyclodextrin has been performed. A priority order for the alkyl and phenyl groups composing the ketones has been determined based on association constants: Ph- > C(6)H(11)- = t-Bu- > Bu-, Pr-, Me-. Geometries for the complexes are proposed based on NOE values and on the MD simulations. Bimodal complexation occurs in all the compounds studied.

Journal Article↗

The CD3-gamma delta epsilon transducing module mediates CD38-induced protein-tyrosine kinase and mitogen-activated protein kinase activation in Jurkat T cells.

We have examined the ability of the CD3-gamma delta epsilon and CD3-zeta signaling modules of the T cell receptor (TCR) to couple CD38 to intracellular signaling pathways. The results demonstrated that in TCR+ T cells that express the whole set of CD3 subunits CD38 ligation led to complete tyrosine phosphorylation of both CD3-zeta and CD3-epsilon polypeptide chains. In contrast, in TCR+ cells with a defective CD3-zeta association CD38 engagement caused tyrosine phosphorylation of CD3-epsilon but not of CD3-zeta. Despite these differences, in both cell types CD38 ligation resulted in protein-tyrosine kinase and mitogen-activated protein kinase activation. However, in cells expressing chimerical CD25-zeta or CD25-epsilon receptors or in a TCR-beta- Jurkat T cell line, CD38 ligation did not result in tyrosine phosphorylation of the chimeric receptors, or CD3 subunits, or protein-tyrosine kinase or mitogen-activated protein kinase activation. In summary, these results support a model in which CD38 transduces activating signals inside the cell by means of CD3-epsilon and CD3-zeta tyrosine phosphorylation. Moreover, these data identify the CD3-gamma delta epsilon signaling module as a necessary and sufficient component of the TCR/CD3 complex involved in T cell activation through CD38.

ADP-ribosyl Cyclase↗

Learning volleyball serves: a preliminary study of the effects of knowledge of performance and of results.

Recently, doubts have begun to surface about the emphasis that for years has been given to the variable knowledge of results in motor learning, and a view has been expressed that information on how an action has been made (knowledge of performance) may be of more use. This study compared the two types of information in learning a volleyball serve by eight subjects, who were given the two kinds of feedback at various points in the process. Analysis seems to show that knowledge of performance tends to be more effective for learning and that there may be interference across information if knowledge of results is provided after knowledge of performance.

Adolescent↗

CD38 is functionally dependent on the TCR/CD3 complex in human T cells.

One of the functions of surface CD38 is the induction of phosphorylation of discrete cytoplasmic substrates and mobilization of cytoplasmic calcium (Ca2+). The present work addresses the issue of whether the signaling mediated via CD38 operates through an independent pathway or, alternatively, is linked to the TCR/CD3 signaling machinery. We studied the signals elicited through CD38 by the specific agonistic IB4 monoclonal antibody (mAb) by monitoring the levels of cytoplasmic Ca2+ and the induced phenotypic and functional variations in T cell growth. IB4 mAb presented the unique ability to increase cytoplasmic Ca2+ levels, which correlated with the phosphorylation of the PLC-gamma1. These effects were blocked by phorbol 12-myristate 13-acetate (PMA) and were dependent on the presence of a functional TCR/CD3 surface complex, no effects being recorded on mutant Jurkat cells lacking part of the CD3 structures. CD38 signaling appeared to share with TCR/CD3 the ability to induce apoptotic cell death in Jurkat T cells, an event paralleled by specific up-regulation of the Fas molecule and inhibited by cyclosporin A. CD28, a costimulatory molecule, is synergized by increasing CD38-induced apoptotic cell death. The results indicate the existence of a strong functional interdependence between CD38 and TCR/CD3.

ADP-ribosyl Cyclase↗

CD38 ligation results in activation of the Raf-1/mitogen-activated protein kinase and the CD3-zeta/zeta-associated protein-70 signaling pathways in Jurkat T lymphocytes.

CD38 ligation with the specific mAb IB4 induced early and late signaling events in Jurkat T cells, as judged by the transient induction of tyrosine phosphorylation of phospholipase C-gamma1, c-Cbl, zeta-associated protein (ZAP)-70, Shc, extracellular signal-regulated protein kinase-2 (Erk-2) as mitogen-activated protein (MAP) kinase, and increased expression of the activation Ag CD69. In addition, CD38 ligation induced Ras-dependent events such as Erk-2 mobility shift and increased Erk-2 kinase activity. Further evidence that Erk-2 activation is regulated by CD38 ligation was obtained indirectly with the observed induction of Raf-1, Lck, and Sos-1 mobility shifts, processes that are believed to be dependent, at least in part, on MAP kinase activation. Using a protein tyrosine kinase inhibitor, herbimycin A, or a protein kinase C inhibitor, Ro-31-8220, we found that the anti-CD38-induced Erk-2 activation is both protein tyrosine kinase and protein kinase C dependent. CD38 ligation also resulted in increased CD3-zeta tyrosine phosphorylation and its association with ZAP-70. CD38 ligation in a Jurkat Lck-deficient mutant, JCam1, failed to induce substrate tyrosine phosphorylation and activation of Erk-2. These data indicated that in Jurkat T cells, CD38 receptor triggering results in Lck-regulated activation of both Raf-1/MAP kinase and CD3-zeta/ZAP-70/phospholipase C-gamma1 signaling pathways.

ADP-ribosyl Cyclase↗

An octamer element functions as a regulatory element in the differentiation-responsive CD11c integrin gene promoter: OCT-2 inducibility during myelomonocytic differentiation.

The integrin CD11c/CD18 mediates leukocyte adhesion to endothelium and other cell types and is a receptor for LPS, iC3b, and fibrinogen. CD11c expression is restricted to myeloid and activated B cells, is regulated during leukocyte differentiation, and constitutes a diagnostic tool for hairy cell leukemia. Mapping of in vivo DNA-protein interactions in the CD11c proximal promoter revealed three adjacent myeloid-specific interactions, one of which lies on an octamer consensus sequence, ATTT GCAT (Oct185). Oct185 disruption increased the CD11c promoter activity while decreasing its myeloid differentiation responsiveness, indicating that Oct185 contributes to the activity of the CD11c promoter and suggesting that Oct185 is a negative regulatory element whose function changes during myeloid differentiation. Oct185 is recognized by the ubiquitous Oct-1 factor in all cell lineages and by Oct-2 in B lymphoid lineage cells. Unexpectedly, Oct-2 binding to Oct185 was induced de novo upon monocytic differentiation of U937 and HL-60 cells but not during HL-60 granulocytic differentiation, as determined by electrophoretic mobility shift assays and immunochemical studies, and Oct-2 complexes were also observed in cultured adherent monocytes. Western blotting showed that the pattern of Oct-2 isoforms in myeloid cells is similar to that seen in B cells. The Oct-2 up-regulated expression in differentiating myeloid cells and its binding to the Oct185 negative regulatory element suggests its involvement in the differentiation-regulated activity of the CD11c promoter and might represent an important parameter for the myeloid- and B cell-restricted expression of the CD11c/CD18 integrin and other molecules with similar patterns of expression.

Blotting, Western↗

A role for activated p21 ras in inhibition/regulation of platelet-derived growth factor (PDGF) type-beta receptor activation.

Ligand-stimulated Platelet-Derived Growth Factor (PDGF) type-beta receptor autophosphorylation, and tyrosine phosphorylation of receptor-associated signalling proteins, is blocked in cells expressing activated Ras genes. A factor present in membrane fractions of v-ras-expressing fibroblasts (Kbalb cells) dominantly inhibits the autophosphorylation of the PDGF type-beta receptor. Purification of this factor, via ion exchange, reveals that the inhibitor can be physically separated from the PDGF type-beta receptor, with reconstitution of PDGF type-beta receptor kinase activity in response to ligand binding. The inhibitor exhibited specificity for the PDGF type-beta receptor, and consistently co-purified with activated p21 ras, with Syp/PTP-2, and with Grb2. Neutralization of the p21 ras protein from the Kbalb cell membranes by p21 ras-specific monoclonal antibodies, however, completely removed the inhibition of PDGF type-beta receptor, rendering the PDGF type-beta receptor molecule capable of autophosphorylation in response to ligand. These results indicate that activated p21 ras either interacts directly with the PDGF type-beta receptor to inhibit autokinase activity, or complexes with different molecules such as Syp and/or Grb2 at the cell membrane to act on another effector which then inhibits PDGF type-beta receptor function.

3T3 Cells↗

A small GTP-binding protein, Rho, associates with the platelet-derived growth factor type-beta receptor upon ligand binding.

Ligand binding to the platelet-derived growth factor (PDGF) receptor initiates a complex and diverging cascade of signaling pathways. GTP-binding proteins with intrinsic GTPase activity (G-proteins) frequently link cell surface receptors to intracellular signaling pathways, but no close associations of the PDGF receptor and any small G-proteins, nor any such associations activated by ligand binding to the receptor have been previously reported. We demonstrate that a small GTP-binding protein binds specifically to the murine and human PDGF type-beta receptor. In response to PDGF-BB stimulation, there is an increase in the amount of labeled small G-protein associated with the PDGF type-beta receptor. The GTP-binding protein did not undergo ligand-induced association with a mutant receptor protein that was unable to bind ATP. Proteolytic cleavage analysis, together with two-dimensional separation techniques, identified the small G-protein specifically associating with the PDGF type-beta receptor after ligand binding as a member of the Rho family. This was confirmed by demonstration that the small G-protein coimmunoprecipitated by the anti-PDGF receptor antibody was a substrate for the ADP-ribosyltransferase C3 exoenzyme. Thus, the PDGF type-beta receptor may form a complex with one or more small G-proteins upon binding PDGF-BB, and the Rho small G-protein is likely to be an important component of the proteins making up the multimeric signaling complex of the PDGF type-beta receptor.

3T3 Cells↗

G(O), a guanine nucleotide binding protein, is expressed during neurite extension in the embryonic mouse.

The developmental pattern of expression of the G protein alpha o subunit and GAP43 were compared by immunohistochemical staining of mouse embryos. Staining for alpha o and GAP43 was identical and detected throughout the developing nervous system, and the antigens first appeared in neurons at the beginning of neuronal differentiation. GAP43 and alpha o were not detected in regions containing only neuroblasts. These observations suggest that alpha o and GAP43 may not be required for the decision to pass from neuroblast to differentiated neuron, but may play a role in signal transduction during early neuronal development.

Animals↗

Nerve growth factor changes G protein levels and localization in PC12 cells.

Growth cones at the growing tips of developing neurites contain the machinery to transmit information from receptors to a variety of intracellular enzymes and ion channels. In order to understand how signals are transmitted across the membrane, we asked whether the multiplicity of signalling pathways in the growth cone is reflected by the diversity of G proteins found in this organelle. Our immunohistochemical analysis indicated that growth cones of differentiated PC12 cells contain at least 4 alpha G protein subunits, 3 that are pertussis toxin substrates (alpha o, alpha i-1, alpha i-2) and 1 that is not (alpha q). In addition to localization in the neurites and growth cones, alpha o, alpha i-1, alpha i-2, and alpha q were detected in intracellular perinuclear structures. We also analyzed the temporal change in G proteins in PC12 cells differentiated by treatment with nerve growth factor (NGF). Time course experiments have shown that alpha o and beta proteins coordinately increase after 2 days of treatment with NGF, reach a maximum at 4 days, and remain elevated. In contrast to alpha o, alpha i-2 reached a peak at 4 days, then declined to almost the basal level by day 7 of treatment with NGF. These data indicated that the levels of alpha o, alpha i-2, and beta are differentially regulated during NGF-induced neuronal differentiation in PC12 cells. The alpha o protein was highly concentrated at the tips of the growth cones before the cellular level of alpha o had increased appreciably, suggesting that the alpha subunits are translocated during the first stage of neurite development. In addition, not every neural process has the same high level of alpha o, suggesting that G proteins may help define the specialized functions of particular neurites within a single cell.

Animals↗

Expression of a G protein subunit, alpha i-1, in Balb/c 3T3 cells leads to agonist-specific changes in growth regulation.

Cellular receptors for many hormones, neurotransmitters, and growth factors are coupled to intracellular effector enzymes or ion channels through a set of heterotrimeric G proteins. In order to determine whether isoforms of G protein alpha subunits contribute differentially to mitogenic responses, we introduced an alpha subunit isoform, alpha i-1, into Balb/c 3T3 cells that normally lack this subtype. Balb/c 3T3 cells transfected with a plasmid containing cDNA encoding alpha i-1 expressed the alpha i-1 protein as judged both by the appearance of immunoreactive alpha i-1 protein on Western blots and by two-dimensional analysis of the proteins [32P]ADP-ribosylated by pertussis toxin. The amount of alpha i-1 expressed is less than the amount of alpha subunits endogenously present in these cells. Expression of alpha i-1 in the transfected cells slightly blunts stimulation of adenylylcyclase by GTP, guanosine 5'-3-O-(thio)triphosphate, or forskolin, but has no major effect on the ability of thrombin to inhibit the enzyme. In contrast, the expression of alpha i-1 has significant effects on cell growth and on the mitogenic response to thrombin. The alpha i-1-transfected cells have a doubling time that is twice as long as control cells transfected with the same plasmid without a cDNA insert. Despite their slower growth, thymidine incorporation in response to thrombin is greater in transfected than in control cells. Thrombin-stimulated DNA synthesis is sensitive to inhibition by pertussis toxin and is 5-fold more sensitive to inhibition by pertussis toxin in transfected cells than in control cells. The changes are receptor-specific since the mitogenic response to platelet-derived growth factor is indistinguishable between control and transfected cells. These studies suggest that the alpha i subunit composition of the cell may have profound effects on its growth and its response to stimulation through a specific cell surface receptor.

3T3 Cells↗

Embryonic stem cells lacking a functional inhibitory G-protein subunit (alpha i2) produced by gene targeting of both alleles.

The alpha i2 subunit of the inhibitory heterotrimeric guanine nucleotide-binding proteins is highly conserved in mammals and is expressed in all cell types, but its exact function is not yet defined. We have investigated the role of this protein by producing embryonic stem (ES) cells lacking a functional alpha i2 gene. These alpha i2-null cell lines regulate adenylyl cyclase and grow and differentiate in vitro the same as wild-type ES cells. Homologous recombination was used to sequentially inactivate both copies of the alpha i2 gene. The first allele was inactivated by insertion of a neomycin-resistance gene. We modified the hygromycin B-resistance gene for improved expression in ES cells and used this gene to inactivate the remaining normal allele. The techniques used should be generally applicable to other genes whether or not they are expressed in ES cells.

Adenylyl Cyclases↗

Role of the natriuretic hormone in the specific natriuresis induced by intraportal infusion of hypertonic saline in dogs.

Previous experiments from our laboratory demonstrated that the infusion of a small amount of hypertonic saline into the portal vein induced higher diuresis and natriuresis than those induced by the infusion of the same amount of saline into a cubital vein. The purpose of the present experiment was to study the role of the so-called natriuretic hormone in this phenomenon. For this purpose, two groups of 5 dogs each were infused with 855 mM NaCl (0.05 ml X min-1 for 20 min), one group through the portal vein and the other through the cubital vein. Samples of peripheral, arterial and suprahepatic blood and urine were obtained, and the fraction described to contain the natriuretic hormone was purified by gel filtration chromatography. Its natriuretic activity was assayed by measuring the natriuresis induced by its infusion in conscious, unilaterally nephrectomized rats. The urine taken from the dogs infused with hypertonic saline into the porta showed higher natriuretic activity than that obtained before infusion or from the dogs infused into the cubital vein. Also, natriuretic activity was observed in the suprahepatic and arterial plasma samples obtained after portal infusion but not in those obtained before the infusion. There were no differences in natriuretic activity between suprahepatic and arterial samples. These results suggest that the natriuretic hormone plays an important role in the natriuresis induced by portal hypertonic saline infusion, and they do not support the hepatic origin of this substance.

Animals↗

Renal metabolism of gut glucagon-like immunoreactivity.

To examine the role of the kidney in the catabolism of gut glucagon-like immunoreactivity (GLI), we compared the plasma GLI responses of normal and nephrectomized dogs given intraduodenal glucose loads and studied the clearance of gut GLI by the isolated perfused rat kidney. Both basal and postload plasma samples were analyzed with a glucagon C-terminal specific antibody and a GLI-reacting N-terminal antibody. The GLI response was taken to be the difference between the increments seen with these two antibodies after glucose loading. Although glucose-induced GLI increments could not be detected in untreated plasma from nephrectomized dogs, chromatographed plasma revealed a significant rise in GLI-fraction II (7000--12000 daltons) in both nephrectomized and normal dogs (732 +/- 200 and 586 +/- 111 pg/ml, respectively). We also found that crystalline glucagon was cleared by the isolated closed-circuit perfused rat kidney, but gut-GLI either as crude extract or as peak I (7000--12000 daltons) was not. Our data suggest that the kidney may not play an important role in gut-GLI catabolism.

Animals↗

Study on the natriuretic activity in the suprahepatic plasma after portal hypertonic NaCl infusion in dogs.

The involvement of the liver in the control of the renal excretion of water and sodium can be deduced from some recent investigations. Hypertonic or isotonic sodium chloride infusion into the hepatic portal vein enhanced renal sodium excretion when compared with identical infusions into a systemic vein. It has been suggested that a humoral factor produced by the liver could be a functional link between the liver and the kidney. In order to test this hypothesis, the present experiments were carried out in two groups of anesthetized dogs. Animals from group I were infused with NaCl (855 mmol/l) at a rate of 0.05 ml/min/kg b.w. during 30 min, into the portal vein. Blood samples were withdrawn from the suprahepatic vein, before (SH1) and coinciding with the maximal natriuresis after hypertonic saline infusion (SH2). Plasma from SH1 and SH2 were infused into the left renal artery (LRA) of dogs from group II. Two 20 min clearance periods were performed before and after each SH-infusion. After both SH-infusions urinary sodium excretion (UNaV) was significantly increased from preinfusion values in both kidneys, and these increases were significantly greater after SH2 than after SH1. No significant differences were found in UNaV between left and right kidney. After both plasma infusions the increases in urinary volume and osmolar clearance were higher in the infused than in the not infused kidney. These results suggest that the plasma leaving the liver contains a substance with natriuretic activity and that the infusion of hypertonic NaCl into the portal vein could induce either a higher secretion of the same substance or the presence of other different substance.

Animals↗

Corticosteroidogenesis modulation by beta-endorphin and dynorphin1-17 in isolated rat adrenocortical cells.

Two opioid peptides, beta-endorphin and dynorphin1-17 were bioassayed with isolated rat adrenocortical cells. beta-Endorphin increases basal production of corticosterone as well as the adrenal responsiveness to low doses of ACTH, these effects being partially reversed by naloxone. Dynorphin1-17, without affecting basal corticosterone synthesis, increases adrenocortical responsiveness to ACTH; naloxone does not influence this effect. It is suggested that peripheral opioid peptides may participate in the maintenance of the homeostatic balance by modulating adrenal corticosteroidogenesis.

Adrenal Cortex↗