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Biomedical subjects

D G Payan

Publications and source records attributed to D G Payan.

At least 19 recordsLinked to original sources

Multiple intracellular signaling pathways of the neuropeptide substance P receptor.

The rat substance P (SP) receptor cDNA has been transfected into cultured rat KNRK cells, and a stable cell line expressing functional SP receptors established. Upon stimulation with SP, these cells responded by simultaneously activating two signaling pathways: the mobilization of intracellular Ca2+ and the raising of cyclic adenosine triphosphate (cAMP) levels. Both Ca2+ and cAMP responses were elicited in a similar dose-dependent manner with half maximal concentrations of approximately 5 x 10(-10) M. Following ionomycin treatment SP-dependent Ca2+ responses were abolished, whereas cAMP responses were preserved. Forskolin eliminated the SP-dependent cAMP elevation, however, the SP-induced Ca2+ mobilization remained unchanged. Furthermore, treatment with phorbol esters had no significant effect on either of the two SP-induced responses. Thus it appears that the SP receptor is capable of independently activating Ca2+ mobilization and cAMP pathways. These results may provide new insights for further understanding the diverse activities of SP in various systems in vitro and in vivo.

Animals

Antibodies to the rat substance P receptor: production and characterization.

1. A protein A-rat substance P receptor (SPR) fusion protein was genetically engineered and used as an immunogen to raise a polyclonal antiserum to the SPR. The fusion protein was expressed in Escherichia coli driven by the heat-inducible lambda promoter (lambda Pr). 2. The fusion protein was purified using an IgG-Sepharose column, which specifically binds proteins containing the protein A moiety. The IgG fraction obtained after the immunization was cleaved to produce Fab fragments, which were subsequently purified using a fusion protein affinity column. The serum (anti-SPR Fab serum) was analyzed by fluorescence-activated cell sorting (FACS) and immunohistochemistry on both a constitutive cell line for the SPR (AR42J) and a cell line transfected with the SPR (KNRKSPR). 3. Specificity of the antiserum for SPR was confirmed by immunohistochemistry on cells using antiserum that had been preincubated with the protein A fusion protein (blocked). 4. The Ca2+ signal normally observed on stimulation of SPR with SP in AR42J cells and SP binding to KNRKSPR cells was shown to be diminished in the presence of anti-SPR Fab serum. SPR from both cell lines was immunoprecipitated using the anti-SPR Fab serum. The antiserum itself did not induce intracellular Ca2+ mobilization normally observed when cells were incubated with SP. 5. This specific SPR antiserum will be a useful tool to investigate further the mechanisms of SP/SPR interactions.

Amino Acid Sequence

Functional and immunological responses of Jurkat lymphocytes transfected with the substance P receptor.

1. We have transfected the rat substance P receptor (SPR) cDNA into the leukemic T-lymphocyte cell line Jurkat (J-wt) in order to study the effects of substance P (SP) on lymphocyte signaling mechanisms and the resultant neuropeptide-induced immunological changes. 2. The SPR cDNA was transfected into J-wt by the method of electroporation. Clones expressing SPRs were selected using a functional assay that measured SP-induced mobilization of intracellular Ca2+ ([Ca2+]i) in a fluorescence activated cell sorter (FACS) and by their expression of specific 125I-SP binding. 3. One clone, J-SPR, was identified and shown by Northern blot and 125I-SP saturation binding techniques to express the 2.2-kb SPR message and approximately 50,000 SPRs/cell with a Kd of 0.3 nM, respectively. Stimulation of J-SPR by SP resulted in the rapid mobilization of [Ca2+]i. This response was dose dependent in the range 10(-11)-10(-6) M SP and was maximal at 10(-7) M SP, with an EC50 of 0.3-0.5 nM SP. We further demonstrated that the SPR is rapidly desensitized following SP stimulation and by activation of the cell's T-cell receptor (TCR). Whole-cell patch-clamp experiments on J-SPR show that SP stimulation induces a Cl- current by a Ca2+ mediated process dependent on Ca2+/calmodulin-dependent protein kinase (CaMK). 4. Stimulation of J-SPR by SP results in changes in the cell surface expression of a number of molecules that play important roles in cell adhesion and activation: the expression of LFA-1 is decreased, and CD2 and IL-2 receptors are increased by 30 min, 6 hr, and 24 hr, respectively, following stimulation, as assessed by antibody staining in a FACS. 5. The expression of functional SPRs in Jurkat lymphocytes will not permit a detailed examination of how the activation of SPRs result in altered immune responses and further elucidate the role this neuropeptide receptor plays in inflammation.

Calcimycin

Measles virus-substance P receptor interaction: Jurkat lymphocytes transfected with substance P receptor cDNA enhance measles virus fusion and replication.

1. We have demonstrated previously (Harrowe et al., 1990), using a lymphoblastoid cell line that constitutively expresses the substance P receptor (SPR) (Payan et al., 1984, 1986), that this receptor may facilitate measles virus (MV) fusion with these cells. In order to test this hypothesis further, a stable cell line transfected with SPR cDNA has been established, and various stages of MV infection in SPR positive and negative cells compared. 2. Jurkat cells, a human T-lymphoblastoid cell line, were transfected with a cDNA clone encoding the SPR. Cells transfected with only the plasmid were used as controls. Jurkat cells and Jurkat vector control cells (J-vo) failed to demonstrate any detectable 125I-SP binding, whereas a clonally selected population of cells transfected with SPR cDNA (J-SPR) expressed about 50,000 receptors/cell (Sudduth-Klinger et al., 1992). 3. Using the J-vo- and J-SPR-transfected cell lines, the following experiments were conducted to investigate the effect of SPR expression on MV infection. To determine if MV would preferentially attach to J-SPR as compared to J-vo, we absorbed virus to cells at 37 degrees C for various times and measured bound MV using a fluorescence activated cell sorter (FACS). Using this approach, we found that MV bound to a greater degree to J-SPR compared with J-vo. In addition to equilibrium being reached faster for J-SPR, the total amount of bound MV was higher on J-SPR. The effect was greater at lower MOIs, suggesting that there existed multiple binding sites for MV on these cells and that the affinity is higher for those cells expressing the SPR. 4. Since binding does not necessitate a successful viral infection, we needed to know if this difference in binding reflected a difference in infection. This was demonstrated by showing an approximate twofold increase in infected cells after a 2-hr binding period with J-SPR as compared to J-vo at an MOI of 1 in an infectious cell-center assay. Moreover, when both cells types were subjected to continuous infection in culture, J-SPR-infected cells produced a seven- to ninefold increase in measles viral titer in 24 hr as compared with J-vo. The observed increase in viral titer may have resulted in more of the J-SPR cells binding virus, as indicated by our binding and infectious cell-center data, or alternatively, the virus might have entered the J-SPR cells faster and begun replication before the J-vo-infected cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence

Functional diversity of histamine and histamine receptors.

In order to analyze the mechanisms by which a single biogenic amine like histamine is capable of inducing a wide variety of both physiologic and pathologic functions in various tissues/cells, histamine responses were dissected in detail from a biochemical and pharmacologic point of view. Histamine is synthesized by multiple isozymes of histidine decarboxylase, and catabolized by either diamine oxidase or histamine-N-methyltransferase. Synthesized intracellular histamine may play a role in cell proliferation, whereas released histamine binds to at least three different histamine-specific receptors, then activates various intracellular components, such as Ca++, cAMP, protein kinase, and ion channels. These second messenger pathways interact differentially with each other in various tissues/cells. Moreover, histamine not only activates its own receptors, but also activates other related receptors such as the serotonin 1c receptor. Therefore, to understand the complex actions of histamine, new approaches should be established, in which multiple phenomena can be monitored simultaneously.

Animals

Histamine effects on the 5-HT1c receptor expressed in Xenopus oocytes.

To analyze the cross-reactivity between serotonin (5-HT) and histamine, the in vitro transcribed RNA for the 5-HT1c receptor was functionally expressed in Xenopus oocytes. 5-HT significantly increased 45Ca2+ efflux in RNA-injected oocytes, but not in uninjected and water-injected control oocytes. Furthermore, histamine and the H1 receptor agonists, but not the H2 and H3 agonists, significantly induced 45Ca2+ efflux in 5-HT1c receptor RNA-injected oocytes, but not in uninjected and water-injected oocytes. However, the H1, H2, and H3 antagonists failed to inhibit histamine-induced 45Ca2+ efflux at 10(-6) M. This finding suggests that the 5-HT1c receptor can be activated by both 5-HT and histamine, although the action of histamine is different from classic histamine pharmacology.

Animals

Multiple signaling pathways of histamine H2 receptors.

Histamine H2 receptor (H2R) has been shown to be coupled to adenylate cyclase. However, we have previously demonstrated that H2R-specific stimulation also activated phospholipase C in human HL-60 promyelocytic leukemia cells (Mitsuhashi M. et al. J. Biol. Chem. 264:18356, 1989). We have extended these studies on HL-60 cells to investigate whether histamine-bovine serum albumin conjugates (HA-BSA) specifically recognize H2R and activate phospholipase C pathways. Both histamine (HA) and HA-BSA increased intracellular concentrations of calcium in a H2R specific manner. However, HA-induced calcium mobilization was transient and returned to the basal level within 1-2 min, whereas HA-BSA-induced calcium mobilization was sustained for more than 10 min as a result of the additional influx of extracellular calcium. More interestingly, fluorescein (FITC) labeled HA-BSA was less incorporated into cytosols and present in the membrane fractions for more than 60 min, whereas membrane-bound FITC-HA was rapidly incorporated into cytosols. Furthermore, the levels of inositol 1,3,4,5-tetrakisphosphate, which is known to activate calcium channels were more sustained after HA-BSA stimulation than those of HA alone. These data suggest that H2R activation mechanism is more complex and may be modified by this slowly metabolized "compound ligand".

Calcium

Amyloid beta protein substituent peptides do not interact with the substance P receptor expressed in cultured cells.

The amyloid beta protein (ABP) has been shown to interact with the substance P (SP) receptor in a cell culture model that may mimic the pathogenesis of Alzheimer's disease. In the present study, however, 4 fragments of ABP (beta 1-42, beta 1-16, beta 17-28, and beta 25-35) failed to interact with SP-induced Ca2+ mobilization in SP receptor-expressing cultured cells. Therefore, the action of these ABP-related peptides in our cultured cells is unrelated to the SP receptor.

Alzheimer Disease

Tachykinin receptor cross-talk. Immunological cross-reactivity between the external domains of the substance K and substance P receptors.

In the present study, we have chemically synthesized peptides which correspond to the four putative extracellular domains of the predicted substance K (SK) receptor protein and raised specific polyclonal antibodies against these peptides. These antibodies were then tested for both structural and functional recognition of epitopes on the substance P (SP) receptor on rat AR42J pancreatic cells and human IM9 lymphoblasts, which express the SP receptor, but not the SK receptor. Antibodies directed against the first, second, and fourth external domains of the predicted SK receptor recognized a 58-kDa protein on AR42J cells. This protein has a molecular weight similar to the previously demonstrated SP receptor on both AR42J cells and IM9 cells. Furthermore, antibodies against the second and fourth extracellular domains significantly inhibited specific 125I-SP binding on both AR42J and IM9 cells, and also significantly inhibited SP-induced mobilization of [Ca2+]i on AR42J cells. These data suggest that the second and fourth extracellular domains of the SK and SP receptors may share common structural motifs for ligand binding and signaling mechanism.

Amino Acid Sequence

Structure and expression of a rat agrin.

Agrin is a component of the basal lamina that causes the aggregation of acetylcholine receptors on cultured muscle fibers. An agrin cDNA clone isolated from electromotor neurons of a marine ray was used to characterize the corresponding cDNAs from a rat embryonic spinal cord library. Analysis of a set of clones predicts a 1940 amino acid protein containing 141 cysteine residues. The predicted protein has nine domains homologous to protease inhibitors, a region similar to domain III of laminin, and four epidermal growth factor repeats. The agrin gene is expressed in rat embryonic nervous system and muscle. The rat agrin protein is concentrated at synapses, where it may play a role in development and regeneration.

Agrin

Agonistic activities of histamine-albumin conjugates at histamine H2 receptors on human HL-60 promyelocytic leukemia cells.

We previously identified functional histamine H2 receptors on human HL-60 promyelocytic leukemia cells [J. Biol. Chem. 264: 18356-18362 (1989)]. In the present study, we have compared the action of histamine-albumin conjugates on H2 receptor activation with that of histamine alone. Both histamine and conjugates increased intracellular levels of Ca2+ in an H2 receptor-specific manner. However, binding of fluoresceinated histamine-albumin conjugates to HL-60 cells was not dissociated by 10(-4) M unlabeled histamine, although this concentration of histamine significantly desensitized conjugate responses. These data suggest that histamine-albumin conjugates not only activate H2 receptors but also bind to HL-60 cells nonspecifically or in an H2 receptor-unrelated manner. Moreover, histamine-induced Ca2+ mobilization was transient, whereas conjugate-induced Ca2+ mobilization was sustained for more than 10 min, as a result of the influx of extracellular Ca2+. Therefore, the functional difference between histamine and conjugates may provide a good model for the further understanding of the activation mechanisms of receptor-operated Ca2+ influx.

Albumins

Neuro-endocrine interaction on lymphocytes. Testosterone-induced modulation of the lymphocyte substance P receptor.

Human IM-9 B-lymphoblasts have been shown to express the receptor for the neuropeptide substance P (SP). The present study was undertaken to evaluate the effect of sex hormones on this receptor. Testosterone inhibited [125I]SP binding in a dose-dependent manner with an IC50 of approximately 100 nM, while both estradiol and progesterone failed to inhibit SP binding even at concentrations as high as 1 microM. Furthermore, Scatchard analysis indicated that the dissociation constant (Kd) of the SP receptor was markedly increased from 0.25 nM to 2.2 nM when cells were incubated with testosterone. These data indicate a unique neuro-endocrine interaction on lymphocytes involving the substance P receptor.

Dose-Response Relationship, Drug

Immunomodulation by tachykinin neuropeptides.

Substance P (SP) is an 11-amino-acid neuropeptide found in sensory neurons in the peripheral nervous system. In addition to having well-characterized functions as a peptide neurotransmitter, it also plays a major role in modulating inflammatory and immune responses. SP can alter the proliferative and physiological responses of both lymphocytes and macrophages. These effects are mediated by specific high-affinity SP receptors which have been characterized both kinetically and biochemically. The principle SP binding protein present on human lymphocyte cell membranes is a 58,000-MW hydrophobic glycoprotein. Cellular responses subsequent to the binding of substance P to its receptor that have been identified in various cell populations include phosphatidyl inositol turnover, arachidonic acid metabolism, immunoglobulin synthesis, and enzyme production and secretion. Evidence also suggests that SP modulation of inflammation is a factor in the pathophysiology of certain diseases such as rheumatoid arthritis.

Amino Acid Sequence

Binding of viridans group streptococci to human platelets: a quantitative analysis.

The binding of viridans group streptococci with human platelets was analyzed by two-color flow cytometry. Binding was detected within 15 s of mixing bacteria and platelets. At ratios of bacteria to platelets of 1:1, 10:1, 100:1, and 1,000:1, the percentages of bound streptococci (mean +/- standard deviation) were 93.2% +/- 5.4%, 80.0% +/- 8.6%, 39.8% +/- 11.1%, and 12.5% +/- 2.0%, respectively. Binding of labeled bacteria was reversed by adding a 500-fold excess of unlabeled streptococci. These results demonstrate that streptococcus-platelet binding is rapid, reversible, and saturable, which suggests a specific receptor-ligand interaction.

Blood Platelets

Measles virus-substance P receptor interactions. Possible novel mechanism of viral fusion.

Measles virus (MV) encodes the fusion protein (F) that mediates cell fusion and intercellular spread of the virus, and is homologous to the carboxy terminus of the neuropeptide substance P (SP). In addition, the oligopeptide Z-D-Phe-L-Phe-Gly, also homologous to F and SP, inhibits MV fusion with target cells. These observations raise the question of whether MV uses the SP receptor (SPR) during a specific phase of its infectious cycle. In this report, we examine the structural and functional consequences of this interaction and show, using cross-linking studies, that MV and SP specifically bind to a 52-58-kD protein, previously reported to comprise the SPR on human IM-9 lymphoblasts. Moreover, bound MV and SP are shown to reciprocally displace each other from these cells. In addition, we demonstrate that anti-SP antisera inhibits the cell-to-cell spread of MV, and that SP blocks MV fusion with target cells. These results indicate the presence of MV-SPR interactions during viral fusion, and suggest possible novel mechanisms for viral entry into cells.

Animals

Transient expression of the angiotensin II receptor: a rapid and functional analysis of a calcium-mobilizing seven-transmembrane domain receptor in COS-7 cells.

The mas oncogene/angiotensin II receptor was subcloned into a mammalian expression vector pCDM8 and used to transiently transfect monkey kidney derived COS-7 cells. As a result, the mas transfected COS-7 cells expressed a functional angiotensin II receptor capable of transducing an increase in intracellular Ca2+ following stimulation with angiotensin II. The angiotensin II stimulated changes in Ca2+ could be measured 24 hours after transfection in both a fluorimeter and a fluorescence activated cell sorter. These results describe a rapid method for the functional analysis of the 7-transmembrane domain receptor genes.

Angiotensin II

Multiple signaling pathways of histamine H2 receptors. Identification of an H2 receptor-dependent Ca2+ mobilization pathway in human HL-60 promyelocytic leukemia cells.

In order to analyze the complex activities of histamine H2 receptor activation on neutrophils, human HL-60 promyelocytic leukemia cells were differentiated into neutrophils by incubation with dimethyl sufoxide, loaded with the Ca2+-sensitive indicator dyes, indo-1 or fura-2, and the levels of intracellular Ca2+ ([Ca2+]i) measured in a fluorescent-activated cell sorter and fluorimeter, respectively. Histamine increased [Ca2+]i in a dose-dependent manner with a half-maximal concentration (EC50) of approximately 10(-6) to 10(-5) M, which exhibited H2 receptor specificity. Prostaglandin E2 and isoproterenol also induced [Ca2+]i mobilization in HL-60 cells, whereas the cell permeable form of cAMP and forskolin failed to increase [Ca2+]i. Since H2-receptor mediated [Ca2+]i mobilization was not inhibited by reducing the concentration of extracellular Ca2+ nor by the addition of Ca2+ channel antagonists, LaCl3 and nifedipine, [Ca2+]i mobilization is due to the release of Ca2+ from intracellular stores. Furthermore, both 10(-4) M histamine and 10(-6) M fMet-Leu-Phe increased the levels of 1,4,5-inositol trisphosphate. However, histamine-induced mobilization of [Ca2+]i was inhibited by cholera toxin but not by pertussis toxin, whereas the action of fMet-Leu-Phe was inhibited by pertussis toxin but not by cholera toxin. These data suggest that H2 receptors on HL-60 cells are coupled to two different cholera toxin-sensitive G-proteins and activate adenylate cyclase and phospholipase C simultaneously.

Calcium