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E J Goetzl

Publications and source records attributed to E J Goetzl.

At least 73 records · Page 4Linked to original sources

Cloning and expression of the EP2 subtype of human receptors for prostaglandin E2.

Prostaglandin E2 (PGE2) is a potent mediator in many human tissues, that is recognized by three distinct subtypes of receptors, designated EP1, EP2 and EP3. A cDNA from a human lung library encodes a 53 kDa protein of 88% homology with the mouse EP2 receptor. Human EP2 receptors in COS-7 cell transfectants bound [3H]-PGE2 with a mean Kd of 2.2 nM and native specificity, and transduced increases in the intra-cellular concentration of cyclic AMP, but not of Ca++. That most EP2 receptor mRNA is in lung, kidney, intestinal, glandular and immune tissues, is consistent with functional responses.

Amino Acid Sequence↗

Variants of vasoactive intestinal peptide in mouse mast cells and rat basophilic leukemia cells.

Radioimmunoassays for neuroendocrine vasoactive intestinal peptide (VIP1-28) detected 30-120 fmol of structurally related peptides in extracts of 10(7) mouse peritoneal mast cells, bone marrow-derived mast cells, cultured PT-18 and C1.MC/C57.1 lines of mast cells, and rat basophilic leukemia (RBL) cells. No VIP was found in peritoneal cells of mast cell-deficient WBB6F1-W/Wv mice, whereas the amounts extracted from peritoneal cells of the congenic normal (WBB6F1-+/+) mice were similar to those from cultured mouse mast cells. Sephadex G-25 gel filtration resolved two different-sized variants of VIP from mouse mast cells and RBL cells. Amino acid sequence analyses showed that the smaller variant is VIP10-28. The principal amino-terminally larger variant of VIP from C1.MC/C57.1 mouse mast cells and RBL cells exhibited amino acid sequence homology with VIP(-6)-28, and this sequence was established for the corresponding larger VIP from PT-18 mast cells. Polymerase chain reaction amplification of two different substituent sequences of prepro VIP in RBL cell RNA identified the VIP message. VIP10-28 was released from mouse mast cells concurrently with histamine by IgE-dependent stimulation. Rodent mast cell-derived VIP thus consists of both the truncated VIP10-28 and amino-terminally larger forms that appear to be generated by peptidolysis of a preproVIP similar to that found in neural cells.

Amino Acid Sequence↗

Cloning and functional expression of a human neuroendocrine vasoactive intestinal peptide receptor.

Vasoactive intestinal peptide (VIP) is a potent mediator of gastrointestinal, nervous, pulmonary, vascular and immune functions. A cDNA was obtained from human HT29 intestinal epithelial cells and found to encode a 457 amino acid, 52 kDa VIP receptor. Transfection of the cDNA into COS-7 cells and 293 cells resulted in expression of specific saturable binding of VIP with a Kd of 0.8 nM, and induction of increases in intracellular cAMP by VIP with an EC50 of 1 nM. The human VIP receptor is homologous to other G protein-coupled receptors of the secretin-parathyroid hormone receptor family. A 2.8 kb transcript was detected in human lung, HT29 cells and Raji B-lymphoblasts with weaker expression in human brain, heart, kidney, liver and placenta.

Amino Acid Sequence↗

Activation of human neutrophil LFA-1 (CD11a) by leukotriene B4.

Homotypic aggregation (HA) of human neutrophils by the potent leukotactic factor, leukotriene B4 (LTB4), and phorbol myristate acetate (PMA) was evaluated by recording the net decrease in absorbency at 650 nm of suspensions of 10(7) neutrophils/ml in a microtiter plate reader, which was found to correlate with microscopic evidence of aggregation. LTB4-elicited HA was increased maximally by approximately one third above HA in buffer at 30 min, whereas PMA-induced HA reached a maximal level more than 2 1/2-fold higher than buffer control at 60 min. The involvement of LFA-1 in LTB4-induced HA of neutrophils was suggested initially by the inhibitory effect of monoclonal anti-CD18 and anti-CD11a antibodies. The binding to neutrophils of a monoclonal anti-LFA-1 antibody (NK1-L16) specific for an activation epitope of CD11a was increased a maximum of 28-fold and sixfold, respectively, after 1 and 5 min of preincubation with 10 nM LTB4 and fivefold after 5 min with PMA. Thus, both LTB4 and PMA induce an activating conformational change in the CD11a adherence receptor of human neutrophils.

Antibodies, Monoclonal↗

Isotype-specific regulation of human lymphocyte production of immunoglobulins by sustained exposure to vasoactive intestinal peptide.

Exposure of lymphocytes to nanomolar to micromolar concentrations of vasoactive intestinal peptide (VIP) for 1 to 3 days only modestly suppressed or enhanced the production of IgA and IgM, but not IgG. The effects of twice daily additions of 10(-12) to 10(-7) mol/L VIP for up to 18 days on pokeweed mitogen-stimulated peripheral blood mononuclear cells (PBMCs) from normal human subjects was examined by quantifying the production of IgG, IgM, and IgA. The maximum suppression of IgG by 10(-9) mol/L VIP was 79% +/- 33% (mean +/- SD) (range, 41% to 97%; p < 0.015) on day 9 and 84% +/- 1% (range, 74% to 96%; p < 0.0001) on day 14 and was significant at 6 x 10(-10) to 4 x 10(-9) mol/L VIP. Suppression of IgM production by 10(-9) mol/L VIP was significant and was observed first on day 5 and persisted through day 14. VIP did not alter IgA production or affect the proliferation or viability of PBMCs. The production of IgE by interleukin-4 stimulated PBMCs was enhanced consistently in two subjects but not in two other subjects. The duration of exposure to nanomolar concentrations of VIP is thus a critical determinant of its immunoregulatory effect, as manifested by late suppression of production of IgG and IgM and concurrent enhancement of production of IgE in some subjects.

B-Lymphocyte Subsets↗

Induction of aggregation of Raji human B-lymphoblastic cells by vasoactive intestinal peptide.

Subsets of neurons in the thymic cortex, Peyer's patches and lymphoid tissues of the respiratory system deliver vasoactive intestinal peptide (VIP) at nanomolar concentrations. The possible effects of VIP on B-cell adhesiveness in these tissues were examined in studies of the homotypic aggregation (HA) of human B-lymphoblastoid cells of the Raji line, which express a mean of 27,950 VIP receptors/cell with a mean Kd of 0.8 nM. Mean HA, assessed microscopically, attained a maximum of 54% after 8 hr with 0.1 microgram/ml of phorbol 12-myristate 13-acetate (PMA) (P < 0.01) and 31% after 24 hr with 10(-8) M VIP (P < 0.05), as contrasted with 13% and 20% at the respective times in medium alone, and both stimuli also increased the mean size of aggregates. The presence of the phosphodiesterase inhibitor Ro 20-1724 permitted 10(-9) M VIP, which had no effect alone, to raise the mean cyclic AMP content of Raji cells by more than 10-fold and concurrently to elevate mean HA from 55% in medium alone at 48 hr to 70% and from 55% at 72 hr to 68% (P < 0.05 for both). Monoclonal antibodies to lymphocyte function-associated (LFA-1) adhesive protein and to intercellular adherence molecule-1 (ICAM-1) suppressed significantly the HA of Raji cells induced by VIP and PMA. The effects of VIP on compartmental immunity in the lungs and intestines thus may be mediated in part by increases in lymphocyte adhesiveness, which could contribute to the regional accumulation of specifically immunocompetent cells.

Antigens, CD↗

The SKW 6.4 line of human B lymphocytes specifically binds and responds to vasoactive intestinal peptide.

Vasoactive intestinal peptide (VIP1-28) is a neuromediator recognized by high-affinity receptors on human lymphocytes, which inhibits T-cell proliferation and cytokine secretion, and suppresses immunoglobulin production by mitogen-stimulated mixed mononuclear leucocytes. The direct interactions of VIP1-28 with B cells were studied in the SKW 6.4 line of EBV-transformed human B cells, that express a mean (+/- SD) of 6116 +/- 969 receptors for [125I]VIP1-28 with a mean Kd of 59 nM, that decreases to 12 nM after exposure to phorbol 12-myristate 13-acetate (PMA). The secretion of IgM by SKW 6.4 B cells stimulated optimally with 100 ng/ml of PMA, but not unstimulated secretion of IgM, was suppressed significantly by 10(-12) M to 10(-9) M VIP1-28 and up to a mean maximum (+/- SD) of 40 +/- 2% by 10(-10) M VIP1-28. VIP1-28 elicited concomitant increases in intracellular cyclic AMP up to a mean maximum of 163% at 10(-10) M VIP1-28. The requirement for specific signal transduction by the occupied VIP receptors to inhibit IgM secretion was demonstrated by the lack of effect of VIP4-28 on both cyclic AMP concentration and IgM secretion, despite the equal affinity of binding of VIP4-28 and VIP1-28. The effects of VIP on immunoglobulin secretion by stimulated mixed mononuclear leucocytes thus may be due in part to a direct action on B cells.

B-Lymphocytes↗

An acidic fibroblast growth factor protein generated by alternate splicing acts like an antagonist.

Polymerase chain reaction amplification of cDNA for acidic fibroblast growth factor in several lines of cultured human cells revealed two forms of mRNA. The novel smaller mRNA lacks the entire second coding exon of the acidic fibroblast growth factor gene, whereas the previously identified mRNA consists of three coding exons. The truncated variant of acidic fibroblast growth factor (aFGF') is only 60 amino acids long with an apparent molecular mass of 6.7 kD on sodium dodecyl sulfate gels in contrast to 18 kD for the full-length acidic fibroblast growth factor. aFGF' elicits only minimal fibroblast proliferation and antagonizes the effects of acidic fibroblast growth factor when added exogenously to or when coexpressed with aFGF in BALB/c/3T3 fibroblasts. Thus, the truncated variant of acidic fibroblast growth factor may provide fibroblasts with a unique mechanism for endogenous regulation of their responses to acidic fibroblast growth factor.

Amino Acid Sequence↗

Ligand-induced formation of the leukotriene B4 receptor-G protein complex of human polymorphonuclear leukocytes.

The components of the polymorphonuclear leukocyte (PMNL) receptor for leukotriene B4 (LTB4) were examined by Sephacryl S-300 exclusion chromatography of PMNL membrane proteins, which were solubilized before and after the binding of [3H] LTB4. When the PMNL membranes were solubilized in 3-[(3-cholamidopropyl)-dimethylammonio]-1-propanesulfonate (CHAPS) and filtered on Sephacryl S-300 prior to addition of [3H] LTB4, the binding activity was associated with a 65 kD protein. In contrast, the radioactivity of [3H] LTB4 bound to PMNL membranes prior to solubilization was recovered predominantly with a 140 kD protein. When PMNL membranes had been pretreated with pertussis toxin, but not cholera toxin, before the addition of LTB4 and subsequent solubilization, radioactivity was recovered predominantly with the 65 kD protein. The addition of guanylylimidodiphosphate (GMP-PNP), a nonhydrolyzable derivative of guanosine triphosphate (GTP), to PMNL membrane receptors bearing [3H] LTB4 either prior to or after CHAPS solubilization reduced the yield of the 140 kD presumed LTB4 receptor protein-G protein complex. That the maximum specific binding of [35S] guanosine-5'-0-3-thiotriphosphate (GTP-gammaS) to LTB4-binding proteins in the Sephacryl S-300 effluent corresponded to the 140 kD protein supported the presence of a G protein in the LTB4 receptor complex.

Cell Membrane↗

Neuropeptides in pulmonary edema fluid of adult respiratory distress syndrome.

A role for peptidergic nerves in the adult respiratory distress syndrome (ARDS) was examined by radioimmunochemically quantifying neuropeptides in pulmonary edema (PE) fluids from seven patients with ARDS and six patients with PE from congestive heart failure (CHF). The PE fluid mean concentrations of substance P (SP) and gastrin-releasing peptide (GRP) were significantly higher in ARDS (0.59 +/- 0.29 SD and 0.10 +/- 0.03 nM, respectively, P < 0.001 for both) than in CHF (0.19 +/- 0.08 and 0.04 +/- 0.01), whereas no difference was detected between the mean levels of vasoactive intestinal peptide (VIP) and calcitonin gene-related peptide (CGRP) in the two forms of PE. Mean alveolar fluid concentration of SP was 8.7 nM (range 2.1-20.5 nM, N = 4) in sheep with acute lung injury from intravenous Pseudomonas aeruginosa, but was undetectable in sheep with balloon-induced high left atrial pressure simulating CHF (N = 2) or control sheep (N = 2). Pulmonary lymphatic clearance of SP, which reflected the rate of generation of SP in the lungs, attained a maximum of 25-95 pmol/h in sheep given P. aeruginosa intravenously, but was detected in only one of four control sheep at a lower level. Some pulmonary neuropeptides thus are released locally by acute lung injury and may contribute to endothelial and/or epithelial abnormalities underlying the altered capillary-alveolar permeability in ARDS.

Adult↗

Mediators of communication and adaptation in the neuroendocrine and immune systems.

Bidirectional interactions between the immune and neuroendocrine systems influence specifically physiological activities as diverse as tissue localization of lymphocytes, antibody responses, hypothalamic-pituitary hormone secretion, and neural signal transmission. Our understanding of intersystem communications has been increased by the delineation of the innervation of immune organs, effects of neuromediators on immune cells, and neuroendocrine responses to individual immune cytokines. Two patterns of responses to neuroimmune mediators have been defined to distinguish between direct alterations in cellular function and the more complex states of differentiation and adaptation that condition the threshold and nature of reactions to subsequent stimuli. Recent identification of the molecular mechanisms of action of neuroimmune mediators is exemplified by elucidation of the requirement for prolactin in T lymphocyte proliferation and of the effects of vasoactive intestinal peptide on B lymphocyte expression of adherence proteins. Further knowledge of the advantages of multisystem integration of functions in host defense may reveal other novel mechanisms of cellular communication and biological adaptation.

Cell Communication↗

Eicosanoids, but not tachykinins, excite C-fiber endings in rat sciatic nerve-end neuromas.

Normal nociceptors are sensitized by hyperalgesic mediators such as eicosanoids and tachykinins. The possibility that these mediators contribute to hyperalgesic pain associated with neural injury was investigated by examining their effects on the excitability of injured afferent nerve endings. In amounts that sensitize normal nociceptors and are hyperalgesic in normal skin, the eicosanoids prostaglandin I2 (PGI2), and 8(R),15(S)-dihydroxyicosatetraenoic acid (8(R),15(S)-diHETE) both excited some C-fibers in chronic neuromas of rat sciatic nerve. In contrast, the selective tachykinin-receptor agonists septide and senktide did not excite C-fibers. None of the mediators affected A-fibers. We conclude that PGI2 and 8(R),15(S)-diHETE may contribute to post-injury pain and hyperalgesia by an action on injured afferent endings.

Animals↗

Mouse monoclonal antibody to a latent epitope of leucocyte receptors for leukotriene B4.

Human blood polymorphonuclear (PMN) leucocytes and human leucocytes of the HL-60 line, which were induced to differentiate by 1,25-dihydroxyvitamin D3, express stereospecific receptors for the potent chemotactic mediator, leukotriene B4 (LTB4), that is derived by 5-lipoxygenation from arachidonic acid. Monoclonal antibodies to LTB4 receptors (LTB4-R) were generated by immunizing BALB/c mice with partially purified PMN leucocyte membrane proteins, and fusing their splenocytes with P3X63Ag8 mouse myeloma cells. Hybridoma supernatants were screened initially by binding to PMN leucocyte LTB4-R protein, which had been affinity cross-linked with aminopropylamide (APA)-LTB4 and immobilized in plastic wells through attachment of the linked APA-LTB4 to adherent Fab of monoclonal anti-LTB4. Of the three clones producing antibodies which bound to LTB4-R, 0.5 mg/ml of one IgG3k antibody, termed E2, precipitated over 90% of the [3H]LTB4-binding activity of solubilized PMN leucocyte membrane proteins. E2 also bound to a radiolabelled protein of 70,000-80,000 MW from 125I-labelled PMN leucocyte membranes [35S]-labelled HL-60 cell membranes, and PMN leucocyte membranes affinity-labelled with [3H]APA-LTB4, that was identical in size to the LTB4-R precipitated by the rabbit IgG anti-idiotypic antibodies. E2 did not bind to intact PMN leucocytes or modify the binding of [3H]LTB4 by PMN leucocytes. The binding of E2 to LTB4-R in purified membranes of PMN leucocytes was less than one-fourth of that observed for the anti-idiotypic antibodies, but increased substantially after solubilization of the LTB4-R. The E2 monoclonal antibody thus recognizes a partially latent substituent of LTB4-R, which does not contribute to combining site function.

Animals↗

Cloning and expression of the human vasoactive intestinal peptide receptor.

Vasoactive intestinal peptide (VIP) is a neuroendocrine mediator found in the central and peripheral nervous system. Distinct subsets of neural, respiratory, gastrointestinal, and immune cells bear specific high-affinity receptors for VIP, which are associated with a guanine nucleotide-binding (G) protein capable of activating adenylate cyclase. A cDNA clone (GPRN1) encoding the human VIP receptor was identified in libraries prepared from the Nalm 6 line of leukemic pre-B lymphoblasts and the HT-29 line of colon carcinoma cells. The deduced 362-amino acid polypeptide sequence encoded by GPRN1 shares a seven-transmembrane-segment hydropathicity profile with other G protein-coupled receptors. Northern blot analyses identified a 2.7-kilobase transcript of the VIP receptor in Nalm 6 and HT-29 cells as well as in tissues from rat brain, colon, heart, lung, kidney, spleen, and small intestine. COS-6 cells transfected with GPRN1 bound 125I-labeled VIP specifically with a dissociation constant (Kd) of 2.5 nM. VIP--and less effectively secretin, peptide histidine isoleucine (PHI), and glucagon competitively displaced bound 125I-VIP from transfected COS-6 cells, with potencies in the order VIP greater than secretin = PHI much greater than glucagon. VIP stimulated adenylate cyclase activity in stably transfected Chinese hamster ovary K1 cells, inducing a 3-fold increase in the intracellular level of cAMP. When the antisense orientation of the VIP receptor clone was introduced into HT-29 cells, there was a 50% suppression of the specific binding of 125I-VIP and of the VIP-induced increase in cAMP level, relative to untransfected cells. The VIP receptor cloned exhibits less than or equal to 24% homology with other receptors in the same superfamily and thus represents a subset of G protein-coupled receptors for peptide ligands.

Amino Acid Sequence↗

Affinity labeling of the membrane protein-binding component of human polymorphonuclear leukocyte receptors for leukotriene B4.

A radiolabeled N-(3-aminopropyl)-leukotriene B4 amide ([3H]LTB4-APA) analog of the potent leukocyte chemotactic factor leukotriene B4 (LTB4) binds to receptors for LTB4 in plasma membrane-enriched preparations from human blood polymorphonuclear leukocytes (PMNL) and intact PMNL with respective mean dissociation constants of 2.3 nM and 69 nM at 4 degrees C. The [3H]LTB4-APA bound to plasma membrane-enriched preparations from PMNL was covalently cross-linked to membrane proteins with disuccinimidyl suberate. Solubilization and resolution by SDS-PAGE of proteins from [3H]LTB4-APA-labeled PMNL membranes revealed predominant labeling of a 60-kDa protein. Labeling of the PMNL membrane protein was inhibited by LTB4 and its analogs at concentrations similar to those inhibiting the binding of [3H]LTB4 to its receptor, with an identical rank order of potency of LTB4 greater than 20-hydroxy-LTB4 greater than LTB4-APA = 5(S),12(R)-dihydroxy-eicosa-14-cis-6,8,10-trans-tetraenoic acid much greater than LTD4 = LTC4. GTP suppressed the labeling of the 60-kDa PMNL membrane protein to an extent consistent with the decrease in receptor affinity for LTB4 induced by GTP. The stereospecificity of the affinity cross-linking reaction and the regulation by GTP support the identification of an approximately 60-kDa protein as the binding component of the PMNL receptor for LTB4.

Affinity Labels↗

Relative quantification of collagen mRNA in fibroblasts by a radioactive polymerase chain reaction technique.

A radioactive polymerase chain reaction (PCR) method has been developed for the relative quantification of the human alpha-2 chain of type I collagen [hu alpha-2(I)] in cells. cDNAs generated by reverse transcription from the total pool of cytoplasmic RNA serve as a template for polymerase chain reaction amplification of a hu alpha-2(I) cDNA primed by two sequence-specific synthetic oligonucleotides. The distinctive 390 bp hu alpha-2(I) cDNA and two Aval fragments of 220 and 170 bp are identified by agarose gel electrophoresis. alpha-32P-dCTP of defined specific activity is included in the PCR reaction and the 390 bp cDNA is excised from the electrophoresis gel to permit direct radioactive quantification of hu alpha-2(I) mRNA. The amount of hu alpha-2(I) mRNA expressed in as few as 111 fibroblasts was determined reliably. In contrast, the hu alpha-2(I) mRNA from at least 5 x 10(5) fibroblasts was required for detection by Northern blot analysis developed with the same cDNA probe radiolabelled with alpha-32P-dCTP by random priming. Human bronchoalveolar lavage (BAL) fluids of six patients with fibrosing lung diseases stimulated the level of expression of hu alpha-2(I) mRNA in cultured human fibroblasts as determined by this technique. The radioactive PCR method thus quantifies hu alpha-2(I) mRNA in fibroblasts with sufficient sensitivity to study fibroblast activation in vitro and detect fibroblast stimuli in human clinical samples.

Autoradiography↗