Search PubMed⌕ Search

Biomedical subjects

K Onoue

Publications and source records attributed to K Onoue.

At least 55 records · Page 3Linked to original sources

Interleukin 2 mRNA induction in human lymphocytes: analysis of the synergistic effect of a calcium ionophore A23187 and a phorbol ester.

Induction of interleukin 2 (IL2) mRNA in human tonsillar lymphocytes under various conditions was examined by cytoplasmic dot hybridization using a 32P-labeled IL2 cDNA probe to study the signal transduction mechanisms which lead to IL2 gene expression. A tumor-promoting phorbol ester, 12-O-tetradecanoyl-phorbol 13-acetate (TPA), acted synergistically with a Ca2+ ionophore A23187 or phytohemagglutinin (PHA) to induce a high level of IL2 mRNA in lymphocytes, whereas each of them by itself could not induce the mRNA production. In two-step culture experiments the lymphocytes pulse-incubated with TPA for 1 h (the first culture) could efficiently initiate IL2 mRNA production by subsequent culture with A23187 or PHA (the second culture). Results obtained by removal of extracellular Ca2+ from either the first or second culture revealed that Ca2+ was not necessarily required during the first culture with TPA, but it is essential in the second culture with A23187 or PHA, regardless of the presence or absence of Ca2+ in the first culture. A reagent known to be a calmodulin antagonist, N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide (W-7), almost completely inhibited the IL2 mRNA induction in A23187-TPA-stimulated lymphocytes at a concentration of 25 microM, whereas N-(6-aminohexyl)-1-naphthalenesulfonamide that has much lower affinity for calmodulin than W-7 did not inhibit at this concentration. The IL2 mRNA induction was also blocked by the addition of 50 microM of 8-(N,N-diethylamino)-octyl-3,4,5-trimethoxybenzoate hydrochloride which is known to block the release of Ca2+ from intracellular storage sites. These results show that mobilization of Ca2+ and the calmodulin-dependent regulatory system appear to work synergistically with TPA which probably activates protein kinase C in the pathway to IL2 gene expression.

Calcimycin↗

Interleukin 2 mRNA induction in human lymphocytes: analysis of the synergistic effect of a phorbol ester and phytohemagglutinin.

Induction of interleukin 2 (IL2) mRNA synthesis in human tonsillar lymphocytes was studied by quantifying the relative levels of IL2 mRNA in the lymphocytes stimulated under various conditions by the dot hybridization method. A remarkable increase of IL2 mRNA was induced by stimulation with phytohemagglutinin (PHA) in the presence of 12-O-tetradecanoyl-phorbol-13-acetate (TPA). The kinetic study revealed that the IL2 mRNA level of the lymphocytes increased from 2 h of culture, reached a maximal level at 12 h, maintained a relatively high level until 48 h and then sharply decreased by 72 h after the stimulation. Inhibition experiments with actinomycin D showed that the increase was due to a transient synthesis of the mRNA after the stimulation, which almost stopped by 12-16 h. DNA synthesis and cell division were not necessary for the induction of IL2 mRNA production but the induction was inhibited by dexamethasone, showing that the production was mainly associated with the G1 phase of the cell cycle. Two-step culture experiments showed that prior exposure of the lymphocytes to TPA for 1 h at 37 degrees C resulted in a remarkable increase of IL2 mRNA on subsequent stimulation with PHA. This suggests that TPA induces certain changes in the biochemical pathway of signal transduction so that the cells can be triggered to express IL2 gene by subsequent stimulation with mitogen.

DNA Replication↗

Structural studies of Fc receptors. III. Isolation and molecular weight analysis of the component chain of Fc gamma receptor of macrophage.

Surface receptors of guinea pig peritoneal macrophages specific for the Fc region of IgG (Fc gamma receptor) were isolated and identified as a surface-radioiodinated component with a molecular weight of 44,000 that bound in an Fc-specific manner to IgG2 of guinea pig immunoglobulin immobilized in any of the following three different ways: IgG2 antibody in insoluble immune complex, IgG2 antibody bound to antigen-coupled Sepharose, and IgG2 covalently coupled to Sepharose. In order to obtain the Fc gamma receptor retaining the binding activity, the Fc-binding component was isolated by IgG2 affinity chromatography in which mild acidic buffer (pH 5.0-4.0) was chosen to elute the component bound to the affinity column. Forty-five to sixty-two percent of the eluted radioactivity was shown to rebind to the IgG2-affinity column. The bound fraction showed a single radioactive peak of 44,000 daltons in sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The Fc-binding component isolated by the affinity chromatography behaved similarly in gel filtration in the presence of a detergent, as did the detergent-solubilized Fc gamma receptor before isolation by affinity chromatography. These results suggested that the Fc gamma receptor was isolated in a native form. Furthermore, it was confirmed that the isolated Fc gamma receptor is distinct from actin or the actin-like protein (DNase I-binding protein) which had been reported to bind to IgG-affinity column.

Animals↗

Triggering of the superoxide generation of macrophages by crosslinking of Fc gamma receptor.

Crosslinking of monomeric IgG2 molecules bound to the Fc gamma receptors on the cell surface of guinea pig macrophages generated the triggering signal for the superoxide-generating system. A binding experiment indicated that macrophages have saturable binding sites for monomeric IgG2. Scatchard analysis of the binding data showed that macrophages have an average of 4 X 10(5) binding sites per cell and the association constant for the binding was 4.2 X 10(6) M-1. Binding of monomeric IgG2 to macrophages could be detected by subsequent reaction with the 125I-labeled F(ab')2 fragment of rabbit antibody specific for guinea pig Fab. Although binding of IgG2 monomer to Fc receptor did not stimulate superoxide release, further addition of the F(ab')2 fragment of anti-guinea pig Fab antibody did induce generation and release of superoxide, and the amount released was dependent on the dose of cell-bound IgG2. When macrophages were bound with a constant dose of IgG2 monomer in the first step, the superoxide release triggered by the addition of the F(ab')2 of anti-guinea pig Fab was dependent on the dose of the F(ab')2 fragment added. These results show that crosslinking of Fc receptors triggers the superoxide generation.

Animals↗

Structural studies of Fc receptors. IV. Structure required for phospholipids for reconstitution of the delipidated Fc receptor of macrophages.

To analyze the interaction of the macrophage Fc receptor with phospholipids, we established an experimental system for delipidation of Fc receptor fraction and reconstitution of the Fc receptor activity in phospholipid vesicles. The separation of FcR from membrane phospholipids was achieved by ion exchange chromatography on DEAE-cellulose of the anionic detergent-lysate of the crude membrane fraction of guinea pig macrophages in the presence of detergent. The separation was based on the difference in charge between the complex of FcR and the anionic detergent and that of phospholipids and the detergent. The FcR fraction free of phospholipids showed no FcR activity as assessed in terms of its ability to inhibit the binding of labeled soluble immune complex of IgG2 antibody to macrophages, but the same fraction showed a definite activity when associated with phospholipids. This fraction was shown to contain a component of 44,000 daltons that is susceptible to surface-labeling and binds to IgG2-Sepharose in the affinity chromatography, indicating this component to be the Fc receptor. Reconstitution experiments with this fraction showed that phosphatidylcholine is the most effective phospholipid to reconstitute the FcR activity among those tested. Phosphatidylserine, phosphatidylinositol, and sphingomyelin were ineffective, while phosphatidylethanolamine showed a moderate effect. The inactivating effect of phospholipase C treatment on the Fc receptor activity of the membrane was shown to be due to the cleavage of phospholipids in the membrane but not due to modification of the Fc receptor molecule itself.

Animals↗

Structural studies of Fc receptors. V. Effect of phospholipase C treatment on the binding activities of the Fc receptor of macrophage or its isolated plasma membrane.

The effect of phospholipase C treatment on the binding activity of the Fc receptor of guinea pig macrophage was studied to analyze the interaction of the Fc receptor with membrane phospholipids necessary for the activity. It was confirmed by subcellular fractionation that the receptor is localized on the plasma membrane. Treatment of the whole cell or isolated plasma membrane with phospholipase C of Clostridium perfringens diminished the binding of soluble IgG2-immune complex to Fc receptors on the cell or membrane. On the other hand, phospholipase C of Bacillus cereus did not affect the activity when it acted on the whole cell but it did diminish the activity when it acted on the isolated plasma membrane. Analysis of the phospholipids of untreated and treated macrophages or plasma membrane showed that phosphatidylcholine molecules, particularly those located in the membrane (not accessible to attack from the cell surface by phospholipase C of B. cereus), appear to be crucial for efficient interaction of macrophage Fc receptors with immune complex. Ligand-binding experiments with macrophages showed that the diminished binding activity was due to a decrease of the avidity for immune complex, but did not seem to be due to a decrease in the number or affinity of Fc receptors for monomeric IgG2. Taken together with the previous results which demonstrated that Fc receptors which had apparently lost the activity due to delipidation could be reconstituted with phosphatidylcholine but not with most other phospholipids, the results seem to indicate that the diminution of the binding activity to the immune complex of macrophage or its plasma membrane caused by phospholipase C treatment is due to the impairment of multivalent interaction between Fc receptor molecules on the membrane and IgG2 molecules in the immune complex, probably as a result of the loss of interaction of the head groups of phospholipids with Fc receptor molecules and the change in membrane properties resulting from the increase of diglycerides.

Animals↗

Human helper T cell factor(s). III. Characterization of B cell differentiation factor I (BCDF I).

Staphylococcus aureus Cowan I (SAC) induced proliferation of human B cells but did not lead the cells to differentiate to immunoglobulin (Ig)-producing cells. The differentiation of SAC-stimulated B cells to IgG-producing cells was totally dependent on T cells or T cell factor, designated B cell differentiation factor I (BCDF I). BCDF I exerted its effect on B cells between 48 and 72 hr after the initiation of the culture, at which time the 3H-TdR uptake of SAC-stimulated B cells had already reached a maximal level. Highly purified human IL 2 did not induce the differentiation of SAC-stimulated B cells for IgG-producing cells. Therefore the differentiation-inducing ability of BCDF I was not due to the residual T cells in a purified B cell preparation, which might have been activated by a possible contamination of IL 2 in the BCDF I preparation. The apparent m.w. of BCDF I was estimated to be 20,000 by gel filtration. Isoelectric focusing analysis showed that its activity was distributed in three fractions corresponding to pI 6.5, 7.0, and 8.0. In contrast, BCDF II, which induced IgG production in an Epstein Barr virus-transformed B lymphoblastoid cell line, was focused in the fractions with pI range of 4.8 to 5.5. Thus there are at least two different kinds of BCDF for human B cells, designated here as BCDF I and BCDF II.

Animals↗

Human helper T cell factor(s). IV. Demonstration of a human late-acting B cell differentiation factor acting on Staphylococcus aureus Cowan I-stimulated B cells.

At least two distinct B cell stimulatory factors (BSF) were found to be involved in the differentiation of Staphylococcus aureus Cowan I (SAC)-stimulated human B cells to IgG-producing cells. A factor tentatively called B cell differentiation factor I (BCDF I) was found in one fraction, and a second factor, BCDF II was found in another fraction. The BCDF I fraction alone induces IgG-production in SAC-stimulated B cells, but the BCDF II fraction does not. The BCDF II fraction enhances IgG production in SAC-stimulated B cells in the presence of the BCDF I fraction. Studies concerning the time-course of the action of the BCDF II fraction revealed that it contains a late-acting differentiation factor that acts on B cells most effectively when it is added to the SAC-stimulated B cell culture after the addition of BCDF I fraction; it induces IgG plaque-forming cells within 1 day. The pI value of a late-acting BCDF was in the range of 5 to 6; this pI range is different from that of BCDF I but similar to that of BCDF II, which was shown in our previous studies to be able to induce IgG production in Epstein Barr Virus-transformed B lymphoblastoid cell lines. In addition, the m.w. of a late-acting BCDF were about 35,000 and 20,000, which are the same as those of BCDF II, and thus its identity with BCDF II was suggested.

Animals↗

Demonstration of the involvement of interleukin 2 in the differentiation of Staphylococcus aureus Cowan I-stimulated B cells.

The effect of IL 2 on Staphylococcus aureus Cowan I (SAC)-driven IgG production of human B cells was examined by utilizing chromatographically purified IL 2 (R-IL 2) and the transcription product of the cloned cDNA for human IL 2 purified from recombinant E. coli (G-IL 2). Both preparations of IL 2 by themselves were not enough to induce optimal IgG-production in the SAC-stimulated tonsillar B cell fraction, which was highly enriched for B cells, but effectively induced IgG production in the presence of a subeffective number of T cells or a late-acting B cell differentiation factor (BCDF). In addition, the activity that induced IgG production in the presence of a subeffective number of T cells was absorbed with an IL 2-dependent mouse T cell line. These results clearly indicate that IL 2 has a definite effect on B cell differentiation in this system. Although the mechanisms of this effect remain to be elucidated, a direct effect of IL 2 on B cells may be involved, because the addition of IL 2 along with SAC induced a limited but significant increase of 3H-TdR incorporation in the highly enriched B cell population, which showed very little response to PHA and Con A even in the presence of IL 2, and, as mentioned above, IL 2 induced IgG production in the B cell preparation without any supplement of T cells provided the late-acting BCDF fraction was present in the culture.

Animals↗

Phorbol ester increases the level of interleukin 2 mRNA in mitogen-stimulated human lymphocytes.

TPA alone did not induce the production of IL 2 in human tonsillar lymphocytes but enhanced the PHA-induced IL 2 production by seven-fold. That the effect of TPA was due to an increase in IL 2 mRNA was demonstrated by examining the amount of IL 2 mRNA translatable in Xenopus laevis oocytes, and by Northern blotting analysis using IL 2 cDNA as a probe. In these ways, it was shown that TPA alone did not induce any significant IL 2 mRNA synthesis, but when added together with PHA it increased the level of IL 2 mRNA by at least 10-fold, as compared with that induced by PHA alone.

Animals↗

Isolation and characterization of a human interleukin 2 gene.

An interleukin 2 (IL-2) gene was isolated from a Charon 4A human gene library. Electron microscopic examination of 15 heteroduplexes formed between the genomic DNAs and the IL-2 cDNAs demonstrated that the size of the IL-2 gene is about 5.1 +/- 0.5 kb and that there are at least two introns in this gene. Nucleotide sequence of the 5' flanking region of the IL-2 gene showed a homology with that of the corresponding region of the human immune interferon gene.

Base Sequence↗

Physicochemical properties of T-cell-activating monokines in guinea pigs.

T-cell-activating monokines of guinea pigs with interleukin 1-like activity were produced in protein-free medium by stimulation of peritoneal macrophages with synthetic muramyl dipeptide (MDP). Gel filtration of the culture supernatant of MDP-stimulated macrophages revealed that most of the activity to potentiate the responses of thymocytes and lymph node T cells to phytohemagglutinin were found in the high-molecular-weight (40,000-80,000) fraction. By isoelectric focusing, the monokine in the high-molecular-weight fraction was focused at a pI of around 4.7 forming a somewhat broad band, indicating some heterogeneity. In the analysis by sodium dodecyl sulfate-polyacrylamide gel electrophoresis of the high-molecular-weight fraction, the peak of the activity was found at an approximate Mr of 60K under unreduced as well as reduced conditions. Accordingly, it is likely that the monokine in this fraction is a polypeptide of 60K, but a possibility still remains that the 60K component is an aggregate of low-molecular-weight monokine which requires more rigorous conditions for dissociation.

Acetylmuramyl-Alanyl-Isoglutamine↗

Cloning of interleukin 2 mRNAs from human tonsils.

Human interleukin 2 (IL-2) mRNAs were cloned from a cDNA library prepared from mitogen-stimulated tonsillar mononuclear cells. One of these clones was sequenced and, using this cDNA as a hybridization probe, Southern blot analysis of the human placental DNA was performed. Our results indicate that there is only one IL-2 gene in the human genome.

Cloning, Molecular↗

Structural studies of fc receptors. II. The effect of dissociation and reassociation of phospholipids on the activity of Fc gamma receptors of macrophages.

The receptor for the Fc portion of immunoglobulin G (Fc receptor) of guinea pig macrophages was solubilized with a detergent and partially delipidated to the point where the ligand binding activity was essentially lost. Delipidation of the Fc receptor was done by fractionating the macrophage lysate by gel filtration in the presence of detergent. The elution behavior of Fc receptor-detergent complex and phospholipid-detergent mixed micelles varied depending on the kind of detergents used for membrane solubilization and for gel filtration. Separation of phospholipids from Fc receptor was best achieved when octylglucoside-solubilized fraction was chromatographed on Sepharose CL-6B in the presence of deoxycholate; the phospholipid peak emerged at Kav = 0.55 and the Fc receptor at Kav = 0.45. The fraction of Kav = 0.45 showed only a marginal activity when the activity was measured after removal of detergents, but activity was clearly shown when phospholipid fraction was added to this fraction prior to removal of the detergents. Reappearance of the Fc receptor activity was shown to be due to association of phospholipids with the Fc receptor. Three kinds of phospholipids with different polar head groups examined, phosphatidylcholine, phosphatidylserine, and phosphatidylethanolamine, were all able to reconstitute active Fc receptor, although phosphatidylethanolamine was somewhat less effective than the others. Thus, our study demonstrated the amphipathic nature of the Fc receptor, the binding of which is dependent on the interaction with phospholipids.

Animals↗

T cell-activating monokines in guinea pigs: comparison of high and low molecular weight factors.

Guinea pig monokines produced by lipopolysaccharide-stimulated peritoneal macrophages were found in high (50,000-80,000) and low (10,000-30,000) molecular weight (m.w.) fractions by gel filtration. Both showed enhancing activity on the proliferative response of guinea pig and mouse thymocytes to PHA, but the high m.w. (65K) monokine was much more efficient than the low m.w. (15K) monokine in enhancing the response of lymph node T cells to PHA, suggesting its importance in the activation of peripheral T cells. The 65K monokine was coeluted with BSA present in the culture medium by DEAE-cellulose chromatography, but was clearly separated from it by hydroxylapatite chromatography. The immunoadsorption experiment with anti-BSA-coupled gel also indicated that 65K monokine is not a complex of low m.w. monokine with BSA. Our series of studies showed that most monokine activities were always found in the 65K fraction in guinea pigs. Thus, in guinea pigs, the 65K component appears to constitute a major class of T cell-activating monokines.

Animals↗

Translation of human interleukin 2 mRNA in Xenopus laevis oocytes.

Poly(A)-positive mRNA extracted from tonsillar mononuclear cells stimulated with phytohemagglutinin-M and 12-o-tetradecanoyl phorbol 13-acetate was successfully translated into biologically active interleukin 2 (IL-2) in Xenopus laevis oocytes, and secreted into the incubation medium. In control experiments, the extract of oocytes injected with either poly(A)-negative RNA or buffer did not show any IL-2 activity. By sucrose density gradient centrifugation analysis, IL-2 mRNA was found as a single peak corresponding to a sedimentation coefficient of 10-11S.

Animals↗

Human helper T cell factor(s) (ThF). II. Induction of IgG production in B lymphoblastoid cell lines and identification of T cell-replacing factor- (TRF) like factor(s).

IgG-PFC was induced in Epstein-Barr virus-transformed B lymphoblastoid cell lines (LCL) by the addition of allogeneic T cells. T cells involved in the induction of IgG-PFC were shown to belong to the Leu 3a+/2a- T cell subset. Furthermore, partially purified soluble factors obtained from the culture supernatant of PPD-stimulated pleural T cells or PWM-stimulated tonsillar mononuclear cells was shown to induce IgG-PFC in LCL across the major histocompatibility complex barrier. The induction of IgG-PFC was observed only in surface IgG-positive LCL cell populations and was not accompanied by the increase in the number of LCL cells. The factors with such a TRF-like activity were found in two fractions corresponding to the m.w. range of 18,000 to 25,000 (22K fraction) and 28,000 to 38,000 (36K fraction) by gel filtration. Isoelectric focusing of these fractions revealed that TRF-like activity of both 22K and 36K fractions distributed in the pI range of 5.0 to 6.0, and both fractions were found to be devoid of TCGF activity. These results appear to indicate that the factors act on the B cells in terminal stages to trigger final differentiation to Ig-producing cells.

Animals↗

Production of T cell-activating monokine of guinea pig macrophages induced by MDP and partial characterization of the monokine.

The production of T cell-activating factor(s) by macrophages stimulated with muramyl dipeptide (MDP) was studied. By MDP stimulation, a rapid increase in intracellular activity of the T cell-activating factor was induced, which preceded an increase of the activity in the extracellular medium. The rapid appearance of the activity in the cell and that in the medium were both inhibited by cycloheximide or puromycin. These results demonstrated that MDP stimulated rapid production of T cell-activating factors by inducing de novo synthesis of the factors, and that these newly formed factors are rapidly secreted. The activities of intracellular and extracellular secreted factors were both found in high m.w. (50,000 to 90,000) and low m.w. (10,000 to 30,000) fractions by gel filtration. The secreted high m.w. factor migrated as a single peak and did not dissociate into smaller components in SDS-PAGE analysis, indicating that the high m.w. factor is neither a complex of low m.w. factor with other proteins nor an aggregate of low m.w. factors. The properties are similar to those of our previously reported factor that helped antigenic activation of T cells for lymphokine production.

Acetylmuramyl-Alanyl-Isoglutamine↗