Search PubMed⌕ Search

Biomedical subjects

K Sugamura

Publications and source records attributed to K Sugamura.

At least 163 records · Page 9Linked to original sources

Establishment of a cyclic adenosine monophosphate-dependent growing human T-cell line derived from an interleukin-2-dependent cell line.

An adenosine 3',5'-cyclic monophosphate (cAMP)-dependent growing cell line called CT-Mat was established by the long-term cultivation of an interleukin-2 (IL-2)-dependent human T-cell line, ILT-Mat, in the presence of cholera toxin instead of IL-2. CT-Mat cells can grow in the medium containing either cholera toxin or forskolin or cAMP derivatives. Although the CT-Mat cell line can still grow dependent on IL-2, the forskolin-induced growth of CT-Mat cells was demonstrated not to be mediated by an autocrine mechanism of IL-2 or any other growth factor. The intracellular cAMP level was elevated by treatment with the chemical agents but little by treatment with IL-2. These suggest that cAMP transduces intracellular growth signals different from those through the IL-2 receptor in an IL-2-dependent T-cell line CT-Mat.

8-Bromo Cyclic Adenosine Monophosphate↗

The evidence for the IL-2 receptor beta chain processing from p70 to p75.

The biosynthesis of human interleukin 2 receptor (IL-2R)p75 was studied with TU27 monoclonal antibody (TU27 mAb) specific for the IL-2Rp75. TU27 mAb specifically immunoprecipitated not only p75 with a mol. wt of 70-82 kd and an isoelectric point (pl) of 4.4-4.7 but also p70 with a mol. wt of 70 kd and a pl of 4.7 from the cell lysate of MT-2, a human T cell line constitutively expressing IL-2R, labeled metabolically with [35S]cysteine. In contrast, only p75 was detected when the lysate of MT-2 cells surface-labeled with Na125I was immunoprecipitated with TU27 mAb. These results suggest that p75 is a mature form of IL-2Rp75 expressed on the cell surface. Pulse-chase experiments demonstrated that p70 could be converted into IL-2Rp75 by post-translational processing. Studies with monensin, endoglycosidase F, and neuraminidase showed that the mature IL-2Rp75 molecule is generated through N-linked glycosylation and sialylation of the p70 precursor.

Antibodies, Monoclonal↗

An associated molecule, p64, with high-affinity interleukin 2 receptor.

TU11 mAb specific for the human interleukin-2 receptor (IL-2R) beta-chain, p75, co-precipitated two molecules, p64 and p55, with the beta-chain in the lysates of cells bearing the high-affinity IL-2R. The co-precipitation was detected in the presence of IL-2 even in the absence of a chemical cross-linker. H-48 mAb specific for the IL-2R alpha-chain completely pre-absorbed p64 as well as p55 and partially pre-absorbed the beta-chain from the lysates. The co-precipitation was also detected in phytohemagglutinin-stimulated normal peripheral blood lymphocytes, which express the high-affinity IL-2R, but not in the cell line cells bearing only the low-affinity IL-2R. The peptide maps indicate that p64 is a molecule distinct from both the alpha- and beta-chains, and that p55 is identical to the alpha-chain. These findings suggest that p64, along with the alpha- and beta-chains, is a component of the high affinity IL-2R complex, and we have tentatively named it the gamma-chain of IL-2R.

Antibodies, Monoclonal↗

Differential expression of the interleukin 2 receptor beta (p75) chain on human peripheral blood natural killer subsets.

The interleukin-2 receptor (IL-2R) is composed of at least two subunits, the IL-2R alpha (P55, CD25/Tac) and IL-2R beta (p70-75) chains. In the present study we have identified the quantitative expression of IL-2R beta on subsets of NK cells in peripheral blood using flow cytometry and a recently established mAb against IL-2R beta (TU27). We demonstrate that NK cells are not a homogeneous population but that phenotypic subsets exist, and that the levels of IL-2R beta expression correlate with these subsets. The levels of IL-2R beta expression on NK subsets are CD3- CD16- CD56bright NK cells (immature NK) greater than CD16+CD4- NK cells (mature NK) greater than CD16+CD57+ NK cells (more mature NK) in adult peripheral blood lymphocytes. The level of IL-2R beta expression on CD16+ NK cells in cord blood is significantly higher than that in adult PBL. These findings suggest that there may be a inverse relationship between IL-2R beta expression and the differentiation of NK cells. IL-2R beta, preferentially expressed on the NK cells, may play an important role in differentiation and maturation of NK cells.

Adult↗

IL-2-induced signal transduction: involvement of tyrosine kinase and IL-2 receptor gamma chain.

We previously established a monoclonal antibody, TU11 mAb, which is specific for human IL-2 receptor (IL-2R) beta chain (p75) and does not inhibit IL-2-binding to IL-2R beta. Using TU11 mAb, we first demonstrated the existence of a third component, p64, of IL-2R, tentatively named the gamma chain of IL-2R. TU11 mAb precipitated not only the beta chain but also the alpha and gamma chains in the lysates of cells bearing the high-affinity IL-2R in the presence of IL-2 without any chemical crosslinker. The gamma chain was also detected in lymphoid MOLT alpha beta and MOLT beta cells, which were stably transfected with both alpha and beta cDNA, and with beta cDNA alone, respectively, but not in fibroblastoid COS alpha beta and COS beta cells, which were stably transfected with both alpha and beta cDNA, and with beta cDNA alone, respectively. Furthermore, IL-2-mediated growth signals were transduced in the lymphoid transfectant cells but not in the fibroblastoid transfectant cells, suggesting the possibility that the gamma chain along with the beta chain has an essential role in the transduction of IL-2-mediated growth signals. Using TU11 mAb, we secondly demonstrated that IL-2 rapidly induces tyrosine phosphorylation of both the beta and gamma chains in an IL-2-dose-dependent manner. The tyrosine phosphorylation of beta and gamma chains were also detected in the lymphoid transfectant cells but not in the fibroblastoid transfectant cells, indicating the correlation between tyrosine kinase activation and IL-2-mediated growth signaling. The beta chain was phosphorylated in in vitro on serine, threonine and tyrosine residues, but the gamma chain was phosphorylated in in vitro predominantly on tyrosine residues, suggesting the possibility that the gamma chain itself is a tyrosine kinase molecule.

Enzyme Activation↗

Activation of leukemic large granular lymphocytes by interleukin-2 via the p75 interleukin-2 receptor.

We studied the role of interleukin-2 (IL-2) receptor subunits in the activation of leukemic CD3+ large granular lymphocytes (LGL). Peripheral blood mononuclear cells from four patients with CD3+ LGL leukemia were activated with 500 mu/ml of recombinant IL-2. Induction of both proliferative and cytotoxic functions by IL-2 was blocked by addition of anti-p75 IL-2 receptor monoclonal antibody, but not by addition of anti-p55 IL-2 receptor monoclonal antibody. Sorting experiments demonstrated directly that the effects of the anti-p75 IL-2 receptor monoclonal antibody were on leukemic LGL. These results show constitutive expression of functional p75 IL-2 receptors on leukemic LGL and suggest a possible mechanism for leukemic LGL proliferation in vivo.

Antibodies, Monoclonal↗

[Prevalence of anti-human parvovirus antibody in pregnant women].

Human parvovirus B19 (B19) has been shown to be associated with erythema infectiosum. Recently, it was reported that when a pregnant woman is infected with B19, the fetus in her uterus sometimes becomes hydropic and results in a stillbirth. But no epidemiologic study of pregnant women in Japan has been performed yet. We have established an in vitro propagation system of B19 virions and an assay system for detecting anti-B19 antibody by indirect immunofluorescence (IF) staining. We examined the positive rate of anti-B19 antibody among 337 normal blood donors, 329 normal pregnant women, 23 early aborted women and 24 non-immune hydrops fetalis cases by IF staining. The positive rate for anti-B19 IgG among normal blood donors increased with age. It was 22% aged 21 to 30, 44% aged 31 to 40, 65% aged 41 to 50, and 76% aged 51 to 60, respectively. Anti-B19 IgG was detected in 33% of 329 of normal pregnant women. The anti-B19 IgG positive rate was 26% in pregnant women in their twenties and 44% in those in their thirties. There was a significant difference between the two generations. The results show that more than half the women in their twenties and thirties risk B19-infection during pregnancy. Nine of twenty-three early aborted women were positive for anti-B19 antibody. Among six pregnant women who were positive for anti-B19 IgM, four delivered normal babies and the others aborted artificially or spontaneously. Anti-B19 IgG and IgM of twenty four non-immune hydrops fetalis (NIHF) were examined and four cases were found to be anti-B19 IgG positive.(ABSTRACT TRUNCATED AT 250 WORDS)

Abortion, Spontaneous↗

Cell line-dependent response of the enhancer element of simian virus 40 to transactivator p40tax encoded by human T-cell leukemia virus type I.

The trans-acting transcriptional factor p40tax of human T-cell leukemia virus type I (HTLV-I) can activate expression not only of its own viral genes but also of other viral and cellular genes. We examined the cis-acting sequences in the simian virus 40 (SV40) enhancer required for its activation by HTLV-I p40tax. Experiments with chloramphenicol acetyltransferase constructs bearing the SV40 enhancer elements revealed that p40tax-dependent transactivation of the SV40 enhancer is mediated through the C element that contains the typical sequence for binding of a nuclear factor NF-kappa B. Activation of the C element by p40tax was seen in a limited set of cell lines as was also seen with the whole enhancer of SV40. Binding of NF-kappa B or NF-kappa B-like factor to the SV40 C element increased when p40tax was expressed. The fact that HTLV-I p40tax utilizes a cellular regulatory mechanism to transactivate the SV40 enhancer in a cell-dependent manner may have implications for the pathogenesis of adult T-cell leukemia.

Base Sequence↗

Differential expression of the IL-2 receptor subunits, p55 and p75 on various populations of primary peripheral blood mononuclear cells.

Unstimulated PBL were examined for expression of IL-2R subunits, IL-2Rp55 and IL-2Rp75, by two-color flow cytometric analyses using mAb. NKH-1+ non-T non-B cells expressed IL-2Rp75 but not IL-2Rp55, and the IL-2Rp75 sites on purified NKH-1+ cells were determined to be 1630 sites/cell by binding of 125I-labeled TU27 mAb specific for IL-2Rp75. In the CD4+ T cell population, IL-2Rp55+ cells were significantly detected, but little or marginally of the IL-2Rp75+ cells. However, IL-2Rp75+ cells were significantly detected, but little of the IL-2Rp55+ cells in the CD8+ T cell population. The IL-2Rp75 sites on CD8+ T cells were estimated at approximate 180-410 sites/cell. In the CD4+ T cells, expression of IL-2Rp75 as well as IL-2Rp55 was induced by stimulation with PHA. IL-2Rp75+ cells, but not IL-2Rp55+ cells, were also detected in the CD14+ monocyte population. In the CD20+ B cell population, a small number of IL-2Rp55+ cells was detected, but little of the IL-2Rp75+ cells.

Adult↗

Activation of peripheral blood T cells via the p75 interleukin 2 receptor.

By using mAb and flow cytometry, a constitutive expression of the p75 IL-2R was revealed in human peripheral blood CD8+ T cells and TCR delta-1+ T cells as well as in CD16+ NK cells. Anti-p75 IL-2R mAb almost completely inhibited the induction of cytolytic activity in these T cells by brief exposure to IL-2, as estimated by anti-TCR/CD3 mAb-targeted cytotoxicity. While anti-p55 IL-2R mAb alone inhibited the response only modestly, maximal inhibition was achieved by combining both anti-p55 and anti-p75 IL-2R mAbs. These results indicate that the p75 IL-2R constitutively expressed on peripheral blood CD8+ T cells and TCR delta-1+ T cells is predominantly responsible for the direct activation of these cells by IL-2.

Antibodies, Monoclonal↗

Presence of a p70 IL-2-binding peptide on leukemic cells from various hemopoietic lineages.

Recent studies have shown that IL-2R are composed of at least two polypeptide chains of 55 kDa (Tac or alpha-chain) and 70 to 75 kDa (p70 or beta-chain). The association of both chains forms high affinity IL-2R, whereas each chain alone binds IL-2 with a low (alpha-chain) or intermediate (beta-chain) affinity. So far, the p70 peptide has been found, in the absence of the Tac peptide, on the surface of lymphoid cells of T, B, or NK lineage. In this study, we investigated whether leukemic cells of various hemopoietic lineages expressed the p70 IL-2-binding protein. We found that both fresh leukemic cells obtained from patients, and cells from established leukemic lines of T cells, B cell, and myeloid origin constitutively expressed a p70 IL-2-binding protein on their surface, as detected by affinity cross-linking of radioiodinated IL-2. IL-2 binding and cross-linking to these cells was completely inhibited in the presence of an excess unlabeled rIL-2, but not with an anti-Tac mAb. Binding experiments on pre-B and myeloid cell lines revealed intermediate affinity IL-2R, whereas both high and intermediate affinity IL-2R were detected in T leukemic cells. The intermediate affinity binding of 125I-rIL-2 to the leukemic cell lines MOLT4 and Reh6 was inhibited by the TU27 mAb, which recognized the p75 chain of IL-2R. Moreover, the TU27 mAb could stain the K562, KM3, and MOLT4 (weakly) cell lines by indirect immunofluorescence. A high dose of rIL-2 (400 U/ml) enhanced the proliferation of cells from one out of three patients with acute myeloblastic leukemia, but it did not induce differentiation of the cells in any of three cases. Thus the finding of p70 IL-2-binding molecules on immature lymphoid and nonlymphoid hemopoietic cells should disclose new biologic functions for IL-2.

Cell Differentiation↗

Pertussis toxin inhibits differentiation induced by retinoic acid in a human promyelocytic leukemia cell line HL-60.

HL-60 is induced to differentiate by retinoic acid (RA) to mature granulocyte-like cells. We found that pretreatment of HL-60 with pertussis toxin (PT) inhibited differentiation induced by various concentrations of RA. This inhibition was observed when PT was prior to the addition of RA. PT ADP-ribosylated a 39,000 Da protein of membrane fraction of HL-60 and did not increase an intracellular cyclic adenosine-3':5'-monophosphate level, indicating that Go, a guanine nucleotide-binding protein, involves signal transduction for RA-induced differentiation. However, Go does not appear to be obligatory for the common pathway of induction of HL-60 differentiation, because PT showed a little or no effect on differentiation induced by other inducers such as 1 alpha,25-dihydroxyvitamin D3, tumor necrosis factor, interferon-gamma, lymphotoxin, prostaglandin E2, cholera toxin, and dimethylsulfoxide.

Cell Differentiation↗

Differential activation of the 21-base-pair enhancer element of human T-cell leukemia virus type I by its own trans-activator and cyclic AMP.

A transcriptional trans-acting factor p40tax of human T-cell leukemia virus type I (HTLV-I) functions as an inducer for expression of HTLV-I provirus via activation of the enhancer in the long terminal repeat of HTLV-I. In addition to p40tax and a tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA), an activator of protein kinase C, we report here that forskolin, an activator of adenyl cyclase, also induces function of the HTLV-I enhancer. Experiments with mutants of the HTLV-I enhancer revealed that TPA-induced activation was not mediated by solely a 21-base-pair (bp) sequence that is repeated three times in the enhancer, whereas the 21-bp enhancer element can act as a sufficient cis-acting sequence for activation by both p40tax and forskolin. In addition, we found that nuclear factor(s) like the cyclic AMP-responsive element (CRE) binding factor could bind to the HTLV-I 21-bp enhancer element. However, a difference was found in sequences required for activation by p40tax and forskolin. A CRE related sequence present in the 21-bp enhancer element was enough for forskolin-induced activation. On the other hand, p40tax required a much longer sequence that is overlapping but not identical to the CRE related sequence, suggesting that the forskolin-induced cyclic AMP pathway may be partly involved in, but not sufficient for p40tax-mediating trans-activation of the HTLV-I enhancer.

Base Composition↗

Activation of natural killer cells via the p75 interleukin 2 receptor.

The IL-2R is composed of at least two subunits, the p55 (CD25/Tac) and p75 glycoproteins. The p75 IL-2R is expressed preferentially on resting human peripheral blood NK cells, but is not detected on substantial proportions of T and B lymphocytes, monocytes, or granulocytes. Anti-p75 IL-2R mAb substantially inhibits the early events associated with NK cell activation by IL-2, including inhibition of cytotoxic activity and induction of the CD69 early activation antigen. While anti-p55 IL-2R mAb alone failed to substantially inhibit the initial events of IL-2 stimulation, maximal inhibition of IL-2-induced cytotoxicity and proliferation was achieved by combining both anti-p55 IL-2R and anti-p75 IL-2R. Collectively, results from the present studies directly implicate the p75 IL-2R as the structure predominantly responsible for IL-2 activation of NK cells.

Antibodies, Monoclonal↗

Identification of components of differentiation-inducing activity of human T-cell lymphoma cells by induction of differentiation in human myeloid leukemia cells.

Two lymphokines that contribute to induction of cell differentiation in promyelocytic HL-60 leukemia cells by human T-cell lymphoma HUT-102 cells were identified previously. The lymphokines identified in the differentiation-inducing preparation were interferon-gamma (IFN-gamma) and lymphotoxin. To determine the remaining component(s) of this differentiation-inducing activity, we used gene-cloned (recombinant) forms and antibodies of lymphokines. The differentiation-inducing activity of the HUT-102 cells was not completely neutralized by the antibodies, suggesting that an additional lymphokine(s) is involved. Granulocyte-macrophage colony-stimulating factor (GM-CSF) in combination with retinoic acid induced differentiation of the HL-60 cells in a dose-dependent manner. Furthermore, the activity of the differentiation-inducing factors was partially inhibited by anti-GM-CSF antibody and completely inhibited by the combination of antibodies to lymphotoxin, IFN-gamma, and GM-CSF. These results indicate that, in addition to IFN-gamma and lymphotoxin, GM-CSF is the third major component released by HUT-102 cells for inducing differentiation of HL-60 cells.

Cell Differentiation↗

Monoclonal antibody defining a molecule possibly identical to the p75 subunit of interleukin 2 receptor.

A mouse hybridoma cell line, TU27, producing an mAb was established. TU27 mAb reacted with various human and Gibbon ape T cell lines bearing the IL-2R p75 (IL-2Rp75), but not with cell lines expressing only Tac antigen, IL-2Rp55, and numbers of its binding sites on cell surfaces were similar to those of high-affinity IL-2R. Radioimmunoprecipitation with TU27 mAb defined a molecule with a molecular mass of 75 kD on the surface of IL-2Rp75 bearing cells. TU27 mAb completely blocked IL-2 binding to IL-2Rp75 and to the high-affinity IL-2R but not to IL-2Rp55 composing the low-affinity IL-2R. The IL-2-dependent growth of a human T cell line, ILT-Mat, was significantly inhibited by TU27 mAb only at low concentrations of IL-2, and combination of TU27 mAb and H-31 mAb specific for IL-2Rp55 completely inhibited the cell growth even at high concentrations of IL-2. These data strongly suggest that TU27 mAb is specific for the human IL-2Rp75.

Antibodies, Monoclonal↗

Electroporation: application to human lymphoid cell lines for stable introduction of a transactivator gene of human T-cell leukemia virus type I.

Conditions were developed for stable introduction of foreign DNA into human lymphoid cell lines by electroporation. To introduce stably the p40 gene of human T-cell leukemia virus type I (HTLV-I) into the human lymphoid cell line Jurkat, the p40 expressing plasmid, pMAXRHneo-1, which carries the neo resistant gene, was transfected into Jurkat cells at a voltage of 2500 V and capacitance of 21.7 microF, and stable transformants were screened for neo (G418) resistance. The frequency of transformants was more than one per 2 x 10(5) cells used initially. Clones that were resistant to G418 were shown to have the p40 gene integrated into the host genome and to express mRNA and protein from the introduced plasmid. Expression of p40 in the transformed Jurkat cells was also confirmed by testing the trans-activating effect of HTLV-I enhancer by p40. High frequencies of stable transformations of 10(-4) to 10(-6) were also reproducibly obtained by electroporation of the human T cell lines HSB-2 and TALL-1, a human B cell line Raji, a human monocytic cell line U937, and a human erythroleukemia cell line K562. These results demonstrate that electroporation is a very efficient method for introducing foreign DNA into human lymphoid cell lines.

Blotting, Northern↗

Functional mapping of the activity of the R region in the human T-cell leukemia virus type I long terminal repeat to increase gene expression.

We previously demonstrated the activity of the R fragment in the long terminal repeat of human T-cell leukemia virus type I for elevation of the level of gene expression. In this study, the fragment was deleted with BAL31 nuclease to determine its functional domain. Series of the shortened R fragments were linked to the simian virus 40 promoter unit, which regulated expression of a reporter gene. Examination with the R fragments deleted from the 5' and 3' ends showed that borders of the functional domain were mapped within nucleotide positions 458 to 473 for the 5' end and nucleotide positions 559 to 594 for the 3' end, respectively. Thus we conclude that a 136-base-pair fragment corresponding to the second half of the R region was sufficient to allow elevation of the level of gene expression.

Base Sequence↗