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Biomedical subjects

A Altman

Publications and source records attributed to A Altman.

At least 145 records · Page 8Linked to original sources

Polyamines and Root Formation in Mung Bean Hypocotyl Cuttings : II. Incorporation of Precursors into Polyamines.

The incorporation of [(14)C]arginine and [(14)C]ornithine into various polyamines was studied in mung bean (Vigna radiata [L.] Wilczek) hypocotyl cuttings with respect to the effect of indole-3-butyric acid on adventitious root formation.Both [(14)C]arginine and [(14)C]ornithine are rapidly incorporated into putrescine, spermidine, and spermine, with similar kinetics, during 5- to 24-hour incubation periods. The incorporation of arginine into putrescine is generally higher than that of ornithine. The biosynthesis of putrescine and spermidine from the precursors, in the hypocotyls, is closely related to the pattern of root formation: a first peak at 0 to 24 hours corresponding to the period of root primordia development, and a second peak of putrescine biosynthesis at 48 to 72 hours corresponding to root growth and elongation. Indole-3-butyric acid considerably enhances putrescine biosynthesis in both phases, resulting in an increase of the putrescine/spermidine ratio.It is concluded that the promotive effect of indole-3-butyric acid on putrescine biosynthesis, from both arginine and ornithine, supports the hypothesis that auxin-induced root formation may require the promotion of polyamine biosynthesis.

Journal Article↗

Tumor promoters in conjunction with calcium ionophores mimic antigenic stimulation by reactivation of alloantigen-primed murine T lymphocytes.

Antigen binding to its specific receptor on T cells initiates a series of intracellular events that result in cell differentiation, activation, and clonal expansion. However, the mechanism by which these antigen-occupied receptors induce the transmembrane signal transduction needs clarification. Because this mechanism appears to involve an increase in intracellular free Ca2+ concentration and activation of protein kinase C (PKC), we tested the effect of Ca2+ ionophores and PKC activators on alloantigen-specific primary mixed leukocyte culture cells. Both calcium ionophores, A23187 and ionomycin, in conjunction with 12-O-tetradecanoylphorbol 13-acetate (TPA) mimicked the effect of antigen or interleukin 2 (IL 2) by inducing strong proliferative and alloantigen-specific cytotoxic responses. In addition, Ca2+ ionophore and TPA induced IL 2 receptor expression and IL 2 secretion. The capacity of other phorbol esters or a non-phorbol ester tumor promoter (teleocidin) to replace TPA in induction of cell activation correlated with their ability to bind to and to activate PKC. In addition, the synergistic effect of Ca2+ ionophore and TPA was blocked by either a Ca2+ chelator (EGTA) or cAMP, which is thought to inhibit phosphatidylinositol metabolism. To determine whether the induction of this cytotoxic activity was mediated by a direct effect of Ca2+ ionophore and TPA on cytotoxic T (Tc) cells or was secondary to IL 2 secretion by activated helper T (Th) cells, we tested the effect of Ca2+ ionophore and TPA on isolated populations of cloned, alloantigen-specific Th and Tc cells. Both agents induced cell proliferation and IL 2 production by Th cells, but not by Tc cells. Activation of mixed clones of Th and Tc cells, but not of Tc cells alone, resulted in cytotoxic activity, an effect that could be blocked by anti-IL 2 receptor antibodies. The results thus demonstrate that an increased concentration of intracellular Ca2+ in conjunction with PKC activation can bypass the signal provided by antigen-receptor interaction on Th cells, but does not substitute for IL 2 in activating cytotoxicity by isolated Tc cells.

Animals↗

Production of interleukin 2 (IL 2) by salivary gland lymphocytes in Sjögren's syndrome. Detection of reactive cells by using antibody directed to synthetic peptides of IL 2.

Because abnormalities in interleukin 2 (IL 2) production have been reported in the blood of patients with certain autoimmune diseases, we have examined the lymphocytes from patients with Sjögren's syndrome (SS) in which it is possible to obtain simultaneous samples of inflammatory site (i.e., salivary gland) lymphocytes and blood lymphocytes. We found that IL 2 production by peripheral blood lymphocytes (PBL) after mitogen stimulation was markedly diminished (4 +/- 2 U/ml) in 8/32 SS patients. However, salivary gland lymphocytes (SGL) from six out of six SS patients (including three patients with low IL 2 production by their PBL) had a high level of IL 2 production (97 +/- 32 U/ml), suggesting that IL 2 production by inflammatory site lymphocytes may differ from blood lymphocytes in the same patients. Low IL 2 production by a patient's PBL was not correlated with the patient's age, duration of disease, immunoglobulin level, or presence of antinuclear antibodies. Low IL 2 production was associated with a decreased ratio of Leu-3a/Leu-2a positive cells (p less than 0.05) and with an increased proportion of "activated" T cells expressing HLA-DR and gp140 (p less than 0.05). To determine the proportion of PBL and SGL containing cytoplasmic IL 2-like material, we used affinity-purified rabbit antibodies prepared against chemically synthesized peptides of human IL 2. Before mitogen stimulation, PBL were not stained by these antibodies (less than 1% reactive cells), whereas SGL T cells eluted from the salivary gland of SS patients contained a small (3.4% +/- 1.8) proportion of reactive cells. A similar proportion (2.4% +/- 1.2) of reactive cells was noted when frozen tissue sections of salivary gland biopsies were examined with these antibodies. After mitogen stimulation, 35% +/- 17 of PBL and 56% +/- 18 of SS SGL were specifically stained with anti-IL 2 peptide antibodies. In summary, these studies demonstrate a significant difference in IL 2 production between PBL and SGL of the same patients. Furthermore, antibodies against IL 2 peptides provide a powerful tool for detection of T cells producing IL 2 in vitro and in situ, and for understanding the role of this lymphokine in pathogenesis.

Adult↗

The tumor promoter teleocidin induces IL 2 receptor expression and IL 2-independent proliferation of human peripheral blood T cells.

In testing the recently discovered tumor promoter teleocidin (TCD), we found that like phorbol esters, TCD was mitogenic to human peripheral blood lymphocytes (PBL) and preferentially stimulated sheep erythrocyte-rosetted (ER) T cell-enriched populations. Stimulation of PBL with TCD induced synthesis and expression of receptors for interleukin 2 (IL 2), as shown by dot-blot analysis with the use of a synthetic oligonucleotide probe, cell surface staining with anti-Tac antibody followed by fluorescence-activated cell sorter analysis, and a functional proliferation assay in which TCD-stimulated cells were washed free of TCD and were recultured with human recombinant IL 2 (rIL 2). Increased expression of cell surface markers after TCD stimulation of PBL is not general, because TCD did not affect the expression of Leu-2a antigen, and it also reduced the density of Leu-3a and Leu-4 antigens. Stimulation of cultured, IL 2 receptor-positive PBL with rIL 2, but not TCD, was blocked by anti-rIL 2 antibodies. Furthermore, IL 2-specific mRNA was not detected in TCD-stimulated PBL, demonstrating that IL 2 was not required for TCD-induced T cell proliferation. In addition, TCD replaced IL 2 in inducing short-term proliferation of IL 2-dependent murine cytotoxic T cell lines. The findings that TCD induced IL 2-independent proliferation of T cells, and TCD and IL 2 synergized in inducing T cell proliferation, suggest that they initiate T cell proliferation via different mechanisms. The IL 2-independent activation of T cells, and the induction of IL 2 receptor expression by TCD, may be related to its ability to activate protein kinase C in cell membrane.

Animals↗

Transcriptional activity of isolated maize chloroplasts.

Chloroplasts and etioplasts, isolated from light- or dark-grown Zea mays plants, respectively, can incorporate labeled UTP into RNA in a reaction stimulated by light or ATP. This in organello RNA synthesis proceeded at a linear rate for up to 2 h. When expressed per unit protein, plastids from dark-grown plants incorporated more UTP than those from light-grown plants, and the highest rate of UTP incorporation was found in plastids from light-stimulated leaves (grown previously in the dark). The in organello newly synthesized RNA was heterodispersed, with most transcripts smaller than 14 S. Specific transcripts were detected in organelles from both dark- and light-grown plants that contain sequences that are homologous to the mRNAs for the rbcL gene (coding for the large subunit of ribulose bisphosphate carboxylase (LS-RuBPCase] and for the psbA gene (32-kDa thylakoid membrane protein). Qualitatively, the newly synthesized in organello transcripts were similar from the dark and light organelles.

Adenosine Triphosphate↗

Autoreactive rat T-cell lines: establishment and cellular characteristics.

Stable self-reactive T-cell lines were established from the draining lymph nodes of Buffalo rats primed with rat thyroglobulin (Tg) in complete Freund's adjuvant. Following two rounds of in vitro selection with Tg or with purified protein derivative (PPD) of Mycobacterium tuberculosis, Tg- or PPD-specific lines were selected. Self-reactivity, manifested by a potent proliferative response of these lines to syngeneic stimulators in the absence of the selecting antigen (Tg or PPD), emerged by 3-4 weeks after the establishment of the lines. This proliferation could not be attributed to reactivity against heterologous serum components. Despite this syngeneic mixed-leukocyte reaction (SMLR) which was readily detectable, specific stimulation by Tg or PPD over the level of the SMLR could still be demonstrated. These lines also responded to concanavalin A but not to allogeneic stimulator cells. More than 95% of T cells of these lines displayed the rat T-helper-cell-specific (W3/25) marker and they secreted a defined lymphokine, T-cell growth factor (TCGF), upon stimulation with syngeneic stimulator cells, independent of the presence of soluble antigen. T-Cell lines such as the ones described here will be useful in elucidating the biological significance of the AMLR/SMLR and its relation to nominal antigen reactivity.

Animals↗

Mechanism of T-cell lymphomagenesis: transformation of growth-factor-dependent T-lymphoblastoma cells to growth-factor-independent T-lymphoma cells.

In a previous paper we described the induction by x-irradiation or radiation-induced leukemia virus-inoculation of two classes of lymphoid T-cell neoplasms: The first class, designated T-cell lymphoblastoma (TCLB), consists of growth-factor-dependent eudiploid cells that home to the spleen and give rise to splenic tumors on injection into syngeneic mice; the second class, designated T-cell lymphoma (TCL), consists of growth-factor-independent aneuploid or pseudodiploid cells that give rise to local tumors at the site of subcutaneous injection. This paper describes the generation of a family of growth-factor-independent aneuploid or pseudodiploid TCL cells after the injection into the thymus of growth-factor-dependent diploid TCLB cells. In contrast to the donor TCLB cells, the resulting TCL cells could be cloned in semisolid medium, produced local tumors at the site of subcutaneous injection, and proliferated in a growth-factor-independent fashion in vitro. The induced growth-factor-independent TCL cells were chromosomally and phenotypically unstable and continued to evolve both in vivo and in vitro. After propagation in the thymus, the cells often showed stable translocations in addition to the evolving aneuploidy. We propose that the chromosome abnormalities induced during the proliferation of growth-factor-dependent TCLB cells in the thymus constitute a general mechanism by which neoplastic cells progress from growth-factor dependency to independency.

Animals↗

Antibodies of predetermined specificity against chemically synthesized peptides of human interleukin 2.

This communication describes the preparation of antibodies to human interleukin 2 (IL-2), using as immunogens synthetic peptides derived from the predicted amino acid sequence of IL-2. Rabbits and mice were immunized with protein carrier conjugates of eight chemically synthesized IL-2-derived peptides, each consisting of 13-15 amino acids. The immune antisera were screened in a solid-phase ELISA for reactivity to a native human IL-2. Antibodies to four of the eight peptides were found by a variety of biological and immuno-chemical criteria to react against human IL-2. Furthermore, an affinity-purified antibody to one of the IL-2 peptides (peptide 84) specifically stained the cytoplasm of phytohemagglutinin-stimulated human peripheral blood lymphocytes or T-leukemic cells (Jurkat). Antibodies to synthetic IL-2 peptides should serve as useful probes for studying this lymphokine and for developing quantitative assays for measuring its levels in biological fluids and its association with disease.

Antigen-Antibody Complex↗

Benign skin changes associated with chronic sunlight exposure.

Chronic and heavy sun exposure will insidiously induce changes in human skin during the course of many years. These changes include wrinkles, atrophy, cutis rhomboidalis nuchae, yellow papules and plaques of the face, colloid milium, telangiectasis, diffuse erythema, diffuse brown pigmentation, ecchymoses, freckles, actinic lentigo, nevi, Favre-Racouchot syndrome, poikiloderma of Civatte, actinic keratosis, basal cell carcinoma, squamous cell carcinoma, melanoma, actinic lichen planus, actinic reticuloid, porphyria cutanea tarda, and erythropoietic protoporphyria. In particular, we describe the clinical appearance of the benign changes caused by chronic sunlight exposure.

Adult↗

Effects of retinoic acid (RA) on the growth and phenotypic expression of several human neuroblastoma cell lines.

It has been shown that retinoic acid (RA) can promote morphologic differentiation and inhibit the growth of a human neuroblastoma cell line, LA-N-1. The present study tests the histological generality of these phenomena by determining the effects of RA on seven other human neuroblastoma cell lines. Results show that RA strongly inhibited anchorage-dependent growth and induced morphologic alterations in six of seven of the cell lines. These alternations included morphologic differentiation as evidenced by formation of neurite extensions in four of the lines, cellular enlargement and vacuolization in one culture, and formation of large, flattened epithelial or fibroblastic-like cells in another culture. Although one cell line was relatively insensitive to the effects of RA in monolayer culture, all seven were strongly inhibited by RA in soft agar assays. Cellular RA-binding proteins were detected in 2/2 lines tested. These findings suggest that, as a histological group, human neuroblastoma cells are extremely sensitive to RA-induced growth inhibition and morphological alterations generally associated with reduced expression of the malignant phenotype of this type of cancer.

Axons↗

Macrophage activation: priming activity from a T-cell hybridoma is attributable to interferon-gamma.

Antiviral and macrophage-priming activities in the supernatant medium of a subclone of a concanavalin A-stimulated mouse T-cell hybridoma were investigated. The two activities were associated with a molecular weight of approximately 50,000 and could not be separated by various approaches. Both activities were eliminated by a highly specific neutralizing antibody against mouse interferon-gamma, but not by antibody against interferon-alpha and -beta. The ratio of priming to antiviral activity in the hybridoma culture supernate was indistinguishable from the ratio obtained with mouse interferon-gamma prepared by recombinant DNA technology. It was concluded from these data that the priming activity in hybridoma culture supernates was attributable to interferon-gamma and that this mediator is one form of the lymphokine macrophage-activating factor. Interferon-gamma was greater than 800 times more efficient at priming mouse macrophages for tumor cell killing than was a mixture of interferon-alpha and -beta. This finding contributes to growing awareness that type II interferon may have greater immunoregulatory potential than type I interferons.

Animals↗

Specific high-affinity binding and biologic action of retinoic acid in human neuroblastoma cell lines.

Neuroblastoma cells are a good model for neuronal development because of their ability to extend neurites in response to various stimuli, including retinoic acid. In the present experiments, we have examined five human neuroblastoma cell lines (LA-N-1, IMR-32, LA-N-5, SK-N-MC, and CHP-100) for the presence of cellular retinoic acid binding protein (CRABP), a receptor-like protein implicated in the molecular functioning of vitamin A. CRABP is identified and quantitated by sucrose gradient centrifugation, selective inhibition by the mercurial reagent p-chloromercuribenzene sulfonic acid (PCMBS), and saturation analysis. All five lines contain significant levels of cytosolic CRABP (2.5-7.5 pmol/mg of protein), which display typical properties of specific high affinity retinoic acid binding, a sedimentation coefficient of 2 S, and inhibition by PCMBS. Three of the lines (LA-N-1, IMR-32, and LA-N-5) are strongly growth inhibited by 1 microM retinoic acid in monolayer culture, whereas two (LA-N-1 and LA-N-5) undergo marked differentiation to a stellate, fusiform morphology with characteristic neurite outgrowths. The SK-N-MC and CHP-100 lines are relatively resistant to the antiproliferative effects of retinoic acid under these conditions. Nevertheless, all five lines are effectively inhibited by retinoic acid in their ability to form anchorage-independent colonies in soft agar. Thus, although CRABP is not necessarily correlated with growth inhibition in monolayer culture, it is associated with retinoic acid's ability to inhibit neuroblastoma colony formation in soft agar. More experiments will be required to determine if this effect on growth in soft agar reflects the putative ability of retinoic acid to convert tumorigenic neuroblastoma cell lines into the normal differentiated phenotype.

Carrier Proteins↗

Human T cell hybridomas specific for Epstein Barr virus-infected B lymphocytes.

A mutant of the Jurkat human T lymphoblastoid cell line deficient in hypoxanthine phosphoribosyltransferase, and resistant to ouabain, was fused with peripheral blood T lymphocytes primed in vitro with Epstein Barr virus- (EBV) transformed autologous B lymphocytes. After selection of somatic cell hybrids and cloning, hybridoma cell lines were obtained that reacted with autologous EBV-infected B lymphocytes, as detected by the release of interleukin 2 into the culture medium. The hybridomas did not react with i) EBV-uninfected autologous or allogeneic B lymphocytes, ii) three out of four allogeneic EBV-transformed cell lines, or iii) two established EBV-negative B cell lines. These functional hybridomas may ultimately prove useful in dissecting the means by which human T lymphocytes recognize and regulate EBV infection in vivo.

B-Lymphocytes↗

Macrophage-activating factor produced by a T cell hybridoma: physiochemical and biosynthetic resemblance to gamma-interferon.

Biochemical and biosynthetic evidence has been obtained which indicates that the macrophage activating factor (MAF) produced by the murine T cell hybridoma clone 24/G1, which primes macrophages for nonspecific tumoricidal activity, is a form of gamma-interferon (IFN gamma). MAF and antiviral activities were generated by the clone in proportional amounts under a variety of culture conditions. Production of both activities showed identical dependence on cell density even when production precipitously ceased at cell concentrations greater than 1.2 X 10(6) cells/ml. MAF and antiviral activities displayed identical sensitivities to pH and temperature and were indistinguishable on the basis of binding to insolubilized polynucleotides. Dye-ligand chromatography of a stimulated hybridoma supernatant on a column of Matrex Gel Red A resulted in the 1500-fold purification and 100% recovery of the MAF activity. A qualitatively identical elution profile was also obtained for the antiviral activity; however, only 32% of the original activity was recovered. When subjected to gel filtration on a high performance liquid chromatography system (HPLC), the MAF and antiviral activities present in the Matrex Red pool displayed identical elution profiles and exhibited an apparent m.w. of 50,000. This technique resulted in another 10-fold purification and 50% recovery of the two activities. On HPLC chromatofocusing the MAF activity in the Matrex Red pool could be resolved into seven chromatographically distinct species yet could not be resolved from the antiviral activity on either a qualitative or quantitative basis. These results thus provide quantitative molecular evidence to support the concept that IFN gamma can act as a MAF.

Adsorption↗

Identification of a T cell hybridoma that produces large quantities of macrophage-activating factor.

A murine T cell hybridoma, constructed by fusion of alloantigen-activated T cells with the BW5147 T cell lymphoma, which produces a lymphokine capable of inducing tumoricidal activity in macrophages, has been identified. Lymphokine release could be detected only after mitogen stimulation of the T cell hybridoma culture. Upon cloning of the parental hybridoma, 24 out of 27 clones produced tumoricidal-inducing activity. Seven clones produced more cytocidal-inducing activity than did conventional supernatants, generated by concanavalin A stimulation of normal murine spleen cell cultures, which contained macrophage-activating factor (MAF). The supernatant of hybridoma clone 24/G1 was 25 times more active than conventional MAF preparations. Using supernatants from a variety of clones, the levels of macrophage-activating activity and interleukin 2 were found to vary independently of one another. The lymphokine produced by hybridoma clone 24/G1 appeared to be identical to conventional MAF by a variety of criteria including: (a) a requirement for a second signal for induction of tumoricidal activity in macrophages, (b) inactivation after incubation for 1 h at 65 degrees C, and (c) loss of activity after treatment at pH 4.0 but not at pH 5.0. Like conventional MAF, the hybridoma MAF eluted as a single peak after molecular sieve chromatography on Sephadex G100 and exhibited an apparent molecular weight of 55,000. Although somewhat heterogeneous, the majority of hybridoma 24/G1 MAF displayed an isoelectric point of 5.4 as determined using the chromatofocusing technique. These results thus illustrate the usefulness of T cell hybridomas in distinguishing between various lymphokine activities and indicate that the T cell hybridoma clone 24/G1 will be of particular usefulness in achieving the biochemical purification of substantial quantities of murine MAF.

Animals↗