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T L Rothstein

Publications and source records attributed to T L Rothstein.

At least 73 records · Page 4Linked to original sources

Abnormal kappa B-binding protein in the cytoplasm of a plasmacytoma cell line that lacks nuclear expression of NF-kappa B.

The transcription factor NF-kappa B appears to play an important role in immunoglobulin gene expression and lymphokine production, and may play a role in primary B cell activation. Constitutive nuclear expression of NF-kappa B has been found in all mature B cell lines with the notable exception of the murine plasmacytoma, S107. We report herein that S107 cells express cytoplasmic kappa B-binding material detected by electrophoretic mobility shift assay that by several criteria represents authentic NF-kappa B. Despite the presence of cytoplasmic NF-kappa B, several stimuli known to induce nuclear translocation of NF-kappa B failed to do so in S107 cells, including: the PKC agonist, PMA; the protein synthesis inhibitor, cycloheximide; and LPS. Transfection of S107 cells with a kappa B-CAT reporter gene construct confirmed the absence of functional activity. Importantly, a global failure of nuclear transcription factor expression was ruled out by the ability of PMA to induce nuclear expression of another trans-acting factor, AP-1. Thus, rather than lacking NF-kappa B altogether, S107 cells manifest disordered regulation of NF-kappa B in which cytoplasmic material is incapable of translocation to the nucleus. While Northern analysis failed to reveal a gross defect in the mRNA coding for the DNA binding subunit of NF-kappa B, UV-photo-cross-linking followed by denaturing gel electrophoresis demonstrated the presence of a cytoplasmic kappa B-binding protein of abnormally elevated molecular size. This finding suggests that the abnormal regulation of NF-kappa B in S107 cells is associated with the appearance of an unusual kappa B-binding molecule.

Animals↗

Surface Ig receptor-induced nuclear AP-1-dependent gene expression in B lymphocytes.

The relationship between signals generated via the sIgR complex of B lymphocytes and subsequent changes in gene expression is poorly understood at the molecular level. To illuminate mechanisms that may couple these events, we examined the expression and function of tetradecanoyl phorbol acetate-response element (TRE)-binding proteins (i.e., activator protein 1, (AP-1)) in the murine B lymphoma cell line BAL-17.7.1 (BAL-17), which models primary B lymphocyte responses in a number of respects. Cross-linking of sIgR led to substantial induction of nuclear AP-1, in BAL-17 B cells, that bound the TRE, as detected by electrophoretic mobility shift assay. The sIgR-induced TRE-binding activity consisted of both Jun and Fos proteins, on the basis of immunoreactivity of nucleoprotein complexes with specific antisera. In addition, immunoprecipitation with specific antisera showed that de novo synthesis of Jun-B and c-Jun proteins, accompanied by c-Fos, was stimulated after cross-linking of sIgR on BAL-17 B cells. Transient transfection of BAL-17 B cells with reporter gene constructs showed that B cell AP-1 failed to trans-activate the TRE-containing human collagenase gene promoter, for which activity is dependent upon functional expression of cellular c-Jun. In contrast, sIg-induced AP-1 trans-activated a HSV-tk promoter that contained three TRE; this pattern of gene expression is consistent with the presence of functional Jun-B-containing AP-1 in B lymphocytes. These results are the first to attribute a functional role to sIgR-mediated AP-1 in B lymphoid cells and suggest that AP-1 functions to couple the sIgR complex to changes in nuclear gene expression.

Animals↗

Inefficacy of extracorporeal photochemotherapy in the treatment of B-cell chronic lymphocytic leukemia: preliminary results.

Because extracorporeal photopheresis has been shown to be clinically effective in Sezary syndrome, a disease characterized by a circulating malignant clone, we initiated a pilot study of its use in B-cell chronic lymphocytic leukemia (B-CLL) to see if it could be similarly effective. We treated three patients with Rai stage III and IV B-CLL with photopheresis (3 consecutive days a week every 3 weeks) and followed serial clinical and immunologic parameters. While we noted no major toxicity, there was neither clinical response to treatment nor marked improvement in white counts or mitogen assays. We conclude that photopheresis was not effective in inducing remission in this pilot study of advanced stage B-CLL patients.

Adult↗

Induction of phorbol ester responsiveness in conventional B cells after activation via surface Ig.

The signals required to induce S phase entry in murine splenic B cells were found to be altered by prolonged treatment with low doses of anti-Ig antibody. Whereas fresh splenic B cells are stimulated by the combination of a phorbol ester protein kinase C agonist plus a calcium ionophore, anti-Ig-treated splenic B cells were stimulated by phorbol ester alone, in the absence of a comitogen. The majority of these phorbol ester responsive B cells expressed CD5. The phorbol ester responses of anti-Ig-treated splenic B cells paralleled those previously reported for untreated peritoneal CD5+ B cells in a number of respects: responses were not idiosyncratic to phorbol esters but occurred with nonphorbol protein kinase C agonists; phorbol ester responses were enhanced by IL-4; and, phorbol ester responses occurred rapidly and were greater at 24 than at 48 h. However, the effect of agents that act to raise intracellular levels of cAMP distinguished between anti-Ig-treated splenic B cells and untreated peritoneal B cells in that the phorbol ester responses of the former were enhanced whereas the responses of the latter were inhibited. The present results add a functional dimension to the phenotypic similarity between splenic B cells treated with anti-Ig and resident peritoneal B cells that constitutively express CD5; however, some differences in behavior were noted.

Animals↗

Elevated levels of protein kinase C activity and alpha-isoenzyme expression in murine peritoneal B cells.

Conventional murine splenic B cells are stimulated to initiate DNA synthesis by the combination of a phorbol ester protein kinase C (PKC) agonist, and a calcium ionophore; in contrast, recent work from this laboratory has shown that peritoneal B cells, enriched for the Ly-1+ B cell subset, differ in that they proliferate in response to the single signal provided by phorbol ester, acting alone. To elucidate the mechanism responsible for the abbreviated signaling requirement of peritoneal B cells, studies of intracellular Ca2+ and PKC were carried out. Measurements using the calcium sensitive dye, Indo-1, showed that base line levels of intracellular Ca2+ in peritoneal B cells were similar to those of splenic B cells, and that there was no change as a result of phorbol ester treatment. However, measurements of PKC based on the phosphorylation of histone showed enzymatic activity in peritoneal B cells to be about 60% greater than that of splenic B cells on a per microgram protein basis. Furthermore, this difference was accentuated by phorbol ester treatment, so that after 4 h, membrane and cytosol fractions from peritoneal B cells contained more than 5 times the PKC activity of the corresponding splenic B cell fractions because the down-regulation of PKC was relatively delayed in peritoneal B cells. This could not be accounted for by the onset of new PKC synthesis, but may relate to the finding that peritoneal B cells express more of the alpha-isoenzyme of PKC than splenic B cells, as shown by immunoblot analysis. Together with data from experiments using the PKC inhibitor 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride(H7), these results suggest that PKC activity remaining hours after phorbol ester treatment may contribute to the unusual phorbol ester responsiveness of peritoneal B cells, and indicate that B cells from separate anatomic locations differ in terms of several parameters relating to the activity and behavior of PKC.

Animals↗

Cross-linking of surface Ig receptors on murine B lymphocytes stimulates the expression of nuclear tetradecanoyl phorbol acetate-response element-binding proteins.

Cross-linking of sIg on primary B lymphocytes leads to increased nuclear DNA-binding activity specific for the tetradecanoyl phorbol acetate-response element (TRE), as judged by gel mobility shift assays. Stimulation of B cells to enter S phase of the cell cycle by treatment with the combination of phorbol ester plus calcium ionophore also stimulated nuclear TRE-binding activity within 2 h, with maximal expression at 4 h; however, phorbol ester and calcium ionophore were not as effective in stimulating binding activity when examined separately. Stimulated nuclear expression of TRE-binding activity appears to require protein synthesis. Fos- and Jun/AP-1-related proteins participate directly in the identified nucleoprotein complex, as shown by the ability of c-fos- and c-jun-specific antisera to either alter or completely abolish electrophoretic migration of the complex in native gels. Further, UV photo-cross-linking studies identified two major TRE-binding protein species, whose sizes correspond to TRE-binding proteins derived from HeLa cell nuclear extracts. The results suggest that in primary B cells nuclear TRE-binding activity represents a "downstream" signaling event that occurs subsequent to changes in protein kinase C activity and intracellular Ca2+ but that can be triggered "physiologically" through sIg.

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Inducible nuclear expression of NF-kappa B in primary B cells stimulated through the surface Ig receptor.

Constitutive expression of NF-kappa B has been associated with developmental maturity in B cells on the basis of studies using continuously growing cell lines and plasmacytomas; however, little is known about the behavior of NF-kappa B in primary, mature B cells. In the present work, the regulation of NF-kappa B expression was studied by analyzing subcellular fractions of adult murine splenic B cells with the electrophoretic mobility shift assay using a kappa B-containing oligonucleotide. Although nuclear extracts from resting B cells contained kappa B-binding activity, additional kappa B-binding activity was present in cytosolic fractions in a form that became apparent after treatment with detergent. Competition analysis indicated that the DNA binding activity detected by electrophoretic gel mobility shift assay was specific for the kappa B motif, and UV photo-cross-linking showed the molecular size of kappa B-binding protein to be similar to that of the DNA binding subunit of NF-kappa B. Nuclear expression of kappa B-binding activity was markedly induced by treatment of B cells with phorbol ester or with LPS. Most notably, kappa B-binding activity was induced after surface IgR cross-linking, and the mechanism of this induction involved PKC. Further, anti-Ig-induced activity was superinduced in the presence of cycloheximide. These results indicate that nuclear NF-kappa B is rapidly induced as a result of B cell stimulation, and further suggest that NF-kappa B may play a specific role in mature B cells after ligand binding to surface Ig distinct from its postulated developmental role as a stage-specific factor involved in kappa-enhancer function.

Animals↗

Jun-B gene expression mediated by the surface immunoglobulin receptor of primary B lymphocytes.

Stimulation of primary B lymphocytes induces the nuclear expression of TPA response element binding proteins that are recognized by anti-Jun antisera. To evaluate the profile of jun gene expression, RNA was extracted from B cells and probed for c-jun. Surprisingly, c-jun mRNA was not detected either before or after stimulation with anti-Ig. Instead, stimulation through the sIg antigen receptor, or with phorbol ester containing regimens, rapidly induced expression of the related jun-B. This demonstrates a lack of coordinate regulation for jun-B and c-jun expression in these primary B cells. The role of Jun-containing TRE binding proteins in promoting B cell cycle progression remains uncertain inasmuch as Jun-B has been associated with transcriptional inhibition of the TPA response element, rather than activation as produced by c-Jun.

Animals↗

Phorbol ester responsiveness of murine Ly-1-lineage B cells from normal and viable motheaten mutant mice.

Simultaneous analysis of stimulated cells for surface phenotype and DNA content by flow cytometry was used to delineate the characteristics of murine lymphocytes that respond to phorbol esters. Peritoneal cells that expressed high-density sIgM, Ly-1, Mac-1 and high-density Pgp-1, were preferentially stimulated to enter the S + G2/M phases of the cell cycle by the protein kinase C agonist, phorbol 12-myristate 13-acetate (PMA). Since these phenotypic characteristics correspond well with those of Ly-1-lineage B cells, non-peritoneal sources of Ly-1+ B cells were examined to test the relative role of lineage and environment in determining phorbol ester responsiveness. Splenic sIgM+ lymphocytes from adult mev/mev mice, and Ly-1+ splenic B cells from neonatal normal mice, were stimulated to enter the S + G2/M phases by PMA, although not to the same extent as peritoneal Ly-1+ B cells. These results suggest that responsiveness to phorbol ester, acting alone, is characteristic of murine Ly-1-lineage B cells regardless of tissue of origin; however, a role for environmental influences has not been completely ruled out.

Animals↗

Predicting outcome in hypoxic-ischemic coma. A prospective clinical and electrophysiologic study.

A prospective analysis of 40 patients with hypoxic-ischemic coma lasting at least 6 h following sudden cardiac arrest was undertaken. The patients, all of whom had preserved brain-stem function, were studied electrophysiologically with electroencephalography (EEG), and median nerve somatosensory evoked potentials (SEPs) within 48 h to establish prognostic indices. Our results indicate that preserved brain-stem function does not necessarily predict favorable outcome following cardiac arrest as 26 of 40 (65%) patients died without awakening. The bilateral absence of cortical evoked potentials predicted death without awakening in 19 of 26 patients (73%) while malignant EEG change was similarly predictive in 11 patients (42%). Bilateral absence of cortical evoked potentials and/or malignant EEG change reliably predicted unfavorable outcome in 21/26 patients (81%). Patients with normal or delayed central conduction time (CCT) as well as 'benign' or 'uncertain' EEG findings had an uncertain prognosis as some entered a persistent vegetative state (PVS) or died without awakening. Fourteen patients (35%) awakened of whom 5 (13%) recovered completely while another 9 (23%) had varying degrees of motor or cognitive impairment. SEP and EEG findings did not distinguish between these outcomes.

Adult↗

Transcriptional control of c-myc gene expression during stimulation of murine B lymphocytes.

The binding of ligand to surface IgR results in the initial activation of B cells. As shown by experiments in which B cells are polyclonally stimulated with anti-Ig antibody, this includes an early increase in c-myc gene expression. In our study a correlation between increases in the rate of gene transcription and the level of c-myc mRNA was observed both with the brief increase in c-myc expression that is induced by anti-Ig, as well as with the more intense and prolonged expression of c-myc that follows treatment with anti-Ig plus the cytoskeleton perturbing agent, cytochalasin. Elevation of the rate of initiation was detected with both stimulatory regimens although the combination of anti-Ig plus cytochalasin increased the rate of elongation in addition to the rate of initiation. These results suggest that stimulation of B lymphocytes alters expression of trans-acting factors that regulate transcription of the c-myc gene.

Animals↗

Elevated expression of Pgp-1 (Ly-24) by murine peritoneal B lymphocytes.

B cell expression of the surface glycoprotein, Pgp-1 (Ly-24), was evaluated using flow cytometric analysis. Pgp-1 expression on naive, conventional (splenic) B cells was low but could be increased by mitogenic stimulation. Pgp-1 expression on naive peritoneal B cells was higher than expression by unmanipulated conventional B cells, suggesting the possibility that peritoneal B cells have been activated in vivo. However, the elevated expression of Pgp-1 by peritoneal B cells was not accompanied by increased expression of surface Ia but was correlated with Ly-1 status. Further, Pgp-1 expression by B cells from germ-free mice did not differ from that of normal animals. The elevated expression of Pgp-1 by peritoneal B cells is superficially similar to that provoked by mitogenic stimulation of conventional B cells; however, several characteristics suggest that the elevated expression of Pgp-1 by peritoneal B cells does not reflect prior activation of these cells.

Animals↗

Macrophage-dependent stimulation of T cell-depleted spleen cells by Clostridium difficile toxin A and calcium ionophore.

Clostridium difficile toxin A causes severe intestinal inflammation and fluid secretion in rabbit ileum and is chemotactic for neutrophils in vitro. The mechanism of intestinal injury produced by toxin A appears to involve direct epithelial cell damage as well as recruitment of an inflammatory cell response. The current study was undertaken to determine if toxin A can directly stimulate a proliferative response in lymphocytes. Highly purified toxin A, in the presence of the calcium ionophore, ionomycin, stimulated substantial [3H]thymidine incorporation by murine splenic lymphocytes, which was maximal at 10(-9) M toxin A and 800 ng/ml ionomycin. Removal of T cells with anti-Thy-1.2 antibody plus complement had no effect on the proliferative response induced by toxin A. However, [3H]thymidine incorporation in response to toxin A was significantly inhibited (P less than 0.001) by the removal of macrophages from splenocyte suspensions and was restored by the addition of peritoneal macrophages or cell-free supernatant from toxin A-treated macrophage cultures. Analysis of the toxin A-treated macrophage supernatants showed high levels of IL-1, but not IL-2 or IL-4. The combination of recombinant IL-1 plus ionomycin was found to stimulate [3H]thymidine incorporation by T cell-depleted splenic lymphocytes. These results suggest that toxin A stimulates the release of IL-1, and possibly other factors, from macrophages which can costimulate murine B lymphocytes.

Animals↗

Adenosine 3',5'-cyclic monophosphate modulates the mitogenic responses of murine B lymphocytes.

Adenosine 3',5'-cyclic monophosphate (cAMP) acts to inhibit a number of lymphocyte activities. The extent of this inhibition was tested by evaluating the effects of two cAMP-raising agents on B cell S phase entry induced by several different mitogenic regimens. It was found that both dibutyryl cAMP (dbcAMP) and isobutylmethylxanthine (IBMX) enhanced S phase entry induced by some regimens but inhibited S phase entry induced by others. The observed enhancing activity stands in contrast to the general notion of cAMP as being a "negative regulator," and it confirms that the observed inhibiting activity does not simply reflect cytotoxicity. Mitogenic regimens that appear to mimic each other, such as F(ab')2 fragments of goat anti-mouse immunoglobulin and the combination of a calcium ionophore and a phorbol ester, were distinguished by their responses to the addition of the two cAMP-raising agents. B cell responses were enhanced or inhibited even when dbcAMP was added 18-24 hr after the establishment of cultures. Cyclic AMP may regulate in a complex fashion S phase entry in cells of the immune system.

1-Methyl-3-isobutylxanthine↗

Interleukin-4 enhances peritoneal B cell stimulation induced by phorbol ester.

The activation requirements of murine peritoneal B cells differ from those of conventional (splenic) B cells; in particular, peritoneal B cells are stimulated to enter S phase by phorbol ester, acting alone. This pathway was studied to assess the susceptibility of peritoneal B cells to regulation by T cell products. Three T cell supernatants enhanced phorbol myristate acetate (PMA)-induced peritoneal B cell stimulation. This enhancement was reproduced by recombinant interleukin 4 (IL-4), and IL-4-mediated enhancement was reversed by 11B11 anti-IL-4 antibody. Enhancement of S phase entry was dose dependent for IL-4 and required stimulatory concentrations of PMA. In addition, IL-4 in combination with PMA produced a marked increase in IgM secretion by peritoneal B cells cultured in vitro. Neither an enhancement of S phase entry nor an increase in IgM secretion was observed with splenic B cells similarly treated with IL-4 and PMA. These results suggest that IL-4 modulates the proliferative and differentiative responses of the unusual B cells that reside in the peritoneal cavities of normal mice.

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Cytoplasmic alkalinization produced by the combination of anti-immunoglobulin antibody plus cytochalasin D in murine B lymphocytes.

The intracellular pH of murine splenic B lymphocytes was measured using the pH-sensitive fluorescent dye, bis(carboxyethyl)carboxyfluorescein (BCECF). After stimulation of B lymphocytes with anti-immunoglobulin antibody plus cytochalasin D, two agents that act in synergy to promote S-phase entry, a late increase in pH was detected that occurred prior to the onset of DNA synthesis. The degree of alkalinization observed was comparable to that produced by two additional mitogenic regimens. Cytoplasmic alkalinization was not blocked by dimethylamiloride. Cytoplasmic alkalinization represents a sign of, and may play a role in, stimulation of B lymphocytes to enter S phase.

Animals↗