Search PubMed⌕ Search

Biomedical subjects

R J Robb

Publications and source records attributed to R J Robb.

At least 37 records · Page 2Linked to original sources

Internalization of interleukin 2 is mediated by the beta chain of the high-affinity interleukin 2 receptor.

High-affinity IL-2-R correspond to a membrane receptor complex composed of two different IL-2-binding proteins, the Tac antigen (alpha chain) and a 70-75 kD beta chain. Using cell lines that express either the alpha or the beta protein, we demonstrate that IL-2 internalization occurs when ligand is bound to the isolated beta chain, but not when it is bound to the isolated alpha chain. The kinetics of IL-2 internalization mediated by the intermediate-affinity beta chain were nearly identical to those of the high-affinity alpha/beta heterodimer (t1/2 of 10-15 min), and each type of receptor targeted the bound IL-2 for intracellular degradation in lysosomes. The beta chain thus appeared to provide the essential element necessary for ligand internalization by both types of IL-2-R.

Animals↗

Interleukin 2 binding molecule distinct from the Tac protein: analysis of its role in formation of high-affinity receptors.

Interleukin 2 (IL-2) receptors on activated T cells exist in high- and low-affinity configurations, both of which share a ligand-binding component known as the Tac protein. Although almost all binding of IL-2 to such cells was inhibited by an antibody to Tac, the predominant component of binding on the natural killer (NK)-like cell line YT was resistant to this reagent. The ligand-binding component on YT cells also differed from Tac in its affinity constant (Kd approximately 8.2 X 10(-10) M vs. Kd approximately equal to 1.1 X 10(-8) M for low-affinity Tac sites) and in its susceptibility to inhibition by certain antibodies to IL-2. When the YT cells were stimulated in a manner that induced expression of the Tac protein, the IL-2 binding sites were converted to a high-affinity configuration (Kd approximately 1.8 X 10(-11) M). Thus, the original binding component on unstimulated YT cells appeared to combine with Tac and IL-2 to produce a high-affinity receptor complex. Use of bifunctional crosslinking agents following ligand binding to unstimulated YT cells yielded covalent IL-2-receptor complexes of 83 and 90 kDa. These complexes were similar in size to those derived from high-affinity receptors on activated T cells and shared a similar fragmentation pattern upon proteolysis. These results demonstrate the existence of a second IL-2 binding component in addition to the Tac protein and suggest that this component combines with Tac and IL-2 to form high-affinity receptor sites.

Antibodies↗

Analysis of prostaglandin E2 effect on T lymphocyte activation. Abrogation of prostaglandin E2 inhibitory effect by the tumor promotor 12.0 tetradecanoyl phorbol-13 acetate.

We have investigated the inhibitory potential of prostaglandin E2 (PGE2) with respect to intracellular messengers implicated in the signaling system of T-lymphocyte activation pathway. Using the fluorescent indicator Quin 2, it is demonstrated that PGE2 inhibits the increase in cytosolic-free calcium concentration [Ca2+]i. Reconstitution of calcium mobilization in the presence of PGE2 by the calcium ionophore A23187 results in a partial restoration of both interleukin 2 (IL2) production and cell proliferation and has no effect on the inhibition of transferrin receptor expression. In contrast, the treatment of cell cultures with the tumor promotor 12.0 tetra decanoyl phorbol-13-acetate (TPA) abrogates the suppressor activity of PGE2. When T lymphocyte stimulation is provided by the combination of A23187 and TPA, the PGE2 inhibitory effect does not occur. These data also indicate that the down regulation of transferrin receptor by PGE2 is proximal to protein kinase C activation and is not associated with decreased expression of the functional IL2 receptor.

Calcimycin↗

Proliferation of T lymphocytes in response to interleukin 2 varies with their state of activation.

The interleukin 2 (IL 2) receptor on T lymphocytes can be upregulated by a variety of stimuli including antigen, lectin, and IL 2 itself. In this report, the direct binding of radiolabeled IL 2 and a quantitative bioassay of T cell responsiveness to IL 2 were used to determine the biological significance of upregulation of the murine IL 2 receptor. Antigen and lectin, and to a lesser extent IL 2, were found to cause an increase in the expression of the high affinity form of the IL 2 receptor on both a T cell clone and concanavalin A-induced T cell blasts. A 2-day stimulation with antigen resulted in an increase in the sensitivity of the T cell clone to IL 2, whereas activation with IL 2 caused a decrease in the sensitivity of these cells to subsequent stimulation with IL 2. Comparison of the direct binding and the functional data revealed that IL 2-preactivated T cells required a greater number of occupied high affinity IL 2 receptors to achieve a given fractional response than did unactivated T cells. These observations suggest that the sensitivity with which a T cell responds to IL 2 is not determined solely by the number of high affinity IL 2 receptors it bears.

Animals↗

Structure-function relationships for the IL 2-receptor system. I. Localization of a receptor binding site on IL 2.

Interleukin 2 (IL 2) modulates the growth and differentiation of a variety of lymphocyte subclasses through its interaction with a specific cell surface receptor. Although both IL 2 and its receptor have been characterized extensively, the location of interaction sites on the two molecules is unknown. Synthetic peptides based on the IL 2 sequence were used to determine the epitopes seen by a number of antibodies reactive with IL 2, some of which inhibited the receptor binding of the factor and the proliferative response of target cells. The results indicated that inhibitory antibodies bound at either of two spatially distinct sites defined by amino acids 8-27 and 33-54. By inference, these segments may also encode distinct contact sites for receptor association. Alternatively, a single contact site may be located between the antibody epitopes in the three-dimensional configuration of the molecule. Although the data did not directly address the role of the C-terminal portion of IL 2, this preliminary localization of receptor contact sites within the N-terminal half of the molecule should prove useful in correlating structure and function during crystallographic analysis of the factor.

Animals↗

Structure-function relationships for the IL 2-receptor system. II. Localization of an IL 2 binding site on high and low affinity receptors.

The ligand-binding component of high and low affinity IL 2 receptors is a 55,000 m.w. glycoprotein termed Tac. Correlating the structure and function of this molecule should provide insight into the mechanism of IL 2-initiated signal transduction and the structural basis for high and low affinity receptor forms. As a first step in this process, various approaches were used to localize the IL 2 binding region of the Tac molecule. Antibodies prepared to synthetic fragments of Tac were tested for their ability to interfere with IL 2 binding and bioactivity. The results delineated segments in the C-terminal portion of the molecule which appeared to be distal to the ligand binding site. In a more direct approach, radioiodinated IL 2 was cross-linked to high and low affinity receptors, and the resulting complexes were subjected to mild tryptic digestion. Consistent with the antibody data, the IL 2 remained covalently associated with an N-terminal tryptic fragment which apparently consisted of residues 1-83 of the Tac protein. These results suggest that the N-terminal region of the Tac molecule contains important contact sites for ligand-receptor interaction.

Amino Acid Sequence↗

High and low affinity receptors for interleukin 2: implications of pronase, phorbol ester, and cell membrane studies upon the basis for differential ligand affinities.

Cellular binding sites for IL 2 exist in two forms which differ with respect to their apparent affinity for the factor. The present studies were designed to evaluate various models for the difference. Receptor-mediated internalization and covalent receptor-ligand coupling were discounted as explanations on the basis of ligand binding and elution studies on permeabilized cells and cell membranes. Phosphorylation of the receptor during activation of protein kinase C failed to modulate the ratio of high and low affinity sites, demonstrating that it also did not provide a potential mechanism. Selective destruction of low affinity receptors with pronase, on the other hand, indicated that the two forms of binding sites differed significantly in their cell surface structure. Either the two types of receptor consist of distinct molecules or the conformation of the high affinity binding sites renders them more resistant to proteolysis. Antibody inhibition studies revealed that the high affinity receptors remaining after protease treatment and their low affinity counterparts both utilized the same ligand-binding component. Thus, this result ruled out the possibility of two totally distinct receptor structures. Together, the findings support the hypothesis that other membrane components modify the conformation of the ligand-binding polypeptide to confer a high affinity protease-resistant configuration.

Antibodies, Monoclonal↗

Effect of cyclosporin A and dexamethasone on interleukin 2 receptor gene expression.

Here we demonstrate that CsA and DEX, at concentrations that markedly inhibited PHA-induced proliferation and IL 2 mRNA accumulation, partially diminished the expression of receptors for IL 2 on PBMC. This inhibition of IL 2 receptor expression occurred at a pretranslational level and involved a reduction in both high affinity and low affinity forms of the receptor. Although both CsA and DEX inhibited IL 2 receptor expression by about 50%, only CsA blocked the PHA-mediated induction of IL 2 responsivity in PBMC cultures. These data provide evidence that 1) CsA and DEX suppress the proliferation of T lymphocytes through distinct (though perhaps overlapping) mechanisms, 2) CsA (but not DEX) blocks the PHA-mediated induction of signals necessary for T cells to become capable of proliferating in response to IL 2, and 3) T cells regulate the expression of their genes for IL 2 and IL 2 receptors, at least in part, through independent mechanisms.

Antigens, Surface↗

The suppressive effect of gangliosides upon IL 2-dependent proliferation as a function of inhibition of IL 2-receptor association.

Gangliosides inhibited the proliferation of mitogen-activated human peripheral blood lymphocytes and the IL 2-dependent growth of murine T cell lines and 5-day-old human PHA lymphoblasts. In the case of the murine cell lines and PHA lymphoblasts, most of the effect of gangliosides could be reversed by the addition of high levels of IL 2. In the case of freshly-stimulated mitogen blasts, however, the ganglioside-induced inhibition could not be reversed by increasing exogenous IL 2 levels. These results indicate that inhibition of proliferation by gangliosides can be divided into IL 2-reversible and IL 2-irreversible mechanisms, the latter of which were predominant during the initial stage of cellular activation. Inclusion of gangliosides in receptor binding assays for radiolabeled IL 2 indicated that the IL 2-reversible mechanism likely involved competition between gangliosides and the cellular receptor for the binding of IL 2. Gangliosides blocked binding of radiolabeled IL 2 to both the high and low affinity forms of the IL 2 receptor, and this effect was most noticeable when the gangliosides and IL 2 were preincubated before addition of the target cells. In contrast, treatment of cells with gangliosides had no effect on the affinity of the cellular IL 2 receptor if the free gangliosides were removed immediately before the binding assay. Gangliosides also blocked the binding of radiolabeled IL 2 to anti-IL 2 antibodies, supporting the notion that their inhibitory effect is mediated via a direct interaction with IL 2. Thus, one major mechanism by which gangliosides block the IL 2-dependent proliferation of activated cells is by the sequestering or inactivation of the IL 2 molecule. This effect is reversible with the addition of excess IL 2, which distinguishes it from other mechanisms of ganglioside-dependent inhibition operating during the cellular activation process.

Antibodies, Monoclonal↗

Conversion of low-affinity interleukin 2 receptors to a high-affinity state following fusion of cell membranes.

The cellular receptors for interleukin 2 (IL-2) exist in at least two forms, one with a particularly high affinity and a second, more numerous class, with a much lower affinity for IL-2. Indirect evidence suggests that both classes of receptors use the same p55 glycoprotein as their ligand-binding component. L cells transfected with cDNA encoding this protein, however, displayed only low-affinity IL-2 binding. To determine if such receptors could be converted to a high-affinity state, L-cell membranes containing the murine p55 protein were fused with membranes from human T cells displaying high-affinity receptors. The anti-Tac antibody was used to block ligand binding to human p55 on the fusion product. The results showed that a fraction of the murine p55 chains were converted to a dramatically higher affinity following fusion. Fusion of the L-cell membranes with themselves or with membrane preparations from human T-cell lines lacking the IL-2 receptor resulted in little or no affinity modulation. One explanation of the results is that cofactors present in receptor-positive T-cell lines crossed species lines and combined with the murine p55 chain to create "high-affinity" binding sites. Thus, depending upon its environment, the same p55 molecule can apparently form either a low- or high-affinity IL-2 receptor.

Animals↗

Retention of biological activity following radioiodination of human interleukin 2: comparison with biosynthetically labeled growth factor in receptor binding assays.

Human interleukin 2 (IL-2) was radioiodinated by a modified form of the chloramine-T reaction. Comparison with biosynthetically radiolabeled IL-2 demonstrated that the iodinated molecule retained similar receptor binding characteristics and proliferation-inducing ability. The iodinated molecule also possessed the distinct advantages of a higher specific radioactivity and a reduced processing time for the assay samples. The majority of the iodine was incorporated at the tyrosine in position 45 of the polypeptide chain. Evidently, this residue is unimportant for the molecule's association with its receptor. The development of active radioiodinated IL-2 should facilitate routine measurement of the high-affinity IL-2 binding sites which mediate the physiological response to this lymphokine.

Binding Sites↗

Stable expression of cDNA encoding the human interleukin 2 receptor in eukaryotic cells.

Human interleukin 2 (IL-2) receptor cDNA derived from HUT 102B2 cells was stably expressed in murine L cells. These L cell transfectants (a) displayed surface receptors of the aberrant size of the IL-2 receptors on HUT 102B2 cells, (b) did not respond to exogenous IL-2 with augmented proliferation, and (c) expressed low affinity but not high affinity receptors for IL-2.

Animals↗

The human receptor for T-cell growth factor. Evidence for variable post-translational processing, phosphorylation, sulfation, and the ability of precursor forms of the receptor to bind T-cell growth factor.

The T-cell growth factor (TCGF) receptor on phytohemagglutinin-activated normal peripheral blood T-cells is characterized as a glycoprotein with an apparent Mr = 55,000 that contains N-linked and O-linked carbohydrate with only approximately 33,000 daltons of peptide structure (p33) as evaluated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. There are two N-linked glycosylated intermediate precursor forms (apparent Mr = 35,000 (p35) and 37,000 (p37]. This receptor differs from the TCGF receptor on HUT-102B2 cells (apparent Mr = 50,000) because of differences in post-translational processing. Experiments with the carboxylic ionophore monensin demonstrate blockade of the transition of the p35 and p37 receptor precursor forms to the mature receptor, presumably secondary to inhibition of Golgi-associated receptor processing. We identify the primary translation product of TCGF receptor mRNA as intermediate in size between the p33 and the p35/p37 forms. We further demonstrate that the p33, p35, and p37 precursor forms, but not the primary translation product, are all capable of binding TCGF. Thus, the removal of the signal peptide and/or conformational changes of the primary translation product are necessary for ligand binding; however, the extensive post-translational modifications are not. Lastly, we demonstrate that at least some TCGF receptors are phosphorylated and sulfated, and that TCGF receptors on phytohemagglutinin-activated normal T-cells are more heavily sulfated than those on HUT-102B2 cells.

Carbohydrate Conformation↗

Regulation of interleukin 2 (IL2) receptor expression: IL2 as an inducing signal for the expression of its own receptor on a murine T helper cell line.

The interleukin 2 receptor (IL2R) expression of a terpolymer of L-Glu60, L-Ala30, L-Tyr10 (GAT)-specific T helper (Th) cell line, L14, was studied using two different rat monoclonal antibodies specific for the murine IL2R, 7D4 and 5A2-2. L14 T cells expressed IL2R transiently, but contrary to the general assumption that IL2R expression is maintained only by periodic antigen stimulation, we observed that IL2 itself was able to regulate the level of IL2R on L14 Th lymphocytes. In particular, it was found that L14 T cells, which had not been recently stimulated and which expressed a very low level of high affinity IL2R, could be induced to exhibit a high level of this receptor after exposure to recombinant IL2, in the absence of any specific signal. In contrast, the Th cell line 52.3 used as control could be induced to express high levels of IL2R only after exposure to GAT; nevertheless, IL2 seems to play a critical role in the in vitro survival of the resting state of 52.3 T cells.

Animals↗

Antigen/mitogen induced cytolytic activity and IL-2 secretion in memory-like CTL-hybridomas.

Memory-like monoclonal CTL hybridomas, derived from fusion of the AKR thymoma BW5147 with secondary CTL generated in vivo or in MLC cultures, have been used to study the mechanism whereby antigen/mitogen induces anamnestic CTL responses. Specifically, we have asked whether induction of cytolytic activity can be promoted by an antigenic/mitogenic signal without involvement of IL-2 receptors, IL-2, or other extrinsic factors. We have found that antigen/lectin alone can trigger the cytolytic potential of the hybridomas and induce IL-2 secretion. Pure IL-2 and conditioned medium were ineffective inducers of cytotoxicity. Moreover, IL-2 receptors were not detected on the hybrid cells before and after antigenic stimulation, demonstrating that expression of IL-2 receptors and induction of specific killing activity are not genetically linked. Non-activated and activated cells conjugated with target cells equally well, suggesting that induction of cytolytic activity involves a post target cell binding step. Close linkage between cytotoxicity and IL-2 secretion has been observed: induction of killing was consistently associated with IL-2 secretion and stimulation of both activities could be blocked by Cyclosporin A. IL-2 was secreted by the CTL hybrids as early as 3 h following stimulation. We propose that the immediate supply of IL-2 by such memory CTL enhances antigenic response of other, IL-2-dependent T cells.

Animals↗