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N Manolios

Publications and source records attributed to N Manolios.

15 recordsLinked to original sources

Transmembrane helical interactions: zeta chain dimerization and functional association with the T cell antigen receptor.

Members of the zeta family of receptor subunits (zeta, eta and gamma) are structurally related proteins found as components of the T cell antigen receptor (TCR) and certain Fc receptors. These proteins share the ability to form disulfide-linked dimers with themselves and with other members of the family. Comparison of the amino acid sequences of zeta and gamma reveals a significant degree of homology, which is highest within their membrane-spanning domains. Analysis of their transmembrane sequences on a helical wheel projection suggests that all of the identical amino acids are clustered on one face of a potential alpha-helix. This face contains the only cysteine residue within zeta, suggesting that this conserved region may function to mediate dimerization. Indeed, replacing the transmembrane domain of the Tac antigen (alpha chain of the interleukin-2 receptor) by that of the zeta chain resulted in the formation of disulfide-linked dimers of Tac. The conserved aspartic acid residue found in the zeta and gamma transmembrane sequences was found to play a role in disulfide linkage. Replacing the aspartic acid with a lysine but not with an alanine or valine residue allowed formation of disulfide-linked dimers. The ability of the aspartic acid residue to support dimerization was dependent upon its position within the helix. Thus, these observations indicate that residues within the zeta transmembrane domain play a critical role in the formation of disulfide-linked dimers. Expression of zeta mutants in zeta-deficient T cells revealed that the zeta transmembrane domain is also responsible for reconstituting transport of functional TCR complexes to the cell surface and differentiated the requirements for disulfide-linked dimerization per se from assembly of the TCR complex.

Amino Acid Sequence

Identification of a murine monoclonal antibody specific for an allotypic determinant on mouse CD3.

A murine monoclonal antibody (mAb; 7D6) that was mitogenic for T cells was derived from 129/Sv animals immunized with a T helper clone from C57BL/6 origin. Fluoresceinated 7D6 labeled T cells from most common mouse strains but not from 129/Sv and LP/J animals, and this labeling was inhibited by the anti-CD3 epsilon mAb 145-2C11. The mitogenicity of 7D6 for T cells had a similar strain specificity. The antibody immunoprecipitated the T cell receptor (TcR) complex from a T cell hybridoma. After dissociation of this immunoprecipitate with detergents, the CD3 gamma and epsilon chains were retained by the 7D6 antibody. Immunoprecipitation data were also obtained with COS cells transfected with the CD3 gamma, delta or epsilon chains alone, in pairs or together. They confirmed that 7D6 bound the CD3 gamma epsilon pair, suggesting that the antibody recognizes a conformational epitope formed by gamma epsilon pairing, whereas 145-2C11 bound both gamma epsilon and delta epsilon pairs. These results, therefore, add to current information about TcR structure and subunit stoichiometry. We have demonstrated that the 7D6 mAb specifically binds to a CD3 dimer comprised of gamma and epsilon chains. We thus provide additional evidence that indicates that two CD3 epsilon chains are found within the receptor, one linked to CD3 gamma and the other to CD3 delta.

Animals

Pairwise, cooperative and inhibitory interactions describe the assembly and probable structure of the T-cell antigen receptor.

The T-cell antigen receptor (TCR) is a multi-subunit complex consisting of clonotypic heterodimers (TCR-alpha beta or TCR-gamma delta) that are non-covalently linked to at least four invariant chains (CD3-delta, -epsilon, -gamma; and zeta or eta). The ordered process of assembly and the final number of individual chains that comprise the TCR is unclear. In this study, we examined the molecular basis of subunit interactions and the component requirements leading to the formation of a complete TCR. Analysis of transient cotransfections in monkey kidney fibroblasts (COS cells) showed assembly between selective chain pairs. Multiple chain cotransfections demonstrated the formation of stable higher order partial complexes. Assembly of such subcomplexes was facilitated by cooperative interactions between clonotypic and invariant CD3 chains. When zeta was cotransfected with any TCR component, no pairwise interaction was detected. Only when there was coexpression of all of the other TCR chains (TCR-alpha, -beta, CD3- epsilon, -gamma, -delta) did zeta assemble with the TCR complex. Not all chain pairs formed stable heterodimers. For one such pair, lack of assembly is due to the inhibitory effects of negatively charged residues within their transmembrane domains. The combined effects of these interactions probably determine the assembly and the quaternary structure of the TCR complex.

Animals

Arachidonic acid metabolites in normal and autoimmune mice do not influence lymphocyte-high endothelial venule interactions.

In peripheral lymphoid organs the number of lymphocytes and the proportion of functional lymphocyte subsets are regulated by multiple factors including the control of lymphocyte migration by selective lymphocyte-high endothelial venule (HEV) interactions. In this study, prostaglandin E2 (PGE2) levels from normal and autoimmune mouse lymph node cells were measured. The contribution of eicosanoids to lymphocyte-HEV interactions in normal (CBA/T6) and autoimmune (MRL/n) mice was examined. There was no association between PGE2 production in normal or autoimmune mice and the age of onset of disease activity in the latter strains. Arachidonic acid metabolites, in particular PGE2 and leukotriene B4 (LTB4), did not have any effects on lymphocyte-HEV binding. Likewise, lymphocytes treated in vivo and/or in vitro with arachidonic acid metabolite inhibitors (acetyl salicylic acid, indomethacin, BW755C) did not alter lymphocyte-HEV binding interactions in both normal and autoimmune mice. No clinical significance could be attributed to lymph node PGE2 production and the age of onset of autoimmune disease. In summary, these findings cast doubt on the role of arachidonic acid metabolites in lymphocyte-HEV binding interactions.

Animals

Transmembrane helical interactions and the assembly of the T cell receptor complex.

Studies of the subunit interactions of the multicomponent T cell antigen receptor (TCR) revealed that specific pairs of chains have the ability to assemble after transfection into fibroblasts. For one such pair, TCR-alpha and CD3-delta, their ability to assemble was encoded by their transmembrane domains. The specificity of this interaction suggests that well-defined helical interactions in the membrane can explain the assembly of some multichain membrane complexes.

Amino Acid Sequence

Aberrant lymphocyte migration patterns in systemic lupus erythematosus (MRL/l, MRL/n) mice are independent of the micro-environment.

Mice with systemic lupus erythematosus (SLE) have unusual patterns of lymphocyte traffic characterised by diminished uptake of intravenously injected autoimmune cells into lymph nodes. This study examines the influence of the lymphocyte micro-environment on this aberrant migratory behaviour. To evaluate lymph node lymphocyte-endothelial interactions which can affect lymphocyte distribution without the in vivo influence of liver and spleen, the in vitro high endothelial venule (HEV) binding assay was used. Lymph node HEV binding of autoimmune MRL-lpr/lpr (MRL/l) and MRL(-)+/+ (MRL/n) lymphocytes was increased when compared with CBA/T6 lymphocytes and contrasted with diminished lymph node uptake noted in vivo. This was independent of the lymph node source (MRL/l, MRL/n, CBA/T6) onto which the lymphocytes were overlaid. To examine the influence of the microenvironment on in vivo traffic, 21Cr-labelled lymph node cells from normal CBA/T6 mice were injected into sex-matched MRL/l, MRL/n and CBA/T6 recipients. The distribution of cells was the same in each recipient strain suggesting that the micro-environment had little influence on the lymphocyte trafficking profiles of autoimmune mice. This study supports the view that aberrant lymphocyte migration in autoimmune mice results from defects intrinsic to the lymphocyte population and not the micro-environment.

Age Factors

Lymphocyte migration patterns in autoimmune MRL-lpr/lpr mice: relationship to age, disease manifestations and lymphocyte homing receptor expression.

We have previously reported that lymphoid cells from systemic lupus erythematosus (SLE) mice with established disease migrate aberrantly. This study evaluates the abnormal lymphocyte migration patterns found in MRL-lpr/lpr (MRL/l) mice in relation to age, disease manifestations and the expression of lymphocyte homing receptors. 51chromium-labelled lymph node cells from MRL/l and from normal histocompatible CBA mice of different ages were injected i.v. into age and sex-matched CBA recipients. Diminished lymph node and increased hepatic uptake of MRL/l compared to CBA cells was evident as early as 6 weeks of age. Abnormalities in lymphocyte migration antedated the appearance of elevated antihistone antibody (AHA) levels but not the development of lymphadenopathy. Using the monoclonal antibody MEL-14, no differences in the expression of lymphocyte homing receptors between MRL/l and CBA lymph node cells were found at any age. Thus abnormalities in lymphocyte migration in MRL/l mice appear as early as six weeks and are not related to changes in homing receptor expression.

Age Factors

Enhanced interferon-gamma (IFN) production by lymph node cells from autoimmune (MRL/1, MRL/n) mice.

Interferons (IFNs) have been implicated in the aetiopathogenesis of the autoimmune disease systemic lupus erythematosus (SLE). The ability of unstimulated and Sepharose-bound concanavalin A (ConA) stimulated spleen or lymph node (LN) cells from normal CBA/T6 mice and histocompatible autoimmune strains (MRL/1, MRL/n) of various ages to produce IFN-gamma was measured. Levels of IFN-gamma produced by ConA-stimulated spleen cells from CBA/T6, MRL/1 and MRL/n mice at 6 weeks of age were not statistically different (mean +/- SEM: 786 +/- 182, 1147 +/- 282, 1024 +/- 146 IU/ml, respectively). At this age only stimulated LN cells from MRL/l mice produced detectable IFN-gamma (538 +/- 44 IU/ml) and these levels remained constant up to 6 months. IFN production by stimulated LN cells from young MRL/n mice (66 +/- 21 IU/ml at 3 months, 44 +/- 41 IU/ml at 6 months) increased at 1 year (463 +/- 97 IU/ml) corresponding to the age of disease onset. The failure of stimulated CBA/T6 LN cells to produce IFN-gamma was not due to cell-cell suppression, defective IL-2 production or the generation of soluble inhibitors. Stimulated LN cells from other normal inbred (C57Bl/6, Balb/c, A/J) outbred and FI hybrid mouse strains (Swiss, [Swiss x Balb/c] F1, (CBA/T65 x C57Bl/6]FI) produced undetectable or low levels of IFN compared to MRL/1 and MRL/n mice. These results show that autoimmune mouse LNs generate more IFN compared to normal controls and that the increase in IFN levels (at least in MRL/n) corresponds to the age of disease onset.

Animals

Drowning and near-drowning on Australian beaches patrolled by life-savers: a 10-year study, 1973-1983.

Resuscitation report-forms of the Surf Life-Saving Association of Australia, for the period 1973-1983, were analysed. During this period there were 262 immersion victims at beaches that were patrolled by life-savers. Of these, 162 victims survived, some of whom received expired-air resuscitation (n = 61) or cardiopulmonary resuscitation (n = 29). Among those who drowned, none was younger than five years of age. Vomiting and regurgitation were major problems during resuscitation. Respiratory and cardiopulmonary arrest occurred after apparently-successful rescue; this highlights the necessity for the close observation of victims and the early administration of oxygen to all immersion victims. Resuscitation in deep water has been shown to be effective, and instruction in these techniques is now standard teaching within the Surf Life-Saving Association of Australia.

Adolescent

High endothelial venule morphology and function are inducible in germ-free mice: a possible role for interferon-gamma.

Cytokines may facilitate lymphocyte traffic by modulating HEV structure and lymphocyte binding function in accordance with local tissue requirements. This study investigated whether the morphology of HEVs and their lymphocyte binding ligand are altered following antigenic challenge and evaluated the role of IFN-gamma in the induction of such changes. The morphology and lymphocyte binding function of mesenteric LN HEVs of GFM exposed to environmental pathogens were compared to those from GFM and conventional mice. Lymph nodes from all mice had microscopically identifiable HEVs. The morphology of HEVs from GFM was not uniform; many HEVs contained flat endothelial cells with sparse cytoplasm and prominent interendothelial gaps. The number of lymphocytes within the lumen and the HEV wall was low. In contrast, HEVs from GFME and conventional mice were characterized by cuboidal endothelial cells with plentiful cytoplasm and large numbers of lymphocytes in the vessel wall and lumen. There was no delineation of interendothelial cell borders. Lymphocyte binding to HEVs of lymph node sections from GFM was reduced (mean +/- SEM: 1.08 +/- 0.15) compared to that of conventional mice (1.91 +/- 0.20), P less than 0.003. GFME had augmented lymphocyte binding (2.23 +/- 0.26) to levels comparable with those of conventional mice. GFM injected intraperitoneally with IFN-gamma, IFN-alpha beta, or diluent resulted in minor changes in HEV morphology. By contrast, lymphocyte binding to HEV of GFM was more than doubled by the injection of IFN-gamma (1.95 +/- 0.25), P less than 0.01, but not IFN-alpha beta (0.54 +/- 0.07) or the relevant diluent controls (0.89 +/- 0.11, 0.56 +/- 0.06, respectively). It appears that the HEV binding ligand is inducible, and its expression is regulated by at least one immunomodulator, IFN-gamma. Although short-term exposure of HEVs to IFN-gamma influenced HEV function it caused only minor changes in morphology.

Animals

Anti-Ia monoclonal antibody (10-2.16) inhibits lymphocyte-high endothelial venule (HEV) interaction.

Lymphocyte egress from the vascular compartment into the lymph node (LN) parenchyma occurs at the postcapillary venules, termed high endothelial venules (HEVs). Lymphocyte adhesion and migration through the HEVs is a receptor-mediated, energy-dependent, process. The aim of this study was to investigate the role of MHC Class II antigen expression on lymphocyte-HEV interaction in normal (CBA) and autoimmune (MRL/l) mice. Using the HEV binding assay, lymphocyte adhesion to LN sections pretreated with monoclonal antibody (MAb; 10-2.16) was decreased compared to diluent (mean of the differences +/- standard deviation; xd +/- SD: 0.749 +/- 0.22, P less than 0.0075)- and myeloma immunoglobulin-pretreated controls (xd = 0.462 +/- 0.13, P less than 0.005). Similar inhibition of binding was found in MRL/l LN sections pretreated with MAb 10-2.16. Binding inhibition was concentration dependent, but total inhibition was never achieved. Several other anti-Ia MAb's were used, but failed to inhibit lymphocyte attachment. Lymphocyte binding to control sections treated with MAb's against MHC Class I antigen, plasminogen activator (PAM-3), anti-thrombin III (AT-IIIm), and MECA-325 antigen was not significantly different from diluent controls. LN cell suspensions pretreated with MAb 10-2.16 bound normally to LN sections. By contrast, MAb to lymphocyte homing receptor (MEL-14) inhibited lymphocyte adhesion. The role of Class II antigens in lymphocyte-HEV interactions is discussed.

Animals

Hypothesis: lymphocyte trafficking in inflammatory rheumatic disease. A role for receptor mediated homing.

The entry of lymphocytes into normal lymph nodes occurs principally after their passage across postcapillary high endothelial venules. Nonlymphoidal tissues do not normally express high endothelial venules; however, in inflammatory rheumatic diseases associated with prominent lymphocyte accumulation (e.g., rheumatoid synovium), high endothelial venule-like structures are found and may facilitate local lymphocyte traffic. In mouse and man there are lymphocyte surface membrane homing receptors which determine lymphocyte binding to acceptor sites on lymph node high endothelial venules. The migration of lymphocytes from the circulation into inflamed nonlymphoidal tissues may be controlled by similar homing receptor mediated mechanisms.

Adrenal Cortex Hormones

Current concepts in the etiopathogenesis and treatment of systemic lupus erythematosus (SLE).

Systemic lupus erythematosus is an autoimmune disorder that occurs spontaneously in humans and mice. Genetic factors play an important role in the predisposition to and expression of disease. Environmental factors augment the expression of illness and in the absence of normal control mechanisms may provide the stimulus to autoimmunity. Sex hormones modulate the immune response and tend to modify disease expression. Disordered immune regulation may be due to a primary or secondary abnormality in cellular, cytokine, and/or humoral function. Therapy for SLE is directed towards suppression of exaggerated immunological and inflammatory activity. This review will re-evaluate current therapy and describe newer approaches including the use of pharmacological, hormonal, immunological, dietary, and physical modalities.

Humans