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C Langlet

Publications and source records attributed to C Langlet.

34 records · Page 2Linked to original sources

Evidence for quantitative and qualitative differences in functional activation of Mls-reactive T cell clones and hybridomas by antigen or TcR/CD3 antibodies.

In this study, we demonstrated that some V beta 6+, CD4+, Mls-1a-specific T cell clones had cytolytic activity when stimulated with anti-T cell receptor(TcR)/CD3 monoclonal antibodies (mAb), but not with targets expressing Mls-1a, although they produced lymphokines (interleukin 2 and interferon-gamma) in response to both types of stimuli. To examine the possibility that lack of cytolysis resulted from expression of the Mls-1a antigen on merely a fraction of splenic B blasts, we (a) used the B cell lymphoma LBB.3.4.16 and (b) measured esterase secretion which is generally concurrent with cytotoxic T lymphocyte (CTL) activity. The B cell lymphoma maximally stimulated the T cell clone for interferon-gamma production when responding and stimulating cells were incubated at a 1:1 ratio, but it was never killed by the Mls-1a-specific T cell clone unless TcR/CD3-specific mAb were added. Furthermore, a fivefold excess of the Mls-1a B cell lymphoma did not induce any secretion of esterase, which was observed only in the presence of the TcR/CD3-specific mAb. Comparison of the reactivity of two Mls-1a-specific T cell hybridomas expressing the same TcR at similar surface density, revealed both quantitative and qualitative differences between CD3-specific mAb and Mls stimulation of the hybridomas. A small quantitative difference in the sensitivity of hybridoma FJ22.5 to stimulation with V beta 6 or CD3-specific mAb resulted in a marked decrease in efficiency of stimulation by Mls-1a for interleukin 2 production and to inability to detect growth inhibition by Mls-expressing cells. A qualitative difference was observed when analyses of inositol phosphate production were performed under optimal conditions of stimulation of the highly responsive T cell hybridoma (FJ8.1): only stimulation with CD3-specific mAb, but not Mls-expressing cells, could induce detectable inositol phosphate production. Lack of cytolysis of Mls-1a class II-expressing B cells may have evolutionary significance in view of the recent mapping of Mls to mouse mammary tumor virus genes.

Animals↗

The mechanism of anti-Lyt-2 inhibition of antibody-directed lysis by cytotoxic T lymphocytes.

Bifunctional antibodies specific for a determinant within the T cell receptor (TcR) complex of cytotoxic T lymphocytes (CTL) and a determinant expressed on the surface of the target cell will effectively mediate cytolysis. In such a lytic system anti-Lyt-2 antibody can block cytolysis. We have observed that the amount of inhibition varies considerably from clone to clone and surprisingly correlates well with inhibition of conjugate formation as mediated by bifunctional antibody. This implies that inhibition of antibody-mediated killing occurs as the result of reduction of the avidity of the effector cell for its target, the same mechanism responsible for inhibition of receptor-mediated lysis by anti-Lyt-2. In light of the similarity between the mechanism of inhibition by anti-Lyt-2 of receptor-mediated and antibody-mediated cytolysis, we compared the ability of anti-Lyt-2 to inhibit cytolysis in these two different assay systems by using a number of different CTL clones. Whereas the majority of secondary CTL clones (presumed to have high affinity TcR) are inhibited equally in both assay systems, most primary CTL (presumed to have low affinity TcR) are more susceptible to inhibition by anti-Lyt-2 in their receptor-specific than their antibody-directed cytolysis. These results, taken together with an apparent correlation between the amount of Lyt-2 expressed on the cell surface and susceptibility to inhibition, suggest anti-Lyt-2 may block CTL function by sterically inhibiting mobility of the TcR complex.

Animals↗

Reconstitution of MHC class I specificity by transfer of the T cell receptor and Lyt-2 genes.

The T cell receptor alpha and beta chain genes donated by an H-2 class I-specific, CD8-dependent cytotoxic T cell clone were transferred, alone or in combination with the Lyt-2 gene, into a class II-restricted, CD4+ T cell hybridoma. Two important points emerged. First, the alpha and beta T cell receptor genes endowed the recipient with the H-2 class I specificity of the donor only if the same cell had also been transfected with the Lyt-2 gene. Second, the functional Lyt-2 molecule was expressed on the transfected cells in the absence of the Lyt-3 polypeptide. These results demonstrate that, besides the T cell receptor, the Lyt-2 polypeptide is the only subset-specific molecule required to retarget a class II-reactive, CD4+ T cell line toward H-2 class I molecules.

Animals↗

Somatic cell variants express altered H-2Kb allodeterminants recognized by cytolytic T cell clones.

The present studies have made use of in vitro derived H-2Kb mutants to analyze the fine specificity of alloreactive cytotoxic T lymphocytes (CTL). The variants were derived by negatively selecting mutagenized tumor cells with a monoclonal anti-H-2Kb antibody and positively selecting for residual cells expressing serologically altered H-2Kb molecules. Details of this procedure are described in the companion paper. Selected populations of bulk alloreactive and cloned CTL were examined for recognition of the variants. In contrast to the serologic findings presented in the companion paper, there does not appear to be a correlation between the monoclonal antibody used to select the R8 variant and the CTL specificities recognized. In several instances, CTL clones could discriminate between variants having identical serologic profiles. Therefore, it would appear that the CTL have a large repertoire of allorecognition, even when generated across a mutant anti-Kb combination reflecting only a few amino acid differences. In addition, a diverse set of epitopes can be recognized on the Kb molecule. Finally, in some instances a change in what would appear to be a single amino acid resulted in a profound alteration of CTL recognition even though the Kb mutant molecule expressed limited serologic changes. These results support the idea that small changes in the H-2Kb molecule can have dramatic effects on CTL even though there are relatively little effects on serologic recognition of the target molecule.

Animals↗

Selective destruction by formaldehyde fixation of an H-2Kb serological determinant involving lysine 89 without loss of T-cell reactivity.

In preparation for functional analyses, a study of the binding of H-2Kb-specific monoclonal antibodies (mAb) to formaldehyde (FOR)-fixed H-2b spleen or tumor cells revealed that three of nine mAb tested had lost reactivity with the FOR-fixed cells, whereas the reactivity of the other mAb generally did not diminish. Comparison of the reactivity of these mAb on untreated H-2Kbm mutant cells and on FOR-treated H-2Kb cells suggests that for three mAb the total loss of reactivity on the latter could be a consequence of the alteration by FOR of lysine 89, which is substituted by alanine in mutant bm3. H-2Kb-specific alloreactive polyclonal or monoclonal CTL, all of which had retained reactivity with bm3 target cells, had also retained reactivity with FOR-fixed H-2b cells as indicated by cold target inhibition studies. The H-2Kb-specific CTL were probably reactive with "conformational" determinants of H-2Kb, which are dependent on the integrity of both the alpha 1 and the alpha 2 domains of the H-2Kb molecule. Results are compatible with FOR treatment selectively affecting a serological determinant in the alpha 1 domain without affecting conformational-type CTL determinants.

Amino Acid Sequence↗

Immunocompetent cells requisite for graft rejection in Lineus (Invertebrata, Nemertea).

Antecerebral ends from donors of one Lineus species (L. sanguineus) were grafted onto bispecific recipients previously constructed from two other Lineus species (denoted L. ruber----L. lacteus because the anterior component of chimeras was from L. ruber and the posterior component was from L. lacteus) and onto monospecific controls. Histological examination of areas where the tissues from L. sanguineus and L. ruber had been brought into contact by grafting always showed, at early stages, (6 to 20 days postgrafting), a great deal of difference depending upon whether the recipients were monospecific L. ruber or bispecific L. ruber----L. lacteus: only in grafts onto the former was there lysis of gland cells, connective tissue, muscular fibers, and finally epidermis. We attribute this lytic process to a strongly and rapidly cytotoxic action of lymphocyte-like cells from the L. ruber intestinal segment and the absence of lysis during the same stage in grafts onto composite recipients and monospecific L. lacteus to weak, delayed actions of immunocytes from the L. lacteus intestinal segment. Subsequent phagocytosis of material from lysed cell of grafts in the process of being rejected was effected by wandering amebocytes usually involved in destruction of degenerating "self" components, as in oosorption and resorptive processes after fasting. This work supports the existence of immunocytes at an early phylogenetic level.

Animals↗

Inhibition of primary and secondary IgE-response by a schistosome-derived inhibitory factor.

Schistosome-derived inhibitory factor (SDIF) previously shown to inhibit lymphocyte proliferation, markedly decreased the primary IgE response of rats immunized with dinitrophenylated ovalbumin (DNP-OVA) when injected either simultaneously or shortly after antigen administration. No effect however was observed when SDIF was injected before the immunization. An inhibition of non-IgE anti-DNP antibodies was also found in SDIF-treated rats although the decrease was lower than with IgE antibody. IgE responses of both low and high IgE responder rats were reduced but a lower dose of SDIF was required in the case of high IgE responder Brown Norway rats. When SDIF was only given at the time of priming, the secondary IgE response was no longer modified. However, the administration of SDIF together with the second injection of the antigen induced marked decrease in the secondary IgE response. The effects of SDIF on primary and secondary IgE responses could be attributed to the inhibitory activity of the parasite-derived factor on lymphocyte proliferation. The observed inhibition of secondary IgE antibody responses confers to SDIF a pharmacological interest in allergic diseases.

Animals↗

Immune characteristics of graft rejection in nemerteans of the genus Lineus.

The rejection of xenogeneic grafts in marine worms of the genus Lineus (Nemertea) gives evidence for the occurrence of immune mechanisms in these invertebrates. First, second-set response is anamnestic with a three-month memory component. Second, the accelerated rejection of second-set grafts occurs anywhere in the body of the recipient, that is to say it is systemic. Third, the anamnestic response is species-specific since it takes place only when second grafts are from donors of the same species as that of the first set. It is therefore plausible that the reaction to xenogeneic grafts is a cell-mediated immune mechanism and that the self-nonself discrimination may be a function of nemertean cells specialized for recognition at the species level and for memory.

Animals↗

[Occurrence of circulating immunocytes in the process of graft rejection in nemertines of the genus Lineus (acelomate invertebrates)].

Performed upon bispecific Lineus chimaeras of a suitable constitution, the grafting of tissues excised from nemerteans of a third Lineus species resulted in a confrontation between graft cells, fixed cells from one chimaera component and mobile cells which originate from the second chimaera component. Survival of such grafts was dependent only upon compatibility in the "graft cells/mobile cells of recipient" interspecific combination. This result shows evidence for the existence of circulating immunocompetent cells which are responsible for the specific immune response to tissue transplantation in nemerteans of the genus Lineus.

Animals↗

Phosphorylation of T-cell antigen receptor-associated proteins: correlation with activation for killing and/or for gamma-interferon production by a cytolytic T-cell clone.

The activation-induced phosphorylation of T-cell antigen receptor (Ti)-associated proteins was investigated in order to analyse possible signal-transduction mechanisms leading to two distinct effector functions of a mouse cytolytic T-cell clone (KB5.C20): target cell killing (independent of protein synthesis) and de novo production of gamma interferon (gIFN; dependent on gIFN gene expression). Ti-associated T3-like proteins were first identified by immunoprecipitation of 125I-labelled cell surface proteins from 1% digitonin lysates of clone KB5.C20 by 1- and 2-dimensional (non-reduced (NR)/reduced (R)) gel electrophoresis. In addition to the alpha and beta chains of the Ti (NR: 80-Kd; R: 43 and 40 Kd), two doublets of 35-37 Kd (NR) and 32-34 Kd (NR) leading to bands of 25, 16 and 14 Kd (R) were identified, as well as three bands (25, 23 and 22 Kd (NR)) leading to 27-, 25- and 21-Kd bands (R). Activation of clone KB5.C20 (prelabelled with 32P-orthophosphate) with either anti-Ti mAb or exposure to both ionomycin and phorbol myristic acetate (PMA) induced the phosphorylation of 21- and 25-27-Kd (R) Ti-associated proteins, whereas exposure to either ionomycin or PMA alone induced only weak phosphorylation of 21-Kd (R) components. A weak phosphorylation of 32- and 34-Kd Ti-associated proteins was sometimes observed after stimulation with anti-Ti mAb. Functional studies suggested that activation for gIFN production was observed only when both the 21- and 25-27-Kd proteins were phosphorylated, whereas activation for killing (when measured by PMA-induced non-specific killing) could occur in conditions where no phosphorylation of the 25-27-Kd protein was detected.

Antibodies, Monoclonal↗

Adaptive changes of locomotion after central and peripheral lesions.

This paper reviews findings on the adaptive changes of locomotion in cats after spinal cord or peripheral nerve lesions. From the results obtained after lesions of the ventral/ventrolateral pathways or the dorsal/dorsolateral pathways, we conclude that with extensive but partial spinal lesions, cats can regain voluntary quadrupedal locomotion on a treadmill. Although tract-specific deficits remain after such lesions, intact descending tracts can compensate for the lesioned tracts and access the spinal network to generate voluntary locomotion. Such neuroplasticity of locomotor control mechanisms is also demonstrated after peripheral nerve lesions in cats with intact or lesioned spinal cords. Some models have shown that recovery from such peripheral nerve lesions probably involves changes at the supra spinal and spinal levels. In the case of somesthesic denervation of the hindpaws, we demonstrated that cats with a complete spinal section need some cutaneous inputs to walk with a plantigrade locomotion, and that even in this spinal state, cats can adapt their locomotion to partial cutaneous denervation. Altogether, these results suggest that there is significant plasticity in spinal and supraspinal locomotor controls to justify the beneficial effects of early proactive and sustained locomotor training after central (Rossignol and Barbeau 1995; Barbeau et al. 1998) or peripheral lesions.

Adaptation, Physiological↗