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Helper T cell signaling is initiated by the aggregation of TCRwith the induction of tyrosine kinase activity as one of theearliest consequences. Here, a theoretical model for antigen-inducedunresponsiveness is presented that relies on a cascade of tyrosinephosphorylation- dephoshorylation cycles. A mechanism is describedfor both desensitization in the presence of antigen and persistentlowering of cell responsiveness after stimulus removal. An importantcomponent of the model, leading to bistability, is the presenceof autophosphorylating protein tyrosine kinases in the earlysteps of TCR signaling. One of its predictions is that, followingstimulation, the net phosphorylative activity of these receptor-associatedtyrosine kinases will remain above background level after removalof the antigen. It is proposed that this residual tyrosine kinaseactivity is linked to a deficient signal transduction capacityof the TCR system that leads to a state of prolonged unresponsiveness.In addition, the present analysis defines the notion of a signalingthreshold for hyporesponsiveness induction, associated witha durable switch and amplification of the net tyrosine kinaseactivity. This approach emphasizes the role of tyrosine kinasesin the down-regulation of cellular competence.  相似文献   
84.
Ca2+ is the primary regulator of force generation by cross-bridges in striated muscle activation and relaxation. Relaxation is as necessary as contraction and, while the kinetics of Ca2+-induced force development have been investigated extensively, those of force relaxation have been both studied and understood less well. Knowledge of the molecular mechanisms underlying relaxation kinetics is of special importance for understanding diastolic function and dysfunction of the heart. A number of experimental models, from whole muscle organs and intact muscle fibres down to single myofibrils, have been used to explore the cascade of kinetic events leading to mechanical relaxation. By using isolated myofibrils and fast solution switching techniques we can distinguish the sarcomeric mechanisms of relaxation from those of myoplasmic Ca2+ removal. There is strong evidence that cross-bridge mechanics and kinetics are major determinants of the time course of striated muscle relaxation whilst thin filament inactivation kinetics and cooperative activation of thin filament by cycling, force-generating cross-bridges do not significantly limit the relaxation rate. Results in myofibrils can be explained well by a simple two-state model of the cross-bridge cycle in which the apparent rate of the force generating transition is modulated by fast, Ca2+-dependent equilibration between off- and on-states of actin. Inter-sarcomere dynamics during the final rapid phase of full force relaxation are responsible for deviations from this simple model.  相似文献   
85.
We have investigated the density of peptides required to elicit different biological responses in cytotoxic T lymphocytes (CTL), including trogocytosis (i.e., the phenomenon whereby the lymphocytes actively capture fragments of plasma membrane from those cells with which they establish an immune synapse). We have used two separate mouse models of CTL recognising defined peptides presented by MHC class I molecules. In both systems, triggering of cytotoxicity and capture of membrane components reached saturation with low densities of ligand. On the other hand, down-modulation of cell-surface levels of TCR, induction of IFN-gamma production and detection of peptide captured required much higher ligand densities. Interestingly, fratricide (i.e., killing between CTL sharing the same specificity), a mechanism proposed to account for CTL exhaustion, was detected only at antigen concentrations still well above that second threshold leading to full blown activation. Taken together, our results show that the different thresholds that govern the elicitation of different CTL functions correlate with different proportions of antigen among the target cell components being captured via trogocytosis.  相似文献   
86.
Fluorescence polarization assay by flow cytometry   总被引:1,自引:0,他引:1  
Fluorescence polarization measurement on cell suspensions provides a highly sensitive means for detecting subtle changes in the cells, such as occur early after lymphocyte activation or on malignant transformation. We review here the principles of fluorescence polarization, its measurement by a commercially available flow cytometer and application of such assays especially in cellular immunology.  相似文献   
87.
再生障碍性贫血患者淋巴细胞表型变化   总被引:7,自引:0,他引:7  
目的:研究再生障碍性贫血(AA)患者骨髓(BM)及外周血(PB)淋巴细胞及其活化相关分子的表达及临床意义。方法:采用单色和双色免疫荧光标记法,流式细胞仪分析AA患者的BM和PB中淋巴细胞膜分子的表达。结果:AA患者BM和BP中CD8^ 细胞增加,CD4/CD8比例下降,BM在CD25^ 细胞和HLA-DR^ 细胞增多,急性AA增加尤为显著(P<0.01),BM中CD16^ 或CD56^ 细胞也明显增多(P<0.05),双标记分析提示T细胞主要为CD8^ 细胞:急性AA患者CD8^ -CD25^ 细胞显著增多(P<0.01),AA患者BM中淋巴细胞活化相关分子表达增多,尤其4-1BB^ ,CD95L^ 和CD40L+细胞显著增多(P<0.01),结论:AA患者BM中淋巴细胞活化相关膜分子增多,是AA免疫功能异常及最终导致造血功能衰竭的原因之一。  相似文献   
88.
Sixteen Borrelia burgdorferi strains, including all three species, were compared in a colorimetric bactericidal assay for their ability to escape the complement-dependent bacteriolysis on incubation in normal human serum free of specific antibodies (NHS). The species B. afzelii was found to be serum resistant (EB1, EB3, FEM1, FEM2, Pko), whereas strains of the species B. garinii were found to be serum sensitive (1/B29, G1, G2, PSth, PBr, PTrob). Six strains, mainly B. burgdorferi sensu stricto, were only partially sensitive (Z25, 297, B31, PKa-I, PBi). All strains activated the complement cascade in NHS, whereas only four strains (G1, G2, PBr, PSth) could activate complement in the presence of EGTA-Mg. After complement activation, covalently bound C3 fragments (C3b, iC3b) were detected on serum-sensitive as well as serum-resistant borrelial strains. Heterogeneity, however, was observed between serum-resistant and serum-sensitive strains with respect to deposition of C6 and C9. Whereas serum-sensitive strains were strongly positive for C6 and C9 and were, therefore, killed by the terminal complement complex (TCC), serum-resistant strains were devoid of C6 and C9 on their cell surface. The serum resistance may, therefore, be due to an absent or only transient formation of TCC on the bacterial surface. Received: 17 September 1996  相似文献   
89.
Cytokines produced by immune cells in pancreatic islets infiltrating are important mediators of beta-cell destruction in insulin-dependent diabetes mellitus. In this study, the effects of retinoic acid (RA) on cytokine-induced beta-cell dysfunction were examined. RA significantly protected interleukin-1 beta (IL-1) and interferon-gamma (IFN-gamma)-mediated cytotoxicity of rat insulinoma cell (RINm5F), and also reduced in IL-1 and IFN-gamma-induced nitric oxide (NO) production, which correlated well with reduced levels of the inducible form of NO synthase (iNOS) mRNA and protein. The molecular mechanism, by which RA inhibited iNOS gene expression, appeared to involve the inhibition of NF-kappa B activation. Our results suggest possible therapeutic value of RA for the prevention of diabetes mellitus progression.  相似文献   
90.
Summary:  Natural killer (NK) cell cytotoxicity is mediated by multiple germ line-encoded activating receptors that recognize specific ligands expressed by tumor cells and virally infected cells. These activating receptors are opposed by NK inhibitory receptors, which recognize major histocompatibility complex class I molecules on potential targets, raising the threshold for NK cell activation. Once an abnormal cell has been detected, NK cells are the sentinel source of cytolytic mediators, such as granzymes and perforins, as well as interferon-γ, which can polarize the immune response to a T-helper 1 cell type. Activation signals are transmitted by adhesion-dependent pathways, immunoreceptor tyrosine-based activation motif (ITAM)-dependent pathways, DAP10 ITAM-independent pathways, and by signaling through immunoreceptor tyrosine-based switch motifs. These pathways activate downstream signaling partners to trigger NK cell cytotoxicity. Some of these downstream molecules are unique to the various pathways, and some of these molecules are shared. Because of the complexity of signals involved in NK cell–target cell interaction, the generation of mice with targeted mutations in signaling molecules involved in adhesion, activation, or inhibition is essential for a precise dissection of the mechanisms regulating NK cell effector functions. Here we review recent advances in the genetic analysis of the signaling pathways that mediate NK cell killing.  相似文献   
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