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R Huby

Publications and source records attributed to R Huby.

7 recordsLinked to original sources

Location of major histocompatibility complex class II molecules in rafts on dendritic cells enhances the efficiency of T-cell activation and proliferation.

The existence of major histocompatibility complex (MHC) class II molecules in lipid rafts has been described in dendritic cells (DC); however, the importance of rafts in T-cell activation has not been clarified. In this study, the distribution of the lipid raft components (CD59 and GM1 ganglioside) in human monocyte-derived DC was investigated. DC had an even distribution of these components at the cell surface. In addition, raft-associated GM1 ganglioside colocalized with cross-linked MHC class II. This implies coaggregation of raft components with these MHC molecules, which may be important in the interaction between T cells and antigen-presenting cells. In studies carried out to investigate the effect of the DC : T-cell interaction on raft distribution, we found a clustering of the lipid raft component CD59 on DC at the synaptic interface, with associated activation of the interacting T cell. In an antigen-specific response between DC and CD4+ T-cell clones, disruption of lipid rafts resulted in inhibition of both CD59 clustering and T-cell activation. This was most pronounced when limiting amounts of cognate peptide were used. Together, these data demonstrate the association of MHC class II with lipid rafts during DC : T-cell interaction and suggest an important role for DC lipid rafts in T-cell activation.

CD4-Positive T-Lymphocytes↗

Sequential measurement of the murine acute-phase protein serum amyloid P component (SAP) as an indicator of graft-versus-host disease following allogeneic bone marrow transplantation in mice.

Murine models of bone marrow transplantation (BMT) are used commonly for studies of the pathogenesis and treatment of graft-versus-host disease (GVHD). We report here that the sequential measurement of the mouse acute-phase protein SAP can be used to provide a sensitive, quantitative index of the severity of GVHD. Thirty mice underwent allogeneic, and a further 30 syngeneic BMT. GVHD was assessed in vivo by clinical appearances and weight change, and post mortem by histology and calculation of splenic indices. Blood was obtained twice/week for SAP measurement and blood culture. In all mice an initial rise in SAP levels due to irradiation was followed by a return to baseline. Thereafter in syngeneic marrow recipients levels remained low. In contrast, after allogeneic BMT SAP levels rose progressively as mice developed GVHD, reaching a peak of 135 micrograms/ml prior to death, from a nadir at day 20 of 15 micrograms/ml. Mice with high splenic indices and histological evidence of severe GVHD had significantly higher SAP levels than mice with mild GVHD (P = 0.0002). Elevation in SAP levels occurred independently of bacteraemia. We conclude that in murine BMT sequential measurement of SAP provides an objective means of assessing GVHD in vivo.

Animals↗

Non-enzymic post-translational modification of proteins in aging. A review.

Various non-enzymic post-translational changes to proteins occur in vivo and some of these progress with aging. These changes are reviewed and linked to a number of age-related diseases, and to alterations in the charge distribution on protein surfaces. Modification by cyanate and by glucose 6-phosphate causes a partial unfolding of proteins, with loss of tertiary structure but retention of secondary structure. These products are reminiscent of the intermediate state observed during folding and unfolding of some proteins.

Aged↗

Immunosuppression with cyclosporin A alters the thymic microenvironment.

The effect of cyclosporin A (CyA) immunosuppression on the murine thymic microenvironment and T lymphocyte development has been analysed using monoclonal antibodies to epithelial and lymphocyte subpopulations, macrophages and major histocompatibility complex (MHC) class II antigens in immunohistochemistry and flow cytometry. The major microenvironmental target for CyA-induced damage was the thymic medulla, where a reduction in all epithelial cell subsets, dendritic cells and macrophages was observed. In contrast, the thymic cortex appeared essentially normal. CyA had no detectable effect on the intensity of microenvironmental expression of MHC class II molecules in either cortex or medulla, although the number of MHC class II positive medullary cells was reduced after CyA treatment. CyA also had a differential effect on the thymic lymphocyte populations where there was little change in the Thy-1 bright, CD5 dull, CD4+, CD8+ cortical thymocytes but a depletion of the Thy-1 dull, CD5 bright, CD4 or CD8 single-positive medullary cells. This lymphocyte loss may be due partly to increased migration from thymus to spleen and other peripheral lymphoid organs, and partly to a block in the differentiation stage from cortical to medullary lymphocyte. The thymic microenvironment and lymphocyte subpopulations recover rapidly after cessation of CyA treatment, although there may be longer term functional defects resulting from the CyA-induced injury.

Animals↗

Non-enzymic glycosylation (glycation) of lens proteins by galactose and protection by aspirin and reduced glutathione.

Radioactive galactose becomes attached covalently to lens proteins in the same way as glucose. Simultaneous incubation with aspirin inhibits the reaction with galactose in a dose-related manner. Incubation with aspirin before incubation with galactose in the absence of aspirin showed that aspirin can modify crystallins permanently to prevent the binding of galactose. The galactosylation was also inhibited by glutathione at physiological concentrations. All major groups of lens proteins reacted with galactose but a higher level of modification of protein in the material of high molecular weight may indicate that galactosylation has induced aggregation of the proteins. The modification of all major crystallin groups was confirmed by isolating the galactosylated proteins by affinity chromatography. The results are discussed in relation to glycosylation of lens proteins in diabetes and galactosaemia and the role of glycosylation in cataract.

Acetylation↗

Observations on the role of endotoxin in graft-versus-host disease.

We have used a conventional murine model of bone marrow transplantation (BMT) to make a detailed study of the histological features of graft-versus-host disease (GvHD), and to study the effects of oral antibiotic decontamination of the gut flora. Comparison of the histological appearances of the small and large bowel indicated that the features of the GvHD were more severe in the large bowel. Bowel sterilisation caused a striking reduction in the severity of GvHD, both in the gut and at a distant site (the skin of the ear). The different effects of GvHD in the large as compared to the small bowel suggested that a factor was operative locally, and the effect of sterilisation linked this to the bacteria in the bowel. The fact that sites remote from the bowel were also affected suggested that a diffusible factor from the bowel produced by the bacteria of the gut was responsible. Studies elsewhere have suggested that the factor involved is likely to be endotoxin. In these experiments however it was evident that systemic administration of endotoxin did not aggravate the disease process and that in some instances the reverse was obtained. If therefore endotoxin is important the dose and its mode of its administration are likely to be critical.

Animals↗