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I M Hunneyball

Publications and source records attributed to I M Hunneyball.

40 records · Page 3Linked to original sources

The effects of chemical modification on the antigenicity of human and rabbit immunoglobulin G.

In order to characterize the precise structure within human and rabbit IgG molecules against which 'general' rheumatoid factors are directed, an immunochemical comparison has been made of the effects of the selective substitution of specific amino acid side-chains on various types of antigenicity exhibited by human and rabbit IgG. The epsilon-amino groups of lysine residues have been substituted by citraconylation and carbamylation; whilst tyrosine residues have been substituted by nitration with tetranitromethane. In this manner, evidence has been obtained which indicates that the autoantigenic determinants of human IgG are structurally distinct from species-specific ones and from certain Fc-located allotypic markers (Gm(a) and Gm(x)). It is also concluded that lysine residues are probably not involved in the site of IgG reactivity with 'general' rheumatoid factors, in contrast to tyrosine residues which appear to be implicated in the activity of human but not rabbit IgG.

Animals↗

Fragmentation of human IgG by a new protease isolated from the basidiomycete Armillaria mellea.

Digestion of human IgG by a new lysine-specific protease, isolated from the basidiomycete Armillaria mellea, produced Fc and Fab fragments similar to those produced by papain digestion of the same molecule. Digestion appeared to be restricted to a single cleavage point within the hinge region of the IgG molecule. Myeloma proteins of IgG1, IgG3 and IgG4 subclasses were found to be digested at an extremely rapid rate whereas IgG2 myeloma proteins appeared to be resistant to digestion by this enzyme.

Autoantigens↗

The effect of side chain structure on the biochemical and therapeutic properties of intra-articular dexamethasone 21-esters.

The prolonged anti-rheumatic effects produced by some higher 21-esters of intra-articular corticosteroids have been ascribed to their low aqueous solubility or, alternatively, to their slow release of free (21-OH) steroid in the inflamed synovium. Experiments were designed to test this hypothesis. Twelve 21-carboxyl esters of dexamethasone and [3H]dexamethasone were prepared. Their side-chain structures were chosen to provide systematic steric hindrance of the scissile bond. Four dexamethasone/[3H]dexamethasone 21-carbamates were also prepared. When incubated with a 10% (w/v) homogenate of rabbit synovial tissue, esters providing steric hindrance, e.g. t-butylacetate, were more slowly hydrolysed than those which were linear, e.g. n-hexanoate, or cyclic e.g. cyclohexane acetate. Carbamate esters remained unhydrolysed during 24 hours' incubation. The partition coefficients of these compounds, derived using reversed-phase thin-layer chromatography and hydrophobic fragmental constants, were not correlated with their hydrolysis rates. Isomeric 21-substituents had similar partition coefficients. The affinity of the isomers, dexamethasone n-hexanoate and dexamethasone t-butylacetate, for the glucocorticoid receptor of mouse fibroblast cytosol, was determined by a competitive binding assay using [3H]triamcinolone acetonide. Dexamethasone t-butylacetate had 1/10 binding affinity relative to that of dexamethasone. Dexamethasone n-hexanoate was inactive. The therapeutic activities of dexamethasone n-hexanoate and dexamethasone t-butylacetate were compared at a single dose (2 mg), injected into experimentally-arthritic rabbit knee joints. These preparations reduced the swelling and histopathological changes in the treated joints by the same extent, indicating that the local anti-rheumatic activity of corticosteroid 21-esters is unrelated to their hydrolysis rates in vitro.

Animals↗