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J M Chambers

Publications and source records attributed to J M Chambers.

7 recordsLinked to original sources

Mouse mast cell gp49B1 contains two immunoreceptor tyrosine-based inhibition motifs and suppresses mast cell activation when coligated with the high-affinity Fc receptor for IgE.

Mouse mast cells express gp49B1, a cell-surface member of the Ig superfamily encoded by the gp49B gene. We now report that by ALIGN comparison of the amino acid sequence of gp49B1 with numerous receptors of the Ig superfamily, a newly recognized family has been established that includes gp49B1, the human myeloid cell Fc receptor for IgA, the bovine myeloid cell Fc receptor for IgG2, and the human killer cell inhibitory receptors expressed on natural killer cells and T lymphocyte subsets. Furthermore, the cytoplasmic domain of gp49B1 contains two immunoreceptor tyrosine-based inhibition motifs that are also present in killer cell inhibitory receptors; these motifs downregulate natural killer cell and T-cell activation signals that lead to cytotoxic activity. As assessed by flow cytometry with transfectants that express either gp49B1 or gp49A, which are 89% identical in the amino acid sequences of their extracellular domains, mAb B23.1 was shown to recognize only gp49B1. Coligation of mAb B23.1 bound to gp49B1 and IgE fixed to the high-affinity Fc receptor for IgE on the surface of mouse bone marrow-derived mast cells inhibited exocytosis in a dose-related manner, as defined by the release of the secretory granule constituent beta-hexosaminidase, as well as the generation of the membrane-derived lipid mediator, leukotriene C4. Thus, gp49B1 is an immunoreceptor tyrosine-based inhibition motif-containing integral cell-surface protein that downregulates the high-affinity Fc receptor for IgE-mediated release of proinflammatory mediators from mast cells. Our findings establish a novel counterregulatory transmembrane pathway by which mast cell activation can be inhibited.

Amino Acid Sequence↗

Gastroenteritis of basenji dogs.

Intestinal digestive and absorptive function and the gross and histologic appearance of the gastrointestinal tract were evaluated in Basenji dogs with chronic diarrhea, asymptomatic Basenji dogs, and healthy control dogs. Gastric rugal hypertrophy, lymphocytic gastritis, and gastric mucosal atrophy occurred in asymptomatic and affected Basenji dogs. All affected dogs had moderate or severe intestinal lesions characterized by villous clubbing and fusion, increased tortuosity of intestinal crypts, and diffuse infiltration of mononuclear inflammatory cells. Intestinal lesions in asymptomatic Basenji dogs invariably were less severe than those in affected dogs, but the small intestinal lamina propria of asymptomatic Basenji dogs consistently contained greater numbers of mononuclear inflammatory cells than did that of control dogs. The proportion of cells containing each immunoglobulin isotype (IgG, IgM, IgA) was similar among affected Basenji dogs, asymptomatic Basenji dogs, and control dogs. As compared to healthy beagle controls, intestinal function was abnormal in both affected and asymptomatic Basenji dogs evaluated by combined N-benzoyl-L-tyrosyl-p-aminobenzoic acid and d-xylose test, but malabsorption and maldigestion were most pronounced in affected Basenji dogs.

Animals↗

Segmental hemiatrophy in a dog.

Congenital asymmetric development, resulting in a small right thoracic limb, was diagnosed in a dog. The limb was anatomically normal. The lesion closely resembled hemiatrophy. Congenital asymmetric development should be considered in the differential diagnosis of limb length discrepancies. Treatment is required only in cases of extreme discrepancy between the normal and affected limb.

Animals↗