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Intercellular adhesion in the cellular slime mold Polysphondylium pallidum inhibited by interaction of asialofetuin or specific univalent antibody with endogenous cell surface lectin.
Authors:S D Rosen  C M Chang  S H Barondes
Affiliation:Department of Psychiatry, School of Medicine, University of California, La Jolla, California 92903 USA
Abstract:Previous work has shown that, as amoebae of the cellular slime mold Polysphondylium pallidum become aggregation competent, they accumulate on their cell surface a carbohydrate-binding protein (lectin) named pallidin. These amoebae also possess cell surface receptors, presumed to contain complex oligosaccharides with a high affinity for the endogenous lectin. If lectin-receptor interactions mediate cell-cell contact, then appropriate concentrations of pallidin inhibitors should block cell cohesion. Two potent macromolecular antagonists of the lectin were employed: the desialylated form of the glycoprotein fetuin and the univalent antibody (Fab) prepared against pallidin. We studied the effects of these inhibitors on rotation-mediated aggregation of P. pallidum amoebae under a variety of assay conditions. Amoebae exposed to hypertonic conditions or to antimetabolites (“Permissive conditions”) were selectively blocked from associating by microgram quantities of the lectin inhibitors, whereas cells in isotonic buffer (“nonpermissive condition”) were only slightly affected. A comparison of the morphology of agglutinates formed under the various conditions allows several explanations for the different susceptibilities to inhibition by antipallidin reagents. Although not conclusive, the work supports a model of cell adhesion in this simple eukaryotic system based at least in part on specific interactions between carbohydrate-binding proteins and receptors on adjoining cells.
Keywords:Present address (to which reprint requests should be sent): Department of Anatomy   University of California   San Francisco   California 94143.
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