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S Lind

Publications and source records attributed to S Lind.

20 records · Page 2Linked to original sources

Evidence that the superoxide-generating system of human leukocytes is associated with the cell surface.

Superoxide anion (O-2-) generation by human peripheral blood polymorphonuclear leukocytes is enhanced when these cells encounter appropriate soluble or particulate stimuli. O-2- generation requires intact, viable cells and proceeds independently of phagocytosis. To investigate the possibility that the O-2--generating system is associated with the outer surface of the polymorphonuclear leukocyte plasma membrane, we have examined the effects upon O-2- production of p-diazobenzenesulfonic acid, a reagent which can react predominantly with proteins of the external cell membrane. When normal human polymorphonuclear leukocytes were preincubated with cytochalasin B (to minimize endocytosis) and then exposed to the surface-active lectin, concanavalin A, the cells were stimulated to generate O-2- in a concentration- and time-dependent fashion and selectively to discharge the granule-associated enzyme, lysozyme, into the surrounding medium. These responses, as well as cellular binding of [H] concanavalin A, could be blocked by alpha-methyl-D-mannoside. Brief treatment (less than 5 min at 4 degrees C) of the cells with p-diazobenzenesulfonic acid (1.0-5.0 mM) significantly interfered with concanavalin A-mediated O-2- generation but had no influence upon lysozyme release or upon binding of [3H] concanavalin A. The diazonium salt did not alter cell viability or the specific activity of the cytoplasmic enzyme, lactate dehydrogenase (inhibitable under conditions which allowed entry of this reagent into the cytosol). p-Diazobenzenesulfonic acid, therefore, very likely exerted its effects at the cell surface of the intact polymorphonuclear leukocyte, selectively inhibiting O-2- production (either directly or indirectly) without influencing another response to lectin-cell contact: release of lysozyme. These results support the possibility that a polymorphonuclear leukocyte ectoenzyme is responsible for O-2- production.

Azo Compounds↗

Epitope size, specificity and equilibrium constant for four monoclonal antibodies binding to the O:4 polysaccharide antigen of Salmonella serogroup B bacteria.

One rat (MAST 83) and three mouse (MAST 107, 108 and 112) monoclonal antibodies (mAbs) directed against Salmonella serogroup BO lipopolysaccharide (LPS) were characterized and found to bind to the O:4 epitope but recognizing different surfaces of the polysaccharide chain. The epitopes were defined from the combined results of: (i) binding specificities in enzyme immuno assay (EIA) against chemically defined LPS and glycoconjugates; (ii) studies of affinity constants in Farr-assay for binding to oligosaccharides purified from LPS, or chemically synthesized; and (iii) knowledge of the conformation of the O-polysaccharide chain of Salmonella BO bacteria. Two of the antibodies, MAST 83 and 108, bound to the O:4 epitope when present in the terminal non-reducing end as well as an intrachain determinant of the O-polysaccharide, whereas MAST 107 and 112 bound only to the O:4 epitope when present as an intrachain determinant. The equilibrium constants (K values), determined for binding of the mAbs and a Fab-fragment isolated from one of them to a 125l-labelled tyramine-derivative of a Salmonella BO dodecasaccharide, were: 4.3 x 10(5) (MAST 83), 1.0 x 10(5) (MAST 107), 1.3 x 10(5) (MAST 107 Fab), 4.5 x 10(4) (MAST 108) and 1.9 x 10(5) l/mol (MAST 112). The results suggest that each epitope encompasses the O:4 specifying D-abequosyl residue together with different numbers of saccharides varying in size from di- to tetrasaccharides from the linear backbone chain. The antibodies also bind to different surfaces of the O-polysaccharide chain as suggested by its conformation.

Antibodies, Bacterial↗