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2000, Science
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10. DC cultures were generated as described (5, 22). Immature I-A kϩ DCs grown from C3H/HeN, C3H/HeJ, and CBA/J (Jackson Labs, Bar Harbor, ME) marrow suspensions were pulsed with HEL (1 to 3 mg/ml) with or without LPS (1 to 10 ng/ml, E. coli 0111.B4) for 1 to 3 hours, washed, and chased in HEL-and LPS-free media. Similar results were obtained with DCs from each strain. DC cultures contained supernatant from mGM-CSFexpressing J558L cells (from A. Lanzavecchia, Basel Institute, Basel, Switzerland). LPS was removed from HEL (Sigma) with Kuttsuclean adsorbent (Maruha Corporation, Ibaraki, Japan). Maturation stimuli included LPS, CD40L, tumor necrosis factor-␣, or replating (22). 11. DCs were fixed with 4% (wt/vol) paraformaldehyde and washed in phosphate-buffered saline. Cells were incubated with monoclonal antibodies (mAbs) on ice as described (23). The rat mAb C4H3 was provided by R. Germain (NIH, Bethesda, MD). C4H3 was purified on protein A-Sepharose and biotinylated. Cells were labeled with biotin-conjugated mAbs (Pharmingen) to I-E k (14-4-4S) or I-A k (10-2.16) and fluorescein
Journal of Histochemistry & Cytochemistry, 1987
Journal of Experimental Medicine, 1974
Medical Oncology and Tumor Pharmacotherapy, 1993
A universal method for selection of surface marker-positive cells is described. The cells, admixed with an excess of surface marker-negative cells, are In-st labelled with a specific biotinylated ligand and then isolated with the aid of monoclonal, anti-biotin coated beads. The method enables selection and isolation of cells with a frequency as low as 10-4. The ligand can be an antigen (for selection of infrequent antibody-producing cells), an antibody (for selection of surface antigen-positive cells) or other molecules (for selection of specific receptor-positive cells).
FEBS Letters, 1980
Journal of Histochemistry & Cytochemistry, 1978
Nonionic detergent (NP40) treatment of paraformaldehyde-fixed normal and SV40-transformed human fibroblasts resulted in intracellular penetration of two chosen fluorescent antibodies and Concanavalin A (Con A). After the detergent treatment nuclear SV40 T antigen, cytoplasmic fibronectin glycoprotein and Con A binding sites could be visualized in fluorescence microscopy. The lowest NP40 concentration which made fixed cells permeable was 0.05%. The morphology of cells was preserved better by this new method than by conventional fixation methods, such as acetone treatment. In scanning electron microscopy the surface of the fixed NP40-treated cells had only small rugosities and fine pores. The subsurface cytoskeleton especially was well preserved and had a more distinct fine structure. The improved morphology made it possible to detect a similar distribution of fibronectin and Con A binding sites in the perinuclear endoplasmic reticulum regions.
European Journal of Biochemistry, 1992
Analytical Biochemistry, 1997
J Immunol Method, 1990
Photoaffinity labeling was used to evaluate optimal conditions for purification of I-A k histocompatibility molecules in functionally active form. We assessed the biological activity of I-A k primarily by its binding of the hen egg-white lysozyme (HEL) peptide from residues 46-61. [125I]iodo,4-azidosalicyloly(HEL)46-61 (IASA-46-61)-labeled I-A k on B cell hybridoma membranes and their detergent solubilisates, at the a chain. Following extensive detergent dialysis, the intensity of this labeling remained unchanged in the case of MEGA 8 and MEGA 9 detergents, but decreased in the case of deoxycholate and n-octylglucoside. Conditions for affinity purifications were assessed on one hand by determining the dissociation conditions of I-A k from various monoclonal antibodies and by determining the denaturation of I-A k under these conditions. Effective dissociation in the absence of detectable denaturation was observed for 10.3.6.2 and 40.LH monoclonal antibody at pH 3.5 and to a lesser extent at low concentrations of ammonium thiocyanate and guanidine thiocyanate at neutral pH. I-A k purified from cell membranes using MEGA 8 and MEGA 9 detergent mixtures and acid elution from 10.3.6.2 Sepharose was efficiently labeled by IASA-46-61. Thus, I-A k was active in antigen presentation to a T cell hybridoma when reconstituted in planar membranes. In contrast to I-A k on cell membranes, purified I-A k in detergent showed extensive labeling of the fl chain. The overall labeling intensity and the extent of fl chain labeling substantially changed upon addition of certain lysophosphatides.
Cellular Immunology, 1984
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