Derivative of wheat germ agglutinin specifically inhibits formyl-peptide-induced polymorphonuclear leukocyte chemotaxis by blocking re-expression (or recycling) of receptors
Journal Article
·
· J. Immunol.; (United States)
OSTI ID:6801319
The mechanism of action of a derivative of wheat germ agglutinin (WGA-D) which specifically and irreversibly inhibits N-formyl-methionyl-leucyl-phenylalanine (FMLP)-induced polymorphonuclear leukocyte (PMN) chemotaxis was examined. At a concentration that completely inhibited PMN chemotaxis, WGA-D had no effect on either the uptake or release of (/sup 3/H)-FMLP by PMN. Similarly, WGA-D did not affect either the short-term binding to, or internalization by, PMN of a fluoresceinated FMLP analog. WGA-D did interfere, however, with the re-expression (or recycling) of FMLP receptors by PMN that had been preincubated with 1 ..mu..M FMLP for 10 min at 4/sup 0/C. This effect was specific for WGA-D, because it was not observed when concanavalin A was used. Scatchard plot analysis of FMLP binding to PMN after receptor re-expression demonstrated that WGA-D-treated PMN had a significant diminution in the number of high affinity receptors. WGA-D-mediated inhibition of FMLP receptor re-expression was associated with inhibition of FMLP-induced PMN chemotaxis, but had no effect on either FMLP-induced PMN superoxide anion generation or degranulation. Studies using (/sup 12/%I)-WGA-D demonstrated that PMN did not internalize WGA-D spontaneously. The data indicate that WGA-D perhaps by binding to the FMLP receptor, inhibits FMLP-induced PMN chemotaxis by blocking the re-expression (or recycling) of a population of receptors required for continuous migration.
- Research Organization:
- Univ. of California, San Francisco
- OSTI ID:
- 6801319
- Journal Information:
- J. Immunol.; (United States), Journal Name: J. Immunol.; (United States) Vol. 136:5; ISSN JOIMA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
550301* -- Cytology-- Tracer Techniques
59 BASIC BIOLOGICAL SCIENCES
AGGLUTININS
ANTIBODIES
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
BIOCHEMICAL REACTION KINETICS
BIOLOGICAL MATERIALS
BLOOD
BLOOD CELLS
BODY FLUIDS
CONCANAVALIN
DAYS LIVING RADIOISOTOPES
ELECTRON CAPTURE RADIOISOTOPES
FLUORESCENCE
HEMAGGLUTININS
HYDROGEN ISOTOPES
INTERMEDIATE MASS NUCLEI
IODINE 125
IODINE ISOTOPES
ISOTOPE APPLICATIONS
ISOTOPES
KINETICS
LABELLED COMPOUNDS
LECTINS
LEUKOCYTES
LIGHT NUCLEI
LUMINESCENCE
MATERIALS
MEMBRANE PROTEINS
NUCLEI
ODD-EVEN NUCLEI
ORGANIC COMPOUNDS
PROTEINS
RADIOISOTOPES
RADIORECEPTOR ASSAY
REACTION KINETICS
RECEPTORS
TRACER TECHNIQUES
TRITIUM
UPTAKE
YEARS LIVING RADIOISOTOPES
59 BASIC BIOLOGICAL SCIENCES
AGGLUTININS
ANTIBODIES
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
BIOCHEMICAL REACTION KINETICS
BIOLOGICAL MATERIALS
BLOOD
BLOOD CELLS
BODY FLUIDS
CONCANAVALIN
DAYS LIVING RADIOISOTOPES
ELECTRON CAPTURE RADIOISOTOPES
FLUORESCENCE
HEMAGGLUTININS
HYDROGEN ISOTOPES
INTERMEDIATE MASS NUCLEI
IODINE 125
IODINE ISOTOPES
ISOTOPE APPLICATIONS
ISOTOPES
KINETICS
LABELLED COMPOUNDS
LECTINS
LEUKOCYTES
LIGHT NUCLEI
LUMINESCENCE
MATERIALS
MEMBRANE PROTEINS
NUCLEI
ODD-EVEN NUCLEI
ORGANIC COMPOUNDS
PROTEINS
RADIOISOTOPES
RADIORECEPTOR ASSAY
REACTION KINETICS
RECEPTORS
TRACER TECHNIQUES
TRITIUM
UPTAKE
YEARS LIVING RADIOISOTOPES