Localization of submembranous cations to the leading end of human neutrophils during chemotaxis.
Open Access
- 1 August 1979
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 82 (2) , 369-379
- https://doi.org/10.1083/jcb.82.2.369
Abstract
Potassium pyroantimonate was used to localize sites of bound cations in human neutrophils under conditions of random migration, stimulated random migration (chemokinesis), and directed migration (chemotaxis). The cells were placed in a standard chamber in which 0.45-micron micropore filters separated the cells from the stimulus (buffer, Escherichia coli endotoxin-activated serum or the synthetic chemotactic peptide N-formyl-Met-Leu-Phe). The small pore filters permitted pseudopod formation but impeded cell imgration through the filter. Cells examined under all conditions had electron-dense precipitates of antimonate salts in some granules. However, antimonate deposits were localized in the condensed chromatin of the nucleus during random migration and associated to a large extent with the uncondensed nuclear chromatin during chemokinesis and chemotaxis. Under conditions of chemokinesis deposition of antimonate procipitates appeared on the cytoplasmic side of the plasma membrane of neutrophils whereas under conditions of chemotaxis cation deposits beneath the cell membrane were localized to the pseudopods which were directed toward the chemoattractant. In addition to endotoxin-activated serum, concentrations of N-formyl-Met-Leu-Phe which caused neutrophil chemotaxis (10(-8) M) also caused cation deposition beneath the cell membrane at the leading end of the cell regardless of whether albumin was present in the incubation media. However, with higher concentrations of the synthetic peptide (10(-5) M) which caused granule release and were not chemotactic, submembranous cation deposition was not seen. EDTA (10 mM) and EGTA (10 mM) removed nuclear, granular, and submembranous cation deposits from neutrophils examined under conditions of chemotaxis. X-ray microprobe analysis of antimonate deposits revealed the possible presence of calcium but did not detect sodium or magnesium. The data indicate that chemotactic factors induce submembranous deposition of cations, most likely Ca++, which localize to the leading edge of cells exposed to a gradient of chemoattractant.Keywords
This publication has 25 references indexed in Scilit:
- Structural analysis of human neutrophil migration: Centriole, microtubule, and microfilament orientation and function during chemotaxisThe Journal of cell biology, 1977
- Transport of sodium, potassium, and calcium across rabbit polymorphonuclear leukocyte membranes. Effect of chemotactic factor.The Journal of cell biology, 1977
- Calcium Influx Requirement for Human Neutrophil Chemotaxis: Inhibition by Lanthanum ChlorideScience, 1976
- Selective subcellular localization of cations with variants of the potassium (pyro)antimonate technique.Journal of Histochemistry & Cytochemistry, 1975
- Interaction of leukocyte chemotactic factors with the cell surface. I. Chemotactic factor-induced changes in human granulocyte surface charge.Journal of Clinical Investigation, 1975
- Kinetic analysis of chemotactic factor generation in human serum via activation of the classical and alternate complement pathwaysClinical Immunology and Immunopathology, 1975
- THE REGULATORY ROLE OF DIVALENT CATIONS IN HUMAN GRANULOCYTE CHEMOTAXISThe Journal of cell biology, 1974
- LEUKOCYTE LOCOMOTION AND CHEMOTAXISThe Journal of Experimental Medicine, 1973
- THE MOBILIZATION AND EXTRACELLULAR RELEASE OF GRANULAR ENZYMES FROM HUMAN LEUKOCYTES DURING PHAGOCYTOSISThe Journal of cell biology, 1972
- NUCLEAR PRECIPITATES IN PYROANTIMONATE-OSMIUM TETROXIDE-FIXED TISSUESThe Journal of cell biology, 1968