The effects of sulfhydryl inhibitors and cytochalasin on the cytoplasmic and cytoskeletal actin of human neutrophils
- 1 August 1987
- journal article
- research article
- Published by Wiley in Journal of Cellular Physiology
- Vol. 132 (2) , 325-330
- https://doi.org/10.1002/jcp.1041320218
Abstract
To better understand the changes that occur in cytoplasmic actin during cell movement, we studied the effect of inhibitors of cell movement on the molecular conformation of actin and its incorporation into the Triton-insoluble cytoskeleton of human neutrophils. The sulfhydryl reactive compound N-ethylmaleimide caused an increase in cellular F-actin as measured by uptake of the F-actin specific fluorescent probe 7-nitrobenz-2-oxadiazole-phallacidin. However, N-ethylmaleimide reduced the amount of actin associated with the Triton-insoluble cytoskeleton. Dithiobisnitrobenzoic acid, a sulfhydryl reagent that does not cross cell membranes efficiently, did not alter the F-actin content of neutrophils. The effect of N-ethylmaleimide was blocked by the presence of dithiothreitol, a donor of sulfhydryl groups. N-ethylmaleimide did not affect the polymerization of actin in a cell-free system. Cytochalasin B did not alter F-actin content of neutrophils but did decrease actin in cytoskeletons of resting neutrophils. Cytochalasin inhibited the increase in F-actin initiated by the chemoattractant N-formylmethionylleucylphenylalanine. We propose that N-ethylmaleimide blocks the stabilization of G-actin in cytoplasm, interferes with the incorporation of F-actin polymer into the cytoskeleton, and depolymerizes the cytoskeleton. In contrast cytochalasin stabilizes G-actin in the presence of chemotactic peptide. These data suggest that reversible conversion of G-actin to F-actin and incorporation of F-actin into the Triton-insoluble cytoskeleton are important for neutrophil movement.This publication has 23 references indexed in Scilit:
- Lounging in a lysosome: the intracellular lifestyle of Coxiella burnetiiCellular Microbiology, 2007
- Membrane‐cytoskeleton interactions and the regulation of chemotactic peptide‐induced activation of human granulocytes: The effects of dihydrocytochalasin BJournal of Cellular Biochemistry, 1985
- Chemotactic peptide-induced changes in neutrophil actin conformation.The Journal of cell biology, 1984
- Chemotactic peptide modulation of actin assembly and locomotion in neutrophils.The Journal of cell biology, 1984
- Mechanism of actin polymerizationTrends in Biochemical Sciences, 1982
- Identification of membrane proteins mediating the interaction of human plateletsThe Journal of cell biology, 1980
- Effects of sulfhydryl reagents on phagocytosis and exocytosis in rabbit polymorphonuclear leukocytesChemico-Biological Interactions, 1980
- Control of cytoplasmic actin gel–sol transformation by gelsolin, a calcium-dependent regulatory proteinNature, 1979
- Actin polymerizability is influenced by profilin, a low molecular weight protein in non-muscle cellsJournal of Molecular Biology, 1977
- Effects of cytochalasin B on polymorphonuclear leucocyte locomotion, phagocytosis and glycolysisExperimental Cell Research, 1972