A Method for quantifying F‐Actin in chemotactic peptide activated neutrophils: Study of the effect of tBOC peptide
- 1 January 1985
- journal article
- research article
- Published by Wiley in Cell Motility
- Vol. 5 (6) , 545-557
- https://doi.org/10.1002/cm.970050609
Abstract
The studies presented here characterize a simple, quantitative NBDphallacidin extraction assay for determining the F‐actin content of fMLP‐activated neutrophils. The NBDphallacidin extraction assay is based upon the specificity of NBDphallacidin binding to F‐actin and the solubility of NBDphallacidin in methanol. Cells are fixed, permeabilized, and stained with NBDphallacidin; the cells are then pelleted, the bound NBDphallacidin is extracted into methanol, and the RFI (excite 465; emit 535) of the solution is determined. Binding of NBDphallacidin to neutrophils is saturable and 90% of bound NBDphallacidin is displaced by nonfluorescent phalloidin. The extraction of bound NBDphallacidin into methanol is complete and the excitation/emission characteristics of NBDphallacidin are not altered by extraction. The assay is relatively inexpensive, applicable to the study of cells in suspension or on substratum, allows kinetic studies with 5–10s time resolution, and is not affected by the shape of the cell or the distribution of the probe. We used the NBDphallacidin extraction assay to study the kinetics of fMLP‐induced change in the F‐actin content of neutrophils and the effect of tBOC peptide, an inhibitor of fMLP binding, on these changes. The extraction assay reveals a rapid, sequential fMLP‐induced increase followed by a decrease in F‐actin content. The tBOC peptide inhibits fMLP‐induced actin polymerization. Addition of tBOC during fMLP‐induced polymerization or at times when F‐actin content is maximal enhances F‐actin depolymerization. The rate of F‐actin depolymerization is ⩾ fourfold faster in the presence than in the absence of tBOC. The results show that (1) The NBDphallacidin extraction assay is useful for studying the kinetics of change in F‐actin content of nonmuscle cells; (2) fMLP receptor occupancy is required for fMLP‐dependent polymerization but not depolymerization; and (3) both the actin polymerizing and depolymerizing processes are active in the cell within 5 s after fMLP stimulation. Implications of these observations for understanding the observed increase and, then, decrease in F‐actin content of fMLP‐activated cells are discussed.Keywords
This publication has 16 references indexed in Scilit:
- Chemotactic peptide-induced changes in neutrophil actin conformation.The Journal of cell biology, 1984
- Contribution of actin to the structure of the cytoplasmic matrix.The Journal of cell biology, 1984
- Chemotactic peptide modulation of actin assembly and locomotion in neutrophils.The Journal of cell biology, 1984
- Changes in cytoskeletal proteins of polymorphonuclear leukocytes induced by chemotactic peptidesCell Motility, 1983
- On the dynamics of the microfilament system in HeLa cellsThe Journal of cell biology, 1982
- Kinetic analysis of chemotactic peptide receptor modulationThe Journal of cell biology, 1982
- Cytochalasin D inhibits actin polymerization and induces depolymerization of actin filaments formed during platelet shape changeNature, 1981
- Identification of membrane proteins mediating the interaction of human plateletsThe Journal of cell biology, 1980
- Chemotactic peptide receptor modulation in polymorphonuclear leukocytes.The Journal of cell biology, 1980
- Selective assay of monomeric and filamentous actin in cell extracts, using inhibition of deoxyribonuclease ICell, 1978