Abstract

Kinetic analysis of dexamethasone-induced apoptosis in the human lymphoblastoid cell line CCRF CEM C7A has revealed a point when cells, morphologically indistinguishable from untreated cells, have irreversibly engaged a program leading to death, measured by a loss of clonogenicity. Since all cells that fail to clone eventually died through apoptosis, measurements of clonogenicity in this system provide an accurate measure of commitment to apoptotic death. Inhibition of caspases by peptide inhibitors blocked proteolysis of endogenous substrates and reduced nuclear condensation yet did not alter either dexamethasone-induced changes in clonogenicity or mitochondrial membrane potential. In contrast to the results with caspase inhibitors, expression of BCL-2 in CCRF CEM C7A cells proved sufficient to block all changes associated with apoptosis, including loss of both clonogenicity and changes in mitochondrial membrane potential. These results demonstrate that commitment to cell death can precede the key biochemical or morphological features of apoptosis by several hours and indicate that separate regulators govern cellular commitment to clonogenic death and the subsequent execution phase characterised as apoptosis.

Keywords

ApoptosisProgrammed cell deathCell biologyCaspaseClonogenic assayBiologyUVB-induced apoptosisCell cultureCancer researchChemistryBiochemistryGenetics

MeSH Terms

Amino Acid Chloromethyl KetonesAnti-Inflammatory AgentsApoptosisBiomarkersCaspasesChromatinClone CellsCysteine Proteinase InhibitorsCytoplasmDexamethasoneHumansKineticsLymphocytesMicroscopyElectronMitochondriaProto-Oncogene Proteins c-bcl-2Tumor CellsCultured

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Publication Info

Year
1998
Type
article
Volume
5
Issue
1
Pages
107-115
Citations
119
Access
Closed

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Cite This

C. L. Brunet, Rosalind H. Gunby, Roderick S.P. Benson et al. (1998). Commitment to cell death measured by loss of clonogenicity is separable from the appearance of apoptotic markers. Cell Death and Differentiation , 5 (1) , 107-115. https://doi.org/10.1038/sj.cdd.4400334

Identifiers

DOI
10.1038/sj.cdd.4400334
PMID
10200451

Data Quality

Data completeness: 86%