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Effector caspases are dispensable for the early nuclear morphological changes during chemical-induced apoptosis
V L Johnson1, S C Ko, T H Holmstrom
1Centre for Mechanisms of Human Toxicity, University of Leicester, Hodgkin Building, Lancaster Road, Leicester LE1 9HN, UK.
Abstract:
Nuclear morphological changes during apoptosis are very distinct and effector caspases have been implicated to play a central role in these processes. To investigate this in greater detail we examined the effect of blocking caspase activity and its activation on the nuclear morphological change in Jurkat T cells undergoing apoptosis after staurosporine treatment. In the presence of caspase inhibitors, like benzyloxycarbonyl-Val-Ala-Asp fluoro-methylketone (z-VAD-FMK), N-acetyl Tyr-Val-Ala-Asp chloromethylketone (Ac-YVAD-CMK) and benzyloxy-carbonyl-Asp-Glu-Val-Asp (OMe) fluoromethylketone (z-DEVD-FMK), staurosporine-treated Jurkat cells displayed a nuclear morphological change distinct from that of normal and apoptotic cells. This nuclear morphological change is an early event, characterised by convoluted nuclei with cavitations, and clumps of chromatin abutting to inner regions of the nuclear envelope between the nuclear pores. Both the nuclear envelope and endoplasmic reticulum were grossly dilated. This pre-apoptotic nuclear change precedes the externalisation of phosphatidylserine, chromatin condensation and DNA laddering, and can be dissociated from the formation of high molecular weight DNA fragments and cell shrinkage. Although cytochrome c efflux from the mitochondria and the processing of caspase-3 were observed in Jurkat cells with pre-apoptotic nuclear morphology, caspase-2, -6, -7 and -8 were not activated. In the presence of z-DEVD-FMK or Ac-YVAD-CMK, caspase-3 was processed to both the p17 and p20 fragments in staurosporine-treated cells, but only to p20 fragment in the presence of z-VAD-FMK. However, the caspase-3 substrate, poly(ADP ribose) polymerase was not cleaved in the presence of z-VAD-FMK, despite >70% of the cells have pre-apoptotic nuclei. In addition, caspase-3 null MCF-7 cells also undergo pre-apoptotic nuclear change when treated with staurosporine in the presence of caspase inhibitors, indicating that caspase-3 is not required for the early nuclear morphological change in cells undergoing apoptosis. Although cell death in staurosporine-treated Jurkat cells was markedly delayed, they eventually die without discernible downstream apoptotic features. Other apoptotic stimuli like etoposide and the heavy metal chelator, N,N,N',N'-tetrakis (2-pyridylmethyl) ethylenediamine also induced this nuclear morphological change in Jurkat cells in the presence of z-VAD-FMK. In summary, the effector caspases are not involved in early nuclear morphological change, which precedes the conventional hallmark morphological changes associated with chemical-induced apoptosis.
Insights
Blocking effector caspases prevents typical apoptosis nuclear changes, revealing an early, distinct nuclear morphology. This pre-apoptotic nuclear change occurs independently of caspase-3 activation and conventional apoptotic markers.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Apoptosis involves distinct nuclear morphological changes, with effector caspases playing a key role.
- Investigating the precise role of caspases in early nuclear alterations during apoptosis is crucial.
Purpose of the Study:
- To examine the effect of blocking caspase activity on nuclear morphological changes in Jurkat T cells during staurosporine-induced apoptosis.
- To determine if effector caspases are essential for the early nuclear morphological changes preceding conventional apoptotic hallmarks.
Main Methods:
- Jurkat T cells were treated with staurosporine in the presence of various caspase inhibitors (z-VAD-FMK, Ac-YVAD-CMK, z-DEVD-FMK).
- Nuclear morphology was analyzed, and events like phosphatidylserine externalization, chromatin condensation, DNA laddering, and caspase activation/processing were assessed.
- Caspase-3 null MCF-7 cells were also utilized to investigate the role of caspase-3.
Main Results:
- Caspase inhibition led to a distinct pre-apoptotic nuclear morphology characterized by convoluted nuclei and dilated nuclear envelopes/endoplasmic reticulum.
- This nuclear change preceded phosphatidylserine externalization, chromatin condensation, and DNA laddering.
- Caspase-3 processing occurred, but its substrate PARP was not cleaved, and caspase-3 null cells also showed this nuclear change, indicating caspase-3 is not required.
Conclusions:
- Effector caspases are not involved in the early nuclear morphological changes during chemical-induced apoptosis.
- A distinct pre-apoptotic nuclear morphology can be induced independently of caspase activation and downstream apoptotic events.
- These findings reveal a novel early nuclear event in apoptosis that is dissociated from effector caspase activity.