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Alterations of the actin polymerization status as an apoptotic morphological effector in HL-60 cells
1Department of Pathology and Laboratory Medicine, University of California at Los Angeles and Jonsson Comprehensive Cancer Center, Los Angeles, California 90024, USA.
Abstract:
The alterations of the cytoskeletal actin network have been implicated as a morphological effector in apoptosis. However, studies directly linking actin change to the morphological events in apoptosis are lacking. This study quantitatively examined the effect of actin alteration on the camptothecin (CPT)-induced apoptotic process in HL-60 cells. Actin alteration was induced by two distinctive types of agent: the polymerization-stimulating agent, Jasplakinolide (Jas), and the polymerization-blocking agent, cytochalasin B (CB). The actin polymerization status was measured by two complementary methods: the cell pellet-based DNase I inhibition method, and the individual cell-based quantitative fluorescence image analysis (QFIA) assay. Actin polymerization induced by Jas caused apoptosis directly. By contrast, CB, an actin polymerization-blocking agent, partially inhibited CPT-induced apoptosis. A similar inhibition of the CPT-induced apoptosis response was observed with a more specific actin depolymerization agent, cytochalasin E. The alterations of the actin polymerization status occurred in three sequential steps during the apoptotic process: first polymerization, followed by depolymerization, and finally degradation. However, compared with CPT-induced apoptosis, Jas-induced apoptosis was characterized by pronounced actin polymerization that corresponded morphologically with prominent membrane blebbing, but less apoptotic body formation. Furthermore, DNase I activity, which is normally inhibited by G-actin, was specifically detected in Jas-treated cells. These results show that the regulation of actin polymerization is an important apoptotic morphological effector, whereas the alterations of the actin polymerization status by chemicals have profound effects not only on altering the morphology of apoptotic cells, but on apoptosis induction in HL-60 cells as well.
Insights
Altering the actin cytoskeleton impacts apoptosis. Jasplakinolide (Jas) directly induced apoptosis via actin polymerization, while cytochalasin B (CB) partially inhibited camptothecin (CPT)-induced apoptosis, revealing actin
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Cytoskeletal actin network alterations are linked to apoptosis morphology.
- Direct evidence connecting actin changes to specific apoptotic events is limited.
- Understanding actin's role in apoptosis is crucial for cell death research.
Purpose of the Study:
- To quantitatively assess the impact of actin alteration on camptothecin (CPT)-induced apoptosis in HL-60 cells.
- To investigate the role of actin polymerization and depolymerization in apoptotic morphology.
- To elucidate the sequential changes in actin polymerization status during apoptosis.
Main Methods:
- Actin alteration induced by Jasplakinolide (Jas) and cytochalasin B (CB).
- Actin polymerization status measured by DNase I inhibition assay.
- Quantitative fluorescence image analysis (QFIA) for individual cell actin status.
Main Results:
- Jas-induced actin polymerization directly triggered apoptosis with membrane blebbing.
- CB and cytochalasin E partially inhibited CPT-induced apoptosis by blocking actin polymerization.
- Apoptosis involved sequential actin polymerization, depolymerization, and degradation.
Conclusions:
- Actin polymerization regulation is a key morphological effector in apoptosis.
- Chemical modulation of actin polymerization significantly affects apoptotic morphology and induction.
- Distinct actin polymerization patterns correlate with specific apoptotic morphological features.