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Behavior of nuclear matrix proteins during camptothecin-induced apoptosis in HL-60 human leukemia cells
1Dipartimento di Morfologia Umana Normale, Università di Trieste, Italy.
Abstract:
In this study we focused our attention on the behavior of four nuclear matrix proteins during the various stages of apoptosis in the HL-60 cell line exposed to the DNA topoisomerase I inhibitor, camptothecin. We have examined the following antigens by immunocytochemical techniques: (i) the 180-kDa nucleolar isoform of DNA topoisomerase II; (ii) a 126-kDa polypeptide of nuclear bodies; (iii) a 125-kDa protein; and (iv) a 160-kDa polypeptide which are known to be components of the matrix inner network. Indirect immunofluorescence experiments were performed to follow these nuclear matrix antigens during apoptosis. Moreover, the ultrastructural localization of both 125- and 160-kDa proteins was investigated by electron microscope immunocytochemistry with gold-conjugated secondary antibodies. While the antibody to the nucleolar isoform of DNA topoisomerase II gave a fluorescent pattern that was well-maintained until the late phases of apoptosis, the other three nuclear antigens showed marked modifications in their distribution. A common feature, particularly evident for 125- and 160-kDa proteins, was their absence from cap-shaped chromatin marginations, whereas they were present in the areas of remaining decondensed chromatin. The 126-kDa polypeptide concentrated progressively in an irregular mass at the opposite side of the crescentic caps and then broke up in fine spots. The 125- and 160-kDa proteins localized in the nucleolus and precisely within certain granules which are known to appear in the nucleolar area after camptothecin administration. These results show that, in addition to the well-known chromatin changes, nuclear organization undergoes other rearrangements during the apoptotic process.
Insights
This study tracked nuclear matrix proteins during apoptosis induced by camptothecin in HL-60 cells. Nuclear organization changes significantly, with specific proteins relocating and altering distribution during programmed cell death.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Apoptosis involves significant cellular restructuring.
- Nuclear matrix proteins play roles in maintaining nuclear architecture.
- Camptothecin, a DNA topoisomerase I inhibitor, induces apoptosis.
Purpose of the Study:
- To investigate the behavior of four nuclear matrix proteins during apoptosis.
- To examine the dynamic changes in nuclear organization induced by camptothecin.
- To determine the ultrastructural localization of specific nuclear matrix proteins.
Main Methods:
- Immunocytochemistry was used to detect nuclear matrix antigens.
- Indirect immunofluorescence tracked protein distribution during apoptosis.
- Electron microscopy with immunogold labeling visualized protein localization.
Main Results:
- DNA topoisomerase II showed stable localization during apoptosis.
- Three other nuclear antigens (126, 125, and 160 kDa) exhibited altered distribution.
- 125- and 160-kDa proteins localized to nucleolar granules appearing post-camptothecin treatment.
Conclusions:
- Nuclear matrix organization undergoes substantial rearrangements during apoptosis.
- Specific nuclear matrix proteins redistribute and change localization.
- These findings reveal dynamic nuclear structural changes beyond chromatin alterations in apoptosis.