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Cell Death Associated with Abnormal Mitosis Observed by Confocal Imaging in Live Cancer Cells
Authors:Asher Castiel  Leonid Visochek  Leonid Mittelman  Yael Zilberstein  Francoise Dantzer  Shai Izraeli  Malka Cohen-Armon
Institution:1.Cancer Research Center, Sheba Medical Center;2.The Neufeld Cardiac Research Institute, Tel-Aviv University;3.Department of Physiology and Pharmacology, Tel-Aviv University;4.Imaging Unit, Sackler Faculty of Medicine, Tel-Aviv University;5.Biotechnology and Cell Signaling, Ecole Superieure de Biotechnologie Strasbourg;6.Department of Human Molecular Genetics and Biochemistry, Tel-Aviv University
Abstract:Phenanthrene derivatives acting as potent PARP1 inhibitors prevented the bi-focal clustering of supernumerary centrosomes in multi-centrosomal human cancer cells in mitosis. The phenanthridine PJ-34 was the most potent molecule. Declustering of extra-centrosomes causes mitotic failure and cell death in multi-centrosomal cells. Most solid human cancers have high occurrence of extra-centrosomes. The activity of PJ-34 was documented in real-time by confocal imaging of live human breast cancer MDA-MB-231 cells transfected with vectors encoding for fluorescent γ-tubulin, which is highly abundant in the centrosomes and for fluorescent histone H2b present in the chromosomes. Aberrant chromosomes arrangements and de-clustered γ-tubulin foci representing declustered centrosomes were detected in the transfected MDA-MB-231 cells after treatment with PJ-34. Un-clustered extra-centrosomes in the two spindle poles preceded their cell death. These results linked for the first time the recently detected exclusive cytotoxic activity of PJ-34 in human cancer cells with extra-centrosomes de-clustering in mitosis, and mitotic failure leading to cell death. According to previous findings observed by confocal imaging of fixed cells, PJ-34 exclusively eradicated cancer cells with multi-centrosomes without impairing normal cells undergoing mitosis with two centrosomes and bi-focal spindles. This cytotoxic activity of PJ-34 was not shared by other potent PARP1 inhibitors, and was observed in PARP1 deficient MEF harboring extracentrosomes, suggesting its independency of PARP1 inhibition. Live confocal imaging offered a useful tool for identifying new molecules eradicating cells during mitosis.
Keywords:Cancer Biology  Issue 78  Medicine  Cellular Biology  Molecular Biology  Biomedical Engineering  Anatomy  Physiology  Genetics  Neoplastic Processes  Pharmacologic Actions  Live confocal imaging  Extra-centrosomes clustering/de-clustering  Mitotic Catastrophe cell death  PJ-34  myocardial infarction  microscopy  imaging
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