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</script>AbstractBackgroundApoptosis is a form of programmed cell death that is regulated by the Bcl-2 family and caspase family of proteins. The caspase cascade responsible for executing cell death following cytochromecrelease is well described; however the distinct roles of caspases-9, -3 and -7 during this process are not completely defined.ResultsHere we demonstrate several unique functions for each of these caspases during cell death. Specific inhibition of caspase-9 allows for efficient release of cytochromec, but blocks changes in mitochondrial morphology and ROS production. We show that caspase-9 can cleave Bid into tBid at amino acid 59 and that this cleavage of Bid is required for ROS production following serum withdrawal. We also demonstrate that caspase-3-deficient MEFs are less sensitive to intrinsic cell death stimulation, yet have higher ROS production. In contrast, caspase-7-deficient MEFs are not resistance to intrinsic cell death, but remain attached to the ECM.ConclusionsTaken together, these data suggest that caspase-9 is required for mitochondrial morphological changes and ROS production by cleaving and activating Bid into tBid. After activation by caspase-9, caspase-3 inhibits ROS production and is required for efficient execution of apoptosis, while effector caspase-7 is required for apoptotic cell detachment.
Caspase 7, B-Lymphocytes, Caspase 3, Cytochromes c, Apoptosis, Cell Biology, Fibroblasts, Caspase 9, Cell Line, Extracellular Matrix, Mitochondria, Mice, Models, Animal, Animals, Reactive Oxygen Species, Cells, Cultured, Research Article
Caspase 7, B-Lymphocytes, Caspase 3, Cytochromes c, Apoptosis, Cell Biology, Fibroblasts, Caspase 9, Cell Line, Extracellular Matrix, Mitochondria, Mice, Models, Animal, Animals, Reactive Oxygen Species, Cells, Cultured, Research Article
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| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Top 1% |
