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Cell type specific involvement of death receptor and mitochondrial pathways in drug-induced apoptosis
1University Children's Hospital, Prittwitzstr. 43, D-89075 Ulm, Germany.
Abstract:
Apoptosis in response to cellular stress such as treatment with cytotoxic drugs is mediated by effector caspases (caspase-3) which can be activated by different initiator pathways. Here, we report on a cell type specific triggering of death receptor and/or mitochondrial pathways upon drug treatment. In type I cells (BJAB), both the receptor and the mitochondrial pathway were activated upon drug treatment, since blockade of either the receptor pathway by overexpression of dominant negative FADD (FADD-DN) or of the mitochondrial pathway by overexpression of Bcl-X(L) only partially inhibited apoptosis. Drug treatment induced formation of a FADD- and caspase-8-containing CD95 death-inducing signaling complex (DISC) in type I cells resulting in activation of caspase-8 as the most apical caspase. In contrast, in type II cells (Jurkat), apoptosis was predominantly controlled by mitochondria, since overexpression of Bcl-2 completely blocked drug-induced apoptosis, while overexpression of FADD-DN had no protective effect. In these cells, caspases including caspase-8 were activated by mitochondria-driven signaling events and no DISC was detected despite expression levels of CD95, FADD and caspase-8 proteins comparable to type I cells. Likewise, drug-induced CD95 aggregation was predominantly found in type I cells. Bid was cleaved prior to mitochondrial alterations in type I cells providing a molecular link between caspase-8 activation and mitochondrial perturbations, whereas in type II cells, Bid was cleaved downstream of mitochondria. Our findings of a cell type specific response to cytotoxic drugs have implications for the identification of molecular parameters for chemosensitivity or resistance in different tumor cells.
Insights
Cytotoxic drugs trigger apoptosis via distinct cell-specific pathways. Type I cells activate both death receptor and mitochondrial pathways, while Type II cells primarily rely on mitochondria for apoptosis initiation.
Area of Science:
- Cellular biology
- Molecular mechanisms of apoptosis
Background:
- Apoptosis, or programmed cell death, is crucial for development and tissue homeostasis.
- Cytotoxic drugs induce apoptosis through effector caspases (e.g., caspase-3), activated by initiator pathways.
- Understanding these pathways is key to cancer therapy and drug resistance.
Purpose of the Study:
- To investigate cell type-specific differences in apoptosis induction by cytotoxic drugs.
- To elucidate the roles of death receptor and mitochondrial pathways in drug-induced apoptosis.
- To identify molecular determinants of chemosensitivity and resistance.
Main Methods:
- Utilized BJAB (Type I) and Jurkat (Type II) cell lines.
- Employed overexpression of dominant-negative FADD (FADD-DN) and Bcl-X(L) to block specific apoptotic pathways.
- Analyzed DISC formation, caspase activation, CD95 aggregation, and Bid cleavage.
Main Results:
- Type I cells activated both death receptor (DISC formation, caspase-8 activation) and mitochondrial pathways.
- Type II cells predominantly utilized the mitochondrial pathway, with minimal receptor pathway involvement.
- Bid cleavage occurred upstream of mitochondrial events in Type I cells and downstream in Type II cells.
Conclusions:
- Apoptosis induction by cytotoxic drugs is cell type-specific, involving differential activation of death receptor and mitochondrial pathways.
- These findings highlight distinct molecular signatures for chemosensitivity and resistance in different cancer cells.
- The study provides insights into targeted therapeutic strategies based on cellular apoptotic mechanisms.