Targeting the extrinsic apoptotic pathway in cancer: lessons learned and future directions
Abstract:
Apoptosis is a metazoan process of controlled cell elimination that plays critical roles in embryonic development and adult tissue homeostasis. Apoptosis dysregulation contributes to several important diseases, including cancer. Two distinct yet interconnected signaling pathways control apoptosis by activating a core intracellular machinery of death proteases called caspases. The intrinsic apoptotic pathway engages caspases via members of the BCL-2 protein family and the mitochondria in reaction to severe cellular damage or stress. The extrinsic pathway activates caspases via cell-surface death receptors, which respond to cognate death ligands expressed on immune-effector cells. Tumor cells can acquire various apoptosis-evasion mechanisms; nevertheless, the transformed state of these cells makes them uniquely susceptible to apoptosis reactivation if resistance is circumvented. Molecular approaches to reengage the apoptotic pathways in cancer have been underway for over two decades. Gratifyingly, BCL-2 antagonists - which drive the intrinsic pathway - are beginning to bear clinical fruit. In contrast, clinical attempts to stimulate the extrinsic pathway with proapoptotic receptor agonists (PARAs) have been disappointing, despite compelling preclinical efficacy with this class of agents. Here, I discuss some of the possible reasons for this translational discrepancy and suggest strategies to overcome it with the next generation of PARAs.
Insights
Apoptosis, a programmed cell death process, is crucial for development and cancer treatment. While BCL-2 antagonists targeting the intrinsic pathway show promise, proapoptotic receptor agonists (PARAs) for the extrinsic pathway face clinical challenges.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Apoptosis, or programmed cell death, is vital for embryonic development and tissue homeostasis.
- Dysregulation of apoptosis is implicated in various diseases, notably cancer.
- Two main pathways, intrinsic and extrinsic, activate caspases to execute apoptosis.
Purpose of the Study:
- To explore the reasons behind the translational discrepancy between preclinical and clinical efficacy of proapoptotic receptor agonists (PARAs).
- To suggest strategies for developing next-generation PARAs to overcome current limitations in cancer therapy.
Main Methods:
- Review of existing literature on apoptosis signaling pathways (intrinsic and extrinsic).
- Analysis of clinical trial outcomes for BCL-2 antagonists and PARAs.
- Discussion of potential reasons for the failure of PARAs in clinical settings.
Main Results:
- BCL-2 antagonists targeting the intrinsic apoptotic pathway are demonstrating clinical success in cancer treatment.
- Clinical trials using PARAs to stimulate the extrinsic apoptotic pathway have yielded disappointing results despite strong preclinical data.
Conclusions:
- The intrinsic apoptotic pathway, targeted by BCL-2 antagonists, offers a viable therapeutic strategy for cancer.
- Overcoming the translational gap for PARAs requires novel strategies to enhance extrinsic pathway activation in cancer therapy.
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