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Published on: April 1, 2015
The application of BH3 mimetics in myeloid leukemias
Narissa Parry1, Helen Wheadon2, Mhairi Copland2
1Paul O'Gorman Leukaemia Research Centre, University of Glasgow, Glasgow, UK. n.parry.1@research.gla.ac.uk.
Abstract:
Execution of the intrinsic apoptotic pathway is controlled by the BCL-2 proteins at the level of the mitochondrial outer membrane (MOM). This family of proteins consists of prosurvival (e.g., BCL-2, MCL-1) and proapoptotic (e.g., BIM, BAD, HRK) members, the functional balance of which dictates the activation of BAX and BAK. Once activated, BAX/BAK form pores in the MOM, resulting in cytochrome c release from the mitochondrial intermembrane space, leading to apoptosome formation, caspase activation, and cleavage of intracellular targets. This pathway is induced by cellular stress including DNA damage, cytokine and growth factor withdrawal, and chemotherapy/drug treatment. A well-documented defense of leukemia cells is to shift the balance of the BCL-2 family in favor of the prosurvival proteins to protect against such intra- and extracellular stimuli. Small molecule inhibitors targeting the prosurvival proteins, named 'BH3 mimetics', have come to the fore in recent years to treat hematological malignancies, both as single agents and in combination with standard-of-care therapies. The most significant example of these is the BCL-2-specific inhibitor venetoclax, given in combination with standard-of-care therapies with great success in AML in clinical trials. As the number and variety of available BH3 mimetics increases, and investigations into applying these novel inhibitors to treat myeloid leukemias continue apace the need to evaluate where we currently stand in this rapidly expanding field is clear.
Insights
BH3 mimetics, such as venetoclax, are emerging as effective treatments for hematological malignancies like AML by targeting BCL-2 proteins. Further evaluation of these novel inhibitors is crucial for advancing leukemia therapy.
Area of Science:
- Cell Biology
- Molecular Oncology
- Biochemistry
Background:
- The intrinsic apoptotic pathway is regulated by BCL-2 family proteins at the mitochondrial outer membrane (MOM).
- Leukemia cells often evade apoptosis by upregulating prosurvival BCL-2 proteins.
- Dysregulation of BCL-2 protein balance is a key mechanism in leukemia survival.
Purpose of the Study:
- To review the current landscape of BH3 mimetics in treating hematological malignancies.
- To highlight the role of BCL-2 inhibitors, like venetoclax, in acute myeloid leukemia (AML).
- To underscore the need for evaluating emerging BH3 mimetics for myeloid leukemias.
Main Methods:
- Review of scientific literature on BCL-2 protein function and apoptosis.
- Analysis of clinical trial data for BH3 mimetics in hematological malignancies.
- Synthesis of current research on novel inhibitors for myeloid leukemias.
Main Results:
- BH3 mimetics effectively target prosurvival BCL-2 proteins, inducing apoptosis in cancer cells.
- Venetoclax, a BCL-2 inhibitor, has shown significant success in combination therapies for AML.
- The development of diverse BH3 mimetics offers new therapeutic avenues for leukemia.
Conclusions:
- BH3 mimetics represent a promising class of drugs for hematological malignancies.
- Targeting the BCL-2 family is a validated strategy for overcoming leukemia resistance to apoptosis.
- Continued research and evaluation of BH3 mimetics are essential for optimizing leukemia treatment.

