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Updated: May 15, 2025

Examining BCL-2 Family Function with Large Unilamellar Vesicles
Published on: October 5, 2012
The BCL-2 protein family: from discovery to drug development
Carlo M Croce1, David Vaux2,3, Andreas Strasser4,5
1Department of Cancer Biology and Genetics and Comprehensive Cancer Center, The Ohio State University, Columbus, OH, USA. Carlo.Croce@osumc.edu.
Abstract:
The landmark discovery of the BCL-2 gene and then its function marked the identification of inhibition of apoptotic cell death as a crucial novel mechanism driving cancer development and launched the quest to discover the molecular control of apoptosis. This work culminated in the generation of specific inhibitors that are now in clinical use, saving and improving tens of thousands of lives annually. Here, some of the original players of this story, describe the sequence of critical discoveries. The t(14;18) chromosomal translocation, frequently observed in follicular lymphoma, allowed the identification and the cloning of a novel oncogene (BCL-2) juxtaposed to the immunoglobulin heavy chain gene locus (IgH). Of note, BCL-2 acted in a distinct manner as compared to then already known oncogenic proteins like ABL and c-MYC. BCL-2 did not promote cell proliferation but inhibited cell death, as originally shown in growth factor dependent haematopoietic progenitor cell lines (e.g., FDC-P1) and in Eμ-Myc/Eμ-Bcl-2 double transgenic mice. Following a rapid expansion of the BCL-2 protein family, the Abbott Laboratories solved the first structure of BCL-XL and subsequently the BCL-XL/BAK peptide complex, opening the way to understanding the structures of other BCL-2 family members and, finally, to the generation of inhibitors of the different pro-survival BCL-2 proteins, thanks to the efforts of Servier/Norvartis, Genentech/WEHI, AbbVie, Amgen, Prelude and Gilead. Although the BCL-2 inhibitor Venetoclax is in clinical use and inhibitors of BCL-XL and MCL-1 are undergoing clinical trials, several questions remain on whether therapeutic windows can be achieved and what other agents should be used in combination with BH3 mimetics to achieve optimal therapeutic impact for cancer therapy. Finally, the control of the expression of BH3-only proteins and pro-survival BCL-2 family members needs to be better understood as this may identify novel targets for cancer therapy. This story is still not concluded!
Insights
The discovery of the BCL-2 gene revealed that inhibiting apoptotic cell death is key to cancer development. This led to targeted therapies like Venetoclax, improving cancer treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The discovery of the BCL-2 gene, identified through the t(14;18) chromosomal translocation in follicular lymphoma, revealed a novel mechanism of cancer development: the inhibition of apoptosis.
- Unlike previously known oncogenes, BCL-2 functions by preventing programmed cell death rather than promoting cell proliferation, as demonstrated in hematopoietic progenitor cell lines and transgenic mouse models.
Purpose of the Study:
- To recount the critical discoveries in understanding the BCL-2 gene family and its role in cancer.
- To highlight the development of apoptosis inhibitors as a therapeutic strategy.
- To discuss current challenges and future directions in targeting BCL-2 family proteins for cancer therapy.
Main Methods:
- Identification and cloning of the BCL-2 oncogene.
- Structural biology studies of BCL-XL and its complexes.
- Development and clinical evaluation of BCL-2 family protein inhibitors.
Main Results:
- The BCL-2 gene was identified as a key regulator of apoptosis, offering a new target for cancer therapy.
- Structural insights into BCL-2 family proteins facilitated the design of specific inhibitors.
- The BCL-2 inhibitor Venetoclax is clinically approved, with other inhibitors in trials.
Conclusions:
- Targeting apoptosis through BCL-2 inhibition has revolutionized cancer treatment, saving numerous lives.
- Further research is needed to optimize combination therapies and overcome resistance.
- Understanding the regulation of BH3-only proteins and pro-survival BCL-2 members may reveal new therapeutic targets.
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