The BCL2 family: from apoptosis mechanisms to new advances in targeted therapy

Семейство BCL2: от механизмов апоптоза к новым достижениям таргетной терапии
Meike Vogler, Yannick Braun, Victoria M. Smith, Mike‐Andrew Westhoff, Raquel Pereira, Nadja M. Pieper, Marius Anders, Manon Callens, Tim Vervliet, Maha Abbas, Salvador Macip, Ralf Schmid, Geert Bultynck, Martin J.S. Dyer
2025-03-20

BCL2 familyBH3 mimeticsPROTACsapoptosisvenetoclax
Abstract The B cell lymphoma 2 (BCL2) protein family critically controls apoptosis by regulating the release of cytochrome c from mitochondria. In this cutting-edge review, we summarize the basic biology regulating the BCL2 family including canonical and non-canonical functions, and highlight milestones from basic research to clinical applications in cancer and other pathophysiological conditions. We review laboratory and clinical development of BH3-mimetics as well as more recent approaches including proteolysis targeting chimeras (PROTACs), antibody-drug conjugates (ADCs) and tools targeting the BH4 domain of BCL2. The first BCL2-selective BH3-mimetic, venetoclax, showed remarkable efficacy with manageable toxicities and has transformed the treatment of several hematologic malignancies. Following its success, several chemically similar BCL2 inhibitors such as sonrotoclax and lisaftoclax are currently under clinical evaluation, alone and in combination. Genetic analysis highlights the importance of BCL-X L and MCL1 across different cancer types and the possible utility of BH3-mimetics targeting these proteins. However, the development of BH3-mimetics targeting BCL-X L or MCL1 has been more challenging, with on-target toxicities including thrombocytopenia for BCL-X L and cardiac toxicities for MCL1 inhibitors precluding clinical development. Tumor-specific BCL-X L or MCL1 inhibition may be achieved by novel targeting approaches using PROTACs or selective drug delivery strategies and would be transformational in many subtypes of malignancy. Taken together, we envision that the targeting of BCL2 proteins, while already a success story of translational research, may in the foreseeable future have broader clinical applicability and improve the treatment of multiple diseases.
1
Genetic analyses identify BCL-XL and MCL1 as important across multiple cancer types, but direct inhibitors have faced thrombocytopenia and cardiac toxicity, respectively.
2
PROTACs and selective drug-delivery strategies may enable tumor-specific BCL-XL or MCL1 inhibition, while ADCs and BH4-domain targeting broaden therapeutic approaches.
3
Sonrotoclax and lisaftoclax are chemically similar BCL2 inhibitors undergoing clinical evaluation as monotherapies and combination treatments.
4
The BCL2 protein family regulates apoptosis primarily by controlling mitochondrial cytochrome c release and also has canonical and non-canonical functions.
5
Venetoclax, the first BCL2-selective BH3 mimetic, demonstrated substantial efficacy with manageable toxicity and transformed treatment for several hematologic malignancies.

The BCL2 protein family in cancer and other pathophysiological conditions

The mechanisms, biological functions, and therapeutic targeting of BCL2-family proteins, including BH3-mimetics and emerging targeted approaches

Publication Details
Publication Date
2025-03-20
Journal
Publisher
ISSN
Cited by
358
Access Type
Author Information
Authors
Meike Vogler
Yannick Braun
Victoria M. Smith
Mike‐Andrew Westhoff
Raquel Pereira
Nadja M. Pieper
Marius Anders
Manon Callens
Tim Vervliet
Maha Abbas
Salvador Macip
Ralf Schmid
Geert Bultynck
Martin J.S. Dyer
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%