Review
Emerging understanding of Bcl-2 biology: Implications for neoplastic progression and treatment

https://doi.org/10.1016/j.bbamcr.2015.03.012Get rights and content
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Highlights

  • Here we review recent advances in understanding Bcl-2 family members.

  • Recent X-ray crystal structures have provided insight into Bax and Bak activation.

  • Some lymphoma-associated BCL2 mutations were shown to enhance Bcl-2 function.

  • The Bcl-2-selective BH3 mimetic ABT-199 has shown promising clinical activity.

Abstract

Bcl-2, the founding member of a family of apoptotic regulators, was initially identified as the protein product of a gene that is translocated and overexpressed in greater than 85% of follicular lymphomas (FLs). Thirty years later we now understand that anti-apoptotic Bcl-2 family members modulate the intrinsic apoptotic pathway by binding and neutralizing the mitochondrial permeabilizers Bax and Bak as well as a variety of pro-apoptotic proteins, including the cellular stress sensors Bim, Bid, Puma, Bad, Bmf and Noxa. Despite extensive investigation of all of these proteins, important questions remain. For example, how Bax and Bak breach the outer mitochondrial membrane remains poorly understood. Likewise, how the functions of anti-apoptotic Bcl-2 family members such as eponymous Bcl-2 are affected by phosphorylation or cancer-associated mutations has been incompletely defined. Finally, whether Bcl-2 family members can be successfully targeted for therapeutic advantage is only now being investigated in the clinic. Here we review recent advances in understanding Bcl-2 family biology and biochemistry that begin to address these questions.

Abbreviations

AID
activation-induced cytidine deaminase
AML
acute myelogenous leukemia
BH
Bcl-2 homology
CLL
chronic lymphocytic leukemia
CR
complete response
DLBCL
diffuse large B-cell lymphoma
FL
follicular lymphoma
MM
multiple myeloma
PR
partial response
R/R
relapsed or refractory
SNV
single nucleotide variant
TM
transmembrane

Keywords

Apoptosis
BH3 mimetic
Activation-induced cytidine deaminase
Mutation
Follicular lymphoma

Cited by (0)

1

Equal contribution as first authors.

2

Equal contribution as senior authors.