Sequence differences between BAX and BAK core domains manifest as differences in their interactions with lipids

Author:

Miller Michelle S.12ORCID,Cowan Angus D.12,Brouwer Jason M.12,Smyth Sean T.1,Peng Liuyu3,Wardak Ahmad Z.1,Uren Rachel T.12,Luo Cindy1,Roy Michael J.12ORCID,Shah Sayali12,Tan Ziwen12,Reid Gavin E.345,Colman Peter M.12ORCID,Czabotar Peter E.12ORCID

Affiliation:

1. Walter and Eliza Hall Institute of Medical Research Parkville Vic. Australia

2. Department of Medical Biology University of Melbourne Parkville Vic. Australia

3. School of Chemistry University of Melbourne Parkville Vic. Australia

4. Department of Biochemistry and Pharmacology University of Melbourne Parkville Vic. Australia

5. Bio21 Molecular Science and Biotechnology Institute University of Melbourne Parkville Vic. Australia

Abstract

The B‐cell lymphoma 2 (BCL2) family members, BCL2‐associated protein X (BAX) and BCL2 homologous antagonist killer (BAK), are required for programmed cell death via the mitochondrial pathway. When cells are stressed, damaged or redundant, the balance of power between the BCL2 family of proteins shifts towards BAX and BAK, allowing their transition from an inactive, monomeric state to a membrane‐active oligomeric form that releases cytochrome c from the mitochondrial intermembrane space. That oligomeric state has an essential intermediate, a symmetric homodimer of BAX or BAK. Here we describe crystal structures of dimers of the core domain of BAX, comprising its helices α2–α5. These structures provide an atomic resolution description of the interactions that drive BAX homo‐dimerisation and insights into potential interaction between core domain dimers and membrane lipids. The previously identified BAK lipid‐interacting sites are not conserved with BAX and are likely to determine the differences between them in their interactions with lipids. We also describe structures of heterodimers of BAK/BAX core domains, yielding further insight into the differences in lipid binding between BAX and BAK.

Funder

National Health and Medical Research Council

Leukemia and Lymphoma Society

Publisher

Wiley

Subject

Cell Biology,Molecular Biology,Biochemistry

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