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PUMA binding induces partial unfolding within BCL-xL to disrupt p53 binding and promote apoptosis.


ABSTRACT: Following DNA damage, nuclear p53 induces the expression of PUMA, a BH3-only protein that binds and inhibits the antiapoptotic BCL-2 repertoire, including BCL-xL. PUMA, unique among BH3-only proteins, disrupts the interaction between cytosolic p53 and BCL-xL, allowing p53 to promote apoptosis via direct activation of the BCL-2 effector molecules BAX and BAK. Structural investigations using NMR spectroscopy and X-ray crystallography revealed that PUMA binding induced partial unfolding of two ?-helices within BCL-xL. Wild-type PUMA or a PUMA mutant incapable of causing binding-induced unfolding of BCL-xL equivalently inhibited the antiapoptotic BCL-2 repertoire to sensitize for death receptor-activated apoptosis, but only wild-type PUMA promoted p53-dependent, DNA damage-induced apoptosis. Our data suggest that PUMA-induced partial unfolding of BCL-xL disrupts interactions between cytosolic p53 and BCL-xL, releasing the bound p53 to initiate apoptosis. We propose that regulated unfolding of BCL-xL provides a mechanism to promote PUMA-dependent signaling within the apoptotic pathways.

SUBMITTER: Follis AV 

PROVIDER: S-EPMC3683295 | biostudies-literature | 2013 Mar

REPOSITORIES: biostudies-literature

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PUMA binding induces partial unfolding within BCL-xL to disrupt p53 binding and promote apoptosis.

Follis Ariele Viacava AV   Chipuk Jerry E JE   Fisher John C JC   Yun Mi-Kyung MK   Grace Christy R CR   Nourse Amanda A   Baran Katherine K   Ou Li L   Min Lie L   White Stephen W SW   Green Douglas R DR   Kriwacki Richard W RW  

Nature chemical biology 20130120 3


Following DNA damage, nuclear p53 induces the expression of PUMA, a BH3-only protein that binds and inhibits the antiapoptotic BCL-2 repertoire, including BCL-xL. PUMA, unique among BH3-only proteins, disrupts the interaction between cytosolic p53 and BCL-xL, allowing p53 to promote apoptosis via direct activation of the BCL-2 effector molecules BAX and BAK. Structural investigations using NMR spectroscopy and X-ray crystallography revealed that PUMA binding induced partial unfolding of two α-he  ...[more]

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