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Caspase-2-mediated cleavage of Mdm2 creates a p53-induced positive feedback loop.


ABSTRACT: Caspase-2 is an evolutionarily conserved caspase, yet its biological function and cleavage targets are poorly understood. Caspase-2 is activated by the p53 target gene product PIDD (also known as LRDD) in a complex called the Caspase-2-PIDDosome. We show that PIDD expression promotes growth arrest and chemotherapy resistance by a mechanism that depends on Caspase-2 and wild-type p53. PIDD-induced Caspase-2 directly cleaves the E3 ubiquitin ligase Mdm2 at Asp 367, leading to loss of the C-terminal RING domain responsible for p53 ubiquitination. As a consequence, N-terminally truncated Mdm2 binds p53 and promotes its stability. Upon DNA damage, p53 induction of the Caspase-2-PIDDosome creates a positive feedback loop that inhibits Mdm2 and reinforces p53 stability and activity, contributing to cell survival and drug resistance. These data establish Mdm2 as a cleavage target of Caspase-2 and provide insight into a mechanism of Mdm2 inhibition that impacts p53 dynamics upon genotoxic stress.

SUBMITTER: Oliver TG 

PROVIDER: S-EPMC3160283 | biostudies-literature | 2011 Jul

REPOSITORIES: biostudies-literature

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Caspase-2-mediated cleavage of Mdm2 creates a p53-induced positive feedback loop.

Oliver Trudy G TG   Meylan Etienne E   Chang Gregory P GP   Xue Wen W   Burke James R JR   Humpton Timothy J TJ   Hubbard Diana D   Bhutkar Arjun A   Jacks Tyler T  

Molecular cell 20110701 1


Caspase-2 is an evolutionarily conserved caspase, yet its biological function and cleavage targets are poorly understood. Caspase-2 is activated by the p53 target gene product PIDD (also known as LRDD) in a complex called the Caspase-2-PIDDosome. We show that PIDD expression promotes growth arrest and chemotherapy resistance by a mechanism that depends on Caspase-2 and wild-type p53. PIDD-induced Caspase-2 directly cleaves the E3 ubiquitin ligase Mdm2 at Asp 367, leading to loss of the C-termina  ...[more]

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