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Autophosphorylation and Pin1 binding coordinate DNA damage-induced HIPK2 activation and cell death.


ABSTRACT: Excessive genome damage activates the apoptosis response. Protein kinase HIPK2 is a key regulator of DNA damage-induced apoptosis. Here, we deciphered the molecular mechanism of HIPK2 activation and show its relevance for DNA damage-induced apoptosis in cellulo and in vivo. HIPK2 autointeracts and site-specifically autophosphorylates upon DNA damage at Thr880/Ser882. Autophosphorylation regulates HIPK2 activity and mutation of the phosphorylation-acceptor sites deregulates p53 Ser46 phosphorylation and apoptosis in cellulo. Moreover, HIPK2 autophosphorylation is conserved between human and zebrafish and is important for DNA damage-induced apoptosis in vivo. Mechanistically, autophosphorylation creates a binding signal for the phospho-specific isomerase Pin1. Pin1 links HIPK2 activation to its stabilization by inhibiting HIPK2 polyubiquitination and modulating Siah-1-HIPK2 interaction. Concordantly, Pin1 is required for DNA damage-induced HIPK2 stabilization and p53 Ser46 phosphorylation and is essential for induction of apotosis both in cellulo and in zebrafish. Our results identify an evolutionary conserved mechanism regulating DNA damage-induced apoptosis.

SUBMITTER: Bitomsky N 

PROVIDER: S-EPMC3831444 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

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Autophosphorylation and Pin1 binding coordinate DNA damage-induced HIPK2 activation and cell death.

Bitomsky Nadja N   Conrad Elisa E   Moritz Christian C   Polonio-Vallon Tilman T   Sombroek Dirk D   Schultheiss Kathrin K   Glas Carolina C   Greiner Vera V   Herbel Christoph C   Mantovani Fiamma F   del Sal Giannino G   Peri Francesca F   Hofmann Thomas G TG  

Proceedings of the National Academy of Sciences of the United States of America 20131021 45


Excessive genome damage activates the apoptosis response. Protein kinase HIPK2 is a key regulator of DNA damage-induced apoptosis. Here, we deciphered the molecular mechanism of HIPK2 activation and show its relevance for DNA damage-induced apoptosis in cellulo and in vivo. HIPK2 autointeracts and site-specifically autophosphorylates upon DNA damage at Thr880/Ser882. Autophosphorylation regulates HIPK2 activity and mutation of the phosphorylation-acceptor sites deregulates p53 Ser46 phosphorylat  ...[more]

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