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HIPK2 catalytic activity and subcellular localization are regulated by activation-loop Y354 autophosphorylation.

Authors :
Siepi, Francesca
Gatti, Veronica
Camerini, Serena
Crescenzi, Marco
Soddu, Silvia
Source :
BBA - Molecular Cell Research. Jun2013, Vol. 1833 Issue 6, p1443-1453. 11p.
Publication Year :
2013

Abstract

Abstract: HIPK2 (homeodomain-interacting protein kinase-2) binds to and phosphorylates, at Ser and Thr residues, a large number of targets involved in cell division and cell fate decision in response to different physiological or stress stimuli. Inactivation of HIPK2 has been observed in human and mouse cancers supporting its role as a tumor suppressor. Despite the biological relevance of this kinase, very little is known on how HIPK2 becomes catalytically active. Based on sequence homologies, HIPK2 has been taxonomically classified as a subfamily member of the dual-specificity tyrosine-regulated kinases (DYRKs) and the activation-loop Y354 of HIPK2 has been found phosphorylated in different cells; however, the relevance of this Y phosphorylation is presently unknown. Here, we show that HIPK2, which is extensively phosphorylated at S/T sites throughout its functional domains, becomes catalytically active by autophosphorylation at the activation-loop Y354. In particular, we found that, in analogy to DYRKs, HIPK2-Y354 phosphorylation is an autocatalytic event and its prevention, through Y354 substitution with non-phosphorylatable amino acids or by using the kinase inhibitor purvalanol A, induces a strong reduction of the HIPK2 S/T-kinase activity on different substrates. Interestingly, at variance from DYRKs, inhibition of HIPK2-Y354 phosphorylation induces a strong out-of-target Y-kinase activity in cis and a strong cytoplasmic relocalization of the kinase. Together, these results demonstrate that the catalytic activity, substrate specificity, and subcellular localization of HIPK2 are regulated by autophosphorylation of its activation-loop Y354. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
01674889
Volume :
1833
Issue :
6
Database :
Academic Search Index
Journal :
BBA - Molecular Cell Research
Publication Type :
Academic Journal
Accession number :
89069721
Full Text :
https://doi.org/10.1016/j.bbamcr.2013.02.018