TIPRL Inhibits Protein Phosphatase 4 Activity and Promotes H2AX Phosphorylation in the DNA Damage Response: e0145938

Despite advances in our understanding of protein kinase regulation in the DNA damage response, the mechanism that controls protein phosphatase activity in this pathway is unclear. Unlike kinases, the activity and specificity of serine/threonine phosphatases is governed largely by their associated pr...

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Published inPloS one Vol. 10; no. 12
Main Authors Rosales, Kimberly Romero, Reid, Michael A, Yang, Ying, Tran, Thai Q, Wang, Wen-I, Lowman, Xazmin, Pan, Min, Kong, Mei
Format Journal Article
LanguageEnglish
Published 01.12.2015
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Summary:Despite advances in our understanding of protein kinase regulation in the DNA damage response, the mechanism that controls protein phosphatase activity in this pathway is unclear. Unlike kinases, the activity and specificity of serine/threonine phosphatases is governed largely by their associated proteins. Here we show that Tip41-like protein (TIPRL), an evolutionarily conserved binding protein for PP2A-family phosphatases, is a negative regulator of protein phosphatase 4 (PP4). Knockdown of TIPRL resulted in increased PP4 phosphatase activity and formation of the active PP4-C/PP4R2 complex known to dephosphorylate gamma -H2AX. Thus, overexpression of TIPRL promotes phosphorylation of H2AX, and increases gamma -H2AX positive foci in response to DNA damage, whereas knockdown of TIPRL inhibits gamma -H2AX phosphorylation. In correlation with gamma -H2AX levels, we found that TIPRL overexpression promotes cell death in response to genotoxic stress, and knockdown of TIPRL protects cells from genotoxic agents. Taken together, these data demonstrate that TIPRL inhibits PP4 activity to allow for H2AX phosphorylation and the subsequent DNA damage response.
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ISSN:1932-6203
DOI:10.1371/journal.pone.0145938