Literature DB >> 24962574

Heavy metal-induced metallothionein expression is regulated by specific protein phosphatase 2A complexes.

Liping Chen1, Lu Ma1, Qing Bai1, Xiaonian Zhu1, Jinmiao Zhang1, Qing Wei1, Daochuan Li1, Chen Gao1, Jie Li1, Zhengbao Zhang1, Caixia Liu1, Zhini He1, Xiaowen Zeng1, Aihua Zhang2, Weidong Qu3, Zhixiong Zhuang4, Wen Chen5, Yongmei Xiao6.   

Abstract

Induction of metallothionein (MT) expression is involved in metal homeostasis and detoxification. To identify the key pathways that regulate metal-induced cytotoxicity, we investigate how phosphorylated metal-responsive transcription factor-1 (MTF-1) contributed to induction of MT expression. Immortal human embryonic kidney cells (HEK cells) were treated with seven kinds of metals including cadmium chloride (CdCl2), zinc sulfate (ZnSO4), copper sulfate(CuSO4), lead acetate (PbAc), nickel sulfate (NiSO4), sodium arsenite (NaAsO2), and potassium bichromate (K2Cr2O7). The MT expression was induced in a dose-response and time-dependent manner upon various metal treatments. A cycle of phosphorylation and dephosphorylation was required for translocation of MTF-1 from cytoplasm to nucleus, leading to the up-regulation of MTs expression. Protein phosphatase 2A (PP2A) participated in regulating MT expression through dephosphorylation of MTF-1. A loss-of-function screen revealed that the specific PP2A complexes containing PR110 were involved in metal-induced MT expression. Suppression of PP2A PR110 in HEK cells resulted in the persistent MTF-1 phosphorylation and the disturbance of MTF-1 nuclear translocation, which was concomitant with a significant decrease of MT expression and enhanced cytotoxicity in HEK cells. Notably, MTF-1 was found in complex with specific PP2A complexes containing the PR110 subunit upon metal exposure. Furthermore, we identify that the dephosphorylation of MTF-1 at residue Thr-254 is directly regulated by PP2A PR110 complexes and responsible for MTF-1 activation. Taken together, these findings delineate a novel pathway that determines cytotoxicity in response to metal treatments and provide new insight into the role of PP2A in cellular stress response.
© 2014 by The American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  Cell Biology; Cytotoxicity; Metal-responsive Transcription Factor-1; Metallothione; Metallothioneins; Protein Phosphatase 2 (PP2A); Protein Phosphatase 2A; Stress Response; Transcription Factor

Mesh:

Substances:

Year:  2014        PMID: 24962574      PMCID: PMC4139248          DOI: 10.1074/jbc.M114.548677

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


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