Abstract

MAPK phosphatase-1 (DUSP1/MKP-1) is a mitogen and stress-inducible dual specificity protein phosphatase, which can inactivate all three major classes of MAPK in mammalian cells. DUSP1/MKP-1 is implicated in cellular protection against a variety of genotoxic insults including hydrogen peroxide, ionizing radiation, and cisplatin, but its role in the interplay between different MAPK pathways in determining cell death and survival is not fully understood. We have used pharmacological and genetic tools to demonstrate that DUSP1/MKP-1 is an essential non-redundant regulator of UV-induced cell death in mouse embryo fibroblasts (MEFs). The induction of DUSP1/MKP-1 mRNA and protein in response to UV radiation is mediated by activation of the p38α but not the JNK1 or JNK2 MAPK pathways. Furthermore, we identify MSK1 and -2 and their downstream effectors cAMP-response element-binding protein/ATF1 as mediators of UV-induced p38α-dependent DUSP1/MKP-1 transcription. Dusp1/Mkp-1 null MEFs display increased signaling through both the p38α and JNK MAPK pathways and are acutely sensitive to UV-induced apoptosis. This lethality is rescued by the reintroduction of wild-type DUSP1/MKP-1 and by a mutant of DUSP1/MKP-1, which is unable to bind to either p38α or ERK1/2, but retains full activity toward JNK. Importantly, whereas small interfering RNA-mediated knockdown of DUSP1/MKP-1 sensitizes wild-type MEFs to UV radiation, DUSP1/MKP-1 knockdown in MEFS lacking JNK1 and -2 does not result in increased cell death. Our results demonstrate that cross-talk between the p38α and JNK pathways mediated by induction of DUSP1/MKP-1 regulates the cellular response to UV radiation.

Highlights

  • Dual specificity mitogen-activated protein kinase phosphatases (DUSPs or MKPs)2 act in direct opposition to dual speci

  • The ability of DUSP1/MKP-1 to regulate the activities of p38 and JNK signaling have been implicated in the responses to a wide variety of stress conditions, and mouse embryo fibroblasts (MEFs) lacking DUSP1/MKP-1 are sensitive to cisplatin, hydrogen peroxide, anisomycin, and ionizing radiation [11,12,13,14]

  • Our findings highlight a mechanism in which expression of DUSP1/MKP-1 mediates cross-talk between the p38 and JNK pathways to regulate the cellular response to UV and other DNA damaging agents

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Summary

Introduction

Dual specificity mitogen-activated protein kinase phosphatases (DUSPs or MKPs)2 act in direct opposition to dual speci-. Increased transcription of the DUSP1/MKP-1 gene and to sub- inducible expression of both DUSP1/MKP-1 mRNA and protein sequent dephosphorylation of both p38␣ and JNK MAPKs. is rescued in these cells by re-expression of wild-type p38␣, but not this mechanism is disrupted at high UV fluences, by a mutant in which the phosphoacceptor sites within the activaprobably as a result of UV-mediated inhibition of DUSP1/ tion loop of the kinase have been substituted by non-phosphory-

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