PPM1D is a neuroblastoma oncogene and therapeutic target in childhood neural tumors

Author:

Milosevic JelenaORCID,Fransson Susanne,Gulyas Miklos,Gallo-Oller Gabriel,Olsen Thale K,Treis Diana,Wickström Malin,Elfman Lotta HM,Sveinbjornsson Baldur,Hertwig Falk,Bartenhagen Christoph,Reinsbach Susanne,Wilhelm Margareta,Abel Frida,Javanmardi Niloufar,Thankaswamy-Kosalai Subazini,Eissler Nina,Kock Anna,Shi Yao,Tanino Keiji,Hehir-Kwa Jane Y,Mensenkamp Arjen,Tytgat Godelieve AM,Kanduri Chandrasekhar,Holmberg Johan,Gisselsson David,Molenaar Jan J,Jongmans Marjolijn,Fischer Matthias,Kool Marcel,Sakaguchi Kazuyasu,Baryawno Ninib,Martinsson Tommy,Johnsen John Inge,Kogner Per

Abstract

SUMMARYMajority of cancers harbor alterations of the tumor suppressor TP53. However, childhood cancers, including unfavorable neuroblastoma, often lack TP53 mutations despite frequent loss of p53 function, suggesting alternative p53 inactivating mechanisms.Here we show that p53-regulating PPM1D at chromosome 17q22.3 is linked to aggressive tumors and poor prognosis in neuroblastoma. We identified that WIP1-phosphatase encoded by PPM1D, is activated by frequent segmental 17q-gain further accumulated during clonal evolution, gene-amplifications, gene-fusions or gain-of-function somatic and germline mutations. Pharmacological and genetic manipulation established WIP1 as a druggable target in neuroblastoma. Genome-scale CRISPR-Cas9 screening demonstrated PPM1D genetic dependency in TP53 wild-type neuroblastoma cell lines, and shRNA PPM1D knockdown significantly delayed in vivo tumor formation. Establishing a transgenic mouse model overexpressing PPM1D showed that these mice develop cancers phenotypically and genetically similar to tumors arising in mice with dysfunctional p53 when subjected to low-dose irradiation. Tumors include T-cell lymphomas harboring Notch1-mutations, Pten-deletions and p53-accumulation, adenocarcinomas and PHOX2B-expressing neuroblastomas establishing PPM1D as a bona fide oncogene in wtTP53 cancer and childhood neuroblastoma. Pharmacological inhibition of WIP1 suppressed the growth of neural tumors in nude mice proposing WIP1 as a therapeutic target in neural childhood tumors.

Publisher

Cold Spring Harbor Laboratory

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