An IRAK1–PIN1 signalling axis drives intrinsic tumour resistance to radiation therapy Journal Article


Authors: Liu, P. H.; Shah, R. B.; Li, Y.; Arora, A.; Ung, P. M. U.; Raman, R.; Gorbatenko, A.; Kozono, S.; Zhou, X. Z.; Brechin, V.; Barbaro, J. M.; Thompson, R.; White, R. M.; Aguirre-Ghiso, J. A.; Heymach, J. V.; Lu, K. P.; Silva, J. M.; Panageas, K. S.; Schlessinger, A.; Maki, R. G.; Skinner, H. D.; de Stanchina, E.; Sidi, S.
Article Title: An IRAK1–PIN1 signalling axis drives intrinsic tumour resistance to radiation therapy
Abstract: Drug-based strategies to overcome tumour resistance to radiotherapy (R-RT) remain limited by the single-agent toxicity of traditional radiosensitizers (for example, platinums) and a lack of targeted alternatives. In a screen for compounds that restore radiosensitivity in p53 mutant zebrafish while tolerated in non-irradiated wild-type animals, we identified the benzimidazole anthelmintic oxfendazole. Surprisingly, oxfendazole acts via the inhibition of IRAK1, a kinase thus far implicated in interleukin-1 receptor (IL-1R) and Toll-like receptor (TLR) immune responses. IRAK1 drives R-RT in a pathway involving IRAK4 and TRAF6 but not the IL-1R/TLR–IRAK adaptor MyD88. Rather than stimulating nuclear factor-κB, radiation-activated IRAK1 prevented apoptosis mediated by the PIDDosome complex (comprising PIDD, RAIDD and caspase-2). Countering this pathway with IRAK1 inhibitors suppressed R-RT in tumour models derived from cancers in which TP53 mutations predict R-RT. Moreover, IRAK1 inhibitors synergized with inhibitors of PIN1, a prolyl isomerase essential for IRAK1 activation in response to pathogens and, as shown here, in response to ionizing radiation. These data identify an IRAK1 radiation-response pathway as a rational chemoradiation therapy target. © 2019, The Author(s), under exclusive licence to Springer Nature Limited.
Journal Title: Nature Cell Biology
Volume: 21
Issue: 2
ISSN: 1465-7392
Publisher: Nature Publishing Group  
Date Published: 2019-02-01
Start Page: 203
End Page: 213
Language: English
DOI: 10.1038/s41556-018-0260-7
PUBMED: 30664786
PROVIDER: scopus
PMCID: PMC6428421
DOI/URL:
Notes: Source: Scopus
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  1. Richard Mark White
    62 White
  2. Arshi Arora
    35 Arora