4.8 Article

c-Jun N-terminal phosphorylation antagonises recruitment of the Mbd3/NuRD repressor complex

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NATURE
卷 469, 期 7329, 页码 231-235

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NATURE PUBLISHING GROUP
DOI: 10.1038/nature09607

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资金

  1. Marie Curie Intraeuropean Fellowships [PIEF-GA-2008-220566, MEIF-CT-2006-041119]
  2. Cancer Research UK
  3. Medical Research Council [G0800784, G0800784B] Funding Source: researchfish
  4. MRC [G0800784] Funding Source: UKRI

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AP-1 (activator protein 1) activity is strongly induced in response to numerous signals, including growth factors, cytokines and extracellular stresses(1). The proto-oncoprotein c-Jun belongs to the AP-1 group of transcription factors and it is a crucial regulator of intestinal progenitor proliferation and tumorigenesis(2-4). An important mechanism of AP-1 stimulation is phosphorylation of c-Jun by the Jun amino-terminal kinases (JNKs)(1). N-terminal phosphorylation of the c-Jun transactivation domain increases target gene transcription(5,6), but a molecular explanation was elusive. Here we show that unphosphorylated, but not N-terminally phosphorylated c-Jun, interacts with Mbd3 and thereby recruits the nucleosome remodelling and histone deacetylation (NuRD) repressor complex. Mbd3 depletion in colon cancer cells increased histone acetylation at AP-1-dependent promoters, which resulted in increased target gene expression. The intestinal stem cell marker lgr5 was identified as a novel target gene controlled by c-Jun/Mbd3. Gut-specific conditional deletion of mbd3 (mbd3(Delta G/Delta G) mice) stimulated c-Jun activity and increased progenitor cell proliferation. In response to inflammation, mdb3 deficiency resulted in colonic hyperproliferation and mbd3(Delta G/Delta G) mice showed markedly increased susceptibility to colitis-induced tumorigenesis. Notably, concomitant inactivation of a single allele of c-jun reverted physiological and pathological hyperproliferation, as well as the increased tumorigenesis in mbd3(Delta G/Delta G) mice. Thus the transactivation domain of c-Jun recruits Mbd3/NuRD to AP-1 target genes to mediate gene repression, and this repression is relieved by JNK-mediated c-Jun N-terminal phosphorylation.

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