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Interleukin-22 protects intestinal stem cells against genotoxic stress

机译:白介素22保护肠道干细胞免受遗传毒性压力

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摘要

Environmental genotoxic factors pose a challenge to the genomic integrity of epithelial cells at barrier surfaces that separate host organisms from the environment. They can induce mutations that, if they occur in epithelial stem cells, contribute to malignant transformation and cancer development(1-3). Genome integrity in epithelial stem cells is maintained by an evolutionarily conserved cellular response pathway, the DNA damage response (DDR). The DDR culminates in either transient cell-cycle arrest and DNA repair or elimination of damaged cells by apoptosis(4,5). Here we show that the cytokine interleukin-22 (IL-22), produced by group 3 innate lymphoid cells (ILC3) and gamma delta T cells, is an important regulator of the DDR machinery in intestinal epithelial stem cells. Using a new mouse model that enables sporadic inactivation of the IL-22 receptor in colon epithelial stem cells, we demonstrate that IL-22 is required for effective initiation of the DDR following DNA damage. Stem cells deprived of IL-22 signals and exposed to carcinogens escaped DDR-controlled apoptosis, contained more mutations and were more likely to give rise to colon cancer. We identified metabolites of glucosinolates, a group of phytochemicals contained in cruciferous vegetables, to be a widespread source of genotoxic stress in intestinal epithelial cells. These metabolites are ligands of the aryl hydrocarbon receptor (AhR)(6), and AhR-mediated signalling in ILC3 and gamma delta T cells controlled their production of IL-22. Mice fed with diets depleted of glucosinolates produced only very low levels of IL-22 and, consequently, the DDR in epithelial cells of mice on a glucosinolate-free diet was impaired. This work identifies a homeostatic network protecting stem cells against challenge to their genome integrity by AhR-mediated 'sensing' of genotoxic compounds from the diet. AhR signalling, in turn, ensures on-demand production of IL-22 by innate lymphocytes directly regulating components of the DDR in epithelial stem cells.
机译:环境遗传毒性因素对将宿主生物与环境隔离的屏障表面上皮细胞的基因组完整性提出了挑战。它们可以诱导突变,如果它们发生在上皮干细胞中,则有助于恶性转化和癌症发展(1-3)。上皮干细胞中的基因组完整性通过进化上保守的细胞应答途径,即DNA损伤应答(DDR)得以维持。 DDR最终达到瞬时细胞周期停滞和DNA修复或细胞凋亡消除受损细胞的作用(4,5)。在这里,我们显示了由第3组先天性淋巴样细胞(ILC3)和伽马三角洲T细胞产生的细胞因子白介素22(IL-22)是肠上皮干细胞中DDR机制的重要调节剂。使用能够使结肠上皮干细胞中的IL-22受体偶发失活的新小鼠模型,我们证明了IL-22是DNA损伤后有效启动DDR所必需的。被剥夺IL-22信号并暴露于致癌物的干细胞逃脱了DDR控制的凋亡,包含更多的突变,并且更有可能引起结肠癌。我们确定了芥子油苷(十字花科蔬菜中所含的一组植物化学物质)的代谢产物是肠上皮细胞遗传毒性应激的广泛来源。这些代谢物是芳烃受体(AhR)(6)的配体,ILC3和伽马三角洲T细胞中AhR介导的信号传导可控制其IL-22的产生。用缺乏芥子油苷的饮食喂养的小鼠仅产生非常低水平的IL-22,因此,使用不含芥子油苷的饮食的小鼠上皮细胞中的DDR受损。这项工作确定了一种稳态网络,通过AhR介导的饮食中遗传毒性化合物的“传感”保护干细胞免受其基因组完整性的挑战。反过来,AhR信号可确保直接调节上皮干细胞中DDR成分的先天淋巴细胞按需产生IL-22。

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  • 来源
    《Nature》 |2019年第7743期|249-253|共5页
  • 作者单位

    Inst Pasteur, Macrophages & Dev Immun, Paris, France;

    Charite Univ Med Berlin, Dept Microbiol Infect Dis & Immunol, Lab Innate Immun, Berlin, Germany;

    Deutsch Rheuma Forschungszentrum, Mucosal & Dev Immunol, Berlin, Germany;

    Johannes Gutenberg Univ Mainz, Univ Med Ctr, Dept Med Microbiol & Hyg, Mainz, Germany;

    Fed Inst Risk Assessment, Dept Food Safety, Berlin, Germany;

    Univ Duisburg Essen, Dept Mol Biol, Essen, Germany;

    Max Planck Inst Immunobiol & Epigenet, Freiburg, Germany;

    German Inst Human Nutr Potsdam Rehbruecke DIfE, Potsdam, Germany;

    Charite Univ Med Berlin, Dept Rheumatol & Clin Immunol, Berlin, Germany;

    Deutsch Rheuma Forschungszentrum, Innate Immun Rheumat Dis, Berlin, Germany;

    BIH, Berlin, Germany;

    Univ Potsdam, Inst Nutr Sci, Dept Nutr Toxicol, Nuthetal, Germany;

    Univ Freiburg, Inst Neuropathol, Fac Med, Freiburg, Germany;

    Cornell Univ, Jill Roberts Inst Res Inflammatory Bowel Dis, Joan & Sanford I Weill Dept Med, Dept Microbiol & Immunol,Weill Cornell Med, New York, NY 10021 USA;

    Univ Freiburg, Dept Med Microbiol, Freiburg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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