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ZEB1 通过抑制上皮细胞中的 DNA 修复糖苷酶 MPG 促进炎症和向炎症驱动型癌的进展。

ZEB1 promotes inflammation and progression towards inflammation-driven carcinoma through repression of the DNA repair glycosylase MPG in epithelial cells.

机构信息

Group of Transcriptional Regulation of Gene Expression, Dept of Oncology and Hematology, IDIBAPS, Barcelona, Spain.

Dept of Microbiology, Hospital Ramon y Cajal Health Research Institute (IRYCIS), Spanish Network of Infectious Diseases (REIPI), National Health Institute Carlos III (ISCIII), Madrid, Spain.

出版信息

Gut. 2019 Dec;68(12):2129-2141. doi: 10.1136/gutjnl-2018-317294. Epub 2019 Jul 31.

Abstract

OBJECTIVE

Chronic inflammation is a risk factor in colorectal cancer (CRC) and reactive oxygen species (ROS) released by the inflamed stroma elicit DNA damage in epithelial cells. We sought to identify new drivers of ulcerative colitis (UC) and inflammatory CRC.

DESIGN

The study uses samples from patients with UC, mouse models of colitis and CRC and mice deficient for the epithelial-to-mesenchymal transition factor ZEB1 and the DNA repair glycosylase N-methyl-purine glycosylase (MPG). Samples were analysed by immunostaining, qRT-PCR, chromatin immunoprecipitation assays, microbiota next-generation sequencing and ROS determination.

RESULTS

ZEB1 was induced in the colonic epithelium of UC and of mouse models of colitis. Compared with wild-type counterparts, -deficient mice were partially protected from experimental colitis and, in a model of inflammatory CRC, they developed fewer tumours and exhibited lower levels of DNA damage (8-oxo-dG) and higher expression of MPG. Knockdown of ZEB1 in CRC cells inhibited 8-oxo-dG induction by oxidative stress (HO) and inflammatory cytokines (interleukin (IL)1β). ZEB1 bound directly to the MPG promoter whose expression inhibited. This molecular mechanism was validated at the genetic level and the crossing of -deficient and -deficient mice reverted the reduced inflammation and tumourigenesis in the former. ZEB1 expression in CRC cells induced ROS and IL1β production by macrophages that, in turn, lowered MPG in CRC cells thus amplifying a positive loop between both cells to promote DNA damage and inhibit DNA repair.

CONCLUSIONS

ZEB1 promotes colitis and inflammatory CRC through the inhibition of MPG in epithelial cells, thus offering new therapeutic strategies to modulate inflammation and inflammatory cancer.

摘要

目的

慢性炎症是结直肠癌(CRC)的一个风险因素,炎症基质释放的活性氧(ROS)会在上皮细胞中引发 DNA 损伤。我们试图确定溃疡性结肠炎(UC)和炎症性 CRC 的新驱动因素。

设计

本研究使用来自 UC 患者、结肠炎和 CRC 小鼠模型以及上皮-间充质转化因子 ZEB1 和 DNA 修复糖苷酶 N-甲基嘌呤糖苷酶(MPG)缺失的小鼠的样本。通过免疫染色、qRT-PCR、染色质免疫沉淀分析、微生物组下一代测序和 ROS 测定来分析样本。

结果

ZEB1 在 UC 和结肠炎小鼠模型的结肠上皮中被诱导。与野生型相比,-缺陷小鼠在实验性结肠炎中部分受到保护,并且在炎症性 CRC 模型中,它们形成的肿瘤更少,DNA 损伤(8-氧代-dG)水平更低,MPG 表达更高。CRC 细胞中 ZEB1 的敲低抑制了氧化应激(HO)和炎性细胞因子(白细胞介素(IL)1β)诱导的 8-氧代-dG 诱导。ZEB1 直接结合 MPG 启动子,抑制其表达。该分子机制在遗传水平上得到了验证,-缺陷和-缺陷小鼠的杂交使前者的炎症和肿瘤发生减少得到了逆转。CRC 细胞中 ZEB1 的表达诱导巨噬细胞产生 ROS 和 IL1β,反过来又降低 CRC 细胞中的 MPG,从而放大这两种细胞之间的正反馈回路,以促进 DNA 损伤并抑制 DNA 修复。

结论

ZEB1 通过抑制上皮细胞中的 MPG 促进结肠炎和炎症性 CRC,从而为调节炎症和炎症性癌症提供新的治疗策略。

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