Circ0087385 promotes DNA damage in benzo(a)pyrene-induced lung cancer development by upregulating CYP1A1.
Nan ZhangMiaoyun QiuShuwei YaoHanyu ZhouHan ZhangYangyang JiaXin LiXintong ChenXun LiYun ZhouYi-Guo JiangPublished in: Toxicological sciences : an official journal of the Society of Toxicology (2024)
Increasing environmental genotoxic chemicals have been shown to induce epigenetic alterations. However, the interaction between genetics and epigenetics in chemical carcinogenesis is still not fully understood. Here, we constructed an in vitro human lung carcinogenesis model (16HBE-T) by treating human bronchial epithelial cells with a typical significant carcinogen benzo(a)pyrene (BaP). We identified a novel circular RNA, circ0087385, which was overexpressed in 16HBE-T and human lung cancer cell lines, as well as in lung cancer tissues and serum exosomes from lung cancer patients. The upregulated circ0087385 after exposure to BaP promoted DNA damage in the early stage of chemical carcinogenesis and affected the cell cycle, proliferation, and apoptosis of the malignantly transformed cells. Overexpression of circ0087385 enhanced the expression of cytochrome P450 1A1 (CYP1A1), which is crucial for metabolically activating BaP. Interfering with circ0087385 or CYP1A1 reduced the levels of ultimate carcinogen benzo(a)pyrene diol epoxide (BPDE) and BPDE-DNA adducts. Interfering with CYP1A1 partially reversed the DNA damage induced by high expression of circ0087385, as well as decreased the level of BPDE and BPDE-DNA adducts. These findings provide novel insights into the interaction between epigenetics and genetics in chemical carcinogenesis which are crucial for understanding the epigenetic and genetic toxicity of chemicals.
Keyphrases
- dna damage
- oxidative stress
- cell cycle
- endothelial cells
- early stage
- poor prognosis
- cell proliferation
- dna repair
- cell cycle arrest
- induced apoptosis
- gene expression
- dna methylation
- signaling pathway
- diabetic rats
- circulating tumor
- high glucose
- cell free
- induced pluripotent stem cells
- stem cells
- single molecule
- cell death
- mesenchymal stem cells
- genome wide
- radiation therapy
- squamous cell carcinoma
- long non coding rna
- lymph node
- sentinel lymph node
- circulating tumor cells