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首页> 外文期刊>DNA repair >Efficient DNA interstrand crosslinking by 6-thioguanine and UVA radiation.
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Efficient DNA interstrand crosslinking by 6-thioguanine and UVA radiation.

机译:通过6-硫鸟嘌呤和UVA辐射进行有效的DNA链交联。

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摘要

Patients taking the immunosuppressant and anticancer thiopurines 6-mercaptopurine, azathioprine or 6-thioguanine (6-TG), develop skin cancer at a very high frequency. Their DNA contains 6-TG which absorbs ultraviolet A (UVA) radiation, and their skin is UVA hypersensitive, consistent with the formation of DNA photodamage. Here we demonstrate that UVA irradiation of 6-TG-containing DNA causes DNA interstrand crosslinking. In synthetic duplex oligodeoxynucleotides, the interstrand crosslinks (ICLs) can form between closely opposed 6-TG bases and, in a less favoured reaction, between 6-TG and normal bases on the opposite strand. In vivo, UVA irradiation of cultured cells containing 6-TG-substituted DNA also causes ICL formation and induces the chromosome aberrations that are characteristically associated with this type of DNA lesion. 6-TG/UVA activates the Fanconi anemia (FA) pathway via monoubiquitination of the FANCD2 protein. Cells defective in the FA pathway or other factors involved in ICL processing, such as XPF and DNA Polzeta, are all hypersensitive to killing by 6-TG/UVA-consistent with a significant contribution of photochemical ICLs to the cytotoxicity of this treatment. Our findings suggest that sunlight-exposed skin of thiopurine treated patients may experience chronic photochemical DNA damage that requires constant intervention of the FA pathway.
机译:服用免疫抑制剂和抗癌硫嘌呤6-巯基嘌呤,硫唑嘌呤或6-硫鸟嘌呤(6-TG)的患者极易发生皮肤癌。他们的DNA含有6-TG,可吸收紫外线A(UVA)辐射,并且皮肤对UVA过敏,与DNA光损伤的形成一致。在这里,我们证明了含有6-TG的DNA的UVA照射会引起DNA链间交联。在合成的双链寡聚脱氧核苷酸中,链间交联(ICL)可以在紧密相对的6-TG碱基之间形成,而在不太有利的反应中,可以在6-TG与相反链上的正常碱基之间形成。在体内,对含有6-TG取代的DNA的培养细胞进行UVA照射也会导致ICL形成,并诱导与这种类型的DNA损伤特征性相关的染色体畸变。 6-TG / UVA通过FANCD2蛋白的单泛素化激活Fanconi贫血(FA)途径。 FA途径中有缺陷的细胞或参与ICL加工的其他因素(例如XPF和DNA Polzeta)均对6-TG / UVA杀伤非常敏感,这与光化学ICL对这种治疗的细胞毒性有重大贡献。我们的发现表明,接受硫代嘌呤治疗的患者的阳光直射皮肤可能会经历慢性光化学DNA损伤,需要持续干预FA途径。

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