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首页> 外文期刊>Chemistry & biology >XPF-dependent DNA breaks and RNA polymerase II arrest induced by antitumor DNA interstrand crosslinking-mimetic alkaloids
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XPF-dependent DNA breaks and RNA polymerase II arrest induced by antitumor DNA interstrand crosslinking-mimetic alkaloids

机译:抗肿瘤DNA链间交联模拟生物碱诱导XPF依赖性DNA断裂和RNA聚合酶II阻滞

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摘要

Trabectedin and Zalypsis are two potent anticancer tetrahydroisoquinoline alkaloids that can form a covalent bond with the amino group of a guanine in selected triplets of DNA duplexes and eventually give rise to double-strand breaks. Using well-defined in vitro and in vivo assays, we show that the resulting DNA adducts stimulate, in a concentration-dependent manner, cleavage by the XPF/ERCC1 nuclease on the strand opposite to that bonded by the drug. They also inhibit RNA synthesis by: (1) preventing binding of transcription factors like Sp1 to DNA, and (2) arresting elongating RNA polymerase II at the same nucleotide position regardless of the strand they are located on. Structural models provide a rationale for these findings and highlight the similarity between this type of DNA modification and an interstrand crosslink.
机译:Trabectedin和Zalypsis是两种有效的抗癌四氢异喹啉生物碱,它们可以与DNA三联体的选定三联体中鸟嘌呤的氨基形成共价键,并最终引起双链断裂。使用定义明确的体外和体内试验,我们显示所得的DNA加合物以浓度依赖性方式刺激XPF / ERCC1核酸酶在与药物结合的链相反的链上进行切割。它们还通过以下方式抑制RNA的合成:(1)防止Sp1等转录因子与DNA结合,以及(2)延长的RNA聚合酶II停在相同的核苷酸位置,无论它们位于何处。结构模型为这些发现提供了理论依据,并突出了这种类型的DNA修饰与链间交联之间的相似性。

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