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新型双(10-甲基)氯化吖啶鎓与DNA的双插入结合及其对连接链长度的依赖性。

Bis-intercalative binding to DNA of novel bis(10-methyl)acridinium chlorides and its dependence on chain length of linker.

作者信息

Lown J W, Gunn B C, Chang R Y, Majumdar K C, Lee J S

出版信息

Can J Biochem. 1978 Nov;56(11):1006-15. doi: 10.1139/o78-159.

Abstract

The synthesis of a series of novel bis(10-methyl)acridinium compounds (both unsubstituted and the 6-chloro-2-methoxy substituted) linked by methylene bridges of lengths from (CH2)4 to (CH2)12 and in one case by spermine is described. Their ability to bind to duplex DNA was compared by their relative inhibition of E. coli DNA polymerase catalyzed DNA synthesis. It was determined that they function as DNA template inhibitors and do not affect the DNA polymerase directly. Their ability to function as bis-intercalators was assessed by a novel and convenient topoisomerase fluorescent assay. It was concluded that whereas the (CH2)4-linked compounds act only as monofunctional intercalators because of steric constraints the (CH2)6-, (CH2)8-, and (CH2)10-linked substituted bisacridinium compounds, as well as the (CH2)10- and (CH2)12- unsubstituted analogues, function as bis-intercalators with DNA.

摘要

描述了一系列通过长度从(CH2)4到(CH2)12的亚甲基桥连接的新型双(10-甲基)吖啶鎓化合物(包括未取代的和6-氯-2-甲氧基取代的),以及在一种情况下通过精胺连接的化合物。通过它们对大肠杆菌DNA聚合酶催化的DNA合成的相对抑制作用,比较了它们与双链DNA结合的能力。确定它们作为DNA模板抑制剂起作用,而不直接影响DNA聚合酶。通过一种新颖且便捷的拓扑异构酶荧光测定法评估了它们作为双嵌入剂的能力。得出的结论是,由于空间位阻,(CH2)4连接的化合物仅作为单功能嵌入剂起作用,而(CH2)6-、(CH2)8-和(CH2)10连接的取代双吖啶鎓化合物,以及(CH2)10-和(CH2)12-未取代的类似物,与DNA结合时作为双嵌入剂起作用。

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