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烷基和芳基磺酰基对吡啶乙酮肟是高效的DNA光裂解剂。

Alkyl and aryl sulfonyl p-pyridine ethanone oximes are efficient DNA photo-cleavage agents.

作者信息

Andreou Nicolaos-Panagiotis, Dafnopoulos Konstantinos, Tortopidis Christos, Koumbis Alexandros E, Koffa Maria, Psomas George, Fylaktakidou Konstantina C

机构信息

Laboratory of Organic, Bioorganic and Natural Product Chemistry, Molecular Biology and Genetics Department, Democritus University of Thrace, University Campus, Dragana, 68100 Alexandroupolis, Greece.

Laboratory of Organic Chemistry, Chemistry Department, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

J Photochem Photobiol B. 2016 May;158:30-8. doi: 10.1016/j.jphotobiol.2016.02.017. Epub 2016 Feb 27.

Abstract

Sulfonyloxyl radicals, readily generated upon UV irradiation of p-pyridine sulfonyl ethanone oxime derivatives, effectively cleave DNA, in a pH independent manner, and under either aerobic or anaerobic conditions. p-Pyridine sulfonyl ethanone oxime derivatives were synthesized from the reaction of p-pyridine ethanone oxime with the corresponding sulfonyl chlorides in good to excellent yields. All compounds, at a concentration of 100μM, were irradiated at 312nm for 15min, after incubation with supercoiled circular pBluescript KS II DNA and resulted in extended single- and double- strand cleavages. The cleavage ability was found to be concentration dependent, with some derivatives exhibiting activity even at nanomolar levels. Besides that, p-pyridine sulfonyl ethanone oxime derivatives showed good affinity to DNA, as it was observed with UV interaction and viscosity experiments with CT DNA and competitive studies with ethidium bromide. The compounds interact to CT DNA probably by non-classical intercalation (i.e. groove-binding) and at a second step they may intercalate within the DNA base pairs. The fluorescence emission spectra of pre-treated EB-DNA exhibited a significant or moderate quenching. Comparing with the known aryl carbonyloxyl radicals the sulfonyloxyl ones are more powerful, with both aryl and alkyl sulfonyl substituted derivatives to exhibit DNA photo-cleaving ability, in significantly lower concentrations. These properties may serve in the discovery of new leads for "on demand" biotechnological and medical applications.

摘要

对吡啶磺酰基乙酮肟衍生物经紫外线照射后可轻易产生磺酰氧基自由基,该自由基能在有氧或无氧条件下,以与pH无关的方式有效切割DNA。对吡啶磺酰基乙酮肟衍生物由对吡啶乙酮肟与相应的磺酰氯反应合成,产率良好至优异。将所有化合物在100μM浓度下与超螺旋环状pBluescript KS II DNA孵育后,于312nm处照射15分钟,结果导致单链和双链断裂延长。发现切割能力与浓度有关,一些衍生物即使在纳摩尔水平也表现出活性。除此之外,对吡啶磺酰基乙酮肟衍生物对DNA表现出良好的亲和力,这在与CT DNA的紫外线相互作用和粘度实验以及与溴化乙锭的竞争研究中得到了观察。这些化合物可能通过非经典嵌入(即沟槽结合)与CT DNA相互作用,在第二步中它们可能嵌入DNA碱基对之间。预处理的EB-DNA的荧光发射光谱表现出显著或适度的猝灭。与已知的芳基羰氧基自由基相比,磺酰氧基自由基更具活性,芳基和烷基磺酰基取代的衍生物均能在显著更低的浓度下表现出DNA光切割能力。这些特性可能有助于发现用于“按需”生物技术和医学应用的新先导化合物。

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