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首页> 外文期刊>Beilstein journal of organic chemistry. >p-Pyridinyl oxime carbamates: synthesis, DNA binding, DNA photocleaving activity and theoretical photodegradation studies
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p-Pyridinyl oxime carbamates: synthesis, DNA binding, DNA photocleaving activity and theoretical photodegradation studies

机译:对吡啶基肟氨基甲酸酯:合成,DNA结合,DNA光学纤维活性和理论光降解研究

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A number of p-pyridinyl oxime carbamate derivatives were prepared upon the reaction of the corresponding oximes with isocyanates. These novel compounds reacted photochemically in the presence of supercoiled plasmid DNA. Structure–activity relationship (SAR) studies revealed that the substituent on the imine group was not affecting the extend of the DNA damage, whereas the substituent of the carbamate group was critical, with the halogenated derivatives to be able to cause extensive single and double stranded DNA cleavages, acting as “synthetic nucleases”, independently of oxygen and pH. Calf thymus–DNA affinity studies showed a good-to-excellent affinity of selected both active and non-active derivatives. Preliminary theoretical studies were performed, in an effort to explain the reasons why some derivatives cause photocleavage and some others not, which were experimentally verified using triplet state activators and quenchers. These theoretical studies seem to allow the prediction of the activity of derivatives able to pass intersystem crossing to their triplet energy state and thus create radicals able to damage DNA. With this study, it is shown that oxime carbamate derivatives have the potential to act as novel effective photobase generating DNA-photocleavers, and are proposed as new leads for “on demand” biotechnological applications in drug discovery and medicine.
机译:在相应的肟与异氰酸酯的反应后制备许多对吡啶基肟氨基甲酸酯衍生物。这些新化合物在超硅脂DNA存在下光学化学地反应。结构 - 活性关系(SAR)研究表明,亚胺组的取代基没有影响DNA损伤的延伸,而氨基甲酸酯基的取代基至关重要,卤化衍生物能够引起广泛的单链和双链DNA裂解,作为“合成核酸酶”,独立于氧气和pH值。小牛胸腺-DNA亲和研究表明,对选定的活性和非活性衍生物的良好亲和力。进行初步理论研究,努力解释一些衍生物引起光细荧光的原因和一些不使用的原因,这是使用三重态状态活化剂和猝灭剂进行实验验证的。这些理论研究似乎允许预测能够通过穿越其三重态能状态的衍生物的活性,从而产生能够损害DNA的自由基。通过这项研究,表明肟氨基甲酸酯衍生物具有作为新的有效光酶产生DNA光纤维的潜力,并且被提出为“按需”在药物发现和药物中的生物技术应用的新引线。

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