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[紫外线辐射诱导DNA水溶液中分子的损伤机制]

[Damage mechanisms of molecule in DNA aqueous solution induced by ultraviolet radiation].

作者信息

Yu D, Ke W

机构信息

Department of Biology, Jiangsu Provincial Key Open Laboratory, Nanjing Normal University, 210097 Nanjing.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2000 Jun;20(3):311-4.

Abstract

After ultraviolet radiation treated at various time, the Raman spectra of herring sperm DNA in aqueous solution were presented. The analytic results showed that first, the out-ring amino group numeration of cytosine C4 site have reducing in the form of Raman hypochromicity; but C4O ketone group of derivative uracil assumed have not emerge with Raman hyperchromiciuy, in UV-induced DNA only with water molecule join in; second, the electron cloud of the main-groove side in pyrimidine ring have a tendency of slanting toward C6 site, which was beneficial to the deamination of C-->U transition, after some cytosine formed dipyrimidine with another adjacent pyrimidine; and third, with UV radiation, the characteristic peak 616 cm-1 of uracil N3C4 has arisen. Its very important, because the quality of the N3C4 bond have a great difference between cytosine and uracil. The result have not supported the model that cytosine can direct to be come off amino group for form the ketone type uracilo depend on UV-induced, therefore we have found that the process of get involved in imino tautomer state was probable exist by Raman spectroscopic technique.

摘要

对鲱鱼精DNA水溶液进行不同时间的紫外线辐射后,给出了其拉曼光谱。分析结果表明,其一,胞嘧啶C4位的环外氨基数量以拉曼减色的形式减少;但仅在有水分子参与的紫外线诱导DNA中,衍生尿嘧啶的C4O酮基未以拉曼增色出现;其二,嘧啶环主沟侧的电子云有向C6位倾斜的趋势,这有利于一些胞嘧啶与另一个相邻嘧啶形成双嘧啶后C→U转变的脱氨基作用;其三,随着紫外线辐射,尿嘧啶N3C4的特征峰616 cm-1出现。这非常重要,因为胞嘧啶和尿嘧啶的N3C4键性质有很大差异。结果不支持胞嘧啶能依赖紫外线诱导直接脱去氨基形成酮型尿嘧啶的模型,因此我们通过拉曼光谱技术发现可能存在参与亚氨基互变异构状态的过程。

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