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利用毛细管电泳分析黑色素诱导的质粒DNA损伤

Analysis of plasmid DNA damage induced by melanin with capillary electrophoresis.

作者信息

Yu Sheng-Bing, Geng Jing, Zhou Ping, Feng Ai-Rong, Chen Xiang-Dong, Hu Ji-Ming

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, PR China.

出版信息

J Pharm Biomed Anal. 2007 Feb 19;43(3):816-21. doi: 10.1016/j.jpba.2006.09.014. Epub 2006 Oct 17.

Abstract

Dilute linear poly(N-isopropylacrylamide) (PNIPAM) in Tris-Mes-EDTA (TME) buffer was used as sieving matrix for capillary electrophoresis (CE) of plasmid DNA and plasmid topological isomers induced by melanin in uncoated capillary. At the optimized condition of 0.1% (w/v) PNIPAM in TME buffer, base line separation of the plasmid DNA ladder (2-12 kbp) was achieved within 15 min. Three positive clones with inserts of 468, 1147 and 1566 bp can be distinguished from the plasmid pUC 18 vector within 13 min. The migration order of the plasmid topological isomers in the dynamic coating matrix was confirmed by the enzymatically prepared and UV-induced plasmids. The covalently closed circular form appeared firstly, followed by the linear plasmid form and then the open circular form. The effect of bacterial melanin obtained from Pseudomonas maltophilia AT18 on plasmid pUC 18 was investigated by CE in uncoated capillary in vitro. Plasmid pUC 18 incubated with either melanin or copper ions alone sustained little DNA damage. The combination of melanin with Cu(II) can cause the plasmid pUC 18 conformational changes from covalently closed circular form to open form. Understanding the damage effect of melanin with copper ions on DNA would be important for the melanin-related application, such as photoprotective antioxidant in protecting the skin from cancer, pathophysiology research in clinic. The investigation of melanin induced plasmid conformational changes by CE in uncoated capillary also revealed that the application of the dynamic coating matrix could be extended to the study of plasmid conformational changes in other plasmid-based biological technologies.

摘要

在未涂层毛细管中,将线性聚(N-异丙基丙烯酰胺)(PNIPAM)稀释于Tris-Mes-EDTA(TME)缓冲液中,用作质粒DNA和黑色素诱导的质粒拓扑异构体毛细管电泳(CE)的筛分基质。在TME缓冲液中0.1%(w/v)PNIPAM的优化条件下,15分钟内实现了质粒DNA梯状条带(2 - 12 kbp)的基线分离。在13分钟内可将三个插入片段分别为468、1147和1566 bp的阳性克隆与质粒pUC 18载体区分开来。通过酶促制备和紫外线诱导的质粒,证实了动态涂层基质中质粒拓扑异构体的迁移顺序。共价闭合环状形式首先出现,其次是线性质粒形式,然后是开环形式。通过未涂层毛细管中的CE体外研究了嗜麦芽窄食单胞菌AT18产生的细菌黑色素对质粒pUC 18的影响。单独与黑色素或铜离子孵育的质粒pUC 18几乎没有DNA损伤。黑色素与Cu(II)的组合可导致质粒pUC 18的构象从共价闭合环状形式变为开放形式。了解黑色素与铜离子对DNA的损伤作用对于与黑色素相关的应用非常重要,例如在保护皮肤免受癌症的光保护抗氧化剂、临床病理生理学研究中。在未涂层毛细管中通过CE研究黑色素诱导的质粒构象变化还表明,动态涂层基质的应用可以扩展到其他基于质粒的生物技术中质粒构象变化的研究。

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Analysis of plasmid DNA damage induced by melanin with capillary electrophoresis.利用毛细管电泳分析黑色素诱导的质粒DNA损伤
J Pharm Biomed Anal. 2007 Feb 19;43(3):816-21. doi: 10.1016/j.jpba.2006.09.014. Epub 2006 Oct 17.

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