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使用单分子原子力光谱法区分插入剂诺加霉素与经典插入剂柔红霉素的插入作用。

Discriminating Intercalative Effects of Threading Intercalator Nogalamycin, from Classical Intercalator Daunomycin, Using Single Molecule Atomic Force Spectroscopy.

作者信息

Banerjee T, Banerjee S, Sett S, Ghosh S, Rakshit T, Mukhopadhyay R

机构信息

Department of Biological Chemistry, Indian Association for the Cultivation of Science, Kolkata, 700 032, India.

出版信息

PLoS One. 2016 May 16;11(5):e0154666. doi: 10.1371/journal.pone.0154666. eCollection 2016.

Abstract

DNA threading intercalators are a unique class of intercalating agents, albeit little biophysical information is available on their intercalative actions. Herein, the intercalative effects of nogalamycin, which is a naturally-occurring DNA threading intercalator, have been investigated by high-resolution atomic force microscopy (AFM) and spectroscopy (AFS). The results have been compared with those of the well-known chemotherapeutic drug daunomycin, which is a non-threading classical intercalator bearing structural similarity to nogalamycin. A comparative AFM assessment revealed a greater increase in DNA contour length over the entire incubation period of 48 h for nogalamycin treatment, whereas the contour length increase manifested faster in case of daunomycin. The elastic response of single DNA molecules to an externally applied force was investigated by the single molecule AFS approach. Characteristic mechanical fingerprints in the overstretching behaviour clearly distinguished the nogalamycin/daunomycin-treated dsDNA from untreated dsDNA-the former appearing less elastic than the latter, and the nogalamycin-treated DNA distinguished from the daunomycin-treated DNA-the classically intercalated dsDNA appearing the least elastic. A single molecule AFS-based discrimination of threading intercalation from the classical type is being reported for the first time.

摘要

DNA穿线嵌入剂是一类独特的嵌入剂,尽管关于它们的嵌入作用的生物物理信息很少。在此,通过高分辨率原子力显微镜(AFM)和光谱(AFS)研究了天然存在的DNA穿线嵌入剂诺加霉素的嵌入作用。将结果与著名的化疗药物柔红霉素进行了比较,柔红霉素是一种与诺加霉素结构相似的非穿线经典嵌入剂。AFM的比较评估显示,在48小时的整个孵育期内,诺加霉素处理的DNA轮廓长度增加更大,而柔红霉素处理的情况下轮廓长度增加更快。通过单分子AFS方法研究了单个DNA分子对外加力的弹性响应。过度拉伸行为中的特征性机械指纹清楚地将诺加霉素/柔红霉素处理的双链DNA与未处理的双链DNA区分开来——前者比后者弹性小,诺加霉素处理的DNA与柔红霉素处理的DNA区分开来——经典嵌入的双链DNA弹性最小。首次报道了基于单分子AFS区分穿线嵌入与经典类型的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a74/4868319/df1541dcd7f7/pone.0154666.g001.jpg

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