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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Binding studies of guggulsterone-E to calf thymus DNA by multi-spectroscopic, calorimetric and molecular docking studies
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Binding studies of guggulsterone-E to calf thymus DNA by multi-spectroscopic, calorimetric and molecular docking studies

机译:通过多光谱,量热和分子对接研究对Guggulsterone-e对CALF胸腺DNA的结合研究

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摘要

AbstractGuggulsterone, a sterol found in plants is used as an ayurvedic medicine for many diseases such as obesity, internal tumors, ulcers etc. E and Z are two isoforms of guggulsterone, wherein guggulsterone-E (GUGE) has also been shown to have anticancer potential. Most of the anticancer drugs target nucleic acids. Therefore, we studied the mode of interaction between ctDNA and GUGE using UV–Vis, fluorescence and CD spectroscopy, isothermal calorimetry along with molecular docking studies. Hoechst 3325, ethidium bromide and rhodamine-B displacement experiments confirms that GUGE binds in the minor groove of DNA. ITC results further suggest these interactions to be feasible and spontaneous with hydrogen bond formation and van der waals interactions. Lastly, molecular docking also suggests GUGE to be a minor groove binder interacting through a single hydrogen bond formation between OH group of GUGE and nitrogen (N3) of adenosine (A6).Graphical AbstractDisplay OmittedHighlights
机译:<![cdata [ 抽象 Guggulsterone,植物中发现的甾醇被用作肥胖,内部肿瘤等许多疾病的甾醇,溃疡等.e和z是Guggulstone的两种同种型,其中Guggulstone-e(Guge)也已被证明具有抗癌潜力。大多数抗癌药物靶向核酸。因此,我们研究了使用UV-VI,荧光和CD光谱,等温热量与分子对接研究的CTDNA和GUGE之间的相互作用模式。 Hoechst 3325,溴化乙锭和罗丹明-B位置换实验证实了Guge在DNA的次要凹槽中结合。 ITC结果进一步表明这些相互作用与氢键形成和范德华相互作用是可行和自发的。最后,分子对接还表明Guge是通过腺苷(A6)的OH基团(A6)之间的OH基团(N3)之间的单个氢键形成相互作用。 图形抽象 显示省略 突出显示

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