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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Osmolyte changes the binding affinity and mode of interaction of minor groove binder Hoechst 33258 with calf thymus DNA
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Osmolyte changes the binding affinity and mode of interaction of minor groove binder Hoechst 33258 with calf thymus DNA

机译:渗透液改变小沟结合剂Hoechst 33258与小牛胸腺DNA的结合亲和力和相互作用方式

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The aim of this work was to investigate the effect of altered water activity on Hoechst 33258-calf thymus DNA (CtDNA) interaction by using osmotic stress approach. Water activity was changed by using osmolytes viz., sucrose and triethylene glycol (TEG). We have reported the results of thermal denaturation, absorption and fluorescence spectroscopy and binding affinity measurements as a function of osmolytes concentration. TEG dramatically lowered the thermal stability of CtDNA, ΔT_m=-16 °C whereas sucrose induced very little decrease. Hoechst 33258 increases the stability of CtDNA, but in the presence of TEG, the ΔT_m was -37 °C and a marginal decrease was observed with sucrose. Binding affinity of Hoechst 33258 with CtDNA was found to be reduced from 4.75×10~7 to 0.16×10~7 M~(-1) in TEG and this was accompanied with the increased uptake of 74±2 water molecules. In the presence of sucrose this uptake of water molecules was found to be 30±1. Method of continuous variation suggests that the osmolytes lowered the stoichiometry of Hoechst 33258-CtDNA complex. On the contrary, van't Hoff plot revealed the hydrophobic interaction (ΔS=130.66 J mol~(-1)K~(-1)) between the Hoechst 33258 and CtDNA. The detailed absorption and fluorescence spectral measurements including the fluorescence lifetime and anisotropy indicated bound state of Hoechst 33258 in osmotic stress condition. Fluorescence lifetime measurement revealed that the contribution from the planar conformer of Hoechst 33258 dominated the binding interaction with CtDNA in presence of TEG. These results can be useful for understanding of interaction of Hoechst 33258 with genomic DNA in a complex environment having altered water activity.
机译:这项工作的目的是通过使用渗透胁迫方法研究改变水活度对Hoechst 33258-小牛胸腺DNA(CtDNA)相互作用的影响。通过使用渗透压剂即蔗糖和三甘醇(TEG)来改变水活度。我们已经报道了热变性,吸收和荧光光谱以及结合亲和力测量结果与渗透压浓度的关系。 TEG大大降低了CtDNA的热稳定性,ΔT_m= -16°C,而蔗糖几乎没有引起这种降低。 Hoechst 33258增加了CtDNA的稳定性,但在TEG存在下,ΔT_m为-37°C,蔗糖观察到边缘降低。在TEG中,Hoechst 33258与CtDNA的结合亲和力从4.75×10〜7降低至0.16×10〜7 M〜(-1),并伴随着74±2水分子的吸收增加。在蔗糖存在下,发现水分子的摄取为30±1。连续变化的方法表明,渗透压降低了Hoechst 33258-CtDNA复合物的化学计量。相反,范霍夫图显示了Hoechst 33258与CtDNA之间的疏水相互作用(ΔS= 130.66 J mol〜(-1)K〜(-1))。详细的吸收和荧光光谱测量(包括荧光寿命和各向异性)表明了Hoechst 33258在渗透胁迫条件下的结合状态。荧光寿命测量显示,在TEG存在下,来自Hoechst 33258的平面构象异构体的贡献支配了与CtDNA的结合相互作用。这些结果对于理解Hoechst 33258与基因组DNA在水活度变化的复杂环境中的相互作用可能很有用。

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