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Binding studies of pyriproxyfen to DNA by multispectroscopic atomic force microscopy and molecular modeling methods.

机译:通过多光谱原子力显微镜和分子建模方法研究吡虫洛芬与DNA的结合。

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In this work, multispectroscopic atomic force microscopy and molecular modeling [ONIOM 2(B3LYP/6-31++G(d,p): Universal Force Field (UFF)) level] techniques were used to study the interaction between Calf-Thymus-DNA (CT-DNA) and pyriproxyfen (PYR) insecticide. The binding constant of PYR with double-strand deoxyribonucleic acid (ds-DNA) was obtained by ultraviolet-visible absorbance spectroscopy as 2.8x10(4) at 20degreesC. Thermodynamic parameters, that is, [Greek capital Delta]H, [Greek capital Delta]Sdegrees, and [Greek capital Delta]G, were -53.82[THIN SPACE]kJ mol(-1), 96.11[THIN SPACE]J mol(-1), and -82.46[THIN SPACE]KJ mol(-1), respectively. Thermal denaturation study of DNA with PYR revealed the [Greek capital Delta]T(m) of 3.0 and 6.0degreesC at r(i)=0.5 and 1.0, respectively. The Fourier transform infrared study showed a major interaction of PYR with G-C and A-T base pairs and a minor perturbation of the backbone PO(2) group. Further, PYR induces detectable changes in the circular dichroism spectrum of CT-DNA. In fluorimetric studies, the dynamic enhancement constants (k(D)) and bimolecular enhancement constant (k(B)) were calculated, which showed that the fluorescence enhancement was initiated by a static process in the ground state. The hybrid of quantum mechanical/molecular mechanics theoretical calculations revealed that the interaction is base sequence dependent, and PYR interacts more with DNA via the AT base sequence. From the data we concluded that PYR may interact with ds-DNA via two modes: intercalating and outside groove binding.
机译:在这项工作中,多光谱原子力显微镜和分子建模[ONIOM 2(B3LYP / 6-31 ++ G(d,p):Universal Force Field(UFF))level]技术用于研究小牛胸腺- DNA(CT-DNA)和吡吡氧芬(PYR)杀虫剂。 PYR与双链脱氧核糖核酸(ds-DNA)的结合常数通过紫外-可见吸收光谱在20℃下以2.8×10(4)获得。热力学参数,即[希腊大写ΔH],[希腊大写ΔS度和[希腊大写ΔG]为-53.82 [薄空间] kJ mol(-1),96.11 [薄空间] J mol( -1)和-82.46 [THIN SPACE] KJ mol(-1)。用PYR对DNA进行的热变性研究表明,在r(i)= 0.5和1.0时,希腊资本ΔT(m)分别为3.0和6.0℃。傅里叶变换红外研究表明PYR与G-C和A-T碱基对之间存在主要相互作用,对骨架PO(2)组的扰动较小。此外,PYR诱导了CT-DNA的圆二色性光谱中可检测到的变化。在荧光研究中,计算了动态增强常数(k(D))和双分子增强常数(k(B)),这表明荧光增强是由基态的静态过程引发的。量子力学/分子力学理论计算的混合表明,相互作用是依赖于碱基序列的,而PYR通过AT碱基序列与DNA的相互作用更多。从数据中我们得出结论,PYR可能通过两种模式与ds-DNA相互作用:嵌入和外部凹槽结合。

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