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Study on the interactions of kaempferol and quercetin with intravenous immunoglobulin by fluorescence quenching, fourier transformation infrared spectroscopy and circular dichroism spectroscopy.

机译:通过荧光猝灭,傅立叶变换红外光谱和圆二色光谱研究山萘酚和槲皮素与静脉注射免疫球蛋白的相互作用。

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摘要

The interactions of kaempferol and quercetin with intravenous immunoglobulin (IVIG) were studied in vitro by spectroscopic methods including fluorescence spectra, Fourier transformation infrared (FT-IR) spectra and circular dichroism (CD) spectra. The binding parameters for the reactions calculated according to the Sips equation suggested that the bindings of IVIG to kaempferol and quercetin were characterized by two binding sites with the average affinity constants K(o) at 1.032 x 10(4) M(-1) and 1.849 x 10(4) M(-1), respectively. The binding of IVIG with quercetin is stronger than that of IVIG with kaempferol. They were of non-specific and weak drug-protein interactions. Docking was used to calculate the interaction modes between kaempferol and quercetin with IVIG. The secondary structural compositions of free IVIG and its kaempferol, quercetin complexes were calculated by the FT-IR difference spectra, self-deconvolution, second derivative resolution enhancement and the curve-fitting procedures of amide I band respectively, which are in good agreement with the analyses of CD spectra. The effect of 3'-OH substituent in quercetin is distinct between the interactions of IVIG with kaempferol and quercetin for the secondary structure of the protein. The observed spectral changes indicate a partial unfolding of the protein structure, but the typical beta structural conformation of IVIG is still retentive in the presence of both drugs in aqueous solution. The average binding distances between the chromophores of IVIG with kaempferol (4.30 nm) and quercetin (4.35 nm) were obtained on the basis of the theory of Forster energy transfer. IVIG can serve as transport protein (carrier) for kaempferol and quercetin.
机译:用荧光光谱,傅立叶变换红外光谱(FT-IR)和圆二色性(CD)光谱等方法研究了山奈酚和槲皮素与静脉免疫球蛋白(IVIG)的相互作用。根据Sips方程计算的反应结合参数表明,IVIG与山fer酚和槲皮素的结合特征在于两个结合位点,其平均亲和常数K(o)为1.032 x 10(4)M(-1)和1.849 x 10(4)M(-1)。 IVIG与槲皮素的结合要强于IVIG与山ol酚的结合。它们具有非特异性和弱的药物-蛋白质相互作用。用对接法通过IVIG计算山and酚和槲皮素之间的相互作用模式。游离IVIG及其山difference酚,槲皮素复合物的二级结构组成分别通过FT-IR差光谱,自解卷积,二阶导数分辨率增强和酰胺I谱带的曲线拟合程序计算,与CD光谱分析。槲皮素中3'-OH取代基的作用在IVIG与山emp酚和槲皮素的相互作用中对于蛋白质的二级结构是截然不同的。观察到的光谱变化表明蛋白质结构的部分展开,但是在两种药物在水溶液中存在的情况下,IVIG的典型β结构构象仍然具有保留性。根据Forster能量转移理论,获得了IVIG发色团与山奈酚(4.30 nm)和槲皮素(4.35 nm)之间的平均结合距离。 IVIG可用作山ka酚和槲皮素的转运蛋白(载体)。

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