首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Domain Specific Association of Small Fluorescent Probe tmns-3-(4-Monomethylaminophenyl)-Acrylonitrile (MMAPA) with Bovine Serum Albumin (BSA) and Its Dissociation from Protein Binding Sites by Ag Nanoparticles: Spectroscopic and Molecular Docking Study
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Domain Specific Association of Small Fluorescent Probe tmns-3-(4-Monomethylaminophenyl)-Acrylonitrile (MMAPA) with Bovine Serum Albumin (BSA) and Its Dissociation from Protein Binding Sites by Ag Nanoparticles: Spectroscopic and Molecular Docking Study

机译:小型荧光探针tmns-3-(4-单甲基氨基苯基)-丙烯腈(MMAPA)与牛血清白蛋白(BSA)的域特定关联及其通过银纳米颗粒从蛋白质结合位点解离的光谱和分子对接研究

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摘要

Photoinduced intramolecular charge transfer produced a polar excited state in trans-3-(4-monomethylamino-phenyl)acrylonitrile (MMAPA), rendering the resulting emission sensitive to the medium polarity. Strong binding interaction of silver nanoparticles with the probe was observed, causing fluorescence quenching through the static quenching process. The probe MMAPA was found to bind to the less polar hydrophobic, restricted proteinous environment of bovine serum albumin (BSA) resulting in the blue shift of the emission maximum with an increase in emission intensity and fluorescence anisotropy. Studies using site markers of flufenamic acid and phenylbutazone coupled with molecular docking results predicted that the binding site of the probe is in between subdomains IIIA and IB of BSA and is different from the conventional Sudlow sites. The denaturation of the probe-bound BSA by urea or heat released the probe from this proteinous environment to water marked by exactly reverse spectral changes. On the interaction of silver nanoparticles with the probe bound protein, the probe was observed to move from its binding site in the protein to the Ag~0 nanoparticle surface involving conformational changes of the protein near the probe binding site.
机译:光诱导的分子内电荷转移在反式3-(4-单甲基氨基-苯基)丙烯腈(MMAPA)中产生极性激发态,从而使所得发射对中等极性敏感。观察到银纳米颗粒与探针的强结合相互作用,通过静态猝灭过程引起荧光猝灭。发现探针MMAPA结合到牛血清白蛋白(BSA)的极性较小的疏水性受限蛋白质环境中,导致发射最大值的蓝移,同时发射强度和荧光各向异性增加。使用氟芬那酸和苯丁氮酮的位点标志物进行的研究以及分子对接结果预测,探针的结合位点位于BSA的亚域IIIA和IB之间,并且与常规Sudlow位点不同。尿素或热使探针结合的BSA变性,从而使探针从该蛋白质环境释放到以完全相反的光谱变化为特征的水中。在银纳米颗粒与探针结合蛋白的相互作用上,观察到探针从其在蛋白质中的结合位点移动到Ag-0纳米颗粒表面,这涉及探针结合位点附近蛋白质的构象变化。

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