首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Exploring structural change of protein bovine serum albumin by external perturbation using extrinsic fluorescence probe: spectroscopic measurement, molecular docking and molecular dynamics simulation
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Exploring structural change of protein bovine serum albumin by external perturbation using extrinsic fluorescence probe: spectroscopic measurement, molecular docking and molecular dynamics simulation

机译:外在荧光探针通过外部扰动探索蛋白质牛血清白蛋白的结构变化:光谱测量,分子对接和分子动力学模拟

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摘要

Structural modification through binding interaction of plasma protein bovine scrum albumin (BSA) with an extrinsic charge transfer fluorophore 5-(4-dimethylamino-pheny1)-penta-2,4-dienoic acid (DMAPPDA) and its response to external perturbation due to interactions with surfactant sodium dodecyl sulphate (SDS) have been explored at physiological pH by steady state absorption, emission, fluorescence anisotropy, red edge excitation shift, far-UV circular dichroism and time resolved spectral measurements in combination with Molecular Docking and Molecular Dynamics (MD) simulation. Interaction of the probe with BSA is reflected by a small change in protein secondary structure with fluorescence enhancement and blue shift of probe emission. Molecular docking studies revealed that the probe binds to the hydrophobic cavity of sub-domain IIA of BSA. The distance for energy transfer from the tryptophan of BSA to the bound DMAPPDA measured by Fluorescence Resonance Energy Transfer is in good agreement with the molecular docking results. MD simulation predicts stabilization of the complex with respect to the bare molecule. Interaction of BSA and SDS with DMAPPDA supports the movement of the probe from hydrophilic free water region to a more restricted hydrophobic zone inside the protein.
机译:通过血浆蛋白牛血清白蛋白(BSA)与外在电荷转移荧光团5-(4-二甲基氨基-pheny1)-penta-2,4-二烯酸(DMAPPDA)的结合相互作用及其对外部干扰的反应进行结构修饰通过与分子对接和分子动力学(MD)相结合的稳态pH吸收,发射,荧光各向异性,红边激发位移,远紫外圆二色性和时间分辨光谱测量,在生理pH下探索了使用表面活性剂十二烷基硫酸钠(SDS)的方法模拟。探针与BSA的相互作用通过蛋白质二级结构的微小变化(荧光增强和探针发射的蓝移)反映出来。分子对接研究表明,该探针与BSA子域IIA的疏水腔结合。通过荧光共振能量转移法测量的从BSA色氨酸到结合的DMAPPDA的能量转移距离与分子对接结果非常吻合。 MD模拟预测相对于裸分子而言复合物的稳定。 BSA和SDS与DMAPPDA的相互作用支持探针从亲水性自由水区域移动到蛋白质内部更受限的疏水区域。

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