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首页> 外文期刊>Journal of Molecular Liquids >Experimental and computational investigation on the molecular interactions of safranal with bovine serum albumin: Binding and anti-amyloidogenic efficacy of ligand
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Experimental and computational investigation on the molecular interactions of safranal with bovine serum albumin: Binding and anti-amyloidogenic efficacy of ligand

机译:牛血清白蛋白Safranal分子相互作用的实验和计算研究:配体的结合和抗淀粉样蛋白功效

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Molecular interaction between BSA and safranal was seen in the present study using experimental and molecular docking methods, in addition, inhibitory effect of safranal towards BSA amyloid formation was also seen. UV-visible and fluorescence studies suggested the formation of 1:1 complex between BSA and safranal via static quenching mechanism. The corrected fluorescence spectra showed a blue shift in the emission maximum on the successive addition of safranal which revealed the involvement of hydrophobic forces in the interaction. Far-UV CD measurements suggested the stabilization of secondary structure of BSA by increasing its alpha-helical contents, i.e compaction of protein and that was further supported by RLS and DLS methods. Analysis of thermodynamic parameters presented that hydrophobic forces as well as hydrogen bonding were involved in the binding. From the competitive assay and molecular docking simulations it was found that safranal binds near the Sudlow's site 1 in the subdomain IIA and most of the amino acids residues bound with hydrophobic forces and a few with hydrogen bonding. Safranal was found to inhibit the BSA amyloid formation and the inhibition was concentration dependent. Exposed surface hydrophobicity of BSA amyloid fibrils was decreased considerably in presence of safranal. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,使用实验和分子对接方法在本研究中观察到BSA和Safranal之间的分子相互作用,此外,还可以看到Safranal对BSA淀粉样蛋白形成的抑制作用。 UV可见和荧光研究表明,通过静态猝灭机制,BSA和Safranal之间的形成为1:1复合物。校正的荧光光谱显示出发射最大值的蓝色偏移,在连续添加Safranal中,揭示了疏水力在相互作用中的累积。 FAR-UV CD测量表明,通过增加其α-螺旋含量,即蛋白质的压实,并通过RLS和DLS方法进一步支持BSA的二次结构稳定。对热力学参数的分析呈现疏水力以及氢键参与结合。从竞争性的测定和分子对接模拟中发现,Safranal在Sudlow在亚域IIa中的位置1附近结合,并且大多数氨基酸残基与疏水力结合的残留物和氢键合。发现Safranal抑制BSA淀粉样蛋白形成,抑制浓度依赖性。在Safranal存在下,BSA淀粉样蛋白原纤维的暴露表面疏水性显着降低。 (c)2019 Elsevier B.v.保留所有权利。

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