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Characterization of human serum albumins interactions with safranal and crocin using multi-spectroscopic and molecular docking techniques

机译:使用多光谱和分子对接技术表征人血清白蛋白与唾液和藏红花的相互作用

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摘要

Interaction mechanisms of human serum albumin (HSA) with safranal and crocin were studied using UV–Vis absorption, fluorescence quenching and circular dichroism (CD) spectroscopies as well as molecular docking techniques. Changes in absorbance and fluorescence of HSA upon interactions with both compounds were attributed to their binding to amino acid chromophores located in subdomains IIA and IIIA. Fluorescence secondary inner filter effect was excluded using 278 nm and 340 nm as the wavelengths of HSA's excitation and fluorescence while safranal and crocin absorbed at 320 nm and 445 nm, respectively. Stern-Volmer model revealed a static quenching mechanism involve the formation of non-fluorescent ground state complexes. Stern-Volmer, Hill, Benesi-Hilbrand and Scatchard models gave apparent binding constants ranged in 4.25 × 103 - 2.15 × 105 for safranal and 7.67 × 103 - 4.23 × 105 L mol−1 for crocin. CD measurements indicated that 13 folds of safranal and crocin unfolded the α-helix structure of HSA by 7.47–21.20%. In-silico molecular docking revealed selective exothermic binding of safranal on eight binding sites with binding energies ranged in −3.969 to −6.6.913 kcal/mol. Crocin exothermally bound to a new large pocket located on subdomain IIA (sudlow 1) with binding energy of −12.922 kcal/mol.These results confirmed the formation of HSA stable complexes with safranal and crocin and contributed to our understanding for their binding characteristics (affinities, sites, modes, forces … etc.) and structural changes upon interactions. They also proved that HSA can solubilize and transport both compounds in blood to target tissues. The results are of high importance in determining the pharmacological properties of the two phytochemical compounds and for their future developments as anticancer, antispasmodic, antidepressant or aphrodisiac therapeutic agents.
机译:使用紫外可见吸收,荧光猝灭和圆二色性(CD)光谱学以及分子对接技术研究了人血清白蛋白(HSA)与sa红蛋白和藏红花的相互作用机理。与两种化合物相互作用时,HSA的吸光度和荧光的变化归因于它们与位于亚域IIA和IIIA的氨基酸发色团的结合。使用278 nm和340 nm作为HSA的激发和荧光波长来排除荧光二级内部滤光片的影响,而sa醛和藏红素分别在320 nm和445 nm处吸收。 Stern-Volmer模型揭示了静态猝灭机制涉及非荧光基态配合物的形成。 Stern-Volmer,Hill,Benesi-Hilbrand和Scatchard模型给出的表观结合常数范围分别为4.25×10 3 -sa骨2.15×10 5 和7.67×10 3 -4.23×10 5 L mol −1 。 CD测量表明,皱纹和番红花的13倍使HSA的α-螺旋结构展开了7.47–21.20%。硅内分子对接揭示了在8个结合位点上的safranal选择性放热结合,结合能范围为-3.969至-6.6.913 kcal / mol。 crocin放热地结合到位于IIA亚域的第一个大口袋上(sudlow 1),结合能为-12.922 kcal / mol。这些结果证实了HSA稳定的与sa和crocro的复合物的形成,有助于我们了解它们的结合特性(亲和力) ,地点,方式,作用力等)以及相互作用时的结构变化。他们还证明了HSA可以将血液中的这两种化合物溶解并运输到目标组织。该结果对于确定这两种植物化学化合物的药理特性及其作为抗癌药,抗痉挛药,抗抑郁药或壮阳药的未来发展具有重要意义。

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