Interaction of Novel Monomethine Cyanine Dyes with Proteins in Native and Amyloid States

O. Zhytniakivska, U. Tarabara, A. Kurutos, Kateryna Vus, V. Trusova, G. Gorbenko
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引用次数: 1

Abstract

Molecular interactions between novel monomethine cyanine dyes and non-fibrilar and fibrilar proteins were assessed using fluorescence spectroscopy and molecular docking techniques. To this end, the fluorescence spectral properties of dyes have been explored in the buffer solution and in the presence of insulin and lysozyme in the native and amyloid states. It was observed that association of monomethines with the native and fibrillar proteins was accompanied with a significant enhancement of the fluorophore fluorescence, being more pronounced in the presence of aggregated insulin and lysozyme. The quantitative information about the dye-protein binding was obtained through approximating the experimental dependencies of the fluorescence intensity increase vs protein concentration by the Langmuir model. Analysis of the spectral properties and the binding characteristics of monomethines in the presence of the fibrillar insulin and lysozyme showed that the introduction of chloro- and fluorine-substitutients to the oxazole yellow derivatives, as well as the long aliphatic substitution on the nitrogen atom of the benzazole chromophore of YO-dyes had a negative impact on the dye amyloid specificity. Molecular docking studies showed that monomethines tend to form the most stable complexes with the B-chain residues Val 17, Leu17, Ala 14, Phe1, Gln 4 and Leu 6 and the A-chain residue Leu 13, Tyr 14, Glu 17 of non-fibrilar insulin and interact with the deep cleft of native lysozyme lined with both hydrophobic (Ile98, Ile 58, Thr108, Thr 62 and Thr 63 residues) and negatively (Asp101, Asp 107) charged residues. The wet surface groove Gln15_Glu17 and groove G2-L4/S8-W10 were found as the most energetically favorable binding sites for examined monomethine dyes in the presence of the insulin and lysozyme fibrils, respectively.
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新型单亚甲基花氨酸染料与天然和淀粉样蛋白的相互作用
利用荧光光谱和分子对接技术研究了新型单亚甲基花青素染料与非纤维蛋白和纤维蛋白之间的分子相互作用。为此,染料的荧光光谱特性在缓冲溶液和胰岛素和溶菌酶存在的天然和淀粉样蛋白状态进行了探索。观察到,单亚胺与天然蛋白和纤维蛋白的结合伴随着荧光团荧光的显著增强,在聚集的胰岛素和溶菌酶存在时更为明显。通过Langmuir模型近似荧光强度增加与蛋白质浓度的实验依赖关系,获得染料与蛋白质结合的定量信息。对纤维胰岛素和溶菌酶存在下的单亚胺的光谱性质和结合特性分析表明,在恶唑黄色衍生物中引入氯和氟取代基,以及yo染料中苯并唑发色团氮原子上的长脂肪取代对染料淀粉样蛋白特异性有负面影响。分子对接研究表明,单亚甲基倾向于与非原纤维胰岛素的b链残基Val 17、Leu17、Ala 14、Phe1、Gln 4和Leu 6以及非原纤维胰岛素的a链残基Leu 13、Tyr 14、Glu 17形成最稳定的配合物,并与天然溶菌酶与疏水残基(Ile98、Ile 58、Thr108、Thr 62和Thr 63残基)和带负电残基(Asp101、Asp 107)排列的深间隙相互作用。在胰岛素和溶菌酶原纤维存在的情况下,湿表面沟槽Gln15_Glu17和沟槽G2-L4/S8-W10分别是所检测的单亚甲基染料最有利的能量结合位点。
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