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葡萄糖与血红蛋白的相互作用:在水溶液中和使用 Langmuir-Blodgett 技术的气-液界面的研究。

Interaction of glucose with hemoglobin: a study in aqueous solution and at the air-water interface using the Langmuir-Blodgett technique.

机构信息

Department of Spectroscopy, Indian Association for the Cultivation of Science, Jadavpur, Kolkata-700 032, India.

出版信息

Phys Chem Chem Phys. 2011 May 28;13(20):9385-96. doi: 10.1039/c0cp02277b. Epub 2011 Apr 11.

Abstract

Here, we report the glycosylation of human adult hemoglobin (Hb) studied in aqueous solution and at the air-water interface by the Langmuir-Blodgett (LB) technique. Pressure-area (π-A) and pressure-time (π-t) measurements show that the concentration of glucose (GLC) and interaction time have an effect on Hb molecular area as well as on surface activity. Solution studies by UV-vis absorption and emission spectroscopy show that the GLC can alter the local conformation of Hb to some extent at the tryptophan and heme residues. CD spectroscopic studies in solution indicate that the α-helix content increases in the presence of GLC at the secondary structure level, which may be the cause of an increased adsorption rate of Hb. Also, secondary structure calculation using FTIR technique in the LB film follows the decrease in α-helix and increase in β-sheet structure as well as the formation of intermolecular aggregates. AFM images of Hb in the LB film indicate the transition from globular to an ellipsoid-like structure of Hb in the presence of GLC. FTIR studies of the LB film support the AFM imaging and the analysis of π-t kinetics. The molecular docking study revealed that Val 1 and Lys 132 are the most favorable docked sites along with some other sites such as Hem 147, Trp 37, Asp 94, Tyr 145, Leu 91, His 143, Glu 43 etc. The overall study may predict the processes of interactions with the increased concentration of GLC on Hb as well as on other long lived proteins.

摘要

在这里,我们报告了在水溶液中和通过 Langmuir-Blodgett (LB) 技术在气液界面上研究的人成年血红蛋白 (Hb) 的糖基化。压力-面积 (π-A) 和压力-时间 (π-t) 测量表明葡萄糖 (GLC) 的浓度和相互作用时间对 Hb 分子面积以及表面活性有影响。通过紫外可见吸收和发射光谱的溶液研究表明,GLC 可以在一定程度上改变 Hb 在色氨酸和血红素残基处的局部构象。溶液中的 CD 光谱研究表明,在存在 GLC 的情况下,α-螺旋含量在二级结构水平上增加,这可能是 Hb 吸附速率增加的原因。此外,使用 FTIR 技术在 LB 膜中进行的二级结构计算遵循α-螺旋的减少和β-折叠结构的增加以及分子间聚集体的形成。LB 膜中 Hb 的 AFM 图像表明,在存在 GLC 的情况下,Hb 从球形转变为椭球形结构。LB 膜的 FTIR 研究支持 AFM 成像和 π-t 动力学分析。分子对接研究表明,Val 1 和 Lys 132 是最有利的对接位点,还有一些其他位点,如 Hem 147、Trp 37、Asp 94、Tyr 145、Leu 91、His 143、Glu 43 等。总体研究可以预测与 GLC 浓度增加对 Hb 以及其他长寿命蛋白质相互作用的过程。

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