Spectroscopic studies on the interaction of aspartame with human serum albumin

人血清白蛋白 圆二色性 化学 猝灭(荧光) 氢键 疏水效应 结合常数 结合位点 荧光 结晶学 分子 色谱法 热力学 有机化学 生物化学 物理 量子力学
作者
Fahimeh Kheirdoosh,Soheila Kashanian,Mohammad Mehdi Khodaei,Mahya Sariaslani,Monireh Falsafi,Neda Hosseinpour Moghadam,Sadegh Salehzadeh,Mahsa Pazhavand,Mahdi Kashanian
出处
期刊:Nucleosides, Nucleotides & Nucleic Acids [Taylor & Francis]
卷期号:40 (3): 300-316 被引量:6
标识
DOI:10.1080/15257770.2021.1872792
摘要

In this work the binding of artificial sweetener aspartame with human serum albumin (HSA) was studied at physiological pH. Binding studies of aspartame (APM) with HSA are useful to understand APM -HSA interaction, mechanism and providing guidance for the application and design of new and more efficient artificial sweeteners. The interaction was investigated by spectrophotometric, spectrofluorometric competition experiment and circular dichroism (CD) techniques. The results indicated that the binding of APM to HSA caused fluorescence quenching of HSA through static quenching mechanism with binding constant 1.42 × 10+4 M−1 at 298 K and the number of binding sites is approximately one. Thermodynamic parameters, enthalpy changes (ΔH) and entropy changes (ΔS) were calculated to be −41.20 kJ mol−1 and −58.19 J mol−1 K−1, respectively, according to van't Hoff equation, which indicated that reaction is enthalpically driven. Quenching of the fluorescence of HSA was found to be a static quenching process. The binding constants and number of binding sites were obtained at three different temperatures (298, 308 and 318 K). Combining above results and those of spectrofluorometric competition experiment and circular dichroism (CD), indicated that APM binds to HSA via Sudlow's site I. Furthermore, the study of molecular docking on HSA binding also indicated that APM can strongly bind to the site I (subdomain IIA) of HSA mainly by hydrophobic interaction and hydrogen bond interactions exist between APM and HSA.
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