College of Life Science and Food Engineering, Shaanxi Xueqian Normal University, Xi'an, Shaanxi, People's Republic of China.
Tianjin Institute of Metrological Supervision and Testing, Tianjin, People's Republic of China.
J Environ Sci Health B. 2021;56(3):259-271. doi: 10.1080/03601234.2021.1873030. Epub 2021 Jan 17.
The binding of rhodamine B (RB) to human serum albumin (HSA) in the absence and presence of Cu or Fe under simulated physiological conditions was studied by using various biophysical methods for the first time. The results showed that the interaction between HSA and RB could spontaneously result in the formation of HSA-RB complex (namely, static quenching mechanism) through hydrophobic interactions and hydrogen bonds irrespective of the absence or presence of metal ions. The presence of metal ions led to the reduction of binding affinity of RB to HSA compared with no metal ions, which might result from the conformational change of HSA caused by the binding of metal ions. Furthermore, the analysis of UV-vis absorption, circular dichroism, synchronous fluorescence and three-dimensional fluorescence experiments demonstrated that the addition of RB induced conformational and microenvironmental changes of HSA without and with metal ions. In short, this work will be helpful to in-depth understand the transport mechanism and biological effect of RB and the effect of metal ions on the interaction of HSA-RB .
首次采用多种物理化学方法研究了模拟生理条件下,Cu 或 Fe 存在或不存在时,罗丹明 B(RB)与人血清白蛋白(HSA)的结合情况。结果表明,无论是否存在金属离子,HSA 与 RB 之间都能通过疏水相互作用和氢键自发形成 HSA-RB 复合物(即静态猝灭机制)。与无金属离子相比,金属离子的存在降低了 RB 与 HSA 的结合亲和力,这可能是由于金属离子与 HSA 结合导致 HSA 的构象发生变化。此外,紫外可见吸收、圆二色性、同步荧光和三维荧光实验分析表明,RB 的加入诱导了 HSA 在有无金属离子存在下的构象和微观环境变化。总之,这项工作将有助于深入了解 RB 的转运机制和生物学效应以及金属离子对 HSA-RB 相互作用的影响。