School of Pharmaceutical Sciences, Peking University, Beijing 100191, China.
Shimadzu International Trading (Shanghai) Co. Limited, Beijing 100020, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Jun 15;181:82-90. doi: 10.1016/j.saa.2017.03.025. Epub 2017 Mar 7.
Transferrin (Tf) is an important protein responsible for circulating and transporting iron into cytoplasm. Tf can be taken into cells through endocytosis mediated by Tf receptor, which usually overexpresses in cancer cells. The Tf-Tf receptor pathway opens a possible avenue for novel targeted cancer therapy by utilizing Tf-binding active compounds. Among which, anti-cancer active caffeoylquinic acids (CQAs) were recently found to be promising Tf-binders by our group. For better understanding the anti-cancer activities of CQAs, it is important to unveil the binding mechanisms between CQAs and Tf. In this study, the fluorescence quenching, surface plasmon resonance (SPR), circular dichroism (CD) and molecular docking were used to investigate the interactions between CQA and Tf. The results showed that the calculated apparent association constants of interactions between 1-, 3-, 4- and 5-CQA and Tf at 298K were 7.97×10M, 4.36×10M, 6.58×10M and 4.42×10M, respectively. The thermodynamic parameters indicated that the interaction between 1-, 3-, 5-CQA and Tf is due to H-bonding, and electrostatic interactions were likely involved in the binding of 4-CQA and Tf. The CD results indicated that bindings of 1-CQA, 4-CQA and 5-CQA with Tf resulted in more stretched β-turn and random coil translated from β-sheet. In contrast, 3-CQA led to more stable a-helix conformation. Molecular docking studies of CQAs with Tf further displayed that CQAs were able to interact with residues near Fe binding site. The spectroscopic studies revealed the action mechanisms, thermodynamics and interacting forces between CQAs and Tf, and thus are helpful for future design and discovery of Tf-binders for targeted cancer therapy applying Tf-Tf receptor pathway.
转铁蛋白(Tf)是一种重要的蛋白质,负责将铁循环并运输到细胞质中。Tf 可以通过 Tf 受体介导的内吞作用进入细胞,Tf 受体通常在癌细胞中过度表达。Tf-Tf 受体途径为利用 Tf 结合活性化合物进行新型靶向癌症治疗开辟了一条可能的途径。其中,我们小组最近发现具有抗癌活性的咖啡酰奎宁酸(CQAs)是很有前途的 Tf 结合物。为了更好地了解 CQAs 的抗癌活性,揭示 CQAs 与 Tf 之间的结合机制非常重要。在这项研究中,使用荧光猝灭、表面等离子体共振(SPR)、圆二色性(CD)和分子对接研究了 CQA 与 Tf 之间的相互作用。结果表明,在 298K 下,1-、3-、4-和 5-CQA 与 Tf 之间相互作用的计算表观结合常数分别为 7.97×10^4M、4.36×10^4M、6.58×10^4M 和 4.42×10^4M。热力学参数表明,1-、3-、5-CQA 与 Tf 之间的相互作用是由于氢键,静电相互作用可能参与了 4-CQA 与 Tf 的结合。CD 结果表明,1-CQA、4-CQA 和 5-CQA 与 Tf 的结合导致更多伸展的β-转角和无规卷曲从β-折叠转化。相比之下,3-CQA 导致更稳定的α-螺旋构象。CQAs 与 Tf 的分子对接研究进一步显示,CQAs 能够与铁结合位点附近的残基相互作用。光谱研究揭示了 CQAs 与 Tf 之间的作用机制、热力学和相互作用力,从而有助于未来设计和发现应用 Tf-Tf 受体途径的靶向癌症治疗的 Tf 结合物。