Institute of Biochemistry and Biophysics, University of Tehran, Tehran, Iran.
DTU Health Tech, Center for Nanomedicine and Theranostics, Technical University of Denmark, Nils Koppels Allé, Building 423, 2800 Kgs. Lyngby, Denmark.
Int J Biol Macromol. 2023 Dec 31;253(Pt 8):127275. doi: 10.1016/j.ijbiomac.2023.127275. Epub 2023 Oct 5.
One of the major factors that is currently hindering the development of hemoglobin (Hb)-based oxygen carriers (HBOCs) is the autoxidation of Hb into nonfunctional methemoglobin. Modification with polydopamine (PDA), which is a biocompatible free radical scavenger has shown the ability to protect Hb against oxidation. Due to its tremendous potential in the development of successful HBOCs, herein, we conduct a thorough evaluation of the effect of PDA on the stability, aggregation, structure and function of the underlying Hb. By UV-vis spectrometry we show that PDA can prevent Hb's aggregation while thermal denaturation studies indicate that, although PDA coating resulted in a lower midpoint transition temperature, it was also able to protect the protein from full denaturation. These results are further corroborated by differential scanning calorimetry. Circular dichroism reveals that PDA can promote changes in Hb's secondary structure while, by UV-vis spectroscopy, we show that PDA also interacts with the porphyrin complex located in Hb's hydrophobic pocket. Last but not least, affinity studies show that PDA-coated Hb has a higher capability for oxygen release. Such an effect is further enhanced at lower pH. Importantly, through molecular docking simulations we provide a plausible explanation for the observed experimental results.
目前阻碍血红蛋白(Hb)基氧载体(HBOCs)发展的主要因素之一是 Hb 自动氧化为无功能的高铁血红蛋白。用具有生物相容性的自由基清除剂聚多巴胺(PDA)进行修饰已显示出保护 Hb 免受氧化的能力。由于其在开发成功的 HBOCs 方面具有巨大的潜力,因此,我们在此对 PDA 对 Hb 稳定性、聚集、结构和功能的影响进行了全面评估。通过紫外-可见光谱法,我们表明 PDA 可以防止 Hb 聚集,而热变性研究表明,尽管 PDA 涂层导致中点转变温度降低,但它也能够防止蛋白质完全变性。差示扫描量热法进一步证实了这些结果。圆二色性表明 PDA 可以促进 Hb 二级结构的变化,而通过紫外-可见光谱,我们表明 PDA 还与位于 Hb 疏水口袋中的卟啉复合物相互作用。最后但同样重要的是,亲和研究表明,PDA 涂层的 Hb 具有更高的氧气释放能力。在较低的 pH 值下,这种作用会进一步增强。重要的是,通过分子对接模拟,我们为观察到的实验结果提供了一个合理的解释。