Roy Pritam, Bag Sudipta, Chakraborty Debanjana, Dasgupta Swagata
Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
ACS Omega. 2018 Sep 30;3(9):12270-12283. doi: 10.1021/acsomega.8b01584. Epub 2018 Sep 28.
Fullerene-protein interaction studies have been a key topic of investigation in recent times, but the lower water solubility of fullerene somewhat limits its application in the biological system. In this work, we have compared the activities of fullerene and its water-soluble hydrated form, that is fullerenol, on ribonuclease A (RNase A) under physiological conditions (pH 7.4). The interaction studies of fullerene and fullerenol with protein suggest that the binding depends on the hydrophobic interactions between the protein and the ligand. In addition, fullerene and fullerenol slow down the ribonucleolytic activity of RNase A through noncompetitive and mixed types of inhibition, respectively. This precisely gives the idea about the ligand-binding sites in RNase A, which has further been explored using docking studies. Both these nanoparticles show a reduction in dityrosine formation in RNase A caused due to oxidative stress and also prevent RNase A dimer formation to different extents depending on their concentration.
近年来,富勒烯与蛋白质的相互作用研究一直是一个关键的研究课题,但富勒烯较低的水溶性在一定程度上限制了其在生物系统中的应用。在这项工作中,我们比较了富勒烯及其水溶性水合形式(即富勒醇)在生理条件(pH 7.4)下对核糖核酸酶A(RNase A)的活性。富勒烯和富勒醇与蛋白质的相互作用研究表明,结合取决于蛋白质与配体之间的疏水相互作用。此外,富勒烯和富勒醇分别通过非竞争性和混合型抑制作用减缓了RNase A的核糖核酸酶活性。这准确地给出了RNase A中配体结合位点的概念,这一点已通过对接研究进一步探索。这两种纳米颗粒都显示出由于氧化应激导致的RNase A中二酪氨酸形成的减少,并且还根据其浓度在不同程度上防止RNase A二聚体的形成。