Pandey Nitin Kumar, Ghosh Sudeshna, Nagy Nóra Veronika, Dasgupta Swagata
a Department of Chemistry , Indian Institute of Technology , Kharagpur 721302 , India .
J Biomol Struct Dyn. 2014;32(9):1366-78. doi: 10.1080/07391102.2013.819300. Epub 2013 Jul 22.
Protein aggregation is related to a series of pathological disorders the main cause of which are the fibrillar species generated during the process. Human serum albumin (HSA) undergoes rapid fibrillation in the presence of Cu(II) at pH 7.4 in 60% ethanol after 6-h incubation (∼65 °C) followed by room temperature incubation. Here, we have investigated the effect of a stoichiometric variation of Cu(II) on the self-assembly of HSA using Congo red and thioflavin T dye-binding studies, circular dichroism spectroscopy, Fourier transform infrared spectroscopy, electron paramagnetic resonance spectroscopy, fluorescence microscopy and transmission electron microscopy. The simulation of EPR spectra suggests that with the increment in Cu(II) ion concentration, there is a change in ligand field coordination. Kinetic parameters indicate reduced cooperativity that may be related to the nonspecific coordination on increment of Cu(II) concentration. Cu(II) is also able to direct the accumulation of a large number of fibers along with a formation of dense fibrillar network which is evident from microscopic images.
蛋白质聚集与一系列病理紊乱有关,其主要原因是在此过程中产生的纤维状物质。人血清白蛋白(HSA)在60%乙醇中,pH 7.4,在65℃孵育6小时后,再于室温孵育,在Cu(II)存在下会迅速发生纤维化。在此,我们使用刚果红和硫黄素T染料结合研究、圆二色光谱、傅里叶变换红外光谱、电子顺磁共振光谱、荧光显微镜和透射电子显微镜,研究了Cu(II)化学计量变化对HSA自组装的影响。电子顺磁共振光谱的模拟表明,随着Cu(II)离子浓度的增加,配体场配位发生变化。动力学参数表明协同性降低,这可能与Cu(II)浓度增加时的非特异性配位有关。Cu(II)还能够引导大量纤维的聚集以及形成致密的纤维状网络,这从显微镜图像中可以明显看出。