Mathavan Vinodaran M K, Boh Boon Kim, Tayyab Saad
Biomolecular Research Group, Biochemistry Programme, Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia.
Indian J Biochem Biophys. 2009 Aug;46(4):325-31.
The interaction of crythrosine B (ErB), a commonly used dye for coloring foods and drinks, with bovine scrum albumin (BSA) was investigated both in the absence and presence of bilirubin (BR) using absorption and absorption difference spectroscopy. ErB binding to BSA was reflected from a significant red shift of 11 nm in the absorption maximum of ErB (527 nm) with the change in absorbance at lamdamax. Analysis of absorption difference spectroscopic titration results of BSA with increasing concentrations of ErB3 using Benesi-Hildebrand equation gave the association constant, K as 6.9 x 10(4) M(-1). BR displacing action of ErB was revealed by a significant blue shift in the absorption maximum, accompanied by a decrease in absorbance difference at lamdamax in the difference spectrum of BR-BSA complex upon addition of increasing concentrations of ErB. This was further substantiated by fluorescence spectroscopy, as addition of increasing concentrations of ErB to BR-BSA complex caused a significant decrease in fluoresccnce at 510 nm. The results suggest that ErB binds to a site in the vicinity of BR binding site on BSA. Therefore, intake of ErB may increase the risk of hyperbilirubinemia in the healthy subjects.
使用吸收光谱和吸收差光谱法,在不存在和存在胆红素(BR)的情况下,研究了常用的食品和饮料着色剂赤藓红B(ErB)与牛血清白蛋白(BSA)的相互作用。随着最大吸收波长处吸光度的变化,ErB最大吸收波长(527nm)发生了11nm的显著红移,这反映了ErB与BSA的结合。使用贝内西-希尔德布兰德方程分析随着ErB浓度增加,BSA的吸收差光谱滴定结果,得到结合常数K为6.9×10⁴ M⁻¹。加入浓度不断增加的ErB后,BR-BSA复合物差示光谱中最大吸收波长出现显著蓝移,同时最大吸收波长处的吸光度差值减小,这表明了ErB对BR的置换作用。荧光光谱进一步证实了这一点,因为向BR-BSA复合物中加入浓度不断增加的ErB会导致510nm处的荧光显著降低。结果表明,ErB结合在BSA上BR结合位点附近的一个位点上。因此,摄入ErB可能会增加健康受试者患高胆红素血症的风险。