School of Chemistry and Chemical Engineering, Central South University, Changsha, China.
J Inorg Biochem. 2011 Dec;105(12):1529-37. doi: 10.1016/j.jinorgbio.2011.08.007. Epub 2011 Aug 22.
Four flavonoids quercetin (QU), luteolin (LU), taxifolin (TA) and (+)-catechin (CA) with the same A- and B-rings but different C-ring substituents have been investigated for their binding to bovine serum albumin (BSA) in the absence and presence of Cu(2+) by means of various spectroscopic methods such as fluorescence, UV-visible and circular dichroism (CD). The results indicated that hydroxyl group at 3-position increased the binding affinities between flavonoids and BSA. The values of the binding affinities were in the order: QU>CA>TA>LU. The presence of Cu(2+) affected the interactions of flavonoids with BSA significantly. The binding affinities of QU and TA for BSA were decreased about 6.7% and 13.2%. However, the binding affinities of LU and CA for BSA were increased about 43.0% and 20.7%. The formation of Cu(2+)-flavonoid complex and steric hindrance together influenced the binding affinities of QU, LU and TA for BSA, while the conformational change of BSA may be the main reason for the increased binding affinity of CA for BSA. However, the quenching mechanism for QU, LU, TA and CA to BSA was based on static quenching combined with non-radiative energy transfer irrespective of the absence or presence of Cu(2+). The UV-visible results showed the change in BSA conformation and the formation of flavonoid-Cu(2+) complex. The CD results also explained the conformational changes of BSA on binding with flavonoids.
四种黄酮类化合物槲皮素(QU)、木樨草素(LU)、杨梅素(TA)和(+)-儿茶素(CA)具有相同的 A 和 B 环但 C 环取代基不同,通过荧光、紫外可见和圆二色性(CD)等各种光谱方法研究了它们在不存在和存在 Cu(2+)时与牛血清白蛋白(BSA)的结合。结果表明,3 位的羟基基团增加了黄酮类化合物与 BSA 之间的结合亲和力。结合亲和力的值顺序为:QU>CA>TA>LU。Cu(2+)的存在显著影响黄酮类化合物与 BSA 的相互作用。QU 和 TA 与 BSA 的结合亲和力分别降低了约 6.7%和 13.2%。然而,LU 和 CA 与 BSA 的结合亲和力分别增加了约 43.0%和 20.7%。Cu(2+)-黄酮类化合物配合物的形成和空间位阻共同影响 QU、LU 和 TA 与 BSA 的结合亲和力,而 BSA 构象的变化可能是 CA 与 BSA 结合亲和力增加的主要原因。然而,无论是否存在 Cu(2+),QU、LU、TA 和 CA 对 BSA 的猝灭机制均基于静态猝灭结合非辐射能量转移。紫外可见结果表明 BSA 构象的变化和黄酮类化合物-Cu(2+)配合物的形成。CD 结果也解释了 BSA 与黄酮类化合物结合时构象的变化。