Xiao Jianbo, Suzuki Makiko, Jiang Xinyu, Chen Xiaoqing, Yamamoto Koichiro, Ren Fenglian, Xu Ming
College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan 410083, P. R. China.
J Agric Food Chem. 2008 Apr 9;56(7):2350-6. doi: 10.1021/jf7037295. Epub 2008 Mar 12.
The B-ring substitution pattern of flavonols is a significant structural feature for their function as free radical scavengers and antioxidants. In this paper, four differently substituted B-ring hydroxylation flavonols (galangin, kaempferol, quercetin, and myricetin) and a flavonol glycoside (quercitrin) were studied for their ability to bind BSA by quenching the protein intrinsic fluorescence. From the spectra obtained, the biomolecular quenching constants, the apparent static binding constants, and the binding site values were calculated. The B-ring hydroxylation of flavonols significantly affected the binding/quenching process; in general, the binding affinity increased with the number of hydroxyl groups on the B-ring. The binding constants ( Ka) were determined as myricetin (4.90 x 10(8) L/mol) > quercetin (3.65 x 10(7) L/mol) > kaempferol (2.57 x 10(6) L/mol) > galangin (6.43 x 10(5) L/mol). The glycoside substitute at the C-ring position decreased the binding affinity. The chromatographic retention factor ( K') and logarithms of apparent partition coefficient (log Kow) were linear to the logarithms of apparent binding constants (log Ka) for flavonols with increasing hydroxyl groups on the B-ring. These results showed that the hydrogen bond force play an important role in binding flavonols to BSA. These results are also in agreement with the generally accepted structure-dependent free radical scavenger and antioxidant abilities of flavonols.
黄酮醇的B环取代模式是其作为自由基清除剂和抗氧化剂发挥功能的重要结构特征。本文研究了四种不同B环羟基化的黄酮醇(高良姜素、山奈酚、槲皮素和杨梅素)以及一种黄酮醇苷(槲皮苷)通过猝灭蛋白质固有荧光来结合牛血清白蛋白(BSA)的能力。根据所得光谱计算了生物分子猝灭常数、表观静态结合常数和结合位点值。黄酮醇的B环羟基化显著影响结合/猝灭过程;一般来说,结合亲和力随着B环上羟基数量的增加而增加。结合常数(Ka)的测定结果为杨梅素(4.90×10⁸ L/mol)>槲皮素(3.65×10⁷ L/mol)>山奈酚(2.57×10⁶ L/mol)>高良姜素(6.43×10⁵ L/mol)。C环位置的糖苷取代降低了结合亲和力。对于B环上羟基数量增加的黄酮醇,色谱保留因子(K')和表观分配系数对数(log Kow)与表观结合常数对数(log Ka)呈线性关系。这些结果表明氢键力在黄酮醇与BSA的结合中起重要作用。这些结果也与普遍接受的黄酮醇结构依赖性自由基清除剂和抗氧化剂能力相一致。