Salvi A, Carrupt P, Tillement J, Testa B
Institut de Chimie Thérapeutique, Section de Pharmacie, Université de Lausanne, CH-1015, Lausanne, Switzerland.
Biochem Pharmacol. 2001 May 15;61(10):1237-42. doi: 10.1016/s0006-2952(01)00607-4.
Oxidative damage to proteins results in biological dysfunctions such as perturbed activity in enzymes, transport proteins, and receptors. Here, we investigated structural damage to proteins induced by free radicals. Structural alterations to lysozyme, human serum albumin (HSA) and beta-lactoglobulin A were monitored by capillary zone electrophoresis. Four well-known antioxidants (quercetin, melatonin, Trolox, and chlorogenic acid) were examined for their ability to inhibit protein damage and to bind to these proteins. Melatonin and chlorogenic acid, which did not bind to any of the three proteins under study, showed scavenging and protective activities well correlated with the amount of free radicals generated. Trolox, which bound only to HSA, was a better protector of HSA than of the two other proteins, indicating that its antioxidant capacity is increased by a shielding effect. Finally, quercetin was a good antioxidant in protecting lysozyme and beta-lactoglobulin A, but its binding to HSA resulted in a pro-oxidant effect that accelerated HSA fragmentation. These results demonstrate that binding of an antioxidant to a protein may potentiate protection or damage depending on the properties of the antioxidant.
蛋白质的氧化损伤会导致生物功能障碍,如酶、转运蛋白和受体的活性受到干扰。在此,我们研究了自由基对蛋白质的结构损伤。通过毛细管区带电泳监测溶菌酶、人血清白蛋白(HSA)和β-乳球蛋白A的结构改变。研究了四种著名的抗氧化剂(槲皮素、褪黑素、Trolox和绿原酸)抑制蛋白质损伤以及与这些蛋白质结合的能力。褪黑素和绿原酸未与所研究的三种蛋白质中的任何一种结合,它们的清除和保护活性与产生的自由基量密切相关。仅与HSA结合的Trolox对HSA的保护作用优于另外两种蛋白质,表明其抗氧化能力因屏蔽效应而增强。最后,槲皮素在保护溶菌酶和β-乳球蛋白A方面是一种良好的抗氧化剂,但其与HSA的结合导致了促氧化作用,加速了HSA的片段化。这些结果表明,抗氧化剂与蛋白质的结合可能根据抗氧化剂的性质增强保护作用或造成损伤。