Luo G M, Qi D H, Zheng Y G, Mu Y, Yan G L, Yang T S, Shen J C
Key Laboratory for Molecular Enzymology and Engineering of Ministry of Education, Jilin University, Changchun, PR China.
FEBS Lett. 2001 Mar 9;492(1-2):29-32. doi: 10.1016/s0014-5793(01)02226-8.
The free radicals generated from the iron containing system of xanthine oxidase and hypoxanthine (Fe-XO/HX) were directly detected by using spin trapping. It was found that not only superoxide anion (O(2)-) and hydroxyl radical (OH), but also alkyl or alkoxyl radicals (R*) were formed when saccharides such as glucose, fructose and sucrose were added into the Fe-XO/HX system. The generated amount of R* was dependent on the kind and concentration of saccharides added into the Fe-XO/HX system and no R* were detected in the absence of saccharides, indicating that there is an interaction between the saccharide molecules and the free radicals generated from the Fe-XO/HX system and saccharide molecules are essential for generating R* in the Fe-XO/HX system. It is expected that the toxicity of R* would be greater than of hydrophilic O(2)- and OH because they are liposoluble and their lives are longer and the active sites of biomolecules are closely related with lipophilic phase, thus they can damage cells more seriously than O(2)- and OH. The R* generated from the saccharide containing Fe-XO/HX can be effectively scavenged by selenium containing abzyme (Se-abzyme), indicating Se-abzyme is a promising antioxidant.
利用自旋捕捉技术直接检测了黄嘌呤氧化酶和次黄嘌呤含铁体系(Fe-XO/HX)产生的自由基。研究发现,当向Fe-XO/HX体系中加入葡萄糖、果糖和蔗糖等糖类时,不仅会形成超氧阴离子(O(2)-)和羟基自由基(OH),还会形成烷基或烷氧基自由基(R*)。R的生成量取决于加入到Fe-XO/HX体系中的糖类的种类和浓度,在不添加糖类的情况下未检测到R,这表明糖类分子与Fe-XO/HX体系产生的自由基之间存在相互作用,且糖类分子对于在Fe-XO/HX体系中生成R至关重要。预计R的毒性会大于亲水性的O(2)-和OH,因为它们是脂溶性的,寿命更长,且生物分子的活性位点与亲脂相密切相关,因此它们比O(2)-和OH更能严重损伤细胞。含硒抗体酶(Se-抗体酶)能够有效清除含糖类的Fe-XO/HX产生的R*,这表明Se-抗体酶是一种很有前景的抗氧化剂。