van Leeuwen J W, Tromp J, Nauta H
Biochim Biophys Acta. 1979 Apr 25;577(2):394-9. doi: 10.1016/0005-2795(79)90043-6.
We have studied the reaction of ferricytochrome c, methemoglobin and metmyoglobin with OH and alcohol radicals (methanol, ethanol, ethylene glycol and glycerol). These radicals can be divided into three groups: 1. The OH radicals which reduce the ferricytochrome c with a yield of (30 +/- 10)% and methemoglobin with a yield of (40 +/- 10)%. They do not reduce metmyoglobin. The reduction is not a normal bimolecular reaction but is most probably an intramolecular electron transfer of a protein radical. 2. Methanol and ethanol radicals which reduce all three hemoproteins with a yield of (100 +/- 5)%. This reduction is a normal bimolecular reaction. 3. Glycerol radicals which do not reduce the ferrihemoproteins under our experimental conditions. Ethylene glycol radicals do not reduce ferricytochrome c and metmyoglobin but they do reduce methemoglobin with a yield of (30 +/- 10)%.
我们研究了高铁细胞色素c、高铁血红蛋白和高铁肌红蛋白与羟基自由基和醇自由基(甲醇、乙醇、乙二醇和甘油)的反应。这些自由基可分为三组:1. 羟基自由基能使高铁细胞色素c以(30±10)%的产率被还原,使高铁血红蛋白以(40±10)%的产率被还原。它们不能还原高铁肌红蛋白。这种还原不是正常的双分子反应,很可能是蛋白质自由基的分子内电子转移。2. 甲醇和乙醇自由基能使所有三种血红素蛋白以(100±5)%的产率被还原。这种还原是正常的双分子反应。3. 在我们的实验条件下,甘油自由基不能还原高铁血红素蛋白。乙二醇自由基不能还原高铁细胞色素c和高铁肌红蛋白,但能使高铁血红蛋白以(30±10)%的产率被还原。