Cucurou C, Battioni J P, Thang D C, Nam N H, Mansuy D
Laboratoire de Chimie et Biochimie Pharmacologiques et Toxicologiques (URA 400 CNRS), Paris, France.
Biochemistry. 1991 Sep 17;30(37):8964-70. doi: 10.1021/bi00101a008.
Inhibition of soybean lipoxygenase (L-1) and potato 5-lipoxygenase (5-PLO) by the pyrazoline derivatives phenidone and BW755C only occurs after oxidation of these compounds by the peroxidase-like activity of the lipoxygenases. There is a clear relationship between this oxidation and the irreversible inactivation of L-1. The final product of phenidone oxidation by L-1, 4,5-didehydrophenidone, is not responsible of this inactivation, but the species derived from a one-electron oxidation of phenidone plays a key role in L-1 inactivation. In the absence of O2, inactivation of 1 mol of L-1 occurs after the oxidation of 34 mol of phenidone and the covalent binding of 0.8 mol of phenidone-derived metabolite(s) to L-1. In the presence of O2, inactivation of 1 mol of L-1 occurs already after oxidation of 11 mol of phenidone and only involves the covalent binding of 0.4 mol of phenidone-derived metabolite(s) to L-1. A mechanism is proposed for L-1 inactivation by phenidone, which involves the irreversible binding of a phenidone metabolite to the protein and the oxidation of an L-1 amino acid residue (in the presence of O2).
吡唑啉衍生物非那宗和BW755C对大豆脂氧合酶(L-1)和马铃薯5-脂氧合酶(5-PLO)的抑制作用仅在这些化合物被脂氧合酶的过氧化物酶样活性氧化后才会发生。这种氧化与L-1的不可逆失活之间存在明显的关系。L-1对非那宗氧化的最终产物4,5-二脱氢非那宗并不负责这种失活,但非那宗单电子氧化产生的物质在L-1失活中起关键作用。在没有O2的情况下,34摩尔非那宗氧化以及0.8摩尔非那宗衍生代谢物与L-1共价结合后,1摩尔L-1发生失活。在有O2的情况下,11摩尔非那宗氧化后1摩尔L-1就已发生失活,且仅涉及0.4摩尔非那宗衍生代谢物与L-1的共价结合。提出了一种非那宗使L-1失活的机制,该机制涉及非那宗代谢物与蛋白质的不可逆结合以及L-1氨基酸残基的氧化(在有O2的情况下)。