Maier K L, Matejkova E, Hinze H, Leuschel L, Weber H, Beck-Speier I
GSF-Projekt Inhalation, Arbeitsgruppe Biochemie, Neuherberg, FRG.
FEBS Lett. 1989 Jul 3;250(2):221-6. doi: 10.1016/0014-5793(89)80725-2.
Oxidation of the reactive site methionine (Met) in alpha-1-proteinase inhibitor (alpha-1-PI) to methionine sulfoxide (Met(O] is known to cause depletion of its elastase inhibitory activity. To estimate the selectivity of different oxidants in converting Met to Met(O) in alpha-1-PI, we measured the molar ratio Met(O)/alpha-1-PI at total inactivation. This ratio was determined to be 1.2 for both the myeloperoxidase/H2O2/chloride system and the related compound NH2Cl. With taurine monochloramine, another myeloperoxidase-related oxidant, 1.05 mol Met(O) were generated per mol alpha-1-PI during inactivation. These oxidants attack preferentially one Met residue in alpha-1-PI, which is identical with Met 358, as concluded from the parallelism of loss of elastase inhibitory activity and oxidation of Met. A similar high specificity for Met oxidation was determined for the xanthine oxidase-derived oxidants. In contrast, the ratio found for ozone and m-chloroperoxybenzoic acid was 6.0 and 5.0, respectively, indicating oxidation of additional Met residues besides the relative site Met in alpha-1-PI, i.e. unselective action of these oxidants. Further studies were performed on the efficiency of oxidants for total depletion of the elastase inhibitory capacity of alpha-1-PI. Ozone and m-chloroperoxybenzoic acid were 10-fold less effective and the superoxide anion/hydroxyl radicals were 30-50-fold less effective to inactivate the elastase inhibitory activity as compared to the myeloperoxidase-derived oxidants. The myeloperoxidase-related oxidants are discussed as important regulators of alpha-1-PI activity in vivo.
众所周知,α1-抗胰蛋白酶(α1-PI)中反应性位点甲硫氨酸(Met)氧化为甲硫氨酸亚砜(Met(O))会导致其弹性蛋白酶抑制活性丧失。为了评估不同氧化剂将α1-PI中的Met转化为Met(O)的选择性,我们测量了完全失活时Met(O)/α1-PI的摩尔比。结果发现,髓过氧化物酶/H2O2/氯化物体系及相关化合物NH2Cl的该比例均为1.2。在失活过程中,另一种与髓过氧化物酶相关的氧化剂氯胺牛磺酸每摩尔α1-PI产生1.05摩尔Met(O)。根据弹性蛋白酶抑制活性丧失与Met氧化的平行关系推断,这些氧化剂优先攻击α1-PI中的一个Met残基,该残基与Met 358相同。对于黄嘌呤氧化酶衍生的氧化剂,也确定了类似的对Met氧化的高特异性。相比之下,臭氧和间氯过氧苯甲酸的该比例分别为6.0和5.0,这表明除了α1-PI中相对位点的Met残基外,还有其他Met残基被氧化,即这些氧化剂的作用不具有选择性。我们进一步研究了氧化剂使α1-PI弹性蛋白酶抑制能力完全丧失的效率。与髓过氧化物酶衍生的氧化剂相比,臭氧和间氯过氧苯甲酸使弹性蛋白酶抑制活性失活的效率低10倍,超氧阴离子/羟基自由基的效率低30至50倍。髓过氧化物酶相关的氧化剂被认为是体内α1-PI活性的重要调节剂。