Meier B, Scherk C, Schmidt M, Parak F
Fakultät für Physik E17, Technische Universität München, James Franck Strasse, D-85747 Garching, Federal Republic of Germany.
Biochem J. 1998 Apr 15;331 ( Pt 2)(Pt 2):403-7. doi: 10.1042/bj3310403.
The iron-containing superoxide dismutase from Propionibacterium shermanii shows, in contrast with other iron superoxide dismutases, only a minor inhibition by azide or fluoride (10-100 mM) of up to 23% at pH 7.8. The activity of the protein with Mn bound to the active site was not diminished under the same conditions. The binding constant between azide and the Fe3+ ion was determined as approx. 2 mM and for fluoride approx. 2.3 mM; they are so far comparable to those known for other iron superoxide dismutases. This seems to be a discrepancy because all other iron superoxide dismutases so far known are described as being inhibited by 50-70% by 10 mM azide. However, towards lower pH there was a drastically increased inhibition by both anions. At pH 6.8 about 80% inhibition was exhibited by azide or fluoride at a concentration of 10 mM or higher. In contrast, on increasing the pH, azide or fluoride still bound to the Fe3+ at the active site but their inhibition capacity decreased. This observation implies that both anions bind to the metal at a position that is empty at low pH, whereas at higher pH water or a negatively charged hydroxyl anion is bound. It is likely that the superoxide anion binds to the same position and has to replace the sixth ligand, leading to a diminished catalytic activity of the superoxide dismutase owing to steric and/or electrostatic inhibition of the ligand.
与其他铁超氧化物歧化酶相比,费氏丙酸杆菌的含铁超氧化物歧化酶在pH 7.8时,仅受到叠氮化物或氟化物(10 - 100 mM)的轻微抑制,抑制率最高达23%。在相同条件下,活性位点结合锰的蛋白质活性并未降低。测定叠氮化物与Fe3+离子之间的结合常数约为2 mM,氟化物约为2.3 mM;到目前为止,它们与其他铁超氧化物歧化酶的已知结合常数相当。这似乎存在差异,因为迄今为止已知的所有其他铁超氧化物歧化酶都被描述为在10 mM叠氮化物作用下受到50 - 70%的抑制。然而,在较低pH值时,两种阴离子的抑制作用急剧增强。在pH 6.8时,10 mM或更高浓度的叠氮化物或氟化物表现出约80%的抑制作用。相反,随着pH值升高,叠氮化物或氟化物仍与活性位点的Fe3+结合,但它们的抑制能力下降。这一观察结果表明,两种阴离子在低pH值时空位的位置与金属结合,而在较高pH值时,水或带负电荷的羟基阴离子与之结合。超氧阴离子可能与相同位置结合,并且必须取代第六个配体,由于配体的空间和/或静电抑制作用,导致超氧化物歧化酶的催化活性降低。