Coughlan M P, Johnson J L, Rajagopalan K V
J Biol Chem. 1980 Apr 10;255(7):2694-9.
The reduced forms of xanthine oxidase, xanthine dehydrogenase, aldehyde oxidase, and sulfite oxidase are inactivated by cyanide. Following gel filtration to remove excess of reductant and cyanide, the isolated enzymes remain inactive. Thiocyanate, a product of inactivation of the oxidized forms of the xanthine- and aldehyde-oxidizing enzymes by cyanide, is not released during inactivation of the reduced enzymes. Studies with [14C]cyanide show that, while stoichiometric binding is required for the onset of inactivation, its continued binding is not essential to maintenance of the inactivated state. Electron paramagnetic resonance and absorption spectroscopic studies on the isolated inactivated enzymes show that prosthetic groups other than molybdenum are fully oxidized but that the molybdenum centers are modified. Reactivation is accomplished by incubation with suitable oxidants. Aerobic reactivation of inactive sulfite oxidase required only 1 eq of ferricyanide/active site. However, under rigorously anaerobic conditions, 3 to 4 mol of ferricyanide/active site were reduced, indicating that the molybdenum centers in the inactive enzyme had been reduced below the levels attained by the native enzyme during catalysis.
黄嘌呤氧化酶、黄嘌呤脱氢酶、醛氧化酶和亚硫酸盐氧化酶的还原形式会被氰化物灭活。经过凝胶过滤以去除过量的还原剂和氰化物后,分离出的酶仍然没有活性。硫氰酸盐是氰化物使黄嘌呤氧化酶和醛氧化酶的氧化形式失活的产物,在还原酶失活过程中不会释放出来。用[14C]氰化物进行的研究表明,虽然失活开始需要化学计量的结合,但其持续结合对于维持失活状态并非必不可少。对分离出的失活酶进行的电子顺磁共振和吸收光谱研究表明,除钼以外的辅基已完全氧化,但钼中心发生了改变。通过与合适的氧化剂一起孵育可实现再活化。无活性的亚硫酸盐氧化酶的需氧再活化仅需1当量铁氰化物/活性位点。然而,在严格厌氧条件下,3至4摩尔铁氰化物/活性位点被还原,这表明失活酶中的钼中心已被还原至低于天然酶在催化过程中达到的水平。