Foucaud B, Biellmann J F
Biochimie. 1982 Oct;64(10):941-7. doi: 10.1016/s0300-9084(82)80357-x.
Yeast alcohol dehydrogenase is very rapidly and irreversibly inactivated by 3-chloroacetyl pyridine adenine dinucleotide, a reactive NAD+-analogue (Biellmann et al., 1974, FEBS Lett. 40, 29-32). Kinetic investigations with this compound, and structurally related compounds, show that this inactivation, against which NAD+ provides a complete protection, corresponds to an affinity label. The incorporation of the coenzyme analogue correlates linearly with the enzyme inactivation, the total inactivation corresponding to one mole of inactivator per coenzyme binding site. The pH-dependence of the inactivation rates of the enzyme by this coenzyme analogue and by its reduced form reflects exactly the pH variation of their respective dissociation constants. In spite of a good stability of the label in the non denatured inactivated enzyme, no modified amino-acid residue could be identified. Considering the affinity of this analogue for yeast alcohol dehydrogenase and the strict steric requirements of this enzyme towards its ligands, the nature of the inactivation reaction as well as different possibilities of the loss of the label in the inactivated enzyme are discussed.
酵母乙醇脱氢酶会被3-氯乙酰吡啶腺嘌呤二核苷酸(一种活性NAD +类似物)非常迅速且不可逆地失活(Biellmann等人,1974年,《欧洲生物化学学会联合会快报》40,29 - 32)。对该化合物以及结构相关化合物的动力学研究表明,这种失活作用(NAD +可对其提供完全保护)相当于一种亲和标记。辅酶类似物的掺入与酶失活呈线性相关,完全失活对应于每个辅酶结合位点一摩尔的失活剂。这种辅酶类似物及其还原形式对酶失活速率的pH依赖性准确反映了它们各自解离常数的pH变化。尽管标记物在未变性的失活酶中具有良好的稳定性,但未鉴定出修饰的氨基酸残基。考虑到该类似物对酵母乙醇脱氢酶的亲和力以及该酶对其配体严格的空间要求,讨论了失活反应的性质以及失活酶中标记物丢失的不同可能性。