Pruñonosa J, Sagristá M L, Bozal J
Department of Biochemistry and Physiology, Faculty of Chemistry, University of Barcelona, Spain.
Drug Metab Dispos. 1991 Jul-Aug;19(4):787-92.
The inactivation of low-KM rat liver mitochondrial aldehyde dehydrogenase (ALDH) by the alcohol-sensitizing agent cyanamide (H2NCN) has been studied in vitro. The effect of the concentrations of NAD+ at different concentrations of catalase on the inactivation of ALDH by cyanamide (20 and 200 microM) in vitro point to an ALDH-NAD(+)-catalase complex prior to the binding to cyanamide to form the holoenzyme-inhibitor complex. Cyanamide itself could be responsible for the inactivation of ALDH. The possibility that both irreversibly inactivated ALDH and cyanamide remain free at the end of the inactivation process is discussed. The effects of pH and ionic strength on the inactivation process are also described. The pseudo-first order rate constants for inactivation of low-KM ALDH depends on both effects, suggesting that electrostatic forces are involved in the process and that a group with pK approximately 6.8, presumably a histidine residue, at the active site of ALDH could be involved. A representative equation for the inactivation process of low-KM ALDH by cyanamide in vitro has been fitted to experimental kinetic data, involving both catalase and inhibitor concentrations.
已在体外研究了酒精增敏剂氰胺(H2NCN)对低Km大鼠肝脏线粒体醛脱氢酶(ALDH)的失活作用。在体外,不同浓度过氧化氢酶存在时,NAD+浓度对氰胺(20和200微摩尔)使ALDH失活的影响表明,在与氰胺结合形成全酶-抑制剂复合物之前,存在ALDH-NAD(+)-过氧化氢酶复合物。氰胺本身可能是导致ALDH失活的原因。讨论了在失活过程结束时,不可逆失活的ALDH和氰胺是否都保持游离状态的可能性。还描述了pH和离子强度对失活过程的影响。低Km ALDH失活的拟一级速率常数取决于这两种影响,这表明静电作用力参与了该过程,并且ALDH活性位点上一个pK约为6.8的基团(可能是一个组氨酸残基)可能也参与其中。已将一个关于氰胺在体外使低Km ALDH失活过程的代表性方程拟合到实验动力学数据中,该数据涉及过氧化氢酶和抑制剂的浓度。