Morgan Cynthia A, Parajuli Bibek, Buchman Cameron D, Dria Karl, Hurley Thomas D
Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, IN 46202, United States.
Department of Chemistry, Indiana University-Purdue University at Indianapolis, Indianapolis, IN 46202, United States.
Chem Biol Interact. 2015 Jun 5;234:18-28. doi: 10.1016/j.cbi.2014.12.008. Epub 2014 Dec 12.
N,N-diethylaminobenzaldehyde (DEAB) is a commonly used "selective" inhibitor of aldehyde dehydrogenase isoenzymes in cancer stem cell biology due to its inclusion as a negative control compound in the widely utilized Aldefluor assay. Recent evidence has accumulated that DEAB is not a selective inhibitory agent when assayed in vitro versus ALDH1, ALDH2 and ALDH3 family members. We sought to determine the selectivity of DEAB toward ALDH1A1, ALDH1A2, ALDH1A3, ALDH1B1, ALDH1L1, ALDH2, ALDH3A1, ALDH4A1 and ALDH5A1 isoenzymes and determine the mechanism by which DEAB exerts its inhibitory action. We found that DEAB is an excellent substrate for ALDH3A1, exhibiting a Vmax/KM that exceeds that of its commonly used substrate, benzaldehyde. DEAB is also a substrate for ALDH1A1, albeit an exceptionally slow one (turnover rate ∼0.03 min(-1)). In contrast, little if any turnover of DEAB was observed when incubated with ALDH1A2, ALDH1A3, ALDH1B1, ALDH2 or ALDH5A1. DEAB was neither a substrate nor an inhibitor for ALDH1L1 or ALDH4A1. Analysis by enzyme kinetics and QTOF mass spectrometry demonstrates that DEAB is an irreversible inhibitor of ALDH1A2 and ALDH2 with apparent bimolecular rate constants of 2900 and 86,000 M(-1) s(-1), respectively. The mechanism of inactivation is consistent with the formation of quinoid-like resonance state following hydride transfer that is stabilized by local structural features that exist in several of the ALDH isoenzymes.
N,N - 二乙氨基苯甲醛(DEAB)是癌症干细胞生物学中醛脱氢酶同工酶常用的“选择性”抑制剂,因为它被用作广泛使用的Aldefluor检测中的阴性对照化合物。最近有证据表明,在体外针对ALDH1、ALDH2和ALDH3家族成员进行检测时,DEAB并非选择性抑制剂。我们试图确定DEAB对ALDH1A1、ALDH1A2、ALDH1A3、ALDH1B1、ALDH1L1、ALDH2、ALDH3A1、ALDH4A1和ALDH5A1同工酶的选择性,并确定DEAB发挥抑制作用的机制。我们发现DEAB是ALDH3A1的优良底物,其Vmax/KM超过其常用底物苯甲醛。DEAB也是ALDH1A1的底物,尽管速度异常缓慢(周转速率约为0.03 min⁻¹)。相比之下,与ALDH1A2、ALDH1A3、ALDH1B1、ALDH2或ALDH5A1一起孵育时,几乎未观察到DEAB的周转。DEAB既不是ALDH1L1或ALDH4A1的底物,也不是其抑制剂。通过酶动力学和QTOF质谱分析表明,DEAB是ALDH1A2和ALDH2的不可逆抑制剂,表观双分子速率常数分别为2900和86,000 M⁻¹ s⁻¹。失活机制与氢化物转移后醌样共振态的形成一致,该共振态由几种ALDH同工酶中存在的局部结构特征稳定。