Sládek N E, Rekha G K, Lee M J, Nagasawa H T
Department of Pharmacology, Medical School, Academic Health Center, University of Minnesota, 6-120 Jackson Hall, 321 Church Street SE, 55455, Minneapolis, MN, USA. slade001@.tc.umn.edu
Chem Biol Interact. 2001 Jan 30;130-132(1-3):135-49. doi: 10.1016/s0009-2797(00)00229-5.
In our efforts to identify agents that would specifically inhibit ALDH3A1, we had previously studied extensively the effect of an N(1)-alkyl, an N(1)-methoxy, and several N(1)-hydroxy-substituted ester derivatives of chlorpropamide on the catalytic activities of ALDH3A1s derived from human normal stomach mucosa (nALDH3A1) and human tumor cells (tALDH3A1), and of two recombinant aldehyde dehydrogenases, viz. human rALDH1A1 and rALDH2. The N(1)-methoxy analogue of chlorpropamide, viz. 4-chloro-N-methoxy-N-[(propylamino)carbonyl]benzenesulfonamide (API-2), was found to be a relatively selective and potent inhibitor of tALDH3A1-catalyzed oxidation as compared to its ability to inhibit nALDH3A-catalyzed oxidation, but even more potently inhibited ALDH2-catalyzed oxidation, whereas an ester analogue, viz. (acetyloxy)[(4-chlorophenyl)sulfonyl]carbamic acid 1,1-dimethylethyl ester (NPI-2), selectively inhibited tALDH3A1-catalyzed oxidation as compared to its ability to inhibit nALDH3A1-, ALDH1A1- and ALDH2-catalyzed oxidations, and this inhibition was apparently irreversible. Three additional chlorpropamide analogues, viz. 4-chloro-N,O-bis(ethoxycarbonyl)-N-hydroxybenzenesulfonamide (NPI-4), N,O-bis(carbomethoxy)methanesulfohydroxamic acid (NPI-5), and 2-[(ethoxycarbonyl)oxy]-1,2-benzisothiazol-3(2H)-one 1,1-dioxide (NPI-6), were evaluated in the present investigation. Quantified were NAD-linked oxidation of benzaldehyde catalyzed by nALDH3A1 and tALDH3A1, and NAD-linked oxidation of acetaldehyde catalyzed by rALDH1A1 and rALDH2, all at 37 degrees C and pH 8.1, and in the presence and absence of inhibitor. NPI-4, NPI-5 and NPI-6 were not substrates for the oxidative reactions catalyzed by any of the ALDHs studied. Oxidative reactions catalyzed by the ALDH3A1s, rALDH1A1 and rALDH2 were each inhibited by NPI-4 and NPI-5. NPI-6 was a poor inhibitor of nALDH3A1- and tALDH3A1-catalyzed oxidations, but was a relatively potent inhibitor of rALDH1A1- and rALDH2-catalyzed oxidations. In all cases, inhibition of ALDH-catalyzed oxidation was directly related to the product of inhibitor concentration and preincubation (enzyme+inhibitor) time. As judged by the product values (microMxmin) required to effect 50% inhibition (IC(50)): (1) nALDH3A1 and tALDH3A1 were essentially equisensitive to inhibition by NPI-4 and NPI-5, and both enzymes were poorly inhibited by NPI-6; (2) rALDH1A1 was, relative to the ALDH3A1s, slightly more sensitive to inhibition by NPI-4 and NPI-5, and far more sensitive to inhibition by NPI-6; and (3) rALDH1A1 was, relative to rALDH2, essentially equisensitive to inhibition by NPI-5, whereas, it was slightly more sensitive to inhibition by NPI-4 and NPI-6.
在我们寻找能够特异性抑制醛脱氢酶3A1(ALDH3A1)的试剂的过程中,我们之前广泛研究了氯磺丙脲的N(1)-烷基、N(1)-甲氧基以及几种N(1)-羟基取代的酯衍生物对源自人正常胃黏膜的ALDH3A1(nALDH3A1)和人肿瘤细胞的ALDH3A1(tALDH3A1)的催化活性的影响,以及对两种重组醛脱氢酶,即人重组ALDH1A1和ALDH2的催化活性的影响。发现氯磺丙脲的N(1)-甲氧基类似物,即4-氯-N-甲氧基-N-[(丙基氨基)羰基]苯磺酰胺(API-2),与其抑制nALDH3A催化氧化的能力相比,是tALDH3A1催化氧化的相对选择性和强效抑制剂,但对ALDH2催化氧化的抑制作用更强。而一种酯类似物,即(乙酰氧基)[(4-氯苯基)磺酰基]氨基甲酸1,1-二甲基乙酯(NPI-2),与其抑制nALDH3A1、ALDH1A1和ALDH2催化氧化的能力相比,选择性地抑制tALDH3A1催化氧化,并且这种抑制作用显然是不可逆的。在本研究中评估了另外三种氯磺丙脲类似物,即4-氯-N,O-双(乙氧基羰基)-N-羟基苯磺酰胺(NPI-4)、N,O-双(甲氧羰基)甲磺基异羟肟酸(NPI-5)和2-[(乙氧基羰基)氧基]-1,2-苯并异噻唑-3(2H)-酮1,1-二氧化物(NPI-6)。对nALDH3A1和tALDH3A1催化的苯甲醛的NAD偶联氧化反应,以及rALDH1A1和rALDH2催化的乙醛的NAD偶联氧化反应进行了定量分析,所有反应均在37℃、pH 8.1条件下进行,且有抑制剂和无抑制剂存在的情况下进行。NPI-4、NPI-5和NPI-6不是所研究的任何一种醛脱氢酶催化的氧化反应的底物。NPI-4和NPI-5抑制了ALDH3A1、rALDH1A1和rALDH2催化的氧化反应。NPI-6对nALDH3A1和tALDH3A1催化的氧化反应是一种较弱的抑制剂,但对rALDH1A1和rALDH2催化的氧化反应是一种相对强效的抑制剂。在所有情况下,醛脱氢酶催化氧化反应的抑制作用与抑制剂浓度和预孵育(酶+抑制剂)时间的乘积直接相关。根据实现50%抑制(IC(50))所需的乘积值(微摩尔×分钟)判断:(1) nALDH3A1和tALDH3A1对NPI-4和NPI-5的抑制作用基本同等敏感,且两种酶对NPI-6的抑制作用较弱;(2) rALDH1A1相对于ALDH3A1s,对NPI-4和NPI-5的抑制作用稍敏感,对NPI-6的抑制作用更敏感得多;(3) rALDH1A1相对于rALDH2,对NPI-5的抑制作用基本同等敏感,而对NPI-4和NPI-6的抑制作用稍敏感。