Balogh Larissa M, Roberts Arthur G, Shireman Laura M, Greene Robert J, Atkins William M
Department of Medicinal Chemistry, University of Washington, Seattle, Washington 98195-7610, USA.
J Biol Chem. 2008 Jun 13;283(24):16702-10. doi: 10.1074/jbc.M801725200. Epub 2008 Apr 17.
4-Hydroxy-2-nonenal (HNE) is a toxic aldehyde generated during lipid peroxidation and has been implicated in a variety of pathological states associated with oxidative stress. Glutathione S-transferase (GST) A4-4 is recognized as one of the predominant enzymes responsible for the metabolism of HNE. However, substrate and product stereoselectivity remain to be fully explored. The results from a product formation assay indicate that hGSTA4-4 exhibits a modest preference for the biotransformation of S-HNE in the presence of both enantiomers. Liquid chromatography mass spectrometry analyses using the racemic and enantioisomeric HNE substrates explicitly demonstrate that hGSTA4-4 conjugates glutathione to both HNE enantiomers in a completely stereoselective manner that is not maintained in the spontaneous reaction. Compared with other hGST isoforms, hGSTA4-4 shows the highest degree of stereoselectivity. NMR experiments in combination with simulated annealing structure determinations enabled the determination of stereochemical configurations for the GSHNE diastereomers and are consistent with an hGSTA4-4-catalyzed nucleophilic attack that produces only the S-configuration at the site of conjugation, regardless of substrate chirality. In total these results indicate that hGSTA4-4 exhibits an intriguing combination of low substrate stereoselectivity with strict product stereoselectivity. This behavior allows for the detoxification of both HNE enantiomers while generating only a select set of GSHNE diastereomers with potential stereochemical implications concerning their effects and fates in biological tissues.
4-羟基-2-壬烯醛(HNE)是脂质过氧化过程中产生的一种有毒醛类,与多种氧化应激相关的病理状态有关。谷胱甘肽S-转移酶(GST)A4-4被认为是负责HNE代谢的主要酶之一。然而,底物和产物的立体选择性仍有待充分探索。产物形成试验的结果表明,在两种对映体存在的情况下,hGSTA4-4对S-HNE的生物转化表现出适度的偏好。使用外消旋和对映异构的HNE底物进行的液相色谱质谱分析明确表明,hGSTA4-4以完全立体选择性的方式将谷胱甘肽与两种HNE对映体结合,而这种立体选择性在自发反应中并不存在。与其他hGST同工型相比,hGSTA4-4表现出最高程度的立体选择性。结合模拟退火结构测定的核磁共振实验能够确定GSHNE非对映异构体的立体化学构型,并且与hGSTA4-4催化的亲核攻击一致,该攻击在结合位点仅产生S-构型,而与底物的手性无关。总的来说,这些结果表明hGSTA4-4表现出低底物立体选择性与严格产物立体选择性的有趣组合。这种行为允许对两种HNE对映体进行解毒,同时仅产生一组特定的GSHNE非对映异构体,这些异构体在生物组织中的作用和命运可能具有立体化学意义。