Tsujimoto Kazuo, Hayashi Akio, Ha Tae Joung, Kubo Isao
School of Material Sciences, Japan Advanced Institute of Science and Technology, Nomi, Ishikawa 923-1292, Japan.
Z Naturforsch C J Biosci. 2007 Sep-Oct;62(9-10):710-6. doi: 10.1515/znc-2007-9-1014.
6-Pentadeca(e)nylsalicylic acids isolated from the cashew Anacardium occidentale L. (Anacardiaceae), commonly known as anacardic acids, inhibited the linoleic acid peroxidation catalyzed by soybean lipoxygenase-1 (EC 1.13.11.12, type 1) competitively without prooxidant effects. Their parent compound, salicylic acid, did not have this inhibitory activity up to 800 pm, indicating that the pentadeca(e)nyl group is an essential element to elicit the activity. The inhibition is attributed to its ability to chelate iron in the enzyme. Thus, anacardic acids chelate iron in the active site of the enzyme and then the hydrophobic tail portion slowly begins to interact with the hydrophobic domain close to the active site. Formation of the anacardic acids-ferric ion complex was detected in the ratio of 2:1 as the base peak in the negative ion electrospray ionization mass spectrometry. Hence, anacardic acids inhibit both Eox and Ered forms.
从腰果(漆树科的西方腰果)中分离出的6-十五碳(烯)基水杨酸,通常称为漆树酸,可竞争性抑制大豆脂氧合酶-1(EC 1.13.11.12,1型)催化的亚油酸过氧化反应,且无促氧化作用。其母体化合物水杨酸在高达800 pm时没有这种抑制活性,这表明十五碳(烯)基是引发该活性的关键元素。这种抑制作用归因于其螯合酶中铁的能力。因此,漆树酸在酶的活性位点螯合铁,然后疏水尾部部分开始缓慢地与靠近活性位点的疏水区域相互作用。在负离子电喷雾电离质谱中,以2:1的比例检测到漆树酸-铁离子络合物作为基峰。因此,漆树酸对氧化态和还原态均有抑制作用。