OmPraba G, Velmurugan D
Department of Crystallography and Biophysics, University of Madras, Guindy Campus, Chennai 600 025, Tamilnadu, India.
Indian J Biochem Biophys. 2006 Jun;43(3):154-9.
Phospholipase A2s (PLA2) are a class of enzymes, which catalyze the hydrolysis of membrane phospholipids at the sn-2 position to release fatty acids and lysophospholipids. When the fatty acid is arachidonic acid (AA), a complementary metabolism leads to pro-inflammatory mediators collectively known as eicosanoids. Thus, inhibiting PLA2 activity remains a prime target for the development of new drugs for the treatment of inflammation-related diseases. More than one type of PLA2s plays a major role in inflammatory disease conditions. In the present study, quantitative structure-activity relationship (QSAR) study was performed for a series of 48 Me-indoxam derivatives as human group V PLA, (hVPLA2) inhibitors, using molecular operating environment (MOE) software. The hVPLA2 is a secretory PLA2 (sPLA2), involved in eicosanoid formation in inflammatory cells such as macrophages and mast cells. These studies have come out with three good predictive models (r = 0.82-0.84), which are cross-validated (rcv = 0.68-0.70) by leave-out-one method (Loo). The positive correlation of spatial descriptor Pmiz with inhibitory activity shows that proper orientation of the substitution at R position towards Z-axis is necessary to facilitate the possible interactions of the indole core with active site residues of the PLA2 enzyme. The negative contribution of b_rotN (atom and bond count-type descriptor) suggests that increasing flexibility conferred by the R substitution is detrimental for the activity. In addition to the hVPLA2 inhibitory activity is found to be highly influenced by molecular size, energy and polarity of the Me-indoxam derivatives.
磷脂酶A2(PLA2)是一类酶,可催化膜磷脂在sn-2位的水解,释放脂肪酸和溶血磷脂。当脂肪酸为花生四烯酸(AA)时,互补代谢会产生统称为类花生酸的促炎介质。因此,抑制PLA2活性仍然是开发治疗炎症相关疾病新药的主要目标。不止一种类型的PLA2在炎症性疾病中起主要作用。在本研究中,使用分子操作环境(MOE)软件对一系列48种甲基吲哚美辛衍生物作为人V组磷脂酶A2(hVPLA2)抑制剂进行了定量构效关系(QSAR)研究。hVPLA2是一种分泌型磷脂酶A2(sPLA2),参与巨噬细胞和肥大细胞等炎症细胞中类花生酸的形成。这些研究得出了三个良好的预测模型(r = 0.82 - 0.84),通过留一法(Loo)进行交叉验证(rcv = 0.68 - 0.70)。空间描述符Pmiz与抑制活性的正相关表明,R位取代基向Z轴的正确取向对于促进吲哚核心与PLA2酶活性位点残基的可能相互作用是必要的。b_rotN(原子和键计数型描述符)的负贡献表明,R取代赋予的柔韧性增加对活性不利。此外,发现甲基吲哚美辛衍生物的hVPLA2抑制活性受分子大小、能量和极性的高度影响。