Batool Maria, Khalid Mohammad Hassan, Hassan Muhammad Nadeem, Fauzia Yusuf Hafeez
Bioinformation. 2011;7(8):384-7. doi: 10.6026/97320630007384. Epub 2011 Dec 21.
Lipopeptides have a widespread role in different pathways of Bacillus subtilis; they can act as antagonists, spreader and immunostimulators. Plipastatin, an antifungal antibiotic, is one of the most important lipopeptide nonribosomly produced by Bacillus subtilis. Plipastatin has strong fungitoxic activity and involve in inhibition of phospholipase A2 and biofilm formation. For better understanding of the molecule and pathway by which lipopeptide plipastatin is synthesized, we present a computationally predicted structure of plipastatin using homology modeling. Primary and secondary structure analysis suggested that ppsD is a hydrophilic protein containing a significant proportion of alpha helices, and subcellular localization predictions suggested it is a cytoplasmic protein. The tertiary structure of protein (plipastatin synthase subunit D) was predicted by homology modeling. The results suggest a flexible structure which is also an important characteristic of active enzymes enabling them to bind various cofactors and substrates for proper functioning. Validation of 3D structure was done using Ramachandran plot ProsA-web and QMEAN score.This predicted information will help in better understanding of mechanisms underlying plipastatin synthase subunit D synthesis. Plipastatin can be used as an inhibitor of various fungal diseases in plants.
脂肽在枯草芽孢杆菌的不同途径中具有广泛作用;它们可作为拮抗剂、扩散剂和免疫刺激剂。抗真菌抗生素普利他汀是枯草芽孢杆菌非核糖体产生的最重要的脂肽之一。普利他汀具有很强的杀真菌活性,并参与抑制磷脂酶A2和生物膜形成。为了更好地理解脂肽普利他汀的合成分子和途径,我们使用同源建模展示了普利他汀的计算预测结构。一级和二级结构分析表明,ppsD是一种亲水性蛋白质,含有相当比例的α螺旋,亚细胞定位预测表明它是一种细胞质蛋白。通过同源建模预测了蛋白质(普利他汀合酶亚基D)的三级结构。结果表明其结构具有灵活性,这也是活性酶的一个重要特征,使其能够结合各种辅因子和底物以正常发挥功能。使用拉氏图、ProsA-web和QMEAN评分对三维结构进行了验证。这些预测信息将有助于更好地理解普利他汀合酶亚基D合成的潜在机制。普利他汀可作为植物各种真菌病害的抑制剂。