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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Molecular modeling on pyruvate phosphate dikinase of Entamoeba histolytica and in silico virtual screening for novel inhibitors
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Molecular modeling on pyruvate phosphate dikinase of Entamoeba histolytica and in silico virtual screening for novel inhibitors

机译:溶血性变形杆菌的丙酮酸磷酸二激酶的分子建模和计算机模拟筛选新型抑制剂

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摘要

Pyruvate phosphate dikinase (PPDK) is the key enzyme essential for the glycolytic pathway in most common and perilous parasite Entamoeba histolytica. Inhibiting the function of this enzyme could control the wide spread of intestinal infections caused by Entamoeba histolytica in humans. With this objective, we modeled the three dimensional structure of the PPDK protein. We used templates with 51% identity and 67% similarity to employ homology-modeling approach. Stereo chemical quality of protein structure was validated by protein structure validation program PROCHECK and VERIFY3D. Experimental proof available in literature along with the in silico studies indicated Lys21, Arg91, Asp323, Glu325 and Gln337 to be the probable active sites in the target protein. Virtual screening was carried out using the genetic docking algorithm GOLD and a consensus scoring function X-Score to substantiate the prediction. The small molecule libraries (ChemDivision database, Diversity dataset, Kinase inhibitor database) were used for screening process. Along with the high scoring results, the interaction studies provided promising ligands for future experimental screening to inhibit the function of PPDK in Entamoeba histolytica. Further, the phylogeny study was carried out to assess the possibility of using the proposed ligands as inhibitors in related pathogens.
机译:丙酮酸磷酸二激酶(PPDK)是最常见和危险的寄生虫组织解脂变形杆菌中糖酵解途径必不可少的关键酶。抑制这种酶的功能可以控制由溶组织变形杆菌引起的肠道感染在人类中的广泛传播。出于这个目标,我们对PPDK蛋白的三维结构进行了建模。我们使用具有51%同一性和67%相似性的模板来采用同源性建模方法。蛋白质结构的立体化学质量通过蛋白质结构验证程序PROCHECK和VERIFY3D进行了验证。文献和计算机研究表明,Lys21,Arg91,Asp323,Glu325和Gln337是靶蛋白中可能的活性位点。使用遗传对接算法GOLD和共识评分功能X-Score进行虚拟筛选,以证实预测结果。小分子文库(ChemDivision数据库,多样性数据集,激酶抑制剂数据库)用于筛选过程。除了获得高分的结果外,相互作用研究还为未来的实验筛选提供了有希望的配体,以抑制PPDK在溶组织性变形杆菌中的功能。此外,进行了系统发育研究,以评估在相关病原体中使用拟议的配体作为抑制剂的可能性。

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