MODELING OF HUMAN CASPASE-5 PROTEIN AND DOCKING STUDIES OF CASPASE-5 INHIBITORS AGAINST MODELED CASPASE-5

Haripriya Munipalli
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Abstract

The present study is aimed at building human caspase-5 protein structure by homology modeling. Human interleukin-1 beta convertase P20 (1RWN) and human caspase-1 (3E4C) crystal structures from blast results were taken as caspase-5 structural relatives (from protein data bank). The former showed 58% and the latter, 57% sequence identity with the target caspase-5 protein. The 3D-model was generated by using modeler in Accelrys discovery studio 2.5. The energy refinement was also been carried out in the modeler protocol. The Ramachandran plot showed 89.1% of residues in the favorable region. Further, binding site analysis was done to decipher the interacting residues at the active site region of the modeled protein. Then, docking of Pyrazinone mono amide analogues, peptide aldehydes, substituted P4 aryl sulfonamides on a pyridine scaffold analogues, P1 aspartyl ketone derivatives on a pyridine scaffold analogues and a P3 sulfonamide-modified thiophene derivatives against modeled human caspase-5 protein were performed using ligandFit. The results showed that Cys161, Arg55, Val214 and His113 were found to be among the interacting residues of caspase-5 with all the types of inhibitors. These 4 residues of caspase-5 active site were found to be interacting with the crystal ligand (copied from 1RWN) also. The dock scores of P4 aryl sulfonamides on pyridine scaffold analogues and P1 Aspartyl Ketone derivatives on Pyridine Scaffold analogues were higher indicating their high activity against caspase-5 compared to that of pyrazinone monoamide analogues and tetra peptides. Keywords: 1RWN; 3E4C; Ligand Fit; Human Caspase-5; Homology Modeling; Ramachandran Plot
人caspase-5蛋白的建模及caspase-5抑制剂与模型caspase-5的对接研究
本研究旨在通过同源性建模构建人caspase-5蛋白结构。人白细胞介素-1 β转化酶P20 (1RWN)和人caspase-1 (3E4C)晶体结构作为caspase-5结构亲缘关系(来自蛋白数据库)。前者与目标caspase-5蛋白的序列一致性为58%,后者为57%。3d模型是使用Accelrys discovery studio 2.5中的modeler生成的。在建模协议中也进行了能量细化。Ramachandran图显示89.1%的残留物位于有利区。此外,结合位点分析被用来破译模型蛋白活性位点区域的相互作用残基。然后,使用配体fit将吡嗪酮单酰胺类似物、肽醛、取代的P4芳基磺酰胺与吡啶支架类似物对接,P1天冬酮衍生物与吡啶支架类似物对接,以及P3磺酰胺修饰的噻吩衍生物与模拟人caspase-5蛋白对接。结果表明,Cys161、Arg55、Val214和His113是caspase-5与所有类型抑制剂相互作用的残基。caspase-5活性位点的这4个残基也被发现与晶体配体(从1RWN复制)相互作用。与吡嗪酮单酰胺类似物和四肽相比,P4芳基磺胺类化合物和P1天冬氨酸酮类化合物在吡啶支架类似物上的dock得分更高,表明它们对caspase-5的活性更高。关键词:1 rwn;3 e4c;配体配合;人类Caspase-5;同源建模;拉马钱德兰情节
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