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首页> 外文期刊>International Journal of Molecular Sciences >Modeling and Docking Studies on Novel Mutants (K71L and T204V) of the ATPase Domain of Human Heat Shock 70 kDa Protein 1
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Modeling and Docking Studies on Novel Mutants (K71L and T204V) of the ATPase Domain of Human Heat Shock 70 kDa Protein 1

机译:人类热休克70 kDa蛋白1 ATPase域的新型突变(K71L和T204V)的建模和对接研究

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The purpose of exploring protein interactions between human adenovirus and heat shock protein 70 is to exploit a potentially synergistic interaction to enhance anti-tumoral efficacy and decrease toxicity in cancer treatment. However, the protein interaction of Hsp70 with E1A32 kDa of human adenovirus serotype 5 remains to be elucidated. In this study, two residues of ATPase domain of human heat shock 70 kDa protein 1 (PDB: 1 HJO) were mutated. 3D mutant models (K71L and T204V) using PyMol software were then constructed. The structures were evaluated by PROCHECK, ProQ, ERRAT, Verify 3D and ProSA modules. All evidence suggests that all protein models are acceptable and of good quality. The E1A32 kDa motif was retrieved from UniProt (P03255), as well as subjected to docking interaction with NBD, K71L and T204V, using the Autodock 4.2 program. The best lowest binding energy value of −9.09 kcal/mol was selected for novel T204V. Moreover, the protein-ligand complex structures were validated by RMSD, RMSF, hydrogen bonds and salt bridge analysis. This revealed that the T204V-E1A32 kDa motif complex was the most stable among all three complex structures. This study provides information about the interaction between Hsp70 and the E1A32 kDa motif, which emphasizes future perspectives to design rational drugs and vaccines in cancer therapy.
机译:探索人腺病毒和热休克蛋白70之间的蛋白质相互作用的目的是开发潜在的协同相互作用,以增强抗肿瘤功效并降低癌症治疗中的毒性。但是,Hsp70与人类腺病毒血清型5的E1A32 kDa的蛋白相互作用仍有待阐明。在这项研究中,人类热休克70 kDa蛋白1(PDB:1 HJO)的ATPase域的两个残基被突变。然后使用PyMol软件构建3D突变模型(K71L和T204V)。通过PROCHECK,ProQ,ERRAT,Verify 3D和ProSA模块对结构进行了评估。所有证据表明,所有蛋白质模型都是可以接受的并且质量良好。使用Autodock 4.2程序从UniProt(P03255)中检索E1A32 kDa主题,并与NBD,K71L和T204V进行对接相互作用。对于新型T204V,选择了最低的结合能值为-9.09 kcal / mol。此外,通过RMSD,RMSF,氢键和盐桥分析验证了蛋白质-配体复合物结构。这表明,T204V-E1A32 kDa基序复合物在所有三个复合物结构中最稳定。这项研究提供了有关Hsp70与E1A32 kDa基序之间相互作用的信息,该信息强调了在癌症治疗中设计合理药物和疫苗的未来观点。

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