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首页> 外文期刊>Online journal of biological sciences >HOMOLOGY MODELING AND MULEtlLAK DYNAMICS STUDIES OF EC1 DOMAIN OF VE-CADHERIN TO ELUCIDATE DOCKING INTERACTION WITH CADHERIN-DERIVEDPEPTIDE
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HOMOLOGY MODELING AND MULEtlLAK DYNAMICS STUDIES OF EC1 DOMAIN OF VE-CADHERIN TO ELUCIDATE DOCKING INTERACTION WITH CADHERIN-DERIVEDPEPTIDE

机译:VE-钙粘蛋白EC1域的同源性建模和多重动力学研究,以消除与钙粘蛋白衍生肽的对接相互作用

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摘要

VE-cadherin is a protein in the cadherin family that is found at the adherens junctions of the microvessel endothelial cells of the Blood-Brain Barrier (BBB). It is recognized as the homotypic cell adhesion molecules and there is limited structural information on how VE-cadherins mediate cell-cell adhesion. It has been shown that the EC1 domain of cadherins is important for the homophilic interactions for cell-cell adhesion. Therefore, the aims of this study are to model the structure of the EC1 domain of VE-cadherin, study its molecular dynamics properties and evaluate its interactions with cadherin peptides. In this study, the sequence alignment between EC 1 domain of VE-cadherin and the template protein were conducted by CLUSTALW2 platform. The SWISS-MODEL platform performed the homology modeling of the EC1 domain of VE-cadherin structure. Structural refinement was done by using KOBAMIN. Some validation analysis platforms also were conducted included PROCHECK, VERIFY3D, ERRAT and MOLPROBITY to check the allowed residues region in Ramachandran Plot (RP) and the quality of the structure. The most favored region was found 95.5% in RP value and overall model structure quality is 71.34%. Molecular Dynamics (MD) was run under CABS-FLEX to determine the flexibility of the residue index. The RMSD value of MD is 1.5A per residue index. Eventually, molecular docking by AUTODOCK VINA was conducted to investigate protein-ligand interaction. From docking, it is found that the affinity energy is -4.8 kcal/mol which has the most favorable binding of EC1 domain with the peptide.
机译:VE-钙粘着蛋白是钙粘着蛋白家族中的一种蛋白质,在血脑屏障(BBB)的微血管内皮细胞的粘附连接处发现。它被认为是同型细胞粘附分子,关于VE-钙粘着蛋白如何介导细胞粘附的结构信息有限。已经显示,钙粘着蛋白的EC1结构域对于细胞-细胞粘附的同质相互作用是重要的。因此,本研究的目的是为VE-钙粘蛋白的EC1结构域建模,研究其分子动力学性质并评估其与钙粘蛋白肽的相互作用。本研究采用CLUSTALW2平台对VE-cadherin的EC 1结构域和模板蛋白进行序列比对。 SWISS-MODEL平台对VE-钙粘蛋白结构的EC1域进行了同源建模。使用KOBAMIN进行结构优化。还进行了一些验证分析平台,包括PROCHECK,VERIFY3D,ERRAT和MOLPROBITY,以检查Ramachandran图(RP)中允许的残基区域以及结构的质量。发现最喜欢的区域的RP值为95.5%,总体模型结构质量为71.34%。在CABS-FLEX下运行Molecular Dynamics(MD),以确定残留指数的灵活性。 MD的RMSD值为每个残基指数1.5A。最终,通过AUTODOCK VINA进行了分子对接,以研究蛋白质-配体之间的相互作用。通过对接,发现亲和能为-4.8kcal / mol,其具有最有利的EC1结构域与肽的结合。

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