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参与肿瘤发生的人类Ras相关结合蛋白(Rab3A)的三维结构生成、虚拟筛选与对接

3D structure generation, virtual screening and docking of human Ras-associated binding (Rab3A) protein involved in tumourigenesis.

作者信息

Lodhi Sharad S, Farmer Rohit, Singh Atul Kumar, Jaiswal Yogesh K, Wadhwa Gulshan

机构信息

School of Studies in Biochemistry, Jiwaji University, Gwalior, 474011, India.

出版信息

Mol Biol Rep. 2014 Jun;41(6):3951-9. doi: 10.1007/s11033-014-3263-x. Epub 2014 Mar 21.

Abstract

Rab3A is expressed predominantly in brain and synaptic vesicles. Rab3A is involved specifically in tethering and docking of synaptic vesicles prior to fusion which is a critical step in regulated release of neurotransmitters. The precise function of Rab3A is still not known. However, up-regulation of Rab3A has been reported in malignant neuroendocrine and breast cancer cells. In the present study, the structure of Rab3A protein was generated using MODELLER 9v8 software. The modeled protein structure was validated and subjected to molecular docking analyses. Docking with GTP was carried out on the binding site of Rab3A using GOLD software. The Rab3A-GTP complex has best GOLD fitness value of 77.73. Ligplot shows hydrogen bondings (S16, S17, V18, G19, K20, T21, S22, S31, T33, A35, S38, T39 and G65) and hydrophobic interacting residues (F25, F32, P34, F36, V37, D62 and A64) with the GTP ligands in the binding site of Rab3A protein. Here, the ligand molecules of NCI diversity set II from the ZINC database against the active site of the Rab3A protein were screened. For this purpose, the incremental construction algorithm of GLIDE and the genetic algorithm of GOLD were used. Docking results were analyzed for top ranking compounds using a consensus scoring function of X-Score to calculate the binding affinity and Ligplot was used to measure protein-ligand interactions. Five compounds which possess good inhibitory activity and may act as potential high affinity inhibitors against Rab3A active site were identified. The top ranking molecule (ZINC13152284) has a Glide score of -6.65 kcal/mol, X-Score of -3.02 kcal/mol and GOLD score of 64.54 with 03 hydrogen bonds and 09 hydrophobic contacts. This compound is thus a good starting point for further development of strong inhibitors.

摘要

Rab3A主要在大脑和突触小泡中表达。Rab3A具体参与突触小泡在融合前的拴系和对接,而这是神经递质调节性释放中的关键步骤。Rab3A的确切功能仍不清楚。然而,据报道在恶性神经内分泌癌细胞和乳腺癌细胞中Rab3A上调。在本研究中,使用MODELLER 9v8软件生成了Rab3A蛋白的结构。对建模的蛋白质结构进行了验证,并进行了分子对接分析。使用GOLD软件在Rab3A的结合位点与GTP进行对接。Rab3A - GTP复合物的最佳GOLD适应度值为77.73。Ligplot显示了Rab3A蛋白结合位点中与GTP配体的氢键(S16、S17、V18、G19、K20、T21、S22、S31、T33、A35、S38、T39和G65)以及疏水相互作用残基(F25、F32、P34、F36、V37、D62和A64)。在此,针对Rab3A蛋白的活性位点,筛选了来自ZINC数据库的NCI多样性集II的配体分子。为此,使用了GLIDE的增量构建算法和GOLD的遗传算法。使用X - Score的一致性评分函数分析顶级化合物的对接结果以计算结合亲和力,并使用Ligplot测量蛋白质 - 配体相互作用。鉴定出了五种具有良好抑制活性且可能作为针对Rab3A活性位点的潜在高亲和力抑制剂的化合物。顶级分子(ZINC13152284)的Glide评分为 - 6.65 kcal/mol,X - Score为 - 3.02 kcal/mol,GOLD评分为64.54,有3个氢键和9个疏水接触。因此,该化合物是进一步开发强效抑制剂的良好起点。

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