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3D Structure Modeling of Human TelomereRepeat Binding Factor 2 and DNA-ProteinDocking Studies

机译:人类端粒重复结合因子2和DNA蛋白质对接研究的3D结构建模

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Aims: Human telomere repeat binding factor (hTRF2) is a double stranded telomere binding protein that plays key role in protecting the chromosome ends and a necessary building block of telomere structure maintenance. The aim of the present study was to focus on the modeling of 3D structure of hTRF2 (500 residues long) and its interaction studies with DNA in silico.Study Design: The overall work was designed in different steps starting with the modeling of the concerned protein, its physiochemical properties study, modeling of 3D-DNA with specific length and varying bend angle, docking studies of modeled DNA and hTRF2 protein.Place and Duration of Study: Bioinformatics Lab, Department of Biotechnology, Birla Institute of Technology, Mesra, India. November 2012- July 2013.Methodology: 3D structure of hTRF2 was modeled through I-TASSER method. The modeled structure was verified by 5ns of simulation run in solvent (water) condition and also evaluated with different bioinformatics tools. Physiochemical properties were calculated through CLC Protein Workbench. DNA 3D structure was modeled with the conserved nucleotide sequence motif, TTAGGG with varying bend angles of 0° to 60°. The DNA-protein docking studies were carried out through HADDOCK easy interface for each bend angle.Results: The best model was selected depending on minimum RMSD value and C-Score and the Stereochemical quality of that model was verified with different tools, as the Molprobity score (>1) of hTRF2 was predicted 4.2 and Ramachandra favored residue was 80.56%. The selected model protein and DNA structure was docked and among all the docking results the best orientation of DNA and hTRF2 was at 60° DNA bend angle with lowest RMSD and maximum Z-value. The amino acids which are directly involved in the interaction were also selected.Conclusion: In future further study will be planned with further bend angle for getting better information on DNA-protein interactions. In silico studies will also be helpful for the researchers to study the complex structure in vitro.
机译:目的:人端粒重复结合因子(hTRF2)是一种双链端粒结合蛋白,在保护染色体末端和维持端粒结构的必要结构中起关键作用。本研究的目的是专注于hTRF2(长500个残基)的3D结构的建模及其与计算机模拟DNA的相互作用研究。研究设计:总体工作是从相关蛋白质的建模开始的不同步骤中进行设计的,其理化性质研究,具有特定长度和不同弯曲角度的3D-DNA建模,建模的DNA和hTRF2蛋白的对接研究。研究地点和期限:印度梅拉比尔拉理工学院生物技术系生物信息学实验室。 2012年11月至2013年7月。方法:通过I-TASSER方法对hTRF2的3D结构进行建模。通过在溶剂(水)条件下进行5ns的仿真来验证模型结构,并使用不同的生物信息学工具对其进行评估。通过CLC蛋白质工作台计算理化性质。 DNA 3D结构用保守的核苷酸序列基序TTAGGG建模,其弯曲角度为0°至60°。通过HADDOCK easy接口对每个弯曲角度进行DNA-蛋白质对接研究。结果:根据最小RMSD值和C-Score选择了最佳模型,并通过不同的工具验证了该模型的立体化学质量,如Molprobity hTRF2的评分(> 1)预测为4.2,Ramachinandra偏爱残基为80.56 %。选定的模型蛋白质和DNA结构被对接,在所有对接结果中,DNA和hTRF2的最佳取向是在60°DNA弯曲角处,具有最低的RMSD和最大的Z值。结论:直接参与相互作用的氨基酸也被选择出来。结论:今后将计划进一步的弯曲角研究,以获取有关DNA-蛋白质相互作用的更好信息。电子计算机研究也将有助于研究人员在体外研究复杂的结构。

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