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视紫红质样家族成员非活性状态的同源性建模:建模与优化技巧的结构分析与推导

Homology-based Modeling of Rhodopsin-like Family Members in the Inactive State: Structural Analysis and Deduction of Tips for Modeling and Optimization.

作者信息

Pappalardo Matteo, Rayan Mahmoud, Abu-Lafi Saleh, Leonardi Martha E, Milardi Danilo, Guccione Salvatore, Rayan Anwar

机构信息

Department of Drug Sciences.

Department of Chemical Sciences -, University of Catania -, V.le A.Doria 6, I-95125, Catania, Italy.

出版信息

Mol Inform. 2017 Aug;36(8). doi: 10.1002/minf.201700014. Epub 2017 Apr 4.

Abstract

Modeling G-Protein Coupled Receptors (GPCRs) is an emergent field of research, since utility of high-quality models in receptor structure-based strategies might facilitate the discovery of interesting drug candidates. The findings from a quantitative analysis of eighteen resolved structures of rhodopsin family "A" receptors crystallized with antagonists and 153 pairs of structures are described. A strategy termed endeca-amino acids fragmentation was used to analyze the structures models aiming to detect the relationship between sequence identity and Root Mean Square Deviation (RMSD) at each trans-membrane-domain. Moreover, we have applied the leave-one-out strategy to study the shiftiness likelihood of the helices. The type of correlation between sequence identity and RMSD was studied using the aforementioned set receptors as representatives of membrane proteins and 98 serine proteases with 4753 pairs of structures as representatives of globular proteins. Data analysis using fragmentation strategy revealed that there is some extent of correlation between sequence identity and global RMSD of 11AA width windows. However, spatial conservation is not always close to the endoplasmic side as was reported before. A comparative study with globular proteins shows that GPCRs have higher standard deviation and higher slope in the graph with correlation between sequence identity and RMSD. The extracted information disclosed in this paper could be incorporated in the modeling protocols while using technique for model optimization and refinement.

摘要

对G蛋白偶联受体(GPCRs)进行建模是一个新兴的研究领域,因为高质量模型在基于受体结构的策略中的应用可能有助于发现有趣的候选药物。本文描述了对18个与拮抗剂结晶的视紫红质家族“A”受体解析结构以及153对结构进行定量分析的结果。我们采用了一种名为“endeca-氨基酸片段化”的策略来分析结构模型,旨在检测每个跨膜结构域处序列同一性与均方根偏差(RMSD)之间的关系。此外,我们应用了留一法策略来研究螺旋的移位可能性。以上述一组受体作为膜蛋白的代表,以及98种丝氨酸蛋白酶和4753对结构作为球状蛋白的代表,研究了序列同一性与RMSD之间的相关性类型。使用片段化策略进行数据分析表明,11AA宽度窗口的序列同一性与全局RMSD之间存在一定程度的相关性。然而,空间保守性并不总是如之前报道的那样靠近内质侧。与球状蛋白的比较研究表明,在序列同一性与RMSD相关性的图表中,GPCRs具有更高的标准差和更高的斜率。本文所揭示的提取信息可在使用模型优化和改进技术时纳入建模协议中。

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