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了解脂质双层和配体分子在确定生长抑素受体 2 构象动力学中的影响。

Understanding the influence of lipid bilayers and ligand molecules in determining the conformational dynamics of somatostatin receptor 2.

机构信息

Computational Biology Lab, Department of Genetic Engineering, School of Bioengineering, SRM Institute of Science and Technology, SRM Nagar, Kattankulathur, Chennai, 603203, India.

Department of Food and Process Engineering, School of Bioengineering, SRM Institute of Science and Technology, SRM Nagar, Kattankulathur, Chennai, 603203, India.

出版信息

Sci Rep. 2021 Apr 7;11(1):7677. doi: 10.1038/s41598-021-87422-5.

Abstract

Somatostatin receptor 2 (SSTR2) is a G-protein coupled receptor (GPCR) that controls numerous cellular processes including cell-to-cell signaling. In this study, we report how the lipid and ligand molecules influence the conformational dynamics of the membrane-bound SSTR2. Molecular simulations of different holo and apoenzyme complexes of SSTR2 in the presence and absence of a lipid bilayer were performed, observed, and correlated with previously reported studies. We identified the important SSTR2 residues that take part in the formation of the SSTR2-ligand complex. On analyzing the molecular simulation trajectories, we identified that the residue D3.32 is crucial in determining the bioactive conformation of SSTR2 ligands in the binding site. Based on the results, we suggest that designing a novel SSTR2 ligand with an H-bond donor group at the R1 position, and hydrophobic groups at R2 and R3 might have higher activity and SSTR2-selectivity. We analyzed the simulated systems to identify other important structural features involved in SSTR2-ligand binding and to observe the different conformational changes that occur in the protein after the ligand binding. Additionally, we studied the conformational dynamics of N- and C-terminal regions of SSTR2 in the presence and absence of the lipid bilayer. Both the systems were compared to understand the influence of lipid molecules in the formation of secondary structural domains by these extracellular regions. The comparative study revealed that the secondary structural elements formed by C-terminal residues in presence of lipid molecules is crucial for the functioning of SSTR2. Our study results highlight the structural complexities involved in the functioning of SSTR upon binding with the ligands in the presence and absence of lipid bilayer, which is essential for designing novel drug targets.

摘要

生长抑素受体 2(SSTR2)是一种 G 蛋白偶联受体(GPCR),可控制包括细胞间信号传递在内的多种细胞过程。在这项研究中,我们报告了脂质和配体分子如何影响膜结合 SSTR2 的构象动力学。对存在和不存在双层膜的不同全酶和脱辅基酶复合物的 SSTR2 进行了分子模拟、观察,并与以前的报道研究相关联。我们确定了参与 SSTR2-配体复合物形成的重要 SSTR2 残基。通过分析分子模拟轨迹,我们确定残基 D3.32 在确定 SSTR2 配体在结合部位的生物活性构象方面至关重要。基于这些结果,我们建议设计一种新型 SSTR2 配体,其 R1 位置具有氢键供体基团,R2 和 R3 位置具有疏水性基团,可能具有更高的活性和 SSTR2 选择性。我们分析了模拟系统,以确定涉及 SSTR2-配体结合的其他重要结构特征,并观察到配体结合后蛋白质中发生的不同构象变化。此外,我们研究了 SSTR2 的 N 端和 C 端区域在存在和不存在双层膜时的构象动力学。将这两个系统进行比较,以了解脂质分子在这些细胞外区域形成二级结构域中的作用。比较研究表明,在存在脂质分子的情况下,C 端残基形成的二级结构元件对于 SSTR2 的功能至关重要。我们的研究结果突出了在存在和不存在双层膜的情况下,SSTR 与配体结合时涉及的结构复杂性,这对于设计新型药物靶标至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c29/8027056/1ce47a63b989/41598_2021_87422_Fig1_HTML.jpg

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