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SSTR2 动力学及其与配体相互作用的分子模拟。

Molecular simulations of SSTR2 dynamics and interaction with ligands.

机构信息

Department of Physics, University of Cagliari, 09042, Monserrato (Cagliari), Italy.

Istituto Nazionale di Fisica Nucleare, Sezione di Cagliari, 09042, Monserrato (Cagliari), Italy.

出版信息

Sci Rep. 2023 Mar 23;13(1):4768. doi: 10.1038/s41598-023-31823-1.

Abstract

The cyclic peptide hormone somatostatin regulates physiological processes involved in growth and metabolism, through its binding to G-protein coupled somatostatin receptors. The isoform 2 (SSTR2) is of particular relevance for the therapy of neuroendocrine tumours for which different analogues to somatostatin are currently in clinical use. We present an extensive and systematic computational study on the dynamics of SSTR2 in three different states: active agonist-bound, inactive antagonist-bound and apo inactive. We exploited the recent burst of SSTR2 experimental structures to perform μs-long multi-copy molecular dynamics simulations to sample conformational changes of the receptor and rationalize its binding to different ligands (the agonists somatostatin and octreotide, and the antagonist CYN154806). Our findings suggest that the apo form is more flexible compared to the holo ones, and confirm that the extracellular loop 2 closes upon the agonist octreotide but not upon the antagonist CYN154806. Based on interaction fingerprint analyses and free energy calculations, we found that all peptides similarly interact with residues buried into the binding pocket. Conversely, specific patterns of interactions are found with residues located in the external portion of the pocket, at the basis of the extracellular loops, particularly distinguishing the agonists from the antagonist. This study will help in the design of new somatostatin-based compounds for theranostics of neuroendocrine tumours.

摘要

环状肽激素生长抑素通过与其 G 蛋白偶联的生长抑素受体结合来调节与生长和代谢相关的生理过程。亚型 2(SSTR2)对于神经内分泌肿瘤的治疗特别重要,目前临床上正在使用不同的生长抑素类似物。我们对 SSTR2 在三种不同状态下的动力学进行了广泛而系统的计算研究:活性激动剂结合、非活性拮抗剂结合和无配体的无活性状态。我们利用最近爆发的 SSTR2 实验结构进行了长达 μs 的多副本分子动力学模拟,以采样受体的构象变化,并合理地解释其与不同配体(激动剂生长抑素和奥曲肽,以及拮抗剂 CYN154806)的结合。我们的发现表明,无配体形式比全配体形式更具柔韧性,并证实了外源性环 2 在激动剂奥曲肽结合后关闭,但在拮抗剂 CYN154806 结合后不会关闭。基于相互作用指纹分析和自由能计算,我们发现所有肽都以相似的方式与埋藏在结合口袋中的残基相互作用。相反,在口袋的外部部分(位于外源性环的基础上)发现了与特定残基相互作用的特定模式,这是区分激动剂和拮抗剂的基础。这项研究将有助于设计基于生长抑素的新化合物,用于神经内分泌肿瘤的治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56d4/10036620/0e520e66acc8/41598_2023_31823_Fig1_HTML.jpg

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