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基于表面等离子体共振技术的神经降压素受体1片段筛选产生新型小分子配体。

SPR-based fragment screening with neurotensin receptor 1 generates novel small molecule ligands.

作者信息

Huber Sylwia, Casagrande Fabio, Hug Melanie N, Wang Lisha, Heine Philipp, Kummer Lutz, Plückthun Andreas, Hennig Michael

机构信息

Roche Innovation Center Basel, Pharmaceutical Research and Early Development, Basel, Switzerland.

Department of Biochemistry, University of Zurich, Zurich, Switzerland.

出版信息

PLoS One. 2017 May 16;12(5):e0175842. doi: 10.1371/journal.pone.0175842. eCollection 2017.

Abstract

The neurotensin receptor 1 represents an important drug target involved in various diseases of the central nervous system. So far, the full exploitation of potential therapeutic activities has been compromised by the lack of compounds with favorable physicochemical and pharmacokinetic properties which efficiently penetrate the blood-brain barrier. Recent progress in the generation of stabilized variants of solubilized neurotensin receptor 1 and its subsequent purification and successful structure determination presents a solid starting point to apply the approach of fragment-based screening to extend the chemical space of known neurotensin receptor 1 ligands. In this report, surface plasmon resonance was used as primary method to screen 6369 compounds. Thereby 44 hits were identified and confirmed in competition as well as dose-response experiments. Furthermore, 4 out of 8 selected hits were validated using nuclear magnetic resonance spectroscopy as orthogonal biophysical method. Computational analysis of the compound structures, taking the known crystal structure of the endogenous peptide agonist into consideration, gave insight into the potential fragment-binding location and interactions and inspires chemistry efforts for further exploration of the fragments.

摘要

神经降压素受体1是参与中枢神经系统多种疾病的重要药物靶点。到目前为止,由于缺乏具有良好理化性质和药代动力学性质、能有效穿透血脑屏障的化合物,其潜在治疗活性的充分开发受到了阻碍。可溶性神经降压素受体1稳定变体的产生、随后的纯化以及成功的结构测定方面的最新进展,为应用基于片段的筛选方法扩展已知神经降压素受体1配体的化学空间提供了坚实的起点。在本报告中,表面等离子体共振被用作筛选6369种化合物的主要方法。由此在竞争实验和剂量反应实验中鉴定并确认了44个命中化合物。此外,使用核磁共振波谱作为正交生物物理方法对8个选定的命中化合物中的4个进行了验证。考虑到内源性肽激动剂的已知晶体结构,对化合物结构进行计算分析,深入了解了潜在的片段结合位置和相互作用,并激发了进一步探索这些片段的化学研究工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4d2/5433701/cfbf25106e8f/pone.0175842.g001.jpg

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