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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Screening β-arrestin recruitment for the identification of natural ligands for orphan G-protein-coupled receptors
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Screening β-arrestin recruitment for the identification of natural ligands for orphan G-protein-coupled receptors

机译:筛选β-arrestin募集以鉴定孤儿G蛋白偶联受体的天然配体

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摘要

A variety of G-protein-coupled receptor (GPCR) screening technologies have successfully partnered a number of GPCRs with their cognate ligands. GPCR-mediated β-arrestin recruitment is now recognized as a distinct intracellular signaling pathway, and ligand-receptor interactions may show a bias toward β-arrestin over classical GPCR signaling pathways. We hypothesized that the failure to identify native ligands for the remaining orphan GPCRs may be a consequence of biased β-arrestin signaling. To investigate this, we assembled 10 500 candidate ligands and screened 82 GPCRs using PathHunter β-arrestin recruitment technology. High-quality screening assays were validated by the inclusion of liganded receptors and the detection and confirmation of these established ligand-receptor pairings. We describe a candidate endogenous orphan GPCR ligand and a number of novel surrogate ligands. However, for the majority of orphan receptors studied, measurement of β-arrestin recruitment did not lead to the identification of cognate ligands from our screening sets. β-Arrestin recruitment represents a robust GPCR screening technology, and ligand-biased signaling is emerging as a therapeutically exploitable feature of GPCR biology. The identification of cognate ligands for the orphan GPCRs and the extent to which receptors may exist to preferentially signal through β-arrestin in response to their native ligand remain to be determined.
机译:多种G蛋白偶联受体(GPCR)筛选技术已成功地将许多GPCR与它们的同源配体结合在一起。 GPCR介导的β-arrestin募集现已被认为是一种独特的细胞内信号传导途径,并且配体-受体相互作用可能比传统的GPCR信号传导途径更倾向于β-arrestin。我们假设未能为其余的孤儿GPCR识别天然配体可能是偏向β-arrestin信号转导的结果。为了对此进行研究,我们使用PathHunterβ-arrestin募集技术组装了10 500个候选配体并筛选了82个GPCR。通过包含配体受体以及对这些已建立的配体-受体配对的检测和确认,验证了高质量的筛选测定。我们描述了候选的内源性孤儿GPCR配体和许多新的替代配体。但是,对于大多数研究的孤儿受体,β-arrestin募集的测量并未导致从我们的筛查集中鉴定出同源配体。 β-arrestin募集代表了强大的GPCR筛选技术,并且配体偏向信号转导已成为GPCR生物学的可治疗利用特征。孤儿GPCR的同源配体的鉴定以及受体响应其天然配体可能优先通过β-arrestin发出信号的程度尚待确定。

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