基于酵母的人体游离脂肪酸2受体识别配体传感器平台的开发。

IF 2.4 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY FEMS yeast research Pub Date : 2025-01-30 DOI:10.1093/femsyr/foaf001
Andrea Clausen Lind, Davi De Castro Gomes, Ricardo Bisquert, Jonas Mårtensson, Martina Sundqvist, Huamei Forsman, Claes Dahlgren, Florian David, Verena Siewers
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引用次数: 0

摘要

基于酵母的传感器在G蛋白偶联受体(gpcr)的去孤儿化和靶向这些受体的配体筛选方面显示出很大的适用性。游离脂肪酸2受体(FFA2R)是一种非常有趣的GPCR,短链脂肪酸如丙酸和醋酸盐是其激动剂。FFA2R调节脂肪组织和免疫细胞中的一系列下游受体信号通路,已被认为是一个有希望的治疗靶点,涉及多种代谢和炎症性疾病。虽然旨在鉴定FFA2R识别的配体用于翻译应用的研究正在进行中,但由于受体介导的复杂调控和细胞特异性反应,筛选变得复杂。为了简化新配体的筛选鉴定,异源平台是在缺乏调节机制的情况下提供有效鉴定配体活性的有价值的工具。在这里,我们提出了一种基于酵母的传感器,旨在评估G蛋白α i1介导的FFA2R信号,检测时间为3小时。我们验证了该平台对天然激动剂,丙酸盐和醋酸盐的影响,并证明该平台适用于评估合成激动剂,拮抗剂和变构激动剂。因此,我们相信所开发的酵母菌株构成了一个有前景的筛选平台,可以有效评估作用于FFA2R的配体。
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Development of a yeast-based sensor platform for evaluation of ligands recognized by the human free fatty acid 2 receptor.

Yeast-based sensors have shown great applicability for deorphanization of G protein-coupled receptors (GPCRs) and screening of ligands targeting these. A GPCR of great interest is free fatty acid 2 receptor (FFA2R), for which short-chain fatty acids such as propionate and acetate are agonists. FFA2R regulates a wide array of downstream receptor signaling pathways in both adipose tissue and immune cells and has been recognized as a promising therapeutic target, having been implicated in several metabolic and inflammatory diseases. While research aiming to identify ligands recognized by FFA2R for translational applications is ongoing, screening is complicated by the complex regulatory and cell-specific responses mediated by the receptor. To simplify screening towards identification of novel ligands, heterologous platforms are valuable tools that offer efficient identification of ligand activity in the absence of regulatory mechanisms. Here, we present a yeast-based sensor designed to evaluate G protein α i1-mediated FFA2R signaling, with an assay time of 3 h. We verify this platform towards the natural agonists, propionate and acetate, and show applicability towards evaluation of synthetic agonists, antagonists, and allosteric agonists. As such, we believe that the developed yeast strain constitutes a promising screening platform for effective evaluation of ligands acting on FFA2R.

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来源期刊
FEMS yeast research
FEMS yeast research 生物-生物工程与应用微生物
CiteScore
5.70
自引率
6.20%
发文量
54
审稿时长
1 months
期刊介绍: FEMS Yeast Research offers efficient publication of high-quality original Research Articles, Mini-reviews, Letters to the Editor, Perspectives and Commentaries that express current opinions. The journal will select for publication only those manuscripts deemed to be of major relevance to the field and generally will not consider articles that are largely descriptive without insights on underlying mechanism or biology. Submissions on any yeast species are welcome provided they report results within the scope outlined below and are of significance to the yeast field.
期刊最新文献
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