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鉴定一类新型苯并呋喃氧代乙酸衍生配体,其选择性激活细胞内 EPAC1。

Identification of A Novel Class of Benzofuran Oxoacetic Acid-Derived Ligands that Selectively Activate Cellular EPAC1.

机构信息

European Screening Centre Newhouse, University of Dundee, Biocity Scotland, Bo'Ness Road, Newhouse, Lanarkshire ML1 5UH, UK.

Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, IL 60611, USA.

出版信息

Cells. 2019 Nov 12;8(11):1425. doi: 10.3390/cells8111425.

Abstract

Cyclic AMP promotes EPAC1 and EPAC2 activation through direct binding to a specific cyclic nucleotide-binding domain (CNBD) within each protein, leading to activation of Rap GTPases, which control multiple cell responses, including cell proliferation, adhesion, morphology, exocytosis, and gene expression. As a result, it has become apparent that directed activation of EPAC1 and EPAC2 with synthetic agonists may also be useful for the future treatment of diabetes and cardiovascular diseases. To identify new EPAC agonists we have developed a fluorescent-based, ultra-high-throughput screening (uHTS) assay that measures the displacement of binding of the fluorescent cAMP analogue, 8-NBD-cAMP to the EPAC1 CNBD. Triage of the output of an approximately 350,000 compound screens using this assay identified a benzofuran oxaloacetic acid EPAC1 binder (SY000) that displayed moderate potency using orthogonal assays (competition binding and microscale thermophoresis). We next generated a limited library of 91 analogues of SY000 and identified SY009, with modifications to the benzofuran ring associated with a 10-fold increase in potency towards EPAC1 over SY000 in binding assays. EPAC1 activity assays confirmed the agonist potential of these molecules in comparison with the known EPAC1 non-cyclic nucleotide (NCN) partial agonist, I942. Rap1 GTPase activation assays further demonstrated that SY009 selectively activates EPAC1 over EPAC2 in cells. SY009 therefore represents a novel class of NCN EPAC1 activators that selectively activate EPAC1 in cellulae.

摘要

环 AMP 通过直接结合到每个蛋白内的特定环核苷酸结合域(CNBD)来促进 EPAC1 和 EPAC2 的激活,导致 Rap GTPases 的激活,Rap GTPases 控制着多种细胞反应,包括细胞增殖、黏附、形态、胞吐和基因表达。因此,很明显,使用合成激动剂有针对性地激活 EPAC1 和 EPAC2 也可能对未来治疗糖尿病和心血管疾病有用。为了鉴定新的 EPAC 激动剂,我们开发了一种基于荧光的超高通量筛选(uHTS)测定法,该测定法测量荧光 cAMP 类似物 8-NBD-cAMP 与 EPAC1 CNBD 结合的置换。使用该测定法对大约 350,000 种化合物的筛选结果进行了分类,鉴定出苯并呋喃氧乙酸 EPAC1 结合物(SY000),该结合物在正交测定法(竞争结合和微量热泳法)中显示出中等效力。我们接下来生成了 SY000 的 91 种类似物的有限文库,并鉴定出 SY009,其苯并呋喃环的修饰与在结合测定中相对于 SY000 对 EPAC1 的效力增加了 10 倍有关。EPAC1 活性测定法证实了这些分子相对于已知的 EPAC1 非环核苷酸(NCN)部分激动剂 I942 的激动剂潜力。Rap1 GTPase 激活测定法进一步证明 SY009 在细胞中选择性地激活 EPAC1 而不是 EPAC2。因此,SY009 代表了一类新型的 NCN EPAC1 激活剂,它可以在细胞中选择性地激活 EPAC1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/933c/6912754/5bfb35036375/cells-08-01425-g001.jpg

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