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酵母细胞中的高通量基因互补分析鉴定出了鞘氨醇激酶1的选择性抑制剂,而这些抑制剂在无细胞酶分析中未被发现。

A High-Throughput Genetic Complementation Assay in Yeast Cells Identified Selective Inhibitors of Sphingosine Kinase 1 Not Found Using a Cell-Free Enzyme Assay.

作者信息

Kashem Mohammed A, Kennedy Charles A, Fogarty Kylie E, Dimock Janice R, Zhang Yunlong, Sanville-Ross Mary L, Skow Donna J, Brunette Steven R, Swantek Jennifer L, Hummel Heidi S, Swindle John, Nelson Richard M

机构信息

1 Small Molecule Discovery Research, Boehringer Ingelheim Pharmaceuticals, Inc. , Ridgefield, Connecticut.

2 Immunology and Respiratory Research, Boehringer Ingelheim Pharmaceuticals, Inc. , Ridgefield, Connecticut.

出版信息

Assay Drug Dev Technol. 2016 Jan-Feb;14(1):39-49. doi: 10.1089/adt.2015.671. Epub 2015 Oct 1.

Abstract

Sphingosine kinase 1 (SphK1) is a lipid kinase that phosphorylates sphingosine to produce the bioactive sphingolipid, sphingosine-1-phosphate (S1P), and therefore represents a potential drug target for a variety of pathological processes such as fibrosis, inflammation, and cancer. We developed two assays compatible with high-throughput screening to identify small-molecule inhibitors of SphK1: a purified component enzyme assay and a genetic complementation assay in yeast cells. The biochemical enzyme assay measures the phosphorylation of sphingosine-fluorescein to S1P-fluorescein by recombinant human full-length SphK1 using an immobilized metal affinity for phosphochemicals (IMAP) time-resolved fluorescence resonance energy transfer format. The yeast assay employs an engineered strain of Saccharomyces cerevisiae, in which the human gene encoding SphK1 replaced the yeast ortholog and quantitates cell viability by measuring intracellular adenosine 5'-triphosphate (ATP) using a luciferase-based luminescent readout. In this assay, expression of human SphK1 was toxic, and the resulting yeast cell death was prevented by SphK1 inhibitors. We optimized both assays in a 384-well format and screened ∼10(6) compounds selected from the Boehringer Ingelheim library. The biochemical IMAP high-throughput screen identified 5,561 concentration-responsive hits, most of which were ATP competitive and not selective over sphingosine kinase 2 (SphK2). The yeast screen identified 205 concentration-responsive hits, including several distinct compound series that were selective against SphK2 and were not ATP competitive.

摘要

鞘氨醇激酶1(SphK1)是一种脂质激酶,可将鞘氨醇磷酸化生成生物活性鞘脂——1-磷酸鞘氨醇(S1P),因此是纤维化、炎症和癌症等多种病理过程的潜在药物靶点。我们开发了两种与高通量筛选兼容的检测方法来鉴定SphK1的小分子抑制剂:一种是纯化成分酶检测法,另一种是酵母细胞中的遗传互补检测法。生化酶检测法使用固定化金属亲和磷化学物质(IMAP)时间分辨荧光共振能量转移形式,通过重组人全长SphK1将鞘氨醇-荧光素磷酸化为S1P-荧光素。酵母检测法使用一种工程改造的酿酒酵母菌株,其中编码SphK1的人类基因取代了酵母直系同源基因,并通过基于荧光素酶的发光读数测量细胞内三磷酸腺苷(ATP)来定量细胞活力。在该检测法中,人类SphK1的表达具有毒性,而SphK1抑制剂可防止由此导致的酵母细胞死亡。我们将这两种检测法优化为384孔板形式,并筛选了从勃林格殷格翰文库中选出的约10^6种化合物。生化IMAP高通量筛选鉴定出5561个浓度响应阳性结果,其中大多数是ATP竞争性的,对鞘氨醇激酶2(SphK2)没有选择性。酵母筛选鉴定出205个浓度响应阳性结果,包括几个对SphK2有选择性且不具有ATP竞争性的不同化合物系列。

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