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通过一种多功能工具包对脂肪酸合酶(FASN)抑制剂进行评估,揭示了人和啮齿动物FASN制剂在药理学上的差异,以及在体外和原位对人癌细胞的抗增殖效力的差异。

Evaluation of FASN inhibitors by a versatile toolkit reveals differences in pharmacology between human and rodent FASN preparations and in antiproliferative efficacy in vitro vs. in situ in human cancer cells.

作者信息

Singha Prosanta K, Mäklin Kiira, Vihavainen Taina, Laitinen Tuomo, Nevalainen Tapio J, Patil Mahadeo R, Tonduru Arun K, Poso Antti, Laitinen Jarmo T, Savinainen Juha R

机构信息

School of Medicine Institute of Biomedicine Faculty of Health Sciences, University of Eastern Finland, 70211, Kuopio, Finland.

School of Pharmacy Faculty of Health Sciences, University of Eastern Finland, 70211, Kuopio, Finland.

出版信息

Eur J Pharm Sci. 2020 Apr 7;149:105321. doi: 10.1016/j.ejps.2020.105321.

Abstract

De novo synthesis of fatty acids is essential to maintain intensive proliferation of cancer cells. Unlike normal cells that utilize food-derived circulating lipids for their fuel, cancer cells rely on heightened lipogenesis irrespective of exogenous lipid availability. Overexpression and activity of the multidomain enzyme fatty acid synthase (FASN) is crucial in supplying palmitate for protumorigenic activity. Therefore, FASN has been proposed as an attractive target for drug development. As an effort to set up an effective toolkit to study FASN inhibitors in human and rodent tissues, we validated activity-based protein profiling (ABPP) as a viable approach to unveil inhibitors targeting FASN thioesterase domain (FASN-TE). ABPP was combined with multi-well plate-assays designed for classical substrate-based FASN activity analysis together with powerful monitoring of cancer cell proliferation using IncuCyte® Live Cell Analyzing System. FASN-TE inhibitors were identified by competitive ABPP using HEK293 cell lysates in a screen of in-house compounds (200+) designed to target serine hydrolase (SH) family. The identified compounds were tested for their inhibitor potencies in vitro using a substrate-based activity assay monitoring FASN-dependent NADPH consumption in LNCaP prostate cancer cell preparation, in parallel with selected reference inhibitors, including orlistat (THL), GSK2194069, GSK837149A, platensimycin and BI-99179. LNCaP lysate supernatant was validated as a reliable native preparation to monitor FASN-dependent NADPH consumption as opposed to human glioma GAMG cells, whereas FASN enrichment was a prerequisite for accurate assays. While inhibitor pharmacology was identical between human prostate and glioma cancer cell FASN preparations, notable differences were revealed between human and rodent FASN preparations, especially for inhibitors targeting FASN-TE. ABPP combined with substrate-based assays facilitated identification of pan thiol-reactive inhibitor scaffolds, exemplified by the 1,2,4-thiadiazole moiety. Finally, selected compounds were evaluated for their antiproliferative efficacy in situ using GAMG cells. These studies revealed that while the tested compounds acted as potent FASN inhibitors in vitro, only a few showed antiproliferative efficacy in situ. To conclude, we describe a versatile toolkit to study FASN inhibitors in vitro and in situ using human cancer cells and reveal dramatic pharmacological differences between human and rodent FASN preparations.

摘要

脂肪酸的从头合成对于维持癌细胞的快速增殖至关重要。与利用食物来源的循环脂质作为燃料的正常细胞不同,癌细胞无论外源脂质供应情况如何,都依赖于增强的脂肪生成。多结构域酶脂肪酸合酶(FASN)的过表达和活性对于提供棕榈酸以促进肿瘤发生活性至关重要。因此,FASN已被提议作为药物开发的一个有吸引力的靶点。为了建立一个有效的工具包来研究人和啮齿动物组织中的FASN抑制剂,我们验证了基于活性的蛋白质谱分析(ABPP)是一种揭示靶向FASN硫酯酶结构域(FASN-TE)抑制剂的可行方法。ABPP与为基于经典底物的FASN活性分析设计的多孔板测定相结合,并使用IncuCyte®活细胞分析系统对癌细胞增殖进行强大监测。通过竞争性ABPP,使用HEK293细胞裂解物在一组旨在靶向丝氨酸水解酶(SH)家族的内部化合物(200多种)筛选中鉴定FASN-TE抑制剂。使用基于底物的活性测定法监测LNCaP前列腺癌细胞制剂中FASN依赖性NADPH消耗,将鉴定出的化合物与选定的参考抑制剂(包括奥利司他(THL)、GSK2194069、GSK837149A、平板霉素和BI-99179)一起进行体外抑制剂效力测试。与人类胶质瘤GAMG细胞相反,LNCaP裂解物上清液被验证为监测FASN依赖性NADPH消耗的可靠天然制剂,而FASN富集是准确测定的先决条件。虽然人类前列腺癌和胶质瘤癌细胞FASN制剂之间的抑制剂药理学相同,但人类和啮齿动物FASN制剂之间存在显著差异,特别是对于靶向FASN-TE的抑制剂。ABPP与基于底物的测定相结合,有助于鉴定泛硫醇反应性抑制剂支架,以1,2,4-噻二唑部分为例。最后,使用GAMG细胞原位评估选定化合物的抗增殖效力。这些研究表明,虽然测试的化合物在体外作为有效的FASN抑制剂起作用,但只有少数在原位显示出抗增殖效力。总之,我们描述了一种通用的工具包,用于使用人类癌细胞在体外和原位研究FASN抑制剂,并揭示人类和啮齿动物FASN制剂之间显著的药理学差异。

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