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通过查尔酮的迈克尔受体特性抑制XPO-1介导的核输出

Inhibition of XPO-1 Mediated Nuclear Export through the Michael-Acceptor Character of Chalcones.

作者信息

Gargantilla Marta, López-Fernández José, Camarasa Maria-Jose, Persoons Leentje, Daelemans Dirk, Priego Eva-Maria, Pérez-Pérez María-Jesús

机构信息

Instituto de Química Médica (IQM, CSIC) c/Juan de la Cierva 3, 28006 Madrid, Spain.

KU Leuven Department of Microbiology, Immunology and Transplantation, Laboratory of Virology and Chemotherapy, Rega Institute for Medical Research, KU Leuven, Herestraat 49, 3000 Leuven, Belgium.

出版信息

Pharmaceuticals (Basel). 2021 Nov 6;14(11):1131. doi: 10.3390/ph14111131.

Abstract

The nuclear export receptor exportin-1 (XPO1, CRM1) mediates the nuclear export of proteins that contain a leucine-rich nuclear export signal (NES) towards the cytoplasm. XPO1 is considered a relevant target in different human diseases, particularly in hematological malignancies, tumor resistance, inflammation, neurodegeneration and viral infections. Thus, its pharmacological inhibition is of significant therapeutic interest. The best inhibitors described so far (leptomycin B and SINE compounds) interact with XPO1 through a covalent interaction with Cys528 located in the NES-binding cleft of XPO1. Based on the well-established feature of chalcone derivatives to react with thiol groups via hetero-Michael addition reactions, we have synthesized two series of chalcones. Their capacity to react with thiol groups was tested by incubation with GSH to afford the hetero-Michael adducts that evolved backwards to the initial chalcone through a retro-Michael reaction, supporting that the covalent interaction with thiols could be reversible. The chalcone derivatives were evaluated in antiproliferative assays against a panel of cancer cell lines and as XPO1 inhibitors, and a good correlation was observed with the results obtained in both assays. Moreover, no inhibition of the cargo export was observed when the two prototype chalcones and were tested against a XPO1-mutated Jurkat cell line (XPO1C528S), highlighting the importance of the Cys at the NES-binding cleft for inhibition. Finally, their interaction at the molecular level at the NES-binding cleft was studied by applying the computational tool CovDock.

摘要

核输出受体exportin-1(XPO1,CRM1)介导含有富含亮氨酸的核输出信号(NES)的蛋白质向细胞质的核输出。XPO1被认为是不同人类疾病中的一个相关靶点,特别是在血液系统恶性肿瘤、肿瘤耐药性、炎症、神经退行性变和病毒感染方面。因此,其药理学抑制具有重要的治疗意义。迄今为止描述的最佳抑制剂(细霉素B和SINE化合物)通过与位于XPO1的NES结合裂隙中的Cys528共价相互作用而与XPO1相互作用。基于查耳酮衍生物通过杂迈克尔加成反应与硫醇基团反应的成熟特性,我们合成了两个系列的查耳酮。通过与谷胱甘肽(GSH)孵育来测试它们与硫醇基团反应的能力,以得到通过逆迈克尔反应向初始查耳酮逆向转化的杂迈克尔加合物,这支持了与硫醇的共价相互作用可能是可逆的。对查耳酮衍生物进行了针对一组癌细胞系的抗增殖测定以及作为XPO1抑制剂的评估,并且在两种测定中获得的结果之间观察到良好的相关性。此外,当针对XPO1突变的Jurkat细胞系(XPO1C528S)测试两种原型查耳酮时,未观察到货物输出受到抑制,这突出了NES结合裂隙处的半胱氨酸对于抑制的重要性。最后,通过应用计算工具CovDock研究了它们在NES结合裂隙处的分子水平相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f9a/8621101/fddc339b0b17/pharmaceuticals-14-01131-g001.jpg

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