Chen Yi Fan, Shen Yanqiu, Yan David F, Ghazala Maryam, Scemama de Gialluly Marc A, Srinivasan Ramya, Farrar Amanda N, Friedrich Ryan M, Adams Drew J
Department of Genetics and Genome Sciences and Chemical Biology Program, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106, United States.
Department of Pathology, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106, United States.
J Med Chem. 2024 Jul 25;67(14):12033-12054. doi: 10.1021/acs.jmedchem.4c00754. Epub 2024 Jul 15.
Covalent drug discovery has experienced a renaissance, with numerous electrophilic small molecules recently gaining FDA approval. Many structurally diverse electrophilic small molecules target exportin-1 (XPO1/CRM1) at cysteine 528, including the selective inhibitor of nuclear export (SINE) selinexor, which was FDA-approved as an anticancer agent in 2019. Emerging evidence supports additional pharmacological classes of XPO1 modulators targeting Cys528, including the selective inhibitors of transcriptional activation (SITAs) and probes that induce rapid degradation of XPO1. Here, we analyzed structure-activity relationships across multiple structural series of XPO1 Cys528-targeting probes. We observe that the electrophilic moiety of Cys528-targeting small molecules plays a decisive role in the cellular behavior observed, with subtle changes in electrophile structure being sufficient to convert XPO1-targeting probes to different pharmacological classes. This investigation represents a unique case study in which the electrophile functionality used to target a specific cysteine determines the pharmacological effect among diverse XPO1-targeting small molecules.
共价药物发现经历了复兴,最近有许多亲电小分子获得了美国食品药品监督管理局(FDA)的批准。许多结构多样的亲电小分子在半胱氨酸528处靶向核输出蛋白1(XPO1/CRM1),包括核输出选择性抑制剂(SINE)塞利尼索,它于2019年被FDA批准为抗癌药物。新出现的证据支持靶向Cys528的XPO1调节剂的其他药理学类别,包括转录激活选择性抑制剂(SITA)和诱导XPO1快速降解的探针。在这里,我们分析了多个靶向XPO1 Cys528的探针结构系列的构效关系。我们观察到,靶向Cys528的小分子的亲电部分在观察到的细胞行为中起决定性作用,亲电体结构的细微变化足以将靶向XPO1的探针转变为不同的药理学类别。这项研究代表了一个独特的案例研究,其中用于靶向特定半胱氨酸的亲电官能团决定了多种靶向XPO1的小分子之间的药理作用。