Nelersa Claudiu M, Barreras Henry, Runko Erik, Ricard Jerome, Shi Yan, Glass Stephanie J, Bixby John L, Lemmon Vance P, Liebl Daniel J
The Miami Project to Cure Paralysis and Department of Neurosurgery, University of Miami School of Medicine, Miami, FL 33136, USA.
J Biomol Screen. 2012 Jul;17(6):785-95. doi: 10.1177/1087057112440880. Epub 2012 Apr 4.
Small-molecule compounds (SMCs) can provide an inexpensive and selective approach to modifying biological responses. High-content analysis (HCA) of SMC libraries can help identify candidate molecules that inhibit or activate cellular responses. In particular, regulation of cell death has important implications for many pathological conditions. Dependence receptors are a new classification of proapoptotic membrane receptors that, unlike classic death receptors, initiate apoptotic signals in the absence of their ligands. EphA4 has recently been identified as a dependence receptor that may have important functions in conditions as disparate as cancer biology and CNS injury and disease. To screen potential candidate SMCs that inhibit or activate EphA4-induced cell death, HCA of an SMC library was performed using stable EphA4-expressing NIH 3T3 cells. Our results describe a high-content method for screening dependence receptor-signaling pathways and demonstrate that several candidate SMCs can inhibit EphA4-mediated cell death.
小分子化合物(SMCs)可为调节生物反应提供一种廉价且具有选择性的方法。对SMCs文库进行高内涵分析(HCA)有助于识别抑制或激活细胞反应的候选分子。特别是,细胞死亡的调控对许多病理状况具有重要意义。依赖受体是一类新的促凋亡膜受体,与经典死亡受体不同,它们在缺乏配体的情况下启动凋亡信号。EphA4最近被鉴定为一种依赖受体,在癌症生物学以及中枢神经系统损伤和疾病等截然不同的情况下可能具有重要功能。为了筛选抑制或激活EphA4诱导的细胞死亡的潜在候选SMCs,使用稳定表达EphA4的NIH 3T3细胞对一个SMCs文库进行了HCA。我们的结果描述了一种用于筛选依赖受体信号通路的高内涵方法,并证明了几种候选SMCs可抑制EphA4介导的细胞死亡。