Chen Jun, Lake Marc R, Sabet Reza S, Niforatos Wende, Pratt Steve D, Cassar Steven C, Xu Jing, Gopalakrishnan Sujatha, Pereda-Lopez Ana, Gopalakrishnan Murali, Holzman Thomas F, Moreland Robert B, Walter Karl A, Faltynek Connie R, Warrior Usha, Scott Victoria E
Neuroscience Research, Abbott Laboratories, Abbott Park, IL 60064-6125, USA.
J Biomol Screen. 2007 Feb;12(1):61-9. doi: 10.1177/1087057106295220. Epub 2006 Nov 12.
Despite increasing use of cell-based assays in high-throughput screening (HTS) and lead optimization, one challenge is the adequate supply of high-quality cells expressing the target of interest. To this end, cell lines stably expressing targets are often established, maintained, and scaled up by cell culture. These steps require large investments of time and resources. Moreover, significant variability invariably occurs in cell yield, viability, expression levels, and target activities. In particular, stable expression of targets such as transient receptor potential A1 (TRPA1) causes toxicity, cell line degeneration, and loss of functional activity. Therefore, in an effort to identify TRPA1 antagonists, the authors used large-scale transiently transfected (LSTT) cells, enabling rapid establishment of assays suitable for HTS. LSTT cells, which could- be stored frozen for a long period of time (e.g., at least 42 weeks), retained TRPA1 protein expression and could be easily revived to produce robust and consistent signals in calcium influx and electrophysiological assays. Using cells from a single transfection, a chemical library of 700,000 compounds was screened, and TRPA1 antagonists were identified. The use of LSTT circumvented issues associated with stable TRPA1 expression, increased flexibility and consistency, and greatly reduced labor and cost. This approach will also be applicable to other pharmaceutical targets.
尽管基于细胞的检测方法在高通量筛选(HTS)和先导化合物优化中的应用日益广泛,但一个挑战是如何充足供应表达目标蛋白的高质量细胞。为此,稳定表达目标蛋白的细胞系通常通过细胞培养来建立、维持和扩大规模。这些步骤需要大量的时间和资源投入。此外,细胞产量、活力、表达水平和目标活性方面不可避免地会出现显著差异。特别是,瞬时受体电位A1(TRPA1)等目标蛋白的稳定表达会导致毒性、细胞系退化和功能活性丧失。因此,为了寻找TRPA1拮抗剂,作者使用了大规模瞬时转染(LSTT)细胞,从而能够快速建立适用于HTS的检测方法。LSTT细胞可以长时间冷冻保存(例如至少42周),保留TRPA1蛋白表达,并且可以很容易地复苏,在钙内流和电生理检测中产生强大且一致的信号。使用单次转染得到的细胞,对一个包含70万种化合物的化学文库进行了筛选,并鉴定出了TRPA1拮抗剂。LSTT的使用规避了与TRPA1稳定表达相关的问题,提高了灵活性和一致性,并大大降低了劳动力和成本。这种方法也将适用于其他药物靶点。