Liu Kun, Samuel Manoj, Harrison Richard K, Paslay Jeff W
Screening Sciences, Wyeth Research , Collegeville, Pennsylvania, USA.
Assay Drug Dev Technol. 2010 Jun;8(3):380-8. doi: 10.1089/adt.2009.0243.
ABSTRACT Transient receptor potential (TRP) channels have been found to play important roles in cellular physiology and hold promise as therapeutic targets. These channels activate in response to a variety of chemical or physical stimuli and conduct non-selective cation currents (NSCC). Due to their unique activation properties, application of automated electrophysiology to measure the channel activity has been difficult. Using HEK293 cells stably expressing human TRP channels, hTRPC6 and hTRPA1, we developed and validated a high-throughput Rb(+) efflux assay for NSCC channels. The assay was performed in cell-based 96-well format. A significant increase in Rb(+) efflux can be detected upon channel activation by specific agonists, confirming that both TRPC6 and TRPA1 channels are permeable to Rb(+) ions. The agonists induced Rb(+) efflux can be blocked by known channel blockers and selected compounds from our high-throughput screening (HTS) hits. The assay is suitable for HTS with Z' factors of 0.53 and above. We also tested the Ca(2+) effect on channel activities in this assay. Both TRPC6 and TRPA1 channels were found to be inhibited by increasing the concentration of Ca(2+) in the assay buffer. However, Ca(2+) significantly reduced the potency of allyl isothiocyanate (AITC) on TRPA1 but did not affect the potency of carbochol on TRPC6. Using this assay for secondary confirmation screen, we successfully identified and confirmed the positive hits as TRPC6 inhibitors.
已发现瞬时受体电位(TRP)通道在细胞生理学中发挥重要作用,并有望成为治疗靶点。这些通道可响应多种化学或物理刺激而激活,并传导非选择性阳离子电流(NSCC)。由于其独特的激活特性,应用自动电生理学来测量通道活性一直很困难。我们利用稳定表达人TRP通道hTRPC6和hTRPA1的HEK293细胞,开发并验证了一种用于NSCC通道的高通量铷(Rb⁺)外流测定法。该测定法以基于细胞的96孔板形式进行。通过特异性激动剂激活通道后,可检测到Rb⁺外流显著增加,证实TRPC6和TRPA1通道均对Rb⁺离子具有通透性。激动剂诱导的Rb⁺外流可被已知的通道阻滞剂以及我们高通量筛选(HTS)命中的选定化合物所阻断。该测定法适用于HTS,Z'因子在0.53及以上。我们还在此测定法中测试了Ca²⁺对通道活性的影响。发现增加测定缓冲液中Ca²⁺的浓度可抑制TRPC6和TRPA1通道。然而,Ca²⁺显著降低了异硫氰酸烯丙酯(AITC)对TRPA1的效力,但不影响卡巴胆碱对TRPC6的效力。使用该测定法进行二次确认筛选,我们成功鉴定并确认了作为TRPC6抑制剂的阳性命中物。