Division of AIDS, Korea National Institute of Health, Chungbuk, Republic of Korea; Division of Viral Disease Research, Korea National Institute of Health, Chungbuk, Republic of Korea.
Division of AIDS, Korea National Institute of Health, Chungbuk, Republic of Korea; Division of Viral Diseases, Korea National Institute of Health, Chungbuk, Republic of Korea.
J Virol Methods. 2017 Nov;249:1-9. doi: 10.1016/j.jviromet.2017.08.005. Epub 2017 Aug 12.
Human immunodeficiency virus (HIV) encodes a transcription trans-activator (Tat) with an essential role in the transcriptional elongation of viral RNA based on the viral promoter long terminal repeat (LTR). Tat-mediated transcription is conserved and can be distinguished from host transcription, so it is a therapeutic target for combating HIV replication. Traditional screening assays for Tat-mediated transcriptional inhibitors are based on the biochemical properties of Tat and transactivation-responsive RNA. We developed an inducible system based on two lentiviral expression cassettes for doxycycline (Dox)-inducible Tat and Renilla luciferase (R-Luc) using TZM-bl cells harboring LTR-driven firefly luciferase (F-Luc). The cells simultaneously expressed both Tat-induced F-Luc and R-Luc, so it was possible to recognize off-target effects in the presence of Dox. The system was validated with known inhibitors: CYC202 obtained high sensitivity and specificity, whereas 6Bio and DRB had off-target effects. The MTT-based cytotoxicity test indicated the resistance of the system even at concentrations with off-target effects. The specificity of the system was confirmed using antiretroviral drugs. Our dual reporter system can simply detect Tat inhibitory effects, as well as precisely discriminate between the inhibitory and off-target effects of inhibitors, and may be useful for the development of a therapeutic anti-HIV drug.
人类免疫缺陷病毒(HIV)编码一种转录反式激活因子(Tat),它在基于病毒启动子长末端重复序列(LTR)的病毒 RNA 的转录延伸中具有重要作用。Tat 介导的转录是保守的,可以与宿主转录区分开来,因此它是对抗 HIV 复制的治疗靶点。用于检测 Tat 介导的转录抑制剂的传统筛选测定法基于 Tat 和转录激活反应性 RNA 的生化特性。我们使用携带 LTR 驱动萤火虫荧光素酶(F-Luc)的 TZM-bl 细胞,开发了基于两个慢病毒表达盒的诱导系统,用于 Dox 诱导的 Tat 和海肾荧光素酶(R-Luc)。细胞同时表达 Tat 诱导的 F-Luc 和 R-Luc,因此可以在存在 Dox 的情况下识别脱靶效应。该系统使用已知抑制剂进行了验证:CYC202 具有高灵敏度和特异性,而 6Bio 和 DRB 具有脱靶效应。基于 MTT 的细胞毒性试验表明,即使在存在脱靶效应的浓度下,该系统也具有抗性。该系统的特异性通过抗逆转录病毒药物得到了证实。我们的双报告基因系统可以简单地检测 Tat 抑制作用,并且可以精确地区分抑制剂的抑制作用和脱靶作用,可能有助于开发治疗性抗 HIV 药物。