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力致变色肽作为 HIV-1 TAR RNA 配体测定的荧光指示剂。

Forced intercalation-induced light-up peptides as fluorogenic indicators for the HIV-1 TAR RNA-ligand assay.

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.

出版信息

Analyst. 2024 Aug 5;149(16):4179-4186. doi: 10.1039/d4an00530a.

Abstract

Fluorescence indicators capable of binding to human immunodeficiency virus-1 (HIV-1) -activation responsive (TAR) RNA are powerful tools for the exploratory studies of the identification of anti-HIV drug candidates. This work presents a new design strategy for fluorogenic indicators with a transactivator of transcription (Tat)-derived peptide based on the forced intercalation of thiazole orange (TO) dyes (FIT). The developed 9-mer FIT peptide (RKKRR-TO-RRR: named FiLuP) features the TO unit integrated onto a Dap (2,3-diaminopropionic acid) residue in the middle of the Tat peptide sequence; the Q (glutamic acid) residue in the Tat peptide (RKKRR-Q-RRR) is replaced with TO as if it were an amino acid surrogate. This facilitates a significant light-up response (450-fold at = 541 nm, = 0.0057, and = 0.61) upon binding to TAR RNA. The response of FiLuP is highly selective to TAR RNA over other non-cognate RNAs, and FiLuP maintains strong binding affinity ( = 1.0 ± 0.6 nM). Significantly, in contrast to previously developed Tat peptide-based FRET probes, FiLuP is able to discriminate between "competitive" and "noncompetitive" inhibitors when used in the fluorescence indicator displacement (FID) assay. The FID assay under stringent screening conditions is also possible, enabling super-strong competitive binders toward TAR RNA to be sieved out.

摘要

能够与人类免疫缺陷病毒-1(HIV-1)激活反应性(TAR)RNA 结合的荧光指示剂是探索性研究抗 HIV 药物候选物的有力工具。这项工作提出了一种基于转录激活剂(Tat)衍生肽的荧光指示剂的新设计策略,该肽基于噻唑橙(TO)染料的强制嵌入(FIT)。开发的 9 肽 FIT 肽(RKKRR-TO-RRR:命名为 FiLuP)具有 TO 单元整合到 Tat 肽序列中间的 Dap(2,3-二氨基丙酸)残基上;Tat 肽中的 Q(谷氨酸)残基(RKKRR-Q-RRR)被 TO 取代,就好像它是一种氨基酸替代物一样。这使得与 TAR RNA 结合时会产生显着的点亮响应(在 = 541nm 时为 450 倍, = 0.0057, = 0.61)。FiLuP 对 TAR RNA 的响应高度选择性,超过其他非同源 RNA,并且 FiLuP 保持强结合亲和力( = 1.0 ± 0.6 nM)。重要的是,与以前开发的基于 Tat 肽的 FRET 探针相比,当用于荧光指示剂置换(FID)测定时,FiLuP 能够区分“竞争性”和“非竞争性”抑制剂。在严格的筛选条件下进行 FID 测定也是可能的,从而能够筛选出针对 TAR RNA 的超强竞争性结合物。

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