Department of Chemistry, Graduate School of Science, Tohoku University, Aoba-Ku, Sendai, 980-8578, Japan.
Anal Sci. 2024 Nov;40(11):2089-2095. doi: 10.1007/s44211-024-00642-3. Epub 2024 Aug 5.
We report on a deep-red emissive fluorogenic peptide probe for human immunodeficiency virus-1 (HIV-1) trans-activation responsive (TAR) RNA as an indicator for fluorescence indicator displacement (FID) assay. The probe design is based on the concept of the forced intercalation of thiazole orange (TO) dyes (FIT) on the peptide backbone, as recently proposed by our group, where the Q (glutamic acid) residue in the Tat peptide (RKKRR-Q-RRR) is replaced with TO as if it were an amino acid surrogate. Here, instead of green emissive TO, we utilized a deep-red emissive benzo[c,d]indole-quinoline (BIQ) cyanine dye developed previously by our group for imaging of nucleolar RNA in living cells. The developed 9-mer FIT peptide (RKKRR-BIQ-RRR; named BIQ-FiLuP) exhibits a significant off-on signaling ability for TAR RNA (λ = 660 nm, I/I = 130-fold, Φ = 0.0009, Φ = 0.052), and the dissociation constant K reaches ca. 1 nM. When used in FID assay, BIQ-FiLuP, like TO-based FiLuP, is able to distinguish between competitive and noncompetitive inhibitors, which has never been demonstrated with all previous indicators for TAR RNA. Deep-red emissive BIQ-FiLuP facilitates the evaluation of green to yellow emissive ligands without suffering from optical interference. The combination use with green emissive TO-based FiLuP (λ = 541 nm) would cover the examination of a wide range of fluorescent test compounds.
我们报告了一种用于人类免疫缺陷病毒-1(HIV-1)反式激活反应(TAR)RNA 的深红光发射荧光肽探针,作为荧光指示剂置换(FID)测定的指示剂。该探针设计基于我们小组最近提出的噻唑橙(TO)染料(FIT)在肽骨架上强制嵌入的概念,其中 Tat 肽(RKKRR-Q-RRR)中的 Q(谷氨酸)残基被 TO 取代,就像它是一种氨基酸替代物一样。在这里,我们没有使用绿色发射的 TO,而是利用了我们小组之前开发的用于活细胞核仁 RNA 成像的苯并[c,d]吲哚-喹啉(BIQ)菁染料。开发的 9 肽 FIT 肽(RKKRR-BIQ-RRR;命名为 BIQ-FiLuP)对 TAR RNA 表现出显著的开-关信号能力(λ=660nm,I/I=130 倍,Φ=0.0009,Φ=0.052),解离常数 K 约为 1nM。在 FID 测定中,BIQ-FiLuP 与基于 TO 的 FiLuP 一样,能够区分竞争性和非竞争性抑制剂,这是以前所有 TAR RNA 指示剂都从未证明过的。深红光发射 BIQ-FiLuP 有助于评估绿色到黄色发射配体,而不会受到光学干扰。与绿色发射的基于 TO 的 FiLuP(λ=541nm)结合使用,可以涵盖广泛的荧光测试化合物的检查。