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用于RNA的苯并[]吲哚-恶唑并吡啶菁染料的明亮和发光传感及其在活细胞中核仁RNA高灵敏度成像中的应用。

Bright and Light-Up Sensing of Benzo[]indole-oxazolopyridine Cyanine Dye for RNA and Its Application to Highly Sensitive Imaging of Nucleolar RNA in Living Cells.

作者信息

Higuchi Kei, Sato Yusuke, Togashi Nao, Suzuki Michiyuki, Yoshino Yukina, Nishizawa Seiichi

机构信息

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

出版信息

ACS Omega. 2022 Jun 29;7(27):23744-23748. doi: 10.1021/acsomega.2c02408. eCollection 2022 Jul 12.

Abstract

Small molecular weight probes that can show a fluorescence signaling response upon binding to RNAs are promising for RNA imaging in living cells. Live-cell RNA imaging probes that can achieve a large light-up ability (>100-fold) and high Φ value for RNA (>0.50) have been rarely reported to date. Here, benzo[,]indole-oxazolopyridine (BIOP), an unsymmetrical monomethine cyanine analogue, was newly developed as a bright and large light-up probe for imaging of nucleolar RNA in living cells. BIOP served as a yellow-emissive probe (λ = 570 nm) and exhibited a significant light-up response upon RNA binding (770-fold) with a high Φ value (0.52). We demonstrated the advantages of BIOP over a commercially available RNA-staining probe, SYTO RNA select, for robust and sensitive RNA sensing by a systematic comparison of fluorescent properties for RNA. In addition, BIOP was found to possess high membrane permeability and low cytotoxicity in living cells. The examination of live-cell imaging revealed that BIOP exhibited emission in the nucleolus upon binding to nucleolar RNA much stronger than that of SYTO RNA select. Furthermore, BIOP facilitated the highly sensitive imaging of nucleolar RNA, in which 50 nM BIOP can stain nucleolar RNA in living cells with a 20 min incubation.

摘要

能够在与RNA结合时显示荧光信号响应的小分子探针,在活细胞RNA成像方面具有广阔前景。迄今为止,很少有报道称活细胞RNA成像探针能够实现高荧光增强能力(>100倍)和高RNA荧光量子产率(>0.50)。在此,新型开发了一种不对称单甲川花菁类似物苯并[,]吲哚-恶唑并吡啶(BIOP),作为用于活细胞核仁RNA成像的明亮且高荧光增强的探针。BIOP作为一种发射黄色荧光的探针(λ = 570 nm),在与RNA结合时表现出显著的荧光增强响应(770倍),荧光量子产率较高(0.52)。通过对RNA荧光特性的系统比较,我们证明了BIOP相对于市售RNA染色探针SYTO RNA select在稳健且灵敏的RNA传感方面的优势。此外,发现BIOP在活细胞中具有高膜通透性和低细胞毒性。活细胞成像检查显示,BIOP与核仁RNA结合后在核仁中发出的荧光比SYTO RNA select强得多。此外,BIOP有助于对核仁RNA进行高灵敏度成像,其中50 nM的BIOP在孵育20分钟后可对活细胞中的核仁RNA进行染色。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f65d/9280936/d376d8915755/ao2c02408_0004.jpg

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