Department of Chemistry and Biochemistry, University of California, 9500 Gilman Drive, La Jolla, San Diego, California 92093-0358, United States.
ACS Chem Biol. 2024 Aug 16;19(8):1836-1841. doi: 10.1021/acschembio.4c00398. Epub 2024 Aug 5.
A new emissive guanosine analog G, constructed by a single trifluoromethylation step from the previously reported G, displays red-shifted absorption and emission spectra compared to its precursor. The impact of solvent type and polarity on the photophysical properties of G suggests that the electronic effects of the trifluoromethyl group dominate its behavior and demonstrates its susceptibility to microenvironmental polarity changes. In vitro transcription initiations using T7 RNA polymerase, initiated with G, result in highly emissive 5'-labeled RNA transcripts, demonstrating the tolerance of the enzyme toward the analog. Viability assays with HEK293T cells displayed no detrimental effects at tested concentrations, indicating the safety of the analog for cellular applications. Live cell imaging of the free emissive guanosine analog using confocal microscopy was facilitated by its red-shifted absorption and emission and adequate brightness. Real-time live cell imaging demonstrated the release of the guanosine analog from HEK293T cells at concentration-gradient conditions, which was suppressed by the addition of guanosine.
一种新的发光鸟嘌呤类似物 G,通过从先前报道的 G 中进行单一的三氟甲基化步骤构建,与前体相比,显示出吸收和发射光谱的红移。溶剂类型和极性对 G 的光物理性质的影响表明,三氟甲基的电子效应主导其行为,并证明其对微环境极性变化的敏感性。使用 T7 RNA 聚合酶进行的体外转录起始,以 G 起始,导致高度发光的 5'-标记 RNA 转录物,证明该酶对类似物的耐受性。用 HEK293T 细胞进行的细胞活力测定在测试浓度下没有显示出有害影响,表明该类似物对细胞应用是安全的。使用共聚焦显微镜对游离发光鸟嘌呤类似物进行活细胞成像,由于其吸收和发射的红移以及足够的亮度而变得容易。实时活细胞成像显示,在浓度梯度条件下,鸟嘌呤类似物从 HEK293T 细胞中释放出来,而添加鸟嘌呤则抑制了这种释放。