Di Pisa Margherita, Seitz Oliver
Department of Chemistry, Humboldt University Berlin, Brook-Taylor Strasse 2, 12489, Berlin, Germany.
ChemMedChem. 2017 Jun 21;12(12):872-882. doi: 10.1002/cmdc.201700266.
Nucleic acid directed bioorthogonal reactions offer the fascinating opportunity to unveil and redirect a plethora of intracellular mechanisms. Nano- to picomolar amounts of specific RNA molecules serve as templates and catalyze the selective formation of molecules that 1) exert biological effects, or 2) provide measurable signals for RNA detection. Turnover of reactants on the template is a valuable asset when concentrations of RNA templates are low. The idea is to use RNA-templated reactions to fully control the biodistribution of drugs and to push the detection limits of DNA or RNA analytes to extraordinary sensitivities. Herein we review recent and instructive examples of conditional synthesis or release of compounds for in cellulo protein interference and intracellular nucleic acid imaging.
核酸导向的生物正交反应为揭示和重新引导大量细胞内机制提供了迷人的机会。纳摩尔到皮摩尔量的特定RNA分子作为模板,催化分子的选择性形成,这些分子1)发挥生物学效应,或2)为RNA检测提供可测量的信号。当RNA模板浓度较低时,模板上反应物的周转是一项宝贵的优势。其理念是利用RNA模板反应来完全控制药物的生物分布,并将DNA或RNA分析物的检测限提高到极高的灵敏度。在此,我们综述了用于细胞内蛋白质干扰和细胞内核酸成像的化合物的条件合成或释放的近期具有启发性的实例。