Institute of Organic Chemistry, Karlsruhe Institute of Technology (KIT), Fritz-Haber-Weg 6, 76131 Karlsruhe, Germany. Wagenknecht @kit.edu.
Institute of Applied Physics, Karlsruhe Institute of Technology (KIT), Wolfgang-Gaede-Str. 1, 76131 Karlsruhe, Germany.
Org Biomol Chem. 2018 May 23;16(20):3726-3731. doi: 10.1039/C8OB00417J.
Two fluorescent dyes covalently attached in diagonal interstrand orientation to siRNA undergo energy transfer and thereby enable a dual color fluorescence readout (red/green) for hybridization. Three different structural variations were carried out and compared by their optical properties, including (i) the base surrogate approach with an acyclic linker as a substitute of the 2-deoxyriboside between the phosphodiester bridges, (ii) the 2'-modification of conventional ribofuranosides and (iii) the arabino-configured 2'-modification. The double stranded siRNA with the latter type of modification delivered the best energy transfer efficiency, which was explained by molecular dynamics simulations that showed that the two dyes are more flexible at the arabino-configured sugars compared to the completely stacked situation at the ribo-configured ones. Single molecule fluorescence lifetime measurements indicate their application in fluorescence cell imaging, which reveals a red/green fluorescence contrast in particular for the arabino-configured 2'-modification by the two dyes, which is key for tracking of siRNA transport into HeLa cells.
两种荧光染料以对角线的方式共价连接到 siRNA 上,发生能量转移,从而实现杂交的双色荧光读出(红/绿)。通过光学性质对三种不同的结构变体进行了比较,包括(i)碱基替代方法,其中无环接头替代磷酸二酯桥之间的 2-脱氧核糖,(ii)常规呋喃核糖的 2'-修饰,和(iii)阿拉伯糖基化的 2'-修饰。具有后一种修饰类型的双链 siRNA 提供了最佳的能量转移效率,这可以通过分子动力学模拟来解释,该模拟表明与完全堆积的核糖构型相比,在阿拉伯糖构型的糖上,两个染料更具柔韧性。单分子荧光寿命测量表明它们可应用于荧光细胞成像,这特别显示出两种染料在阿拉伯糖基化的 2'-修饰下的红/绿荧光对比,这对于跟踪 siRNA 进入 HeLa 细胞的运输至关重要。