Dipartimento Scienze e Tecnologie Ambientali, Biologiche e Farmaceutiche, Seconda Università degli Studi di Napoli, Via Vivaldi 43, 81100 Caserta, Italy.
Dipartimento di Chimica Farmaceutica e Tossicologica, Università "Federico II," Via D. Montesano 49, 80131 Napoli, Italy.
Biomed Res Int. 2014;2014:901617. doi: 10.1155/2014/901617. Epub 2014 Mar 26.
The active components of the RNAi are 21 nucleotides long dsRNAs containing a 2 nucleotide overhang at the 3' end, carrying 5'-phosphate and 3'-hydroxyl groups (siRNAs). Structural analysis revealed that the siRNA is functionally bound at both ends to RISC. Terminal modifications are considered with interest as the introduction of chemical moieties interferes with the 3' overhang recognition by the PAZ domain and the 5'-phosphate recognition by the MID and PIWI domains of RISC. Herein, we report the synthesis of modified siRNAs containing terminal amide linkages by introducing hydroxyethylglycine PNA (hegPNA) moieties at 5', and at 3' positions and on both terminals. Results of gene silencing studies highlight that some of these modifications are compatible with the RNAi machinery and markedly increase the resistance to serum-derived nucleases even after 24 h of incubation. Molecular docking simulations were attained to give at atomistic level a clearer picture of the effect of the most performing modifications on the interactions with the human Argonaute 2 PAZ, MID, and PIWI domains. This study adds another piece to the puzzle of the heterogeneous chemical modifications that can be attained to enhance the silencing efficiency of siRNAs.
RNAi 的活性成分是 21 个核苷酸长的 dsRNA,在 3' 末端带有 2 个核苷酸的突出端,带有 5'-磷酸基团和 3'-羟基基团(siRNA)。结构分析表明,siRNA 在功能上与 RISC 的两端结合。末端修饰受到关注,因为化学部分的引入会干扰 PAZ 结构域对 3' 突出端的识别以及 MID 和 PIWI 结构域对 RISC 的 5' 磷酸基团的识别。在此,我们报道了通过在 5' 端、3' 端和两端引入羟乙基甘氨酸 PNA(hegPNA)部分来合成含有末端酰胺键的修饰 siRNA。基因沉默研究的结果表明,其中一些修饰与 RNAi 机制相容,并显著提高了对血清来源的核酸酶的抗性,即使在孵育 24 小时后也是如此。分子对接模拟获得了原子水平的更清晰图像,显示了最有效的修饰对与人 Argonaute 2 PAZ、MID 和 PIWI 结构域相互作用的影响。这项研究为可以提高 siRNA 沉默效率的异构化学修饰增加了另一个方面。