Henn Anja, Joachimi Astrid, Gonçalves Diana P N, Monchaud David, Teulade-Fichou Marie-Paule, Sanders Jeremy K M, Hartig Jörg S
Department of Chemistry and Konstanz Research School of Chemical Biology (KoRS-CB), University of Konstanz, Universitätsstrasse 10, 78457 Konstanz, Germany.
Chembiochem. 2008 Nov 3;9(16):2722-9. doi: 10.1002/cbic.200800271.
RNA interference is triggered by small hairpin precursors that are processed by the endonuclease dicer to yield active species such as siRNAs and miRNAs. To regulate the RNAi-mediated suppression of gene expression, we imagined a strategy that relies on the sequence-specific inhibition of shRNA precursor processing by immediate RNA-small molecule interactions. Here, we present a first step in this direction by augmenting shRNAs with guanosine-rich sequences that are prone to fold into four-stranded structures. The addition of small molecules that selectively bind to such quadruplex sequences should allow for the specific inhibition of dicing of shRNAs that contain suitable G-rich elements. In an attempt to find compounds that protect against dicer processing, we have examined the effects of quadruplex-binding compounds on the dicer processing of shRNAs containing G-quadruplexes. Although a variety of small molecules that are known to bind to quadruplexes inhibited in vitro dicing of shRNAs, only two substance classes, namely certain porphyrazines and bisquinolinium compounds, showed selective inhibition of G-rich shRNAs compared to control sequences lacking guanine-rich elements. The G-rich shRNAs displayed a potent knockdown of gene expression in mammalian cell culture, but the effect was not influenced by addition of the respective quadruplex-binding compounds.
RNA干扰由小发夹前体触发,这些前体由核酸内切酶Dicer加工以产生活性物质,如小干扰RNA(siRNA)和微小RNA(miRNA)。为了调控RNA干扰介导的基因表达抑制,我们设想了一种策略,该策略依赖于通过直接的RNA-小分子相互作用对短发夹RNA(shRNA)前体加工进行序列特异性抑制。在此,我们朝着这个方向迈出了第一步,通过在shRNA中添加富含鸟苷的序列,这些序列易于折叠成四链结构。添加选择性结合此类四链体序列的小分子应能特异性抑制含有合适富含G元素的shRNA的切割。为了找到能防止Dicer加工的化合物,我们研究了四链体结合化合物对含有G-四链体的shRNA的Dicer加工的影响。尽管已知多种与四链体结合的小分子在体外抑制了shRNA的切割,但与缺乏富含鸟嘌呤元素的对照序列相比,只有两类物质,即某些卟吩嗪和双喹啉鎓化合物,对富含G的shRNA表现出选择性抑制。富含G的shRNA在哺乳动物细胞培养中显示出有效的基因表达敲低,但添加相应的四链体结合化合物并未影响该效果。