Hossbach Markus, Gruber Jens, Osborn Mary, Weber Klaus, Tuschl Thomas
Department of Cellular Biochemistry, Max-Planck-Institute for Biophysical Chemistry, Göttingen, Germany.
RNA Biol. 2006 Apr;3(2):82-9. doi: 10.4161/rna.3.2.3110. Epub 2006 Apr 19.
Synthetic small interfering RNA (siRNA) duplexes are widely used to transiently and sequence-specifically disrupt gene expression in mammalian cultured cells. The efficiency and specificity of mRNA cleavage is partly affected by the presence of the nontargeting "passenger" or "sense" siRNA strand, which is required for presentation of the target-complementary or guide siRNA strand to the double-strand-specific RNA silencing protein machinery. We show that siRNA duplexes can be designed that are solely composed of two fully target-complementary guide strands that are sufficiently complementary to each other to form stable duplexes with characteristic 3' overhanging ends. The general feasibility of this approach is documented by transient knockdown of lamin A/C and emerin in HeLa cells. The silencing efficiencies of guide-only siRNA duplexes are comparable to prototypical fully paired passenger/guide duplex siRNAs, even though guide-only siRNA duplexes may contain a significant number of nonWatson-Crick and G/U wobble base pairs. Such siRNA duplexes may offer advantages regarding production costs and specificity of gene silencing.
合成小干扰RNA(siRNA)双链体被广泛用于在哺乳动物培养细胞中瞬时且序列特异性地破坏基因表达。mRNA切割的效率和特异性部分受非靶向“乘客”或“有义”siRNA链的存在影响,而该链是将靶标互补或引导siRNA链呈递给双链特异性RNA沉默蛋白机制所必需的。我们表明,可以设计仅由两条完全靶标互补的引导链组成的siRNA双链体,这两条链彼此充分互补以形成具有特征性3'突出端的稳定双链体。通过在HeLa细胞中瞬时敲低核纤层蛋白A/C和emerin证明了该方法的一般可行性。仅引导链的siRNA双链体的沉默效率与典型的完全配对的乘客/引导双链体siRNA相当,尽管仅引导链的siRNA双链体可能包含大量非沃森-克里克和G/U摆动碱基对。这种siRNA双链体在生产成本和基因沉默特异性方面可能具有优势。