Fujimoto Hiroyuki, Kato Koichi, Iwata Hiroo
Institute for Frontier Medical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8507, Japan.
Anal Biochem. 2008 Mar 15;374(2):417-22. doi: 10.1016/j.ab.2007.12.029. Epub 2007 Dec 31.
Transfection cell arrays provide promising methods for the high-throughput analysis of gene functions. Such analysis is performed efficiently by using small interfering RNA (siRNA). To extend the usefulness of microarrays, this study was devoted to implementing siRNA prepared from complementary DNA (cDNA). The preparation of siRNA involves the transcription of cDNA to generate double-stranded RNA (dsRNA) followed by digestion with endoribonuclease, dicer, by which one can obtain the library of siRNAs without target sequence optimization. In this study, endoribonuclease-digested siRNA (d-siRNA) was prepared using cDNA encoding enhanced green fluorescent protein (EGFP) and loaded onto micropatterned substrates through electrostatic interactions of siRNA complex with substrates. We observed that d-siRNA loading was comparable to the case with siRNA prepared by chemical synthesis. When cotransfected with EGFP plasmid into human embryonic kidney 293 (HEK293) cells on a microarray, d-siRNA suppressed EGFP expression in a loading-dependent manner. In addition, d-siRNA triggered gene silencing at a level similar to that of chemically synthesized siRNA. The similarity between the two types of siRNA regarding silencing efficiency suggests that heterogeneity in nucleotide sequences of d-siRNA has minor effects. From these results, we conclude that the combination of d-siRNA with the array technology provides useful tools for high-throughput screening of gene functions.
转染细胞阵列提供了用于基因功能高通量分析的有前景的方法。通过使用小干扰RNA(siRNA)可以高效地进行这种分析。为了扩展微阵列的用途,本研究致力于制备由互补DNA(cDNA)产生的siRNA。siRNA的制备涉及将cDNA转录以产生双链RNA(dsRNA),随后用核糖核酸内切酶Dicer进行消化,通过这种方法可以获得无需进行靶序列优化的siRNA文库。在本研究中,使用编码增强型绿色荧光蛋白(EGFP)的cDNA制备核糖核酸内切酶消化的siRNA(d-siRNA),并通过siRNA复合物与底物的静电相互作用将其加载到微图案化的底物上。我们观察到d-siRNA的加载与化学合成制备的siRNA的情况相当。当与EGFP质粒共转染到微阵列上的人胚肾293(HEK293)细胞中时,d-siRNA以加载依赖性方式抑制EGFP表达。此外,d-siRNA引发的基因沉默水平与化学合成的siRNA相似。两种类型的siRNA在沉默效率方面的相似性表明d-siRNA核苷酸序列的异质性影响较小。从这些结果中,我们得出结论,d-siRNA与阵列技术的结合为基因功能的高通量筛选提供了有用的工具。