Du Cheng, Ge Baosheng, Liu Zhongfeng, Fu Kai, Chan Wing C, McKeithan Timothy W
Department of Pathology and Microbiology, University of Nebraska Medical Center, Omaha, NE 68198-0766, USA.
BMC Biotechnol. 2006 Jun 21;6:28. doi: 10.1186/1472-6750-6-28.
The use of small interfering RNAs (siRNAs) to silence target gene expression has greatly facilitated mammalian genetic analysis by generating loss-of-function mutants. In recent years, high-throughput, genome-wide screening of siRNA libraries has emerged as a viable approach. Two different methods have been used to generate short hairpin RNA (shRNA) libraries; one is to use chemically synthesized oligonucleotides, and the other is to convert complementary DNAs (cDNAs) into shRNA cassettes enzymatically. The high cost of chemical synthesis and the low efficiency of the enzymatic approach have hampered the widespread use of screening with shRNA libraries.
We report here an improved method for constructing genome-wide shRNA libraries enzymatically. The method includes steps of cDNA fragmentation and endonuclease MmeI digestion to generate 19-bp fragments, capping the 19-bp cDNA fragments with a hairpin oligonucleotide, and amplification of the hairpin structures by PCR. The PCR step converts hairpins into double-stranded DNAs that contain head-to-head cDNA fragments that can be cloned into a vector downstream of a Pol III promoter.
This method can readily be used to generate shRNA libraries from a small amount of mRNA and thus can be used to create cell- or tissue-specific libraries.
使用小干扰RNA(siRNA)使靶基因表达沉默,通过产生功能丧失突变体极大地促进了哺乳动物遗传分析。近年来,对siRNA文库进行全基因组高通量筛选已成为一种可行的方法。已使用两种不同方法来生成短发夹RNA(shRNA)文库;一种是使用化学合成的寡核苷酸,另一种是将互补DNA(cDNA)酶促转化为shRNA盒。化学合成的高成本和酶促方法的低效率阻碍了shRNA文库筛选的广泛应用。
我们在此报告一种改进的酶促构建全基因组shRNA文库的方法。该方法包括以下步骤:cDNA片段化和核酸内切酶MmeI消化以产生19bp片段,用发夹寡核苷酸封闭19bp cDNA片段,以及通过PCR扩增发夹结构。PCR步骤将发夹转化为双链DNA,其包含可克隆到Pol III启动子下游载体中的头对头cDNA片段。
该方法可轻易用于从少量mRNA生成shRNA文库,因此可用于创建细胞或组织特异性文库。