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Function-based gene identification using enzymatically generated normalized shRNA library and massive parallel sequencing

机译:使用酶促生成的标准化shRNA文库和大规模并行测序进行基于功能的基因鉴定

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As a general strategy for function-based gene identification, an shRNA library containing ≈150 shRNAs per gene was enzymatically generated from normalized (reduced-redundance) human cDNA. The library was constructed in an inducible lentiviral vector, enabling propagation of growth-inhibiting shRNAs and controlled activity measurements. RNAi activities were measured for 101 shRNA clones representing 100 human genes and for 201 shRNAs derived from a firefly luciferase gene. Structure-activity analysis of these two datasets yielded a set of structural criteria for shRNA efficacy, increasing the frequencies of active shRNAs up to 5-fold relative to random sampling. The same library was used to select shRNAs that inhibit breast carcinoma cell growth by targeting potential oncogenes. Genes targeted by the selected shRNAs were enriched for 10 pathways, 9 of which have been previously associated with various cancers, cell cycle progression, or apoptosis. One hundred nineteen genes, enriched through this selection and represented by two to six shRNAs each, were identified as potential cancer drug targets. Short interfering RNAs against 19 of 22 tested genes in this group inhibited cell growth, validating the efficiency of this strategy for high-throughput target gene identification.
机译:作为基于功能的基因鉴定的一般策略,从标准化(减少冗余)的人cDNA中酶促生成每个基因含≈150个shRNA的shRNA文库。该文库是在可诱导的慢病毒载体中构建的,能够传播抑制生长的shRNA并控制活性。测量了代表100个人类基因的101个shRNA克隆和源自萤火虫荧光素酶基因的201个shRNA的RNAi活性。这两个数据集的结构活性分析产生了一套shRNA功效的结构标准,相对于随机采样,将活性shRNA的频率提高了5倍。使用同一文库来选择通过靶向潜在致癌基因来抑制乳腺癌细胞生长的shRNA。所选shRNA靶向的基因富集了10条途径,其中9条先前与多种癌症,细胞周期进程或凋亡相关。通过此选择而富集的119个基因(每个基因由2至6个shRNA代表)被鉴定为潜在的癌症药物靶标。针对该组中22个测试基因中的19个的短干扰RNA抑制了细胞生长,从而验证了该策略用于高通量靶基因鉴定的效率。

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