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Thorough validation of siRNA-induced cell death phenotypes defines new anti-apoptotic protein

机译:siRNA诱导的细胞死亡表型的全面验证定义了新的抗凋亡蛋白

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Loss-of-function by means of RNA interference in cultured human cells enables rapid pathway dissection on a genome-scale. Improved siRNA design and key validation protocols are required to eliminate falsely identified phenotypes resulting from potential off-target consequences. Here, we demonstrate a validation strategy involving several steps for verifying cell death phenotypes revealed during loss-of-function screening. First, from a set of 45 novel human genes we identified gene candidates that, when silenced, induce apoptosis in cultured HeLa cells. For those candidates, we performed more extensive validation with multiple effective siRNAs. In addition, we designed rescue experiments involving candidate genes delivered exogenously and containing silent mutations in the siRNA target regions. Rescue of the observed knockdown phenotype demonstrated an original and more stringent validation of the siRNA's selectivity and the phenotype specificity for the target gene. As a result, our data reveals an anti-apoptotic function for novel human breast adenocarcinoma marker BC-2, adding new depth to BC-2's description as a putative tumor marker involved in cancer related pathways.
机译:通过RNA干扰在培养的人细胞中的功能丧失使得能够在基因组规模上快速进行途径解剖。需要改进的siRNA设计和关键的验证方案,以消除由潜在的脱靶后果导致的错误识别的表型。在这里,我们演示了一种验证策略,其中涉及几个步骤,以验证在功能丧失筛选过程中揭示的细胞死亡表型。首先,从一组45个新的人类基因中,我们确定了候选基因,这些候选基因沉默后会诱导培养的HeLa细胞凋亡。对于那些候选人,我们使用多种有效的siRNA进行了更广泛的验证。此外,我们设计了救援实验,涉及外源传递的候选基因并在siRNA目标区域中包含沉默突变。挽救观察到的敲除表型证明了对siRNA的选择性和对靶基因表型特异性的原始且更严格的验证。结果,我们的数据揭示了新型人类乳腺腺癌标志物BC-2的抗凋亡功能,为BC-2描述为参与癌症相关途径的假定肿瘤标志物增加了新的深度。

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