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The CONJUDOR pipeline for multiplexed knockdown of gene pairs identifies RBBP-5 as a germ cell reprogramming barrier in

机译:用于基因对的复用敲低的连接管道将RBBP-5鉴定为生殖器重编程屏障

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摘要

Multiple gene activities control complex biological processes such as cell fate specification during development and cellular reprogramming. Investigating the manifold gene functions in biological systems requires also simultaneous depletion of two or more gene activities. RNA interference-mediated knockdown (RNAi) is commonly used in Caenorhabditis elegans to assess essential genes, which otherwise lead to lethality or developmental arrest upon full knockout. RNAi application is straightforward by feeding worms with RNAi plasmid-containing bacteria. However, the general approach of mixing bacterial RNAi clones to deplete two genes simultaneously often yields poor results. To address this issue, we developed a bacterial conjugation-mediated double RNAi technique ‘CONJUDOR’. It allows combining RNAi bacteria for robust double RNAi with high-throughput. To demonstrate the power of CONJUDOR for large scale double RNAi screens we conjugated RNAi against the histone chaperone gene lin-53 with more than 700 other chromatin factor genes. Thereby, we identified the Set1/MLL methyltransferase complex member RBBP-5 as a novel germ cell reprogramming barrier. Our findings demonstrate that CONJUDOR increases efficiency and versatility of RNAi screens to examine interconnected biological processes in C. elegans with high-throughput.
机译:多基因活性控制复合生物过程,如在发育和细胞重编程过程中的细胞命运规范。研究生物系统中的歧管基因功能还需要同时消耗两种或更多种基因活性。 RNA干扰介导的敲低(RNAi)通常用于秀丽隐杆线虫,以评估必需基因,否则在全淘汰时导致致命性或发育逮捕。 RNAi应用通过喂养含RNAi质粒细菌的蠕虫是简单的。然而,混合细菌RNAi克隆的一般方法同时耗尽两种基因,通常产生差的结果。为了解决这个问题,我们开发了一种细菌共轭介导的双RNAi技术“合成”。它允许将RNAi细菌与高吞吐量相结合的鲁棒双RNAi。为了展示大规模双RNAI屏幕的连接力,我们将RNAi与具有超过700种染色质因子基因的组蛋白伴侣基因Lin-53共轭RNAi。由此,我们将Set1 / MLL甲基转移酶复合构件RBBP-5鉴定为新型胚细胞重编程屏障。我们的研究结果表明,连混合物提高了RNAi屏幕的效率和多功能性,以便在高吞吐量中检查C.杆杆线虫的互连生物过程。

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