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Loss of the putative RNA-directed RNA polymerase RRF-3 makes C. elegans hypersensitive to RNAi

机译:假定的RNA指导的RNA聚合酶RRF-3的丢失使秀丽隐杆线虫对RNAi过敏

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摘要

RNA interference (RNAi) is a broadly used reverse genetics method in C. elegans [1]. Unfortunately, RNAi does not inhibit all genes [2, 3]. We show that loss of function of a putative RNA-directed RNA polymerase (RdRP) of C. elegans, RRF-3, results in a substantial enhancement of sensitivity to RNAi in diverse tissues. This is particularly striking in the nervous system; neurons that are generally refractory to RNAi in a wildtype genetic background can respond effectively to interference in an rrf-3 mutant background. These data provide the first indication of physiological negative modulation of the RNAi response and implicate an RdRP-related factor in this effect. The rrf-3 strain can be useful to study genes that, in wild-type, do not show a phenotype after RNAi, and it is probably the strain of choice for genome-wide RNAi screens.
机译:RNA干扰(RNAi)是秀丽隐杆线虫中广泛使用的反向遗传学方法[1]。不幸的是,RNAi不能抑制所有基因[2,3]。我们显示的功能的秀丽隐杆线虫,RRF-3的假定的RNA指导RNA聚合酶(RdRP)的功能丧失导致对各种组织中对RNAi的敏感性大大提高。这在神经系统中尤为突出。在野生型遗传背景中通常对RNAi难耐的神经元可以有效响应rrf-3突变体背景中的干扰。这些数据提供了RNAi应答的生理负调控的第一个指标,并暗示了与RdRP相关的因子。 rrf-3菌株可用于研究野生型在RNAi之后不显示表型的基因,它可能是全基因组RNAi筛选的首选菌株。

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