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GW182-Free microRNA Silencing Complex Controls Post-transcriptional Gene Expression during Caenorhabditis elegans Embryogenesis

机译:不含GW182的microRNA沉默复合物控制秀丽隐杆线虫胚胎发生过程中的转录后基因表达。

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摘要

MicroRNAs and Argonaute form the microRNA induced silencing complex or miRISC that recruits GW182, causing mRNA degradation and/or translational repression. Despite the clear conservation and molecular significance, it is unknown if miRISC-GW182 interaction is essential for gene silencing during animal development. Using Caenorhabditis elegans to explore this question, we examined the relationship and effect on gene silencing between the GW182 orthologs, AIN-1 and AIN-2, and the microRNA-specific Argonaute, ALG-1. Homology modeling based on human Argonaute structures indicated that ALG-1 possesses conserved Tryptophan-binding Pockets required for GW182 binding. We show in vitro and in vivo that their mutations severely altered the association with AIN-1 and AIN-2. ALG-1 tryptophan-binding pockets mutant animals retained microRNA-binding and processing ability, but were deficient in reporter silencing activity. Interestingly, the ALG-1 tryptophan-binding pockets mutant phenocopied the loss of alg-1 in worms during larval stages, yet was sufficient to rescue embryonic lethality, indicating the dispensability of AINs association with the miRISC at this developmental stage. The dispensability of AINs in miRNA regulation is further demonstrated by the capacity of ALG-1 tryptophan-binding pockets mutant to regulate a target of the embryonic mir-35 microRNA family. Thus, our results demonstrate that the microRNA pathway can act independently of GW182 proteins during C. elegans embryogenesis.
机译:MicroRNA和Argonaute形成MicroRNA诱导的沉默复合物或miRISC,募集GW182,导致mRNA降解和/或翻译抑制。尽管有明确的保守性和分子重要性,但尚不清楚miRISC-GW182相互作用是否对动物发育过程中的基因沉默至关重要。使用秀丽隐杆线虫探讨这个问题,我们检查了GW182直向同源物AIN-1和AIN-2与microRNA特异性Argonaute ALG-1之间基因沉默的关系和影响。基于人Argonaute结构的同源性建模表明,ALG-1具有GW182结合所需的保守的色氨酸结合口袋。我们在体外和体内显示,它们的突变严重改变了与AIN-1和AIN-2的关联。 ALG-1色氨酸结合口袋突变动物保留了microRNA结合和加工能力,但缺乏记者沉默活动。有趣的是,ALG-1色氨酸结合口袋突变体在幼虫阶段表型化了蠕虫中alg-1的丧失,但仍足以挽救胚胎的致死性,表明在这个发育阶段AINs与miRISC的关联是可有可无的。 ALG-1色氨酸结合口袋突变体调控胚胎mir-35 microRNA家族靶标的能力进一步证明了AINs在miRNA调控中的可分散性。因此,我们的结果表明,在秀丽隐杆线虫胚胎发生过程中,microRNA途径可以独立于GW182蛋白起作用。

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