首页> 外文期刊>Nucleic Acids Research >DHX34 and NBAS form part of an autoregulatory NMD circuit that regulates endogenous RNA targets in human cells, zebrafish and Caenorhabditis elegans
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DHX34 and NBAS form part of an autoregulatory NMD circuit that regulates endogenous RNA targets in human cells, zebrafish and Caenorhabditis elegans

机译:DHX34和NBAS构成自动调节NMD回路的一部分,该回路调节人类细胞,斑马鱼和秀丽隐杆线虫中的内源性RNA靶标

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The nonsense-mediated mRNA decay (NMD) pathway selectively degrades mRNAs harboring premature termination codons but also regulates the abundance of cellular RNAs. We sought to identify transcripts that are regulated by two novel NMD factors, DHX34 and neuroblastoma amplified sequence (NBAS), which were identified in a genome-wide RNA interference screen in Caenorhabditis elegans and later shown to mediate NMD in vertebrates. We performed microarray expression profile analysis in human cells, zebrafish embryos and C. elegans that were individually depleted of these factors. Our analysis revealed that a significant proportion of genes are co-regulated by DHX34, NBAS and core NMD factors in these three organisms. Further analysis indicates that NMD modulates cellular stress response pathways and membrane trafficking across species. Interestingly, transcripts encoding different NMD factors were sensitive to DHX34 and NBAS depletion, suggesting that these factors participate in a conserved NMD negative feedback regulatory loop, as was recently described for core NMD factors. In summary, we find that DHX34 and NBAS act in concert with core NMD factors to co-regulate a large number of endogenous RNA targets. Furthermore, the conservation of a mechanism to tightly control NMD homeostasis across different species highlights the importance of the NMD response in the control of gene expression.
机译:无意义介导的mRNA衰变(NMD)途径选择性降解具有过早终止密码子的mRNA,但也调节细胞RNA的丰度。我们试图确定受两个新的NMD因子DHX34和神经母细胞瘤扩增序列(NBAS)调控的转录本,这些转录本在秀丽隐杆线虫的全基因组RNA干扰筛选中被鉴定,随后被证明在脊椎动物中介导NMD。我们在人类细胞,斑马鱼胚胎和秀丽隐杆线虫中进行了微阵列表达谱分析,这些细胞分别被这些因子所消耗。我们的分析表明,在这三种生物中,很大一部分基因受DHX34,NBAS和核心NMD因子共同调控。进一步的分析表明,NMD调节跨物种的细胞应激反应途径和膜运输。有趣的是,编码不同NMD因子的转录本对DHX34和NBAS耗竭敏感,表明这些因子参与了保守的NMD负反馈调节回路,正如最近对核心NMD因子所述。总而言之,我们发现DHX34和NBAS与核心NMD因素协同作用,共同调节大量内源性RNA靶标。此外,严密控制不同物种间NMD稳态的机制凸显了NMD反应在控制基因表达中的重要性。

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