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首页> 外文期刊>Journal of proteome research >Quantitative Profiling Identifies Potential Regulatory Proteins Involved in Development from Dauer Stage to L4 Stage in Caenorhabditis elegans
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Quantitative Profiling Identifies Potential Regulatory Proteins Involved in Development from Dauer Stage to L4 Stage in Caenorhabditis elegans

机译:定量分析鉴定了秀丽隐杆线虫从Dauer阶段到L4阶段发育的潜在调控蛋白。

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When Caenorhabditis elegans encounters unfavorable growth conditions, it enters the dauer stage, an alternative L3 developmental period. A dauer larva resumes larval development to the normal L4 stage by uncharacterized postdauer reprogramming (PDR) when growth conditions become more favorable. During this transition period, certain heterochronic genes involved in controlling the proper sequence of developmental events are known to act, with their mutations suppressing the Muv (multivulva) phenotype in C. elegans. To identify the specific proteins in which the Muv phenotype is highly suppressed, quantitative proteomic analysis with iTRAQ labeling of samples obtained from worms at L1 + 30 h (for continuous development [CD]) and dauer recovery +3 h (for postdauer development [PD]) was carried out to detect changes in protein abundance in the CD and PD states of both N2 and lin-28(n719). Of the 1661 unique proteins identified with a < 1% false discovery rate at the peptide level, we selected 58 proteins exhibiting >= 2-fold up-regulation or >= 2-fold down-regulation in the PD state and analyzed the Gene Ontology terms. RNAi assays against 15 selected up-regulated genes showed that seven genes were predicted to be involved in higher Muv phenotype (p < 0.05) in lin-28(n791), which is not seen in N2. Specifically, two genes, K08H10.1 and W05H9.1, displayed not only the highest rate (%) of Muv phenotype in the RNAi assay but also the dauer-specific mRNA expression, indicating that these genes may be required for PDR, leading to the very early onset of dauer recovery. Thus, our proteomic approach identifies and quantitates the regulatory proteins potentially involved in PDR in C. elegans, which safeguards the overall lifecycle in response to environmental changes.
机译:当秀丽隐杆线虫遇到不利的生长条件时,它进入dauer阶段,这是L3的另一个发育时期。当生长条件变得更有利时,幼仔幼虫通过未表征的后期幼仔重编程(PDR)将幼虫恢复到正常的L4阶段。在此过渡期间,已知某些参与控制发育事件正确序列的异时基因起作用,它们的突变抑制秀丽隐杆线虫的Muv(多阴)表型。为了鉴定其中Muv表型受到高度抑制的特定蛋白质,使用iTRAQ标记从L1 + 30 h(用于连续发育[CD])和dauer恢复+3 h(用于dadauer发育[PD])的蠕虫获得的样品进行定量蛋白质组分析。 ])进行检测,以检测N2和lin-28(n719)的CD和PD状态中蛋白质丰度的变化。在鉴定出的肽水平上错误发现率<1%的1661种独特蛋白中,我们选择了58种在PD状态下显示> = 2倍上调或> = 2倍下调的蛋白质,并分析了基因本体条款。针对15个选定的上调基因的RNAi分析表明,预测有7个基因参与lin-28(n791)中较高的Muv表型(p <0.05),这在N2中未见。具体而言,两个基因K08H10.1和W05H9.1在RNAi分析中不仅显示出最高的Muv表型发生率(%),而且还显示了dauer特异性mRNA表达,这表明PDR可能需要这些基因,从而导致道尔病恢复的很早开始。因此,我们的蛋白质组学方法可以识别和定量分析秀丽隐杆线虫中潜在参与PDR的调节蛋白,从而保护响应环境变化的整个生命周期。

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